Must-know review
The page to sweep right before the exam: 416 ★ must-know sets + 318 high-yield tables from past exams, all searchable (space = AND).
- Correct answers: atrophy = smaller and fewer; hypertrophy = bulk up; hyperplasia = make more; metaplasia = change identity.
- Trap one: "atrophy only shrinks cells, number unchanged" — omits the apoptosis step; wrong.
- Trap two: BPH may be spelled out as "benign prostatic hypertrophy," but in essence it is hyperplasia, not hypertrophy.
- Trap three: classifying an enlarging myocardium as "hyperplasia" — cardiac myocytes do not divide; they can only hypertrophy.
- Barrett esophagus = squamous→columnar (with goblet cells) = metaplasia = pre-malignant lesion for adenocarcinoma.
- The smoker's airway = ciliated columnar→squamous (hardier, but mucus clearance is lost).
- Trap one: bladder "transitional→transitional" is regeneration, not metaplasia (the same type does not count).
- Trap two: metaplasia = a reversible change of identity; dysplasia is where the pre-cancerous process truly begins.
- Trap three: calling Barrett "hyperplasia" is an error that simply gives the mark away.
- Reversible = cellular swelling, nucleus intact; irreversible = pyknosis → karyorrhexis → karyolysis (karyorrhexis is the marker).
- Apoptosis: membrane intact, no inflammation, DNA laddered; necrosis: membrane ruptured, inflammation, DNA randomly fragmented.
- Intrinsic = cytochrome c → caspase-9; extrinsic = Fas/TNFR → caspase-8; both end at caspase-3.
- Trap one: treating "cellular swelling" as irreversible — it is still in the reversible stage.
- Trap two: assigning caspase-8 to the mitochondrial pathway — backwards.
- Trap three: does apoptosis provoke inflammation? The apoptotic membrane stays intact — it does not.
- Steatosis = TG; xanthoma foam cells = cholesterol; lipofuscin = aging; hemosiderin = hemorrhage/iron deposition, Prussian blue positive.
- Strongest regenerative capacity = liver (a stable cell); neurons, cardiac muscle, skeletal muscle = permanent cells, no regeneration.
- Trap one: fatty liver stores cholesterol? Wrong — it is TG.
- Trap two: foam cells store TG? Wrong — it is cholesterol.
- Trap three: the liver is made of labile cells? Wrong — it is the stable cell with the strongest regenerative power.
- Acute protagonist = neutrophils + edema; chronic protagonists = lymphocytes/plasma cells/macrophages + fibrosis.
- Exudate = ↑permeability (>1.020); transudate = pressure (<1.012).
- Trap 1: filing edema under "chronic" — wrong; it is the signature of acute inflammation.
- Trap 2: calling appendicitis chronic (judging by the "-itis" alone) — appendicitis is acute, with a massive neutrophilic infiltrate.
- Trap 3: does a heart-failure pleural effusion count as an exudate? Wrong — it is a transudate.
- Histamine = opens vessels and builds edema; it is not a chemoattractant.
- Neutrophil chemotaxis = LTB4 and C5a (complement).
- PG/bradykinin = pain; TNF/IL-1 = systemic fever.
- Trap 1: pairing histamine with chemotaxis — a mismatch.
- Trap 2: treating LTC4/D4/E4 as chemoattractants — their job is bronchoconstriction.
- Trap 3: crediting fever to histamine — fever is the business of TNF/IL-1.
- Acute protagonist = neutrophils; chronic protagonists = lymphocytes/plasma cells/macrophages.
- Edema belongs to the acute phase (the common wrong option with the "lowest" relevance to chronic inflammation).
- Exudate = ↑vascular permeability; transudate = a pressure problem.
- Histamine opens vessels (not chemotaxis); LTB4/C5a are the true neutrophil chemoattractants; TNF/IL-1 govern systemic fever.
- Granulation tissue = new tissue of repair (fibroblasts + new capillaries + inflammatory cells); granuloma = a pattern of chronic inflammation (epithelioid + multinucleated giant cells).
- UC: mucosa (at most the superficial submucosa), no granulomas; Crohn's: transmural, with granulomas.
- Fibrinoid necrosis is most common in vasculitis; infectious small-vessel vasculitis = syphilis/typhus/ecthyma gangrenosum.
- The Anitschkow cell within the Aschoff body is the specific cell of rheumatic carditis (if asked for the characteristic lesion, answer the Aschoff body).
- Repair sequence: hemostasis → inflammation → proliferation (granulation tissue/epithelium/collagen) → remodeling (type III → I).
- Healing by secondary intention needs abundant granulation tissue and myofibroblast contraction.
- Traps: the main component of a mature scar is type I, not type III; appendicitis is acute; does UC have granulomas? No.
- Source = the deep veins of the lower limb (popliteal and above); superficial varicosities are not the main source.
- Most PEs do not infarct (dual blood supply); infarction occurs only with coexisting left-heart failure.
- Most common ECG finding = sinus tachycardia; S1Q3T3 is classic but uncommon.
- Stable = CTPA; D-dimer is for exclusion, not diagnosis.
- Trap 1: treating a raised D-dimer as "confirming the diagnosis" — wrong; it is sensitive, not specific.
- Trap 2: the pleural effusion of pulmonary infarction is a transudate? Wrong — it is an inflammatory exudate.
- Trap 3: assuming the saddle embolus is common — it is the rare but lethal sudden-death form.
- Virchow's triad = endothelial injury / stasis / hypercoagulability; arterial white thrombus (platelets + fibrin) vs venous red thrombus (RBC + fibrin).
- Most common source of fatal PE = the "deep" veins of the lower limb; most PEs do not infarct (dual blood supply), true infarction only with coexisting left-heart failure; saddle embolus → acute right-heart failure and sudden death.
- Most common ECG finding in PE = sinus tachycardia; the classic S1Q3T3 is uncommon; if stable, CTPA first; D-dimer is used to "rule out" low-risk patients.
- Pleural effusion of pulmonary infarction = inflammatory exudate; chylothorax = milky white, TG > 110 (thoracic duct leak); elephantiasis and postoperative edema = lymphatic obstruction.
- Infarct types: white = heart, kidney, spleen (single blood supply); red = lung, bowel (dual blood supply), venous occlusion, reperfusion.
- Ischemia-reperfusion injury = a second injury by oxygen free radicals.
- Abdominal aortic aneurysm = atherosclerosis (below the renal arteries); thoracic aortic aneurysm = syphilis (do not confuse the locations).
- Endothelin = the most potent vasoconstrictor; NO is its antagonist.
- TTP: ADAMTS13 deficiency → large vWF → platelets glued into microthrombi; plasma exchange first, no platelet transfusion; HUS leans renal, EHEC O157:H7, children; DIC has prolonged coagulation times and D-dimer↑.
- Traps: transfusing platelets in TTP = fuel on the fire; AAA is caused by syphilis? Wrong (syphilis takes the thoracic aorta); the most potent vasoconstrictor is NO? Wrong (NO dilates; the strongest constrictor is endothelin).
- Oncogene: one copy suffices, dominant (RAS/MYC/BRAF/HER2/ABL); suppressor needs two hits (TP53/RB/APC/p16/BRCA).
- BRAF V600E = melanoma / papillary thyroid / colorectal / hairy cell leukemia; uncommon in breast cancer (a frequent reverse question).
- Aflatoxin B1 → TP53 → hepatocellular carcinoma; p16 is usually silenced by promoter methylation.
- Most common in hematopoietic tumors = translocation (CML BCR-ABL, Burkitt MYC); low-grade osteosarcoma = CDK4/MDM2 amplification on chromosome 12 (not MYC).
- Least associated with EBV = cervical cancer (caused by HPV).
- Benign vs malignant rests on metastasis / invasion / infiltration; a pancreatic neuroendocrine tumor with marked pleomorphism may still be benign.
- Staging (TNM) usually outweighs grading for prognosis; nomenclature trap: lymphoma/melanoma/seminoma/glioma are malignant.
- OI = type I collagen (COL1A1/2) + blue sclerae; EDS may be dominant or recessive (trap).
- Wilson = ATP7B (not ATP8A/7A), K-F ring, ceruloplasmin↓; treat with trientine/zinc.
- Hemochromatosis = HFE (C282Y), bronze diabetes, adult onset, phlebotomy.
- 22q11.2 is mostly de novo; dysgenesis of the 3rd and 4th pharyngeal pouches → absent thymus/parathyroids → CATCH-22 (hypocalcemia, T-cell deficiency, conotruncal defects).
- Pellagra 3 D's = dermatitis / diarrhea / dementia; diverticulitis does not count.
- Lead poisoning, three targets = blood (basophilic stippling, anemia) / nerve (wrist drop) / kidney (gout-like arthritis, lead line, abdominal colic); less common = dilated cardiomyopathy.
- Trap collection: low-grade osteosarcoma = MYC? Wrong — CDK4/MDM2; cervical cancer = EBV? Wrong — HPV; EDS always dominant? Wrong — either; Wilson = ATP7A? Wrong — ATP7B (7A is Menkes); cardiomyopathy common in lead poisoning? Wrong — atypical.
- If you have not seen the patient, you cannot issue a certificate that assesses current condition (Physicians Act §11); the exception is approved telemedicine for mountainous, offshore-island, remote, or urgent circumstances.
- Consent (parental, legal) vs Assent (the child's agreement): when a procedure offers no therapeutic benefit and is invasive, both are required; a child's behavioral refusal should be met by bringing in a child-friendly team to communicate, not force, not going straight to court.
- Prenatal abnormality: provide information + confirm the diagnosis + respect autonomy, do not counsel abortion.
- A colleague reported for a missed diagnosis: explain the technical limitations of the examination, neither admit fault on their behalf nor evade the question.
- In ethics options, eliminate any choice involving "pressure, concealment, coercion, or admitting fault on someone else's behalf."
- Traps: (1) assuming "the parents consented = the child consented too" (for a no-benefit, invasive procedure like bone marrow donation, assent cannot be skipped); (2) assuming telemedicine "waives examination" (it changes the method, not the requirement); (3) treating "going straight to court" as the next step after a child's refusal (a child-friendly team and psychologist should be brought in first).
- Simple febrile seizure = generalized, <15 minutes, no recurrence within 24h; no routine EEG/imaging/lumbar puncture needed (clinical diagnosis). Described as "focal" is always wrong (that is the complex type).
- First line for anaphylaxis = IM epinephrine 0.01 mg/kg (1:1000 preparation), into the vastus lateralis on the lateral thigh; ceiling of 0.3 mg in children, repeatable every 5–15 minutes; antihistamines/corticosteroids are adjuncts, not substitutes.
- Burn: blisters + extreme pain = second-degree; third-degree is painless (nerve destruction) and is actually worse.
- Pediatric blood loss: hypotension appears only after 30–45% (not 20%) is lost; early on, watch heart rate, CRT, extremities, and urine output.
- 8% dehydration = moderate, with blood pressure usually still normal — not mild.
- Abusive head trauma triad = retinal hemorrhage + intracranial hemorrhage + cerebral edema + no matching history of trauma; retinal hemorrhage is the single most decisive point differentiating it from meningitis/vascular malformation.
- A scenario that does NOT meet child-abuse reporting criteria: a single hand fracture in a child over 2 years old with a matching mechanism (a common accident).
- Traps: (1) describing a simple febrile seizure as "focal convulsions" (that is the complex type); (2) giving an antihistamine first for suspected anaphylaxis and adding epinephrine only after it fails to work (wrong sequence, potentially fatal); (3) using iodine-containing amiodarone for rate control as if feeding a substrate (that trap belongs to the endocrine chapter; this chapter's counterpart trap is misjudging "8% dehydration with normal blood pressure" as mild); (4) attributing infant intracranial hemorrhage plus retinal hemorrhage to "vascular malformation" (vascular malformation cannot explain retinal hemorrhage).
- Vibrio vulnificus: fisherman/raw seafood ingestion + seawater exposure + cirrhosis (free iron) + hemorrhagic bullae → ceftriaxone + doxycycline, with debridement when necessary. The decoy is "Streptococcus, give penicillin."
- Occult spinal dysraphism: midline skin abnormalities such as a hair tuft (faun tail), a deep dermal sinus (>2.5 cm), a lipoma, or a hemangioma → spinal ultrasound first in neonates, MRI (gold standard) afterward or when suspicion is high; least appropriate = observe if asymptomatic.
- High-altitude acclimatization: respiration↑, heart rate↑, blood pressure↑, venous tone↑, EPO/RBC↑, 2,3-DPG↑; the trap phrase is "a fall in venous tone" (wrong direction).
- Cerebral palsy (CP): prenatal factors predominate; perinatal asphyxia accounts for only 10–20%; the most common subtype = spastic; prematurity + PVL → spastic diplegia; CP from perinatal asphyxia is the least in need of karyotype analysis.
- ADHD (attention-deficit/hyperactivity disorder): heritability of about 70–80% (highly heritable), polygenic (DRD4, DAT1 (SLC6A3)); mechanism = insufficient prefrontal-striatal dopamine/norepinephrine signaling.
- Traps: (1) thinking "Streptococcus, give penicillin" first for hemorrhagic bullae + cirrhosis (ignoring the signature of Vibrio); (2) "just observe" a midline hair tuft in an infant (by the time leg weakness appears, it is irreversible); (3) mistaking "a fall in venous tone" for a compensatory response in high-altitude acclimatization (the direction is reversed — acclimatization presses every accelerator down); (4) attributing all CP to birth asphyxia and then ordering a karyotype anyway (prenatal factors are the majority, and CP from perinatal asphyxia is the least in need of karyotype analysis); (5) describing ADHD as "unrelated to genetics, purely environmental" (heritability is about 75%).
- Feeding: solids from 4–6 months + prioritize iron (fetal iron stores are depleted); no honey before age 1 (Clostridium botulinum spores), no skim milk before age 2, table rules only after age 3; protein under age 1 should be predominantly animal-derived (not "plant protein over two-thirds").
- Exclusively breastfed infants: 400 IU of vitamin D daily (to prevent nutritional rickets).
- Iron is absorbed in the duodenum/proximal jejunum; B12 in the terminal ileum + requires intrinsic factor; misplacing iron in the terminal ileum is the classic trap.
- Reflexes: the Moro and other primitive reflexes are "present at birth and should disappear by 3–6 months"; the parachute reflex "does not appear until 6–9 months and never disappears"; a primitive reflex that should disappear but does not suggests a central lesion.
- Menarche: no menarche at 13 but secondary sexual characteristics are developing = normal range, least in need of a workup; the real thresholds for workup are no menarche past 15, no menarche >3 years after breast development, or no secondary sexual characteristics at 13.
- Traps: (1) placing iron's absorption site in the "terminal ileum" (that belongs to B12; iron is upstream); (2) listing the parachute reflex as a "newborn primitive reflex" or as something that "disappears with age" (it appears late and lasts a lifetime); (3) rushing to check FSH/LH/karyotype for no menarche at 13 (as long as Tanner stage II or beyond is progressing, this calls for waiting, not alarm); (4) stipulating that plant protein should exceed two-thirds under age 1 (a false statement — animal milk protein should predominate); (5) assuming exclusive breast milk is "complete nutrition" that needs no vitamin D supplementation.
- IEM (inborn errors of metabolism) is AR by default; the must-know exception: OTC deficiency is X-linked; mitochondrial inheritance follows only the maternal line — a father transmits it to none of his children.
- Congenital adrenal hyperplasia (CAH) = AR, 21-hydroxylase (CYP21A2) deficiency → cortisol/aldosterone↓ → ACTH↑ → adrenal hyperplasia + diversion into androgen synthesis → virilization of female infants + a neonatal salt-wasting crisis.
- OTC deficiency biochemical fingerprint: ammonia↑, citrulline↓, BUN↓, orotic acid↑ (upstream carbamoyl phosphate overflowing into the pyrimidine pathway); differentiate from CPS1 deficiency by orotic acid.
- Acute hyperammonemia: restrict protein + nitrogen-scavenging agents (sodium benzoate/phenylacetate) + arginine + dialysis when necessary.
- X-linked hypophosphatemic rickets: PHEX mutation → FGF-23↑ → renal phosphate wasting; treat with phosphate + active vitamin D (calcitriol) and the newer agent burosumab; this is not vitamin D deficiency.
- Turner syndrome (45,X) = the strongest evidence base for GH, covered by National Health Insurance; central precocious puberty is treated with a GnRH agonist, not GH.
- Bardet-Biedl syndrome (BBS): obesity + postaxial polydactyly + retinitis pigmentosa + intellectual disability + gonadal/renal abnormalities (a ciliopathy).
- Synthetic (recombinant) GH does not cause CJD (only pre-1985 cadaveric-extracted GH carried that risk).
- CP from perinatal asphyxia is the least in need of a karyotype (an acquired brain injury, not a chromosomal abnormality, unlike a chromosomal disorder such as Down syndrome, trisomy 21).
- Traps: (1) treating every urea cycle disorder as AR when calculating inheritance risk (OTC is the must-know X-linked exception); (2) failing to distinguish OTC from CPS1 deficiency by neglecting orotic acid (elevated in OTC, normal or low in CPS1); (3) treating X-linked hypophosphatemic rickets as "vitamin D deficiency" and loading up on vitamin D (what's leaking is phosphate — treat with phosphate plus calcitriol); (4) mistakenly choosing growth hormone treatment for precocious puberty (that is the territory of the GnRH agonist); (5) listing CJD as a side effect of synthetic GH (that is a historical risk of pre-1985 cadaveric-extracted GH).
- Passive immunization: antibody ready-made → immediate onset, no memory, fades within weeks to months; examples: HBIG, tetanus immunoglobulin (TIG), placentally transferred IgG, breast-milk sIgA.
- Active immunization: antigen triggers the host's own response → slow onset, but with memory and long-term protection.
- Post-exposure prophylaxis often requires both together: passive immunization covers "now," active immunization covers "the future."
- Trap: treating "given immunoglobulin" as equivalent to "vaccinated" — exactly backward; immunoglobulin leaves no memory, and it will interfere with a subsequent live attenuated vaccine (see Chapter 7).
- Live attenuated: replicates → humoral + cellular immunity, few doses, no adjuvant needed; contraindicated in severe immunocompromise and pregnancy.
- Inactivated / subunit / toxoid: does not replicate → predominantly humoral immunity, needs multiple doses + boosters, needs an adjuvant; relatively safe in the immunocompromised and pregnant.
- Aluminum salt adjuvant mechanism = antigen depot effect + activation of the NLRP3 inflammasome, manufacturing a danger signal; local redness and swelling is the adjuvant at work, not a contraindication.
- Conjugate vaccine: the polysaccharide is a T-cell independent antigen → poor response and no memory under age two; once linked to a protein carrier (CRM197 / tetanus toxoid), it becomes T-cell dependent → IgG + memory B cells + reduced carriage.
- The pure polysaccharide vaccine (PPSV23) is not used under age two; PCV13 is the one used in infants and young children.
- Traps: ① treating "local redness and swelling" as a contraindication to the next dose; ② assuming a live attenuated vaccine also needs an adjuvant; ③ assuming a polysaccharide vaccine can substitute for a conjugate vaccine in infants.
- Hepatitis B infection during the newborn period → about 90% become chronic carriers (versus only 5–10% for adults) — this is the immune-tolerance phenomenon of "the earlier the infection, the worse the outcome."
- For a newborn of an HBsAg-positive mother: one dose of HBIG (passive) plus dose 1 of the hepatitis B vaccine (active), as soon as possible within 24 hours of birth, given at different injection sites.
- In Taiwan, starting July 1, 2019, publicly funded HBIG was extended to newborns of all HBsAg-positive mothers (no longer restricted to e-antigen-positive mothers).
- The routine hepatitis B vaccine series is 3 doses: within 24 hours of birth, at 1 month, and at 6 months.
- Follow-up: check HBsAg and anti-HBs at 12 months of age.
- Traps: ① assuming HBIG can substitute for the vaccine (immunoglobulin leaves no memory and is gone within months); ② assuming the two injections will neutralize each other and so must be given on separate days (they must be given the same day, at different sites); ③ assuming an e-antigen-negative mother's newborn does not need HBIG (eligibility was expanded starting July 2019).
- Within 24 hours of birth: hepatitis B dose 1 (plus HBIG if the mother is HBsAg-positive); at 1 month, dose 2; at 6 months, dose 3.
- BCG: at 5 months (recommended window 5–8 months), 1 dose; adjusted from "after 24 hours of birth" starting January 1, 2016, for the purpose of reducing osteitis/osteomyelitis; earlier vaccination requires body weight ≥2,500 g.
- Pentavalent vaccine (DTaP-Hib-IPV): 4 doses at 2, 4, 6, and 18 months; then 1 dose of the quadrivalent vaccine (DTaP-IPV) from age 5 to before starting elementary school.
- PCV13: 3 doses, at 2, 4, and 12–15 months.
- MMR: 2 doses, at 12 months and from age 5 to before starting elementary school; varicella: 1 dose at 12 months.
- Live attenuated chimeric Japanese encephalitis vaccine: 2 doses, at 15 and 27 months (replaced the inactivated mouse-brain vaccine starting May 22, 2017).
- Hepatitis A: 2 doses, at 18 and 27 months (schedule adjusted starting January 1, 2025; added to the routine schedule starting 2018).
- Influenza: from 6 months of age; 2 doses 4 weeks apart for a first-time recipient under 8, 1 dose for a first-time recipient 9 or older, then 1 dose annually.
- HPV: 2 doses of the 9-valent vaccine, publicly funded for junior-high (currently 8th-grade) boys and girls; girls covered starting December 2018, extended to boys starting the 2025 academic year.
- Rotavirus: added to the publicly funded schedule starting January 1, 2027; no earlier than 6 weeks, no later than 8 months of age.
- Tdap in pregnancy: at 28–36 weeks of every pregnancy; currently a self-funded recommendation in Taiwan; the mechanism is bulk placental transfer of IgG via FcRn in the third trimester.
- Traps: ① still answering "BCG given after 24 hours of birth" (the old rule); ② still answering "Japanese encephalitis given as 4 doses of a mouse-brain vaccine" (now changed to 2 doses of live vaccine); ③ answering "12–15 months" for hepatitis A (changed to 18 and 27 months starting 2025); ④ treating Tdap in pregnancy as a publicly funded item in Taiwan; ⑤ forgetting that influenza requires "2 doses for a first-time recipient under 8."
- Herd immunity threshold = 1 − 1/R₀; the larger R₀, the higher the threshold.
- Measles R₀ ≈ 12–18 → threshold about 92–95% (the highest of all, and the sentinel for slipping vaccination rates); mumps/rubella/polio R₀ ≈ 5–7 → about 80–86%.
- R_eff = R₀ × (1 − p); only when R_eff < 1 does an outbreak burn out.
- Two assumptions: uniform population mixing (clustering of vaccine refusers → local outbreaks) and 100% vaccine efficacy; factoring in VE, the required vaccination rate becomes (1 − 1/R₀) ÷ VE.
- The purpose of MMR dose 2 is to rescue those for whom dose 1 failed immunologically — not to "boost" antibody after it has waned.
- Traps: ① memorizing the threshold as a fixed "95%" without knowing it is derived from R₀; ② assuming that meeting the national vaccination target rules out cluster outbreaks (ignoring the clustering effect).
- There are only three genuine reasons for a contraindication: ① anaphylaxis to a component or a previous dose (absolute contraindication); ② a live attenuated vaccine meeting severe immunocompromise or pregnancy; ③ moderate-to-severe acute illness (deferred, not permanent).
- False contraindications (may be vaccinated): mild upper respiratory infection, low-grade fever, currently on antibiotics, a local reaction to a previous dose, preterm infant (by actual age), breastfeeding, family history (seizures, allergy, sudden infant death), egg allergy for the influenza vaccine, a pregnant or immunocompromised person in the household.
- The allergen source in MMR is gelatin and neomycin, not egg; the vaccine genuinely associated with egg is the yellow fever vaccine.
- Unexplained encephalopathy within 7 days of a previous DTaP dose → switch subsequently to a formulation without the pertussis component.
- Traps: ① treating "runny nose, low-grade fever" as a contraindication and sending the child home (a missed opportunity); ② treating "egg allergy" as a contraindication to the influenza vaccine; ③ delaying a preterm infant's vaccination using corrected age (should be actual postnatal age); ④ treating family history as a personal contraindication.
- Injected live attenuated vaccines (MMR, varicella): avoid any antibody-containing blood product for at least 2 weeks after vaccination; if one was given first, wait 3–11 months (depending on the product and dose) before vaccinating.
- The nature of the interference is immunization failure (the vaccine virus is neutralized and cannot replicate), not a safety problem.
- Unaffected cases: every inactivated vaccine, every oral live vaccine (rotavirus, oral polio, oral typhoid — which replicate locally in the intestinal mucosa), and HBIG given together with the hepatitis B vaccine.
- Trap: mistakenly answering that "immunoglobulin + live vaccine" is "dangerous" (the correct reason is that it becomes ineffective); or assuming the oral rotavirus vaccine also needs a three-to-eleven-month wait.
- Local redness, swelling, heat, and pain = normal immune activation caused by the adjuvant and antigen, resolving in 1–2 days; not a contraindication to the next dose.
- Timeline differentiation: fever from an inactivated vaccine occurs mostly within 24–48 hours; MMR's fever and rash occur at 7–10 days (the vaccine virus must replicate first). A fever the day after MMR is, more often than not, not caused by the vaccine.
- MMRV as dose 1 at 12–23 months carries roughly twice the febrile-seizure risk of giving MMR + varicella separately → separate administration is recommended at this age.
- BCG: local ulceration and scarring is the expected reaction; lymphadenitis is the most common finding, usually resolving on its own — no routine anti-tuberculosis drugs, and incision and drainage is not recommended; osteitis/osteomyelitis and disseminated BCG disease point to a host immune deficiency (Taiwan surveillance found osteitis/osteomyelitis at about 30.1 per million vaccinees).
- Arthus reaction: tetanus/diphtheria toxoid boosters given too frequently → type III hypersensitivity with immune complex deposition, producing extensive, deep, painful swelling 4–12 hours after vaccination; the management is to lengthen the booster interval (to at least 10 years), not to stop vaccinating permanently.
- RotaShield: approved in 1998, suspended in July 1999, withdrawn from the market in October; attributable risk about 1 case of intussusception per 10,000 vaccinees, occurring mostly within 3–14 days after dose 1; the mechanism is Peyer's patch hyperplasia forming a lead point.
- The current RotaTeq / Rotarix carry a residual risk of about 1–1.5 cases per 100,000; Taiwan's vaccination window is 6 weeks to 8 months.
- Traps: ① treating a local reaction as a contraindication; ② attributing a fever the day after MMR to the vaccine; ③ operating to drain BCG lymphadenitis; ④ mistaking an Arthus reaction for anaphylaxis and stopping vaccination permanently; ⑤ applying RotaShield's risk figures to the current rotavirus vaccines.
- Legal basis: Article 30 of the Communicable Disease Control Act; the right to claim is extinguished 2 years from the day the injury became known, or 5 years from the day it occurred.
- Funding: collected from the manufacturer/importer when the vaccine passes inspection, funding the Vaccine Injury Compensation Fund (a no-fault system — there is no need to first prove fault on the part of the manufacturer or physician).
- Review committee (VICP): 19–25 members, of whom legal experts and impartial public members together make up ≥ 1/3.
- Three causation categories: related, undetermined, unrelated; "undetermined" can still receive compensation — the single most frequently tested point.
- Four types of payment: death, disability, severe illness, other adverse reactions; funeral expenses and medical examination fees may also be subsidized.
- Traps: ① assuming causation must be proven to receive compensation (that is the logic of tort litigation); ② assuming the compensation funds come from national health insurance or from physicians; ③ misremembering the three categories as "related / cannot be ruled out / unrelated" — the statutory term is undetermined.
- Wakefield's 1998 paper in The Lancet: 12 cases, no control group; later confirmed to involve falsified medical records + conflicts of interest (funding from a lawyer, a competing patent); retracted by The Lancet in February 2010, struck off by the GMC that May. Cohort studies of millions of people across multiple countries consistently reject any association between MMR and autism.
- Japan's HPV vaccine incident: proactive recommendation suspended in June 2013 (the vaccine was not taken off the market and remained in the routine schedule) → vaccination rate collapsed from about 70% to <1%, lasting nearly 9 years → reinstatement decided in November 2021, formally resumed with a catch-up program in April 2022.
- What is most commonly seen at a mass vaccination site is not a vaccine adverse reaction, but fainting (vasovagal syncope) and mass psychogenic reactions → arranging a rest-and-observation period after vaccination is the key design feature.
- Taiwan's response: active surveillance + public statistics, no-fault compensation (paying out even when undetermined), school-based mass immunization paired with health education and consent forms, and public funding extended to junior-high-school boys and girls alike.
- Traps: ① assuming Japan "took the HPV vaccine off the market" (it only suspended the proactive recommendation; the vaccine remained in the routine immunization program); ② assuming vaccination rates automatically recover once a retraction is issued (rebuilding trust is far slower than destroying it); ③ mistaking fainting at a vaccination site for a serious vaccine adverse reaction.
- Sampling timing: at 48 hours after birth (feeding must already have occurred); a small quantity of heel blood + filter-paper card + tandem mass spectrometry.
- Drawing blood too early goes wrong in two directions: a false negative for PKU (phenylalanine has not yet accumulated) and a false positive for congenital hypothyroidism (the physiological TSH surge).
- Taiwan's history: 5 items (1985) → 11 items (July 2006) → 21 items starting October 1, 2019; subsidy of NT$200 per case in general, NT$550 for low-income households / resource-poor areas.
- The original 5 items: congenital hypothyroidism, phenylketonuria, homocystinuria, galactosemia, G6PD deficiency.
- A positive screen is not a diagnosis; the next step is a recall for confirmatory testing, not immediate treatment or a diagnosis given directly. Screening deliberately favors high sensitivity over specificity.
- Principle for including an item: causes irreversible harm before symptoms appear + a reliable test exists + an effective treatment exists; a disease with no treatment should not be placed in a screening program.
- Traps: ① drawing blood immediately after birth (produces false negatives/false positives); ② treating a positive screen as a confirmed diagnosis and proceeding straight to treatment or telling the family; ③ assuming the 21 items include Pompe disease, Fabry disease, or mucopolysaccharidosis — those are self-funded add-on items, not part of the publicly funded 21.
- Congenital hearing loss occurs in about 1–2 / 1,000 newborns; appearance is normal during the newborn period, so it cannot be found without screening.
- The 1-3-6 rule: screening within 1 month, diagnosis within 3 months, intervention before 6 months; the reason is the critical period of the auditory cortex and cross-modal plasticity — miss it, and language development can never be caught back up.
- Taiwan: universal subsidy starting March 15, 2012, covering newborns born on or after that date, registered as residents, and under 3 months of age, at NT$700 per case; the initial screen is performed 24–60 hours after birth.
- Method: aABR or OAE.
- Trap: treating "failed the initial screen" as a confirmed diagnosis of hearing loss (rescreening and confirmatory diagnosis are still required); or assuming that a baby who "startles at sound" must have normal hearing (a unilateral or moderate-to-severe hearing loss can still produce a startle response).
- Child Preventive Health Care (free health check): under age 7; increased from 7 to 9 visits starting July 1, 2026 ("7+2") — added at 4–6 / 6–12 months and ages 3–5 / 5–7; content includes growth assessment, physical exam, developmental assessment, and health education; only the registration fee is required, bringing the NHI card + Children's Health Handbook.
- Child Development Screening: added starting July 1, 2024, offering 6 rounds total under age 7 (6–10 months, 10 months–1 year 6 months, 1 year 6 months–2 years, 2–3 years, 3–5 years, 5 years to under 7 years); assesses four domains — gross motor, fine motor, language and cognition, social skills.
- The two run in parallel; neither replaces the other; the golden window for treating developmental delay is before age 3.
- Trap: conflating "developmental screening" with "the preventive health check," or answering "7 visits" (it became 9 starting July 2026).
- Taiwan's Children's Health Handbook has used the WHO child growth standards since 2009 (ages 0–5), extended with local research data for ages 5–7; the curve has five lines at 3%, 15%, 50%, 85%, and 97%, with the 3rd–97th percentile as the general normal range.
- The WHO standard represents "what a child should grow to look like under good conditions" (a prescriptive standard), not the current distribution of a population (a descriptive reference).
- The core of interpretation is trajectory, not position: a downward crossing of two major percentile lines is the real warning sign; a small child growing steadily along one line is normal.
- Order of deviation: nutritional → weight first, height second, head circumference last; head circumference deviating first → central nervous system / congenital; height and weight proportionately low + slow growth velocity → endocrine (growth hormone, thyroid) or genetic (such as Turner syndrome).
- Developmental screening tools (PEDS, the Children's Health Handbook developmental continuum, DDST, and so on) are used only to identify children who need further evaluation, never to render a diagnosis.
- Traps: ① judging "short stature" from the percentile number alone; ② ignoring growth velocity and trajectory; ③ treating the result of a developmental screening tool as a diagnosis.
- The pigment in micronodular hyperplasia is lipofuscin, not melanin.
- Exogenous cortisol → ACTH suppressed → cortical atrophy (not hyperplasia).
- Sorting Cushing syndrome: most common overall = exogenous steroids; most common endogenous cause = Cushing disease (pituitary ACTH adenoma); most common ACTH-independent cause = adrenal cortical adenoma.
- Etiology: meningococcal sepsis → DIC → bilateral adrenal hemorrhage → adrenal crisis.
- Direction of hemorrhage: medulla → cortex (inside-out); the trap answer reverses this.
- S100(+) = sustentacular cells; chief cells are chromogranin/synaptophysin(+). Do not reverse them.
- First-choice biochemistry: metanephrines; histological arrangement: Zellballen.
- Drug order: α-blocker first, then β-blocker (giving β first risks a hypertensive crisis).
- Roughly 30–40% hereditary, linked to MEN2/VHL/NF1/SDHx.
- Most common cause of pituitary hyperfunction = anterior pituitary adenoma; most common functional type = prolactinoma.
- Macroadenomas can be complicated by pituitary apoplexy and can compress the optic chiasm to cause bitemporal hemianopsia.
- Craniopharyngioma = suprasellar cystic mass, keratinized squamous epithelium, motor-oil-like cyst fluid, calcification, Rathke pouch remnant.
- T1DM = insulitis (immune attack); T2DM = IAPP/amyloid (protein clogging).
- Hypothyroidism causes weight gain (metabolism↓); hyperthyroidism causes weight loss.
- The key to sick euthyroid = rT3↑, T3↓; do not force-feed thyroid hormone.
- Primary hypothyroidism (TSH↑/T4↓) does not need a pituitary MRI; a central problem cannot be distinguished by TSH alone — FT4 must be added.
- Hashimoto's = TPO; Graves' = TRAb. Graves' ophthalmopathy has no direct correlation with the level of thyroid function.
- Pretibial myxedema = non-pitting.
- Gold standard for preoperative benign/malignant distinction = FNAC (not confirmed by ultrasound / scintigraphy).
- Most common = papillary carcinoma (80–85%, lymphatic metastasis); follicular carcinoma spreads hematogenously and is hard to diagnose by FNA.
- Follow thyroglobulin for well-differentiated cancer; follow calcitonin + CEA for medullary carcinoma, linked to MEN2.
- Most important risk factor = history of head-and-neck radiation exposure.
- Storm combination: PTU + propranolol + iodine solution (1 hour after the ATD) + hydrocortisone.
- Iodine solution must not be given before the ATD; storm with atrial fibrillation contraindicates amiodarone (contains iodine).
- ATD with fever + sore throat → check WBC/ANC first to rule out agranulocytosis.
- "Radiotherapy" for hyperthyroidism = RAI (¹³¹I), not stereotactic radiation.
- Myxedema coma: IV levothyroxine + give hydrocortisone first.
- Initial serum potassium in DKA = normal or elevated (total body potassium is deficient); it only falls after insulin is given — when K⁺ <3.3, replace potassium first and hold insulin.
- Acid-base status in DKA = metabolic acidosis + respiratory compensation (Kussmaul hyperventilation), not respiratory acidosis.
- HHS: glucose >600, osmolarity >320; serum sodium is not a reliable indicator of dehydration and requires correction.
- Management = fluids first → check potassium → low-dose continuous IV insulin; oral drugs must not be substituted.
- Bicarbonate is considered only when pH < 6.9.
- Metformin: very rarely causes hypoglycemia, long-term use causes B12 deficiency, held before contrast studies to prevent lactic acidosis.
- Weight loss = SGLT-2i / GLP-1 RA; DPP-4i is weight-neutral. Thiazides raise blood glucose and do not cause hypoglycemia.
- Early diabetic nephropathy = microalbuminuria (creatinine still normal); gold standard for foot osteomyelitis = bone biopsy.
- HbA1c target in the elderly: relaxed to <8.0–8.5%.
- Leading cause of fasting hypoglycemia = glucose-lowering drugs; insulinoma vs. exogenous insulin is distinguished by C-peptide (endogenous↑, exogenous↓).
- Pompe disease = GAA deficiency, newborn screening + ERT.
- Screening = IGF-1 (GH is pulsatile; a single normal measurement cannot rule it out); diagnosis = GH not suppressed after OGTT; localization = MRI.
- First-choice treatment: transsphenoidal surgery; first-choice drug: somatostatin analog; leading cause of death = cardiovascular.
- Prolactinoma is the only pituitary adenoma for which medication is preferred (cabergoline first-choice); high PRL is not always a tumor (stalk effect).
- Water deprivation cannot distinguish CDI/NDI; after desmopressin, urine osmolarity↑ = CDI, no rise = NDI.
- Most common drug cause of NDI = lithium.
- ADH is mainly regulated by plasma osmolarity; SIADH = excess ADH → hyponatremia (the opposite of DI).
- Lymphocytic hypophysitis: postpartum women, MRI shows gland enlargement (not an empty sella).
- Mechanism: postpartum hemorrhage → ischemic necrosis of the anterior lobe; the posterior lobe is spared → diabetes insipidus is uncommon (a trap).
- First to appear = inability to lactate (PRL is lost earliest).
- In acute decompensation, replace steroid first, then thyroid hormone.
- Hypogonadism: FSH/LH high = primary (including postmenopause); low = secondary (Sheehan, Kallmann). FSH is elevated after menopause.
- MEN 1 = 3 P's (Pituitary/Parathyroid/Pancreas, MEN1 gene).
- MTC + pheochromocytoma belong to MEN 2 (RET gene), not MEN 1.
- Metabolic syndrome = high TG + low HDL + hypertension + high glucose + abdominal obesity, 3 of 5, does not include high LDL (the core is insulin resistance; LDL undergoes a qualitative, not quantitative, change).
- Taiwan waist circumference: men ≥ 90, women ≥ 80; obesity = BMI ≥ 27 (overweight 24–26.9); BMI 25.7 = overweight, not obese.
- In obesity: leptin↑ (resistance), adiponectin↓.
- Statins = inhibit HMG-CoA reductase (not oxidase), cardiovascular first-choice; fibrates promote gallstones; niacin flushing is PG-mediated and preventable with aspirin.
- Prava/rosuva are unaffected by grapefruit juice; lova/simva/atorva are affected.
- PCSK9 loss-of-function mutation → LDL decreases (protective); the inhibitor produces the largest reduction.
- DPP-4i (sitagliptin) is weight-neutral and not approved for weight loss; GLP-1 RA is first-choice for weight loss, with tirzepatide producing the largest effect.
- Weight-loss surgery = BMI ≥ 40 or ≥ 35 with comorbidity; lowers mortality, induces remission of diabetes.
- Anorexia nervosa: hypotension, hypoglycemia, elevated cortisol, constipation (not diarrhea).
- Primary hyperparathyroidism = high calcium, low phosphate, high chloride (hyperchloremic acidosis, Cl/P > 33); in malignancy-associated hypercalcemia (PTHrP), true PTH is instead suppressed.
- FHH closely mimics PHPT (PTH normal/mildly elevated) but has low urinary calcium (Ca/Cr clearance < 0.01), is benign, and needs no surgery; CKD → secondary hyperparathyroidism (low/normal Ca, high P); autonomy → tertiary (flips to high Ca).
- Hypercalcemia = neuromuscular depression (weakness, constipation, lethargy); hypocalcemia = neuromuscular excitation (paresthesia, tetany, Chvostek/Trousseau).
- NS hydration is first-line for hypercalcemic emergencies; thiazides are forbidden; bisphosphonate treats the root cause but is slow, calcitonin is fast but brief (often combined).
- Hypocalcemia evaluation order: albumin → PTH → Mg; if Mg is low, replace Mg first, or calcium repletion will fail; 1,25D is not first-line.
- Corrected Ca = measured Ca + 0.8 × (4 − albumin); alkalosis lowers ionized calcium.
- ECG: hypocalcemia prolongs QTc, hypercalcemia shortens QTc.
- Osteoporosis: DXA T-score ≤ −2.5; antiresorptive vs. anabolic (teriparatide is a bone-forming agent, as are abaloparatide and romosozumab); antiresorptive agents are for "preventing recurrence," not acute pain control.
- Traps: PHPT is not high phosphate/low chloride (that is backward); hypercalcemia does not cause paresthesia or cramps; do not give bisphosphonate first in an emergency (too slow); correct for low albumin before anything else; teriparatide builds bone precisely because it is given intermittently; if calcium repletion fails, check magnesium first.
- Any amenorrhea: test for pregnancy first; secondary = ≥ 3 months without a period, primary = no menarche by age 15.
- LH→theca cell (androgens), FSH→granulosa cell (aromatized to E2); the hCG receptor is on the cell membrane; pulsatile GnRH drives both FSH and LH, while continuous administration instead suppresses.
- Estrogen at low concentration gives negative feedback; at high, sustained concentration (≥48h) gives positive feedback → LH surge (the only positive feedback in the whole cycle); the luteal phase is fixed at about 14 days.
- The Rotterdam criteria for PCOS do not include obesity/insulin resistance; obesity with no fertility desire → weight loss first; letrozole is first-line for ovulation induction; follicle threshold is classically ≥12, ≥20 per ovary under the updated guidelines, volume ≥10 mL.
- "Breasts, no hair" = CAIS (46,XY); "breasts and hair, no uterus" = MRKH (46,XX, check the kidneys); no breasts → check FSH: high = Turner, low = Kallmann (anosmia).
- Müllerian duct anomalies require renal/urinary tract screening; the ovaries are not of Müllerian origin; never induce a withdrawal bleed in vaginal agenesis; septate uterus = the most common structural cause of recurrent miscarriage.
- HRT: add progesterone if the uterus is present, estrogen alone if it is not; FIGO Type 0 fibroids → hysteroscopy first-line; GnRH agonists only preoperatively for ≤6 months; danazol is non-standard.
- PMB is most commonly caused by endometrial atrophy, but endometrial cancer must always be excluded first; hydrosalpinx does not cause uterine bleeding.
- In CAH (21-OH deficiency), the female infant's uterus and ovaries are normal — only the external genitalia are virilized; pubic hair is the hair most sensitive to androgen.
- Lipid-soluble hormones (steroids, T4, 1,25-DHCC) use nuclear receptors; water-soluble hormones (peptides, amines, epinephrine) use membrane receptors; T4 is the lipid-solubility trap question.
- The adrenal medulla is stimulated by "preganglionic" sympathetic neurons (not postganglionic) to secrete epinephrine (about 80%).
- Cortisol peaks in the early morning, promotes erythropoiesis, and promotes bone resorption (the hormone least likely to increase bone mass); ACTH → PKA (not PKC); StAR transports cholesterol into mitochondria = the rate-limiting step; DHEA is regulated by ACTH (not LH).
- Hyperkalemia "directly" stimulates the zona glomerulosa to secrete aldosterone.
- Primary hyperaldosteronism: hypertension + hypokalemia + metabolic alkalosis + low renin; hypokalemia → insulin↓ → glucose intolerance.
- TSH is the most sensitive (early) marker, free T4 is best for confirming hypothyroidism; thyroid hormone binds a nuclear receptor; hypothyroidism → PRL↑ → galactorrhea and amenorrhea.
- β-cell GLUT2 senses blood glucose (board convention; human β cells mainly use GLUT1); Ca²⁺↑ triggers exocytosis; insulin's acute action does not include protein synthesis (which occurs hours later); sulfonylureas close the K⁺-ATP channel.
- Parathyroidectomy → serum calcium↓, serum phosphate↑ (one falls and one rises, not both falling).
- LH→Leydig cell→testosterone; FSH→Sertoli cell→sperm+inhibin; oxytocin is synthesized by the hypothalamus and released by the posterior lobe.
- Klinefelter (47,XXY): testosterone↓ → LH and FSH "rise"; 21-OH deficiency → 17-OHP↑↑ + salt-wasting (11-OH deficiency instead causes hypertension).
- GH signals through JAK2/STAT5, mediates growth via IGF-1, peaks during nocturnal deep sleep, and is stimulated by hypoglycemia; before closure = gigantism, after closure = acromegaly; diagnosed by failure of GH suppression after an OGTT. Ghrelin is the only gastrointestinal hormone that stimulates appetite.
- PTC nuclear features: ground-glass nuclei, nuclear grooves, intranuclear pseudoinclusions + psammoma bodies; prominent nucleoli are not PTC; BRAF V600E; tracked with thyroglobulin.
- FTC vs. follicular adenoma is distinguished by capsular/vascular invasion — FNA cannot tell them apart.
- MTC: C cell, secretes calcitonin, stromal amyloid, 25% associated with MEN2 (RET germline), radioactive iodine ineffective; MEN2A = MTC + pheochromocytoma + parathyroid hyperplasia, MEN2B = MTC + pheochromocytoma + mucosal neuromas (no parathyroid disease); pheochromocytoma must be excluded before thyroid surgery.
- Parathyroid: primary = single adenoma (high Ca, low P, high PTH); secondary = CKD (low/normal Ca, high P, high PTH); tertiary = autonomy (flips to high Ca); in malignancy-associated hypercalcemia, PTH is suppressed.
- Thymoma is associated with myasthenia gravis; the most common histologic type of thymic carcinoma = SCC; anterior mediastinum's 4 T's.
- Most common benign salivary gland tumor = pleomorphic adenoma (has a chondroid component); most common malignant = mucoepidermoid carcinoma (not SCC); Warthin = oncocytic + lymphoid stroma, no cartilage, associated with smoking; adenoid cystic carcinoma = perineural invasion + cribriform pattern.
- Oral erythroplakia's malignant transformation risk ~50% ≫ leukoplakia's ~5% (more urgently warrants biopsy).
- Nasopharyngeal carcinoma = EBV; oropharyngeal carcinoma = HPV-16 (p16+, better prognosis); nasopharyngeal angiofibroma = adolescent males, posterolateral wall, androgen-dependent, prone to massive hemorrhage; Schneiderian papilloma = HPV 6/11, recurs easily with incomplete resection.
- Keratoconus's main pathology = corneal stromal thinning; the iris type of ocular melanoma progresses slowly, with a relatively better prognosis.
- Cyclosporine/tacrolimus inhibit calcineurin → ↓IL-2; sirolimus inhibits mTOR (can be combined with CsA, not a contraindication); CsA signature = nephrotoxicity + gingival hyperplasia, tacrolimus = new-onset diabetes.
- The most common side effect of long-term glucocorticoids = osteoporosis; peptic ulcer disease is a contraindication; must never be stopped abruptly; acts on intracellular nuclear receptors, inducing lipocortin → inhibiting phospholipase A2.
- Methimazole is first-line for hyperthyroidism; PTU is used for thyroid storm/the first trimester (PTU additionally inhibits peripheral T4→T3).
- Alendronate (a bisphosphonate) inhibits osteoclasts; teriparatide is an anabolic (bone-forming) agent, as are abaloparatide and romosozumab; vitamin D3 is contraindicated in hypercalcemia; danazol does not improve osteoporosis.
- Raloxifene/clomiphene/tamoxifen are all SERMs with differing tissue selectivity; tamoxifen increases endometrial cancer risk, raloxifene has no uterine stimulation.
- Diabetes: oral hypoglycemics cannot be used in T1DM; SU/meglitinides cause hypoglycemia; repaglinide is safe in renal insufficiency (biliary excretion); metformin + alcohol → lactic acidosis; the GLP-1 agonist liraglutide must be injected (oral semaglutide is now available); SGLT2i is now standard therapy for heart failure and chronic kidney disease — stop preoperatively to prevent euglycemic DKA.
- Laron syndrome is treated with mecasermin (IGF-1), not GH; acromegaly contraindicates GH — use octreotide instead; GH signals through JAK/STAT (not a GPCR); octreotide worsens constipation.
- EPO signals through JAK2/STAT5 (not ERK) and is contraindicated in poorly controlled hypertension; romiplostim/eltrombopag = TPO receptor (not G-CSF); desmopressin is procoagulant → releases Factor VIII + vWF.
- Misoprostol = a PGE1 analog (not PGF2α); tolvaptan = a V2 antagonist for hyponatremia (SIADH); cinacalcet = a calcimimetic that sensitizes the CaSR → ↓PTH, ↓serum calcium.
- IFN-γ → chronic granulomatous disease; IFN-β → multiple sclerosis (do not confuse them); bromocriptine = D2 agonist → ↓prolactin.
- A mask only blocks droplets/aerosols; blood, vector-borne, and foodborne/waterborne routes are not on its path — no amount of wearing helps.
- Giardia/Cryptosporidium are chlorine-resistant; only filtration removes them.
- Surveillance pyramid: most infections at the base, fewest confirmed cases at the apex — reverse the order and it's wrong.
- The incubation period tracks symptoms, the latent period tracks infectiousness, the serial interval tracks two people.
- R₀ is the intrinsic transmissibility with "no immunity, no intervention"; herd-immunity threshold = 1 − 1/R₀.
- Foodborne illness ≥ 2 people; botulism/chemical poisoning 1 person; HIV/AIDS target 95-95-95; Category I notifiable disease reported within 24 h.
- Hexavalent chromium → nasal septal perforation; newspaper press workers are not high-risk for pneumoconiosis.
- TWA's denominator is the sum of actual time, not 8 hours.
- Greenhouse gases do not include NH₃; HACCP's "chicken cooked thoroughly" = CCP; acrylamide comes from the Maillard reaction in starch at high temperature.
- SCT is at the interpersonal level, core construct self-efficacy; HBM is at the individual level, with constructs susceptibility/severity/benefits/barriers/cues to action.
- In TTM, precontemplation calls for "consciousness raising" first — don't rush to teach techniques; contemplation vs. preparation differs on "whether a concrete action has been taken."
- Multi-system + emotional + social stress → the biopsychosocial model.
- The Family APGAR's theoretical foundation = systems theory (not the biopsychosocial model); don't confuse it with the neonatal Apgar.
- Referral = coordination; handling multiple things in one visit = comprehensiveness; the two are most easily swapped.
- Target heart rate at age 70 ≈ 90–105; exercise volume can be accumulated in bouts.
- The Healthy City is a process, not an outcome; a first-time drug-use offender may receive observation/rehabilitation, not automatic prosecution.
- Nonverbal communication ≈ 60–80%; crossed arms = defensiveness; Hall's three thresholds 45/120/360; examination enters the intimate zone.
- Exposure first, then disease = cohort; disease first, then retrospective exposure = case-control; simultaneous = cross-sectional; group as the unit = ecological (prone to ecological fallacy).
- Case-control calculates OR; under the rare-disease assumption, OR ≈ RR; for a common disease, OR overestimates.
- Confounding must be removed; effect modification must be reported; the purpose of matching = controlling confounding (not increasing heterogeneity).
- Case-control fears recall bias; cohort fears loss to follow-up; screening fears lead-time bias.
- Three or more continuous groups → ANOVA; 1:1 matched 2×2 → McNemar's test; expected count < 5 → Fisher's exact test.
- If the CI covers the null value, it's not significant; null for a ratio = 1, null for a difference = 0.
- Type I is α, false positive; Type II is β, false negative; power = 1 − β; too small a sample → Type II error.
- Random error is erratic, systematic error is skewed; use the median for skewed data; use SD to describe spread; pooling different populations introduces confounding bias.
- Highest level of evidence = RCT; Hill's one indispensable criterion = temporality.
- Sn/Sp/LR are unaffected by prevalence; PPV/NPV are affected by prevalence (prevalence↓ → PPV↓ → FDR↑).
- The metrics most meaningful to clinical practice = PPV/NPV; LR+ > 10 strongly rules in, LR− < 0.1 strongly rules out.
- Raising the threshold → Sp↑, Sn↓; parallel testing → Sn↑; serial testing → Sp↑.
- Screening biases: lead-time, length-time, overdiagnosis → should instead look at disease-specific mortality.
- Screening belongs to secondary prevention / the third stage; a disease must be treatable before it should be screened for.
- Judge treatment benefit by ARR/NNT (NNT = 1/ARR), not the exaggeration-prone RRR.
- Meta-analysis = Level I / Grade A; PICO's I is the intervention.
- USPSTF Grade A: pre-pregnancy folate 0.4–0.8 mg/day; STI prevention (Grade B; intensive in 2014, behavioral counseling in 2020) with intensive counseling.
- A 15-year-old girl does not receive the zoster vaccine (it is for age ≥ 50).
- Health-insurance DNA = mandatory enrollment + a single government-run payer; capitation is most economical, FFS is most prone to overtreatment; the global budget is a supply-side control.
- SID belongs to the supply side, moral hazard to the demand side; the demand-side countermeasure is co-payment.
- In BSC, financial is lagging; learning-and-growth/internal process are leading; SWOT's O is Opportunities.
- The WHO Healthy City health-category indicators do not include the abortion rate; the Pharmaceutical Affairs Act's "drugs" include medical devices.
- Shock: flat jugular veins → hypovolemic; distended → cardiogenic/obstructive; Beck's triad → cardiac tamponade.
- Septic shock's vasopressor of choice is norepinephrine; anaphylaxis's first line is IM epinephrine.
- Parkland counts only second- and third-degree burns, half the volume in the first 8 h, counted from the time of injury.
- BAC 0.30 causes light coma; only > 0.40 is potentially fatal.
- The mechanism of referred pain = convergence at the same spinal segment; using it in reverse to localize a viscus is wrong.
- The most common primary headache = tension-type; a thunderclap headache first rules out SAH; MOH is managed by withdrawal.
- Lymphedema: emollients are not contraindicated; for typhoons, the recovery phase exceeds the acute phase; earthquake casualties cluster within hours of the event.
- Chemical disaster: hot zone rescues, warm zone decontaminates, cold zone triages.
- Delirium: dementia is the single most important predisposing factor; incidence in hospitalized older adults is 14–56%; BZDs/restraint/anticholinergics worsen it.
- The one parameter that does not decline with aging = serum insulin.
- MMSE assesses cognition; self-medication = IADL; TUG assesses fall risk.
- The five Fried criteria: thin, tired, weak grip, slow gait, sedentary — cognition is not one of them.
- High risk for hypothermia does not include healthy adults aged 30–50; altered mental status in an older adult is not caused by hypolipidemia; malnutrition risk does not include drinking soda.
- The goal of hospice care = symptom relief and a good death; first-line for dyspnea is low-dose morphine; first-line for delirium is haloperidol; opioids must always be co-prescribed with a laxative.
- Hospice Palliative Care Act vs. Patient Right to Autonomy Act: the latter extends to five categories and allows refusal of artificial nutrition; dementia must be extremely severe.
- DNR priority: self > pre-signed declaration/proxy > spouse > children > parents > siblings > grandparents; adult children take priority over parents.
- Withdrawing life support is legal; euthanasia is illegal; the WMA's 2019 declaration opposes euthanasia and supports informed refusal of life-sustaining treatment.
- The four principles have equal standing, with no fixed order (prima facie); justice = distributive justice.
- When family asks for concealment → decline on the basis of autonomy; therapeutic privilege has a very high threshold and cannot be invoked merely because the family asks.
- Informed consent must include alternative treatment options and the consequences of forgoing treatment; coercion violates voluntariness.
- Nuremberg = the starting point of voluntary consent; Helsinki = subject welfare comes first; Belmont = the three principles; the Declaration of Lisbon belongs to patient rights, not research ethics.
- Under a dependent relationship, informed consent must be obtained by an independent, qualified individual; an impartial witness is not enough.
- Vulnerable populations include the embryo but not the healthy older adult alone; the corresponding author is determined by actual contribution, not by position.
- Clinical trial records are retained permanently (even if the subject is a child).
- Mandatory public health policy must satisfy the principle of proportionality; secondhand smoke exceeds pure autonomy and permits intervention.
- A known surgical complication = no-fault harm; a Phase II trial tests preliminary efficacy + dosing, and later stages often include a control.
- Reporting: for vulnerable persons, mandatory reporting to the competent authority within 24 hours; for adult sexual assault, reporting to the competent authority is a duty, but evidence collection and reporting to police respect the individual's own wishes.
- Confidentiality may be promised externally; the medical record must be charted truthfully; the paper record belongs to the hospital, and the patient may request copies.
- Teaching clerkships require prior notice and consent; unauthorized access to an unrelated record is itself a violation; Medical Care Act Article 106 on obstructing medical practice = a non-complaint offense.
- The central thesis of patient safety: errors originate in the system, not the individual; the Swiss cheese model = an accident occurs when the holes across multiple layers of defense align.
- A critical value is defined by "time," not "magnitude": without immediate action, death or irreversible harm may occur within hours. Thresholds are set by each institution.
- The three elements of the critical-value closed loop: notify the person who can give the order personally → read-back → document the time/recipient/response. Posting in a group chat or leaving a message with a clerk does not count as delivery.
- Both major quality metrics in the laboratory are time-based: turnaround time (TAT) and the critical-value notification interval. The Joint Commission's NPSG.02.03.01, 2005.
- SBAR = a format for the speaker (forcing out the A assessment and R recommendation; originated on nuclear submarines → Kaiser Permanente); I-PASS = a handoff protocol that includes a closed loop (the key is the final synthesis by receiver).
- Responsibility after a handoff does not vanish — it splits: the one handing off is responsible for "speaking clearly," the one taking over is responsible for "acting reasonably"; the only evidence is the medical record.
- Medical Care Act Article 68: Paragraph 1 requires personal documentation plus a signature or stamp with the date; Paragraph 3 requires a verbal order to be followed by a written record within 24 hours.
- The mechanism behind the surgical safety checklist's effectiveness: converting a default assumption into a spoken declaration, creating a legitimate moment to speak, and using team self-introduction to break down hierarchy — not "helping people remember."
- Three checkpoints: sign in before anesthesia induction (patient awake) / time out before incision (whole team pauses) / sign out before leaving the room; WHO 2008, 19 items, the 2009 study showed mortality 1.5%→0.8% and complications 11%→7%.
- The site marking is made by the operating surgeon at the incision site with the patient awake and participating; a discordant count → recount, search, intraoperative X-ray if needed — never close the wound outright.
- Signing a checklist after the fact = ineffective; the active ingredient is verbal execution. Wrong-site/wrong-patient surgery and retained foreign objects = never events.
- What accrediting bodies sell is "whether you are eligible to be paid": TJC 1951 (deemed status), JCI 1998, JCT 1999.
- Reporting systems vs. accreditation run on opposite logic: reporting is anonymous, voluntary, confidential, non-punitive, and oriented toward shared learning (the TPR, 2003); accreditation is named and holds people accountable. The second victim is the healthcare worker involved.
- The four axes of healthcare-associated infection: VAP, SSI, CLABSI, CAUTI.
- CLABSI's three routes of invasion → three corresponding countermeasures: maximal sterile barrier precautions + chlorhexidine (at insertion), daily dressing inspection (the external surface), and scrub the hub (the internal lumen).
- Site: the femoral vein has the highest infection rate (proximity to the perineum plus friction from hip flexion); the subclavian vein has the lowest infection rate but a higher risk of pneumothorax — this is a trade-off, not a ranking.
- The single strongest intervention is "assessing daily whether this line is still needed"; the real variable in Pronovost's Michigan program (2006, NEJM) was authorizing nurses to halt the procedure.
- CAUTI: the biofilm shields bacteria from antibiotics and immune defenses; duration of catheterization is the strongest single risk factor; the only effective intervention = don't place it, remove it early.
- Asymptomatic bacteriuria is not treated, with the only exceptions being pregnant women and before a procedure likely to cause bleeding of the urinary tract mucosa.
- Catheter-tip culture cannot diagnose CAUTI; when in doubt, replace the catheter first, then obtain a specimen.
- Routine catheter changes, bladder irrigation, and prophylactic antibiotics are all ineffective; the drainage bag must be below the bladder, off the floor, and part of a closed system.
- Large trials of antimicrobial-coated catheters do not support routine use — "doing nothing" is the correct answer.
- In the U.S., starting October 1, 2008, CMS stopped providing additional payment for hospital-acquired conditions such as CLABSI/CAUTI arising during a hospital stay (stemming from the Deficit Reduction Act of 2005): using money to turn infection from a cost center into a matter of revenue protection.
- The gold standard for pain assessment is patient self-report; objective indicators are only substitutes. Vital signs cannot replace a pain assessment.
- Scales fall into two classes: self-report (NRS, VAS, VRS, Wong-Baker FACES) and behavioral observation (FLACC, PAINAD, CPOT/BPS).
- Wong-Baker is a self-report tool, for roughly age 3 and up, and the patient points to it himself — the tool most often mistaken for an observational scale.
- FLACC ≈ 2 months–7 years; PAINAD is for advanced dementia; use CPOT/BPS for intubated, sedated patients.
- The generally accepted threshold for a clinically meaningful improvement is an NRS decrease of ≥ 2 points or ≥ 30%.
- A complete pain assessment covers more than intensity alone: location, quality, temporal pattern, aggravating and relieving factors, and functional impact (can the patient sleep, can he walk). Recording only a single number is the most common quality defect.
- The "fifth vital sign" movement: proposed by the American Pain Society in the 1990s → adopted by the Veterans Health system in 1999 → the Joint Commission's 2001 pain management standards; its causal relationship to the opioid crisis remains contested and cannot be asserted outright, and the field has since shifted toward functional improvement and multimodal analgesia.
- Communication: SPIKES = Setting up, Perception (ask first), Invitation, Knowledge (warning shot + small pieces + jargon-free), Emotions (emotion before information), Strategy; the order comes from cognitive load and cannot be reordered.
- Companion tools: ask-tell-ask, NURSE; never say "there's nothing more we can do"; silence is a tool; answer prognosis questions with a range.
- Informed consent vs. SDM: the former is one-way disclosure followed by authorization (a recommendation already exists); the latter applies when multiple reasonable options exist and their relative merit depends on the patient's values and preferences. Taiwan has promoted SDM since 2016.
- Children and adolescents: legal consent rests with the guardian, but the child's assent should still be obtained.
- Medical records: of SOAP's four columns, A (Assessment) is the most valuable, since it is the only place the reasoning process is documented; undocumented ≈ never done.
- Article 68 of the Medical Care Act: ① personal recording + signature/seal + dated by year, month, day; ② any addition or deletion must be signed/sealed and dated at the point of change, struck through with a line, never obliterated; ③ a verbal order must be followed by a written record within 24 hours.
- Lawful correction = a line struck through + the original text still legible + an annotation + a signed date; correction fluid, torn-out pages, or after-the-fact backfilling = falsification and tampering.
- Risks of the electronic record: note bloat and copy-forward give errors the false credibility of having been "confirmed every day"; the audit trail must never be falsified. Patients can access records in real time (Taiwan's My Health Bank, since 2014), and derogatory phrasing shapes subsequent care.
- Death certificate: Article 11-1 of the Physicians' Act — may not be issued without personally examining the body; Article 76 of the Medical Care Act — may not be refused without cause, the cause of death must be handled with the utmost care, and a death that is not natural or suspected not to be natural must be reported to the prosecutorial authority for inquest; Article 16 of the Physicians' Act carries the same intent.
- Administrative inquest (natural disease/natural death, physician, issues the death certificate) vs. judicial inquest (not natural or suspected not to be, prosecutor accompanied by a forensic physician, issues the inquest certificate). The test is whether a non-natural death can be ruled out.
- The cause-of-death section is a causal chain; the bottom-most line is the underlying cause of death, and it is this single line that ICD cause-of-death statistics code.
- "Cardiopulmonary failure / respiratory failure / cardiac arrest / multi-organ failure" are modes of dying, not acceptable underlying causes of death; an external cause must state the mechanism and circumstances of injury.
- MHC: I → HLA-A/B/C, all nucleated cells, presents endogenous antigen, to CD8; II → HLA-DR/DP/DQ, APCs, exogenous, to CD4 (8×1, 4×2).
- Orbital floor blow-out → inferior rectus entrapment → cannot look up (do not mistakenly pick the superior rectus).
- Septal hematoma → immediate incision and drainage (otherwise cartilage necrosis, saddle nose); the cartilage eats only by clinging to its membrane.
- Cyclosporin/Tacrolimus = calcineurin inhibitors → inhibit IL-2; shared nephrotoxicity, grapefruit-juice interaction; first choice for acute rejection is high-dose steroid pulse (not a change of drug).
- Most common melanoma = SSM (superficial spreading); biopsy by complete excision.
- Pressure ulcers: ischium 60 mmHg, sustained >1 hour is irreversible; turn every 2 hours in bed, every 15 minutes when seated.
- Supreme principle of clinical trials: participant rights, safety and well-being first, overriding scientific/social interests.
- NHI launched on 1995/3/1, integrating the medical benefits of the thirteen existing social insurance schemes; single insurer = the National Health Insurance Administration (NHIA).
- The reason for mandatory enrollment is to prevent adverse selection; the reason for a single insurer is to prevent risk selection.
- Premiums are split three ways: employee 30% / employer 60% / government 10%; employers and the self-employed pay 100% themselves; Category 2 and the Category 6 regional population pay 60% themselves; Category 5 low-income households are fully covered by the government.
- General premium = insured amount × rate × contribution ratio × (self + dependents, dependents counted up to 3); current rate 5.17%, statutory cap 6%.
- Second-generation NHI implemented 2013/1/1; supplementary premium rate 2.11%, six withholding items: bonuses (above 4 times the insured amount), part-time salary (at or above the basic wage), professional practice, dividends, interest, rent (single payment of NT$20,000 or more), cap per payment NT$10 million → because of the cap, the supplementary premium is regressive.
- The employer-side supplementary premium is charged on "the difference between total salaries and total insured amounts," to prevent under-reporting.
- The theoretical basis of copayment is moral hazard; its downside cost is suppressing necessary care among the vulnerable.
- Inpatient copayment: acute ward 10% within 30 days, 20% for days 31–60, 30% from day 61 (the longer the stay, the heavier the out-of-pocket share — the incentive is to push transfers out).
- New scheme of 2023/7/1: emergency copayment NT$750 at medical centers, NT$400 at regional hospitals; the outpatient-drug cap at medical centers / regional hospitals raised to NT$300.
- Exempt from copayment: catastrophic illness, childbirth, mountain and offshore-island areas, low-income households, veterans, children under 3, occupational injury or illness, tuberculosis.
- Fee-for-service (FFS) incentive = do more, get more → supplier-induced demand → runaway costs.
- Global budget payment system: set the total first, then allocate; payment per point = sector global budget ÷ sector total claimed points → floating point value.
- Implementation sequence: dental 1998/7 → Chinese medicine 2000/7 → Western-medicine primary care 2001/7 → hospitals 2002/7 (full implementation).
- Taiwan uses an expenditure cap (not an expenditure target) → the risk of excess volume is borne by providers through point-value dilution.
- Point value < 1 = point-value dilution / discount; collective volume-pushing is a prisoner's dilemma, and self-discipline is game-theoretically unstable.
- Tw-DRG: phase one 2010/1, 164 groups; phase two 2014/7, 254 groups; phase three postponed.
- The larger the settlement unit (FFS → per diem → DRG → capitation), the stronger the incentive to economize, and the stronger the incentive for risk selection.
- DRG side effects: cream skimming, diagnostic upcoding (DRG creep), premature discharge and readmission; mitigated by exclusion clauses and outlier add-on payments (80% of costs above the upper threshold).
- P4P (pay-for-performance) piloted since 2001/11; pitfalls are indicator selection bias, patient selection due to inadequate risk adjustment, and the ceiling effect.
- Drug-price gap = NHI reimbursement price − the institution's actual purchase price; it is a lawful negotiated margin, and "drug-price black hole" is a misnomer.
- Drug price survey → lower reimbursement prices based on actual transaction prices; the side effect is low-margin old drugs leaving the market → drug shortages.
- Drug Expenditure Target (DET): if the annual drug-spending target is exceeded, a price adjustment is triggered the following year to recover the overspend.
- Marketing authorization (TFDA) ≠ reimbursement (NHIA): the former asks about safety and efficacy, the latter about cost-effectiveness.
- Coverage-assessment tools: HTA (health technology assessment), ICER (incremental cost-effectiveness ratio), QALY (quality-adjusted life year).
- Drug Benefit Items and Reimbursement Schedule Joint Committee: members include payers, the medical profession, the pharmacy profession, experts, and relevant agencies (patient groups may only be invited to express views), with public deliberations → the concrete institution behind second-generation NHI's "broader participation, information transparency."
- Intermediate options: temporary reimbursement, conditional reimbursement (restricted indications / prior authorization), risk-sharing agreements — used to share financial risk when the evidence is uncertain.
- Article 88 of the Medical Care Act authorizes dividing medical care regions, establishing tiered care, and drawing up the healthcare network plan.
- The country is divided into 6 primary medical regions (Taipei, Northern, Central, Southern, Kaohsiung-Pingtung, Eastern) / 17 secondary medical regions / 50 sub-regions.
- Hospital emergency capability grading (under the Emergency Medical Services Act): advanced, intermediate, general; prehospital triage goes by "can handle," not "closest."
- Basic outpatient copayment (since 2017/4/15; unchanged by the 2023 reform): medical center NT$170 with referral / NT$420 without; regional hospital 100/240; district hospital 50/80; clinic 50.
- The design intent of the price gap = using price to buy sequence, pushing patients toward primary care; clinics charge NT$50 with or without a referral.
- Family Physician Integrated Care Program (piloted 2003/3): primary-care clinics join with partner hospitals to form community healthcare groups.
- Core attributes of family medicine: accessibility, continuity, comprehensiveness, coordination — the success or failure of tiered care depends on whether primary care is strong enough.
- NHI = medical care (low probability, high cost — suited to insurance); LTC = daily-living support (high probability, long duration — tax-financed).
- LTC 2.0 has been rolled out since 2017; the "four envelopes" payment scheme took effect in January 2018; from 2026 it continues under LTC 3.0 (2026–2035), with the four-envelope framework retained.
- The four envelopes: ① care and professional services (copayment cap 16%), ② transportation (30%, Level 4 and above only), ③ assistive devices and home accessibility (30%, NT$40,000 every 3 years, or NT$60,000 under the Group 2 option from July 2026), ④ respite services (16%).
- The beneficiary of respite services is the "caregiver," not the disabled person.
- LTC need level (CMS) 1–8; Level 1 receives no benefits; eligibility to apply starts at Level 2; transportation requires Level 4 or above.
- ABC model: A Community Integrated Service Center (planning and linking) / B Composite Service Center (delivering services) / C Neighborhood LTC Station (nearby temporary care, communal meals, delaying disability); the goal is aging in place.
- Funding = Long-Term Care Services Development Fund: added revenue from the three-bracket progressive estate and gift tax (10/15/20%) + added revenue from the tobacco tax increase + Tobacco Health and Welfare Surcharge + consolidated housing and land tax + government budget appropriations → tax-financed, not insurance-financed.
- The dividing line: acute medical care and post-acute care (PAC) belong to NHI; home care services, day care, and respite belong to LTC.
- NHI is pay-as-you-go; the root of its financial problem is population structure (shrinking payers, expanding users), not simply a management problem.
- The reserve should be maintained at the equivalent of 1–3 months of insurance benefit expenditure (National Health Insurance Act Article 78); below 1 month, the insurer must draft a benefit-scope adjustment proposal for the committee under Article 26.
- Premium-rate adjustment procedure: review and agreement by the National Health Insurance Committee → MOHW → approval by the Executive Yuan; statutory cap 6%.
- Current general premium rate 5.17%, supplementary premium rate 2.11% (since 2021/1/1).
- Actuarial requirement: at least once every 5 years, each projection covering 25 years (Article 25).
- The three main thrusts of 2G-NHI: broadening the premium base (supplementary premium), broadening participation (National Health Insurance Committee), transparency (opening the Joint Drafting Meetings).
- 2G-NHI's unfinished business = premium base still mainly wages, total household income not adopted; this is the core of subsequent reform discussions.
- The NHI IC card fully replaced the paper card from 2004/1/1; its significance is "voucher → interface," enabling data to be linked across hospitals and clinics.
- NHI MediCloud System (PharmaCloud): tackles duplicate medications, duplicate tests, and drug interactions; it is a form of clinical decision support.
- Order of dispute remedies: NHI dispute review → administrative appeal → administrative litigation (review is a prerequisite procedure; you may not go straight to court).
- Scope of dispute review: premiums (insured amount, premium calculation), benefits, payment and deduction of medical expense claims, etc.
- Constitutional Court Judgment 111-Hsien-Pan-13 (2022/8/12): the entities, purposes, requirements, scope, methods, and oversight mechanisms for use of NHI data beyond its original purpose lack clear provisions, violating legal reservation and the right to informational privacy; no independent personal data oversight mechanism; no opt-out mechanism for data subjects; follow-up law = the National Health Insurance Data Management Act (promulgated 2025/12/19, in force 2026/8/10, opt-out right written in; the independent data-protection commission's organic act still pending as of 2026-09); amendment originally ordered within 3 years.
- Core concept: de-identification is a technical safeguard; clear legal authorization, independent oversight, and the right to opt out are institutional safeguards — neither can substitute for the other.
- Physician certificate (issued centrally, qualification) ≠ practice license (issued locally, practice registration, renewed every 6 years); practice limited to one location.
- Continuing education: physicians 120 points per 6 years, of which the professional quality/ethics/regulations categories must total at least 12 points, counted up to 24 (the old pre-2013 rule was 180 and 18 points; must include infection control and gender issues); the same as other practitioner-level medical personnel, i.e. 120/12 points.
- Physicians Act Article 21 = the physician's personal duty to rescue; Medical Care Act Article 60 = the institution's duty to provide emergency care.
- Physicians Act Article 11: no treatment, prescribing, or diagnostic certificate without personal examination; exception = mountain areas, offshore islands, remote areas, or special urgent circumstances. Telemedicine does not waive the duty to examine.
- Discipline from lightest to heaviest: warning → additional continuing education/clinical training → restriction of scope of practice or suspension for 1 month to 1 year → revocation of practice license → revocation of physician certificate.
- Institution classification: wards admitting inpatients = hospital, outpatient only = clinic (clinics limited to 9 observation beds; a teaching hospital is an accreditation status, not a type); the juridical-person forms are medical foundations/medical associations.
- Medical advertising uses a positive list; non-medical institutions may not engage in medical advertising; implying or alluding is deemed medical advertising; academic publications and health education without solicitation do not count.
- Medical record retention: at least 7 years; minors until 7 years after adulthood; human-trial records kept permanently.
- Medical Care Act Article 82: civil liability is limited to "intent" or "breach of the duty of care necessary in medicine together with exceeding reasonable clinical professional discretion," and criminal liability covers only negligent death or injury under the same two conditions (promulgated January 2018); both are judged by the medical customs, standards, facilities, working conditions, and urgency at that time and place.
- Medical practice = "deciding," done personally by the physician; medical auxiliary acts = "executing," done by nurses under a physician's direction (11 announced items, e.g., assisting with invasive examinations and procedures, assisting with drug administration, monitoring vital signs; vaccination also counts). Nurses' independent practice consists of only three areas: assessment, preventive health care measures, guidance and counseling.
- Emergency Medical Services Act: EMTs are EMT-1/EMT-2/EMTP; hospital emergency care capability is classified as advanced/intermediate/general; public places must have AEDs; rescue by people other than emergency personnel is covered by the necessity exemption (Good Samaritan clause).
- Medical Accident Prevention and Dispute Resolution Act: promulgated June 22, 2022 (ROC 111), in effect January 1, 2024 (ROC 113). Three principles = immediate care, mediation first, prevention to improve quality.
- Explanation-and-care team: explain and communicate within 5 working days starting from the day after the accident; hospitals with 99 beds or fewer, and clinics, may delegate this to professional staff/institutions.
- Apologies are not evidence: expressions of regret, apologies, or similar statements during the care process may not be used as evidence in litigation or as a basis for a judgment.
- Mediation first: without mediation, no directly filing a civil suit; criminal cases shall be referred to mediation; handled by the county/city medical dispute mediation committee, which may request a medical dispute assessment.
- Reporting and RCA: major accidents must be reported and undergo root cause analysis; reported and analyzed data may not be used as judicial evidence. The spirit is systems thinking (the Swiss cheese model) — don't ask who was wrong; ask why the system allowed it.
- Childbirth Accident Emergency Relief Act: promulgated ROC 104 (2015), in effect June 30, ROC 105 (2016); four principles = no blame, no fault, timely relief, error correction and improvement; the forerunner of the Medical Accident Act.
- International comparison: New Zealand's ACC no-fault compensation (since 1974) replaces personal-injury litigation; the U.S. EMTALA (1986) deals with access, not compensation — don't mix them up.
- Trap: the Medical Accident Act does not exempt physicians from liability and does not ban litigation; what it changes is the order of procedures and the admissibility of evidence.
- Hospice Palliative Care Act (2000): applies only to terminal patients (diagnosed by two physicians); may refuse CPR and life-sustaining treatment, not including artificial nutrition; if the patient is comatose, the closest relative's letter of consent (order: spouse → adult children and grandchildren → parents → siblings → grandparents → …).
- Patient Right to Autonomy Act: promulgated ROC 105, in effect ROC 108 (2019), Asia's first dedicated patient-centered law. The first in line to be informed is the patient personally.
- AD requirements: aged 18 or older with full legal capacity → go through ACP (must include at least one relative within the second degree; the team includes a physician + nurse + psychologist or social worker) → sign the AD → annotate it on the NHI card.
- Five clinical conditions: terminal illness, irreversible coma, permanent vegetative state, very severe dementia, and announced conditions of unbearable suffering with no solution; confirmation by two specialist physicians + two palliative care team consultations.
- The Patient Right to Autonomy Act allows refusing life-sustaining treatment + artificial nutrition and hydration (the step the Hospice Act cannot take).
- Patient Right to Autonomy Act ≠ euthanasia: what it permits is refusal/withdrawal, not actively causing death; Taiwan has not legalized euthanasia.
- Brain death determination: prerequisites (deep coma, ventilator dependence, established cause) + exclusion of reversible factors → observe 12 hours (drug intoxication: past the half-life, then another 12 hours; unknown drug: at least 72 hours) → all brainstem reflexes absent → apnea test (PaCO₂ ≥ 60 mmHg) → two determinations, 4 hours apart; determining physicians may not be members of the transplant team.
- Source of organs: Taiwan uses explicit consent (opt-in), which can be annotated on the NHI card; Spain uses presumed consent (opt-out) + transplant coordinators.
- Living donation: the donor must be an adult (the statute says age 20 or older; from 18, only part of the liver may be donated, to relatives within the fifth degree); recipients limited to blood relatives within the fifth degree or a spouse; a spouse must be married 2 years or more or have a child together; buying and selling prohibited.
- Allocation priority: if a spouse or a blood relative within the third degree was once a deceased donor, the candidate has allocation priority.
- The logic of the five categories = the intensity of the state's response; reporting deadlines: Categories I, II, and V within 24 hours, Category III within one week, Category IV per announcement, varying by disease (mostly one week; some 24 hours; Creutzfeldt–Jakob disease one month). COVID-19 has been moved from Category V to Category IV.
- Isolation = people already sick; quarantine = exposed but not yet sick. Category I shall be compulsorily isolated; Categories II and III may, when necessary, be compulsorily isolated.
- Requisition (Article 54) must take place while the command center is in operation, with appropriate compensation; the legal basis of the Central Epidemic Command Center is Article 17, and it is established with the approval of the Executive Yuan.
- Dengue: *Aedes aegypti*/*Aedes albopictus*, daytime biting, standing water in artificial containers; secondary infection with a different serotype → ADE → hemorrhagic fever/shock; 24–48 hours after defervescence is the danger period; no NSAIDs/aspirin.
- Japanese encephalitis: *Culex tritaeniorhynchus* and other *Culex* mosquitoes (not *Aedes*); pigs are amplifying hosts, humans are dead-end hosts, no human-to-human transmission; about 1 in 300 develop disease; vaccine dose 1 at 15 months, dose 2 twelve months later.
- Scrub typhus: *Orientia tsutsugamushi*, bite of chigger larvae, eschar in clothing folds; drug of choice doxycycline, β-lactams ineffective (obligate intracellular).
- Hantavirus: inhalation of aerosolized rodent urine and feces; never dry-sweep during cleanup — wet and disinfect first; HFRS (fever + bleeding + renal failure) / HPS (pulmonary edema).
- Rabies: Category I; retrograde axonal transport, incubation 1–3 months and shorter the closer the bite is to the brain; Negri body; ferret-badgers in 2013 made Taiwan an affected area again. PEP = wash with soap for 15 minutes → don't suture → HRIG infiltrated around the wound + vaccine on days 0/3/7/14/28; previously fully vaccinated: only 2 boosters, no HRIG.
- Tuberculosis: DOTS — into the hand, into the mouth, leave after it's swallowed; 2 months HRZE + 4 months HR; LTBI via IGRA (unaffected by BCG); MDR-TB is Category II.
- HIV: the dedicated law guarantees anonymous screening and non-discrimination; people with HIV must disclose when seeking care; prenatal screening of pregnant women + prevention of vertical transmission (no breastfeeding); PrEP / PEP (within 72 hours, for 28 days) / U=U.
- Enterovirus: EV71 is the most neuroinvasive; severe-disease warning signs = lethargy, altered consciousness, poor activity, limb weakness, myoclonic jerks, persistent vomiting, tachypnea or tachycardia; the path is brainstem encephalitis → neurogenic pulmonary edema → cardiopulmonary failure; alcohol is ineffective (non-enveloped) — use chlorine bleach.
- Measles: R₀ 12–18, airborne, negative pressure required; 3 Cs + Koplik spots (the only pathognomonic sign); rash spreads downward from the hairline behind the ears; infectious from 4 days before to 4 days after rash onset; post-exposure MMR within 72 hours or immune globulin within 6 days; among complications, pneumonia is the most common cause of death, with SSPE as a late complication.
- Pertussis: the catarrhal stage is the most contagious; infants may present with apnea alone; treat with macrolides; Tdap at weeks 28–36 of every pregnancy (better than cocooning).
- IPD: isolated from a sterile site; asplenia / under age 2 / 65 and older at high risk; conjugate (PCV13) → T-cell dependent → memory, hence used in young children; pure polysaccharide (PPV23) → T-cell independent, poor response under age 2.
- In 1984 Taiwan became the first country in the world to launch a nationwide neonatal hepatitis B vaccination program; the main route of transmission is mother-to-child vertical transmission, and the younger the age at infection, the higher the chronic carrier rate, so dose 1 must be given within 24 hours of birth; infants of HBsAg-positive mothers (regardless of e-antigen status since July 2019) also receive HBIG (active + passive immunization, at different sites). Results: childhood HBsAg carrier rate fell below 1% and childhood hepatocellular carcinoma incidence declined — the first vaccine in history proven to prevent cancer.
- Key ages in the schedule: within 24 hours, HepB dose 1; 2 months, pentavalent + PCV13; 5 months, BCG; 6 months, first influenza dose; 12 months, MMR + varicella + PCV13 booster; 15 months, JE dose 1; 18 months, pentavalent dose 4 + HepA dose 1; 27 months, JE dose 2 + HepA dose 2; before elementary school, DTaP-IPV + MMR dose 2; publicly funded HPV for junior-high students (boys included since September 2025).
- The reason BCG was postponed to 5 months was reports of BCG osteitis — the immunization schedule is a living document that safety data can rewrite.
- The Japanese encephalitis vaccine switched from mouse-brain-derived inactivated to cell-culture live attenuated chimeric vaccine (schedule simplified to 2 doses).
- Publicly funded vs. self-paid criterion = disease burden × cost-effectiveness × herd-immunity externality × safety and supply; recommendations come from ACIP. "Universal vaccination is always in the public interest" is a false statement.
- Vaccine Injury Compensation Fund: legal basis is Article 30 of the *Communicable Disease Control Act*; funded by levies paid by vaccine manufacturers/importers per dose passing inspection; total fund NT$150 million–NT$400 million; decisions are made by the VICP review panel (medical + legal experts + impartial members of the public), with outcomes classified as related / cannot be determined / unrelated, and the first two are compensated.
- The underlying spirit: not fault-based liability, but the socialization of risk — herd immunity is a public good, so injury should not be borne by the individual alone.
- International comparison: the US 1986 National Childhood Vaccine Injury Act; a companion 1987 law levies an excise tax, since 1997 US$0.75 per dose per disease prevented, paid into a trust fund, handled through the Vaccine Court and the Vaccine Injury Table.
- The *Prevention of Rare Diseases and Orphan Drug Act* was promulgated on February 9, 2000 (ROC year 89); Taiwan was the fifth jurisdiction in the world to enact a dedicated rare-disease law (after the US, Japan, Australia, and the EU).
- What makes it special: it covers both "prevention and control" (newborn screening, genetic counseling, prenatal testing and genetic diagnosis, reporting and registry, reproductive support) and "drugs" (supply, special approval for manufacture or import, market exclusivity, National Health Insurance reimbursement); the US 1983 *Orphan Drug Act* deals only with drug-market incentives (market exclusivity, tax credits, fee waivers).
- Governing body: the Review Committee on Rare Diseases and Orphan Drugs; recognition of a rare disease uses prevalence as its core criterion.
- Newborn screening: fully expanded to 21 conditions from October 2019 (ROC year 108); 22 with SMA and a fully subsidized test fee from July 2026; heel-prick blood collected at 48 hours of age; the subsidy is NT$200 per case in general before July 2026, and NT$550 for low-income households and areas lacking medical resources.
- The 21 publicly funded conditions (Pompe disease, Fabry disease, and SCID are self-paid add-ons, not among them) include: CHT, CAH, PKU, homocystinuria, MSUD, citrullinemia types I/II, galactosemia, G6PD deficiency (favism), MCAD, VLCAD, primary carnitine deficiency, CPT I/II, early-onset GA II, the organic acidemias (including HMG-CoA lyase and holocarboxylase synthetase deficiencies), and others.
- The technical reason the panel could expand = tandem mass spectrometry (MS/MS) drives the marginal cost of each added condition toward zero; the real threshold is Wilson & Jungner's "Is there an accepted treatment?"
- Newborn screening is secondary prevention; a positive screen ≠ a diagnosis — recall for repeat testing and confirmatory diagnostic testing is required (the design prioritizes high sensitivity).
- The Occupational Safety and Health Act (renamed in ROC year 102 [2013] from the Labor Safety and Health Act) extends its scope to "workers" in all industries (including the self-employed).
- General health exam: under 40 every 5 years, 40–64 every 3 years, 65 and over every year; special health exam: for operations with special health hazards, once a year.
- Graded management of special health exams: Level 1 = not abnormal; Level 2 = abnormal but unrelated to work; Level 3 = abnormal but work-relatedness uncertain → refer to an occupational medicine specialist; Level 4 = abnormal and work-related → immediate hazard control.
- Five criteria for recognizing occupational disease: evidence of disease, evidence of exposure, plausible temporal sequence, support from the literature and a dose–response relationship, exclusion of non-occupational causes. Pneumoconiosis latency is 10–30 years; onset after retirement still counts as occupational disease.
- Labor Occupational Accident Insurance and Protection Act: promulgated in ROC year 110, in force May 1, 2022 (ROC year 111); occupational accident insurance becomes a standalone insurance under its own act; compulsory coverage from the first day of employment regardless of employer size; establishes the occupational injury and disease diagnosis and treatment network and triple rehabilitation — medical / social / vocational.
- Overwork recognition (guideline on work-related cerebrovascular and cardiac diseases): > 100 hours of overtime in the 1 month before onset, or a monthly average > 80 hours over the preceding 2–6 months → very strong association; monthly average 45–80 hours, the longer the stronger; < 45 hours, weak. It is an administrative guideline, not a law.
- Noise-induced hearing loss: basal-turn outer hair cells damaged first → 4000 Hz notch; sensorineural, bilateral, irreversible; 85 dBA triggers a hearing conservation program, 90 dBA is the permissible limit, 5-dB exchange rate.
- Silicosis = upper lobes + eggshell calcification + increased TB risk; asbestosis = lower lobes + pleural plaques + mesothelioma; asbestos × smoking is multiplicative for lung cancer, not for mesothelioma.
- Lead poisoning: inhibits ALAD and ferrochelatase → microcytic anemia + basophilic stippling + elevated ZPP/δ-ALA; wrist drop (predominantly motor), Burton's line, lead colic, saturnine gout; monitor with blood lead; remove the exposure first, then chelate.
- HAVS: localized vibration → endothelial injury and sympathetic over-reaction → vibration white finger (pallor → cyanosis → rubor); the distinction from primary Raynaud's disease lies in the exposure history.
- Occupational skin disease: ICD (non-immunologic, can occur on first contact, dose-related, about 80%) vs ACD (type IV delayed hypersensitivity, requires sensitization, 24–72 hours, patch test).
- RCA Taoyuan plant (1970–1992, trichloroethylene/tetrachloroethylene): with exposure records lost, the court adopted population-level epidemiological inference — a real-life case of temporality, the Hill criteria, and the burden of proof.
- The new ICF system took effect on July 11, 2012 (ROC year 101): classification changed from 16 categories to eight major systems; assessment by a medical + social-work team with an added evaluation of activity/participation and environmental factors; disability handbook → disability certificate + needs assessment.
- The core idea of the ICF: from the ICIDH's one-way linear model (impairment → disability → handicap) to an interactive model — disability results from a mismatch between person and environment, and environmental factors can either worsen or eliminate disability.
- Order of the eight systems: nervous & mental/psychological → eye/ear, senses & pain → voice & speech → circulatory, hematopoietic, immune & respiratory → digestive, metabolic & endocrine → urinary & reproductive → neuromusculoskeletal movement → skin.
- The Indigenous Peoples Health Act was promulgated on June 21, 2023 (ROC year 112), Taiwan's first health law for a specific population group; key points = dedicated unit, adequate budget, regular surveys and a database, training Indigenous healthcare professionals, traditional medical and healthcare knowledge, and members with Indigenous status must make up no fewer than one-half of the policy council.
- Indigenous vs national-average life-expectancy gap: 8.17 years in 2017 → 6.19 years in 2022. The cause is SDOH, not ethnic constitution.
- IDS (Medical Benefit Improvement Plan for Mountainous and Offshore-Island Areas): a bundled/capitation-like contract giving one hospital the care of a whole township; principle = the larger the settlement unit, the stronger the incentive to prevent and economize (FFS < per diem < DRG < capitation).
- Accessibility ≠ availability: NHI solved "can you afford it"; IDS solves "is anyone coming." The telemedicine exception in Article 11 of the Physicians Act exists precisely to patch a market failure.
- Blackfoot disease: chronic exposure to inorganic arsenic in deep-well water on the Chiayi–Tainan coast → peripheral arterial occlusive gangrene + skin cancer (Bowen's disease [SCC in situ], SCC, BCC; arsenical keratosis is precancerous), bladder cancer, lung cancer, liver cancer + raindrop pigmentation changes; the cure was tap water (environmental intervention), not drugs; WHO drinking-water arsenic guideline value 10 μg/L.
- Tobacco Hazards Prevention Act: amended and promulgated February 15, 2023 (ROC year 112), in force March 22. Seven key points: total ban on tobacco-like products (e-cigarettes), designated tobacco products (including heated tobacco) must pass a health risk assessment review, minimum smoking age raised to 20, warning graphics 35% → 50% (in force March 22, 2024), expanded smoke-free places (universities, kindergartens, infant care centers, and home-based childcare, including outdoors; bars and nightclubs indoors), heavier penalties, and a statutory definition of tobacco-like products.
- The difference between the e-cigarette total ban and the heated-tobacco review system lies in whether the product contains tobacco (tobacco-like product vs tobacco product); heated tobacco that has not passed review is illegal in Taiwan.
- MPOWER: Monitor/Protect/Offer/Warn/Enforce/Raise; the single most cost-effective measure is raising tobacco prices. Health and welfare surcharge on tobacco products = user pays + earmarking, feeding the NHI safety reserve and cancer prevention and screening.
- Cessation drugs: NRT, varenicline (α4β2 partial agonist), bupropion.
- Drunk driving: administrative penalty 0.15 mg/L (blood 0.03%); criminal offense of driving while unable to drive safely 0.25 mg/L (blood 0.05%).
- ALDH2 deficiency (about 30–50% of East Asians) → acetaldehyde accumulation → flushing and palpitations; acetaldehyde is a Group 1 carcinogen → sharply raised risk of esophageal squamous cell carcinoma. "Flushing when you drink" is a clearance defect, not low tolerance.
- Withdrawal: delirium tremens usually 48–96 hours after the last drink, first-line benzodiazepine; thiamine before glucose (to prevent Wernicke).
- The areca nut itself (without betel inflorescence or tobacco) is an IARC Group 1 carcinogen; arecoline and its nitrosated derivatives are genotoxic. Precancerous lesions: leukoplakia (most common), erythroplakia (highest malignant transformation rate), oral submucous fibrosis (most specific to betel quid; hallmark is restricted mouth opening). Tobacco + alcohol + betel quid act multiplicatively.
- Target populations for the four cancer screenings + lung cancer: cervical (ages 25–29 every 3 years; 30 and over annually; HPV test added at ages 35/45/65), breast (ages 40–74, every 2 years), colorectal (ages 45–74; ages 40–44 with a family history, every 2 years, FIT), oral (aged 30+ who chew betel quid or smoke; Indigenous people aged 18+ who chew betel quid, every 2 years), lung LDCT (ages 50–74 with ≥20 pack-years and currently smoking or quit less than 15 years ago; family history: women 40–74, men 45–74, every 2 years).
- Timeline: lung-cancer LDCT launched July 1, 2022 (ROC year 111); 2025 (ROC year 114) was an expansion (not the launch year).
- The three big screening biases: lead-time bias (earlier diagnosis falsely lengthens survival time), length-time bias (tends to catch slow-growing tumors), and overdiagnosis. The only reliable evidence of benefit is a fall in disease-specific mortality in randomized trials, not five-year survival.
- Mental Health Act: amended and promulgated December 14, 2022 (ROC year 111), in force December 14, 2024 (ROC year 113); the part transferring compulsory admission to court rulings had a separate effective date because of the judicial infrastructure it needs and has been in force since August 1 (August 2026, ROC year 115).
- The court uses a lay-assessor system: judge + lay assessor who is a psychiatric specialist + patient-rights advocacy group representative, deciding by majority opinion. Constitutional basis = judicial reservation for personal liberty.
- Time limits: court-ordered compulsory admission may not exceed 60 days; extension must be petitioned 14 days before expiry, only once, and may not exceed 60 days.
- Patient-rights groups may monitor cases of compulsory admission, compulsory community treatment, and emergency placement, and may petition the court for termination; severe patients or their protectors may also petition for termination, and petitions and appeals are exempt from court fees.
- Definition of "severe patient": bizarre thoughts and strange behavior detached from reality, rendering the patient unable to manage their own affairs (2007 wording; current Article 3 says a mental state detached from reality), as diagnosed and determined by a specialist physician. Diagnosis ≠ grounds for compulsion; requirements for compulsion = severe patient + risk of harm to self or others + need for full-time admission yet refusal.
- Emergency placement is a short-term measure (7 days) before compulsory admission, accompanied by a compulsory assessment; compulsory community treatment is a less intrusive middle option (medication, blood-level testing, alcohol/drug screening, etc.) embodying the principle of proportionality.
- Community support and reasonable accommodation written into law, strengthening community mental health centers and cross-agency collaboration — using compulsion less presupposes that the community has something to offer.
- Suicide Prevention Act: reporting and follow-up care; media guidelines to avoid the Werther effect and promote the Papageno effect.
- Asbestos = lower lobes + pleural plaques + mesothelioma + lung epithelial carcinoma; pulmonary lymphoma is the exception.
- Silicosis = upper lobes + eggshell calcification + increased tuberculosis (TB) risk.
- Asbestos bodies are mostly found in normal lung parenchyma — not diagnostic of mesothelioma.
- Traps: ① assigning asbestos to the "upper lobes"; ② naming "pulmonary lymphoma" as the asbestos-related cancer; ③ describing silicosis as "lower lobe, decreased TB risk."
- Adenocarcinoma = peripheral + EGFR; squamous cell = central + smoking + keratinization + PTHrP-driven hypercalcemia; small cell carcinoma (SCLC) = central + neuroendocrine + paraneoplastic, not surgical.
- SCLC's paraneoplastic repertoire: SIADH, Cushing syndrome, Lambert-Eaton (LEMS).
- Traps: ① mistaking "a non-smoking Asian woman with a peripheral mass" for squamous cell; ② attributing hypercalcemia to SCLC (it is actually PTHrP from squamous cell); ③ describing SCLC as "primarily surgical."
- Emphysema = neutrophil/macrophage elastase destroying elastic fibers; α1-AT deficiency → panacinar, lower lobes.
- The ordinary smoker = centriacinar, upper lobes.
- Asthmatic smooth muscle = hypertrophy, not atrophy.
- Traps: ① describing asthmatic smooth muscle as atrophic; ② assigning α1-AT deficiency to "upper-lobe centriacinar"; ③ attributing the enzyme source in emphysema to "lymphocytes/eosinophils" (it is actually neutrophils + macrophages).
- Anterior mediastinum = 4 T's (thymoma, teratoma, lymphoma, thyroid); posterior mediastinum = neurogenic tumors.
- Pericardial tamponade does "not" cause secondary PAH (external compression; PVR has not risen).
- Inspiratory stridor = upper-airway (extrathoracic) obstruction; expiratory wheeze = lower-airway (intrathoracic); biphasic = fixed obstruction.
- Traps: ① listing pericardial tamponade as a "cause of secondary PAH"; ② reflexively giving SABA for inspiratory stridor (the airway needs protecting instead); ③ naming the posterior mediastinum as the classic site for thymoma.
- ① FEV₁/FVC < 0.70 = obstruction; ② TLC < 80% = restriction (FVC alone cannot be used); ③ DLCO localizes further.
- Obstruction + DLCO↓ = emphysema; obstruction + normal DLCO = asthma.
- Restriction + DLCO↓ = pulmonary fibrosis; restriction + normal DLCO + ↓MIP = neuromuscular disease.
- Positive BD test = FEV₁ or FVC ↑ ≥ 12% and ≥ 200 mL (both conditions required).
- Traps: ① using FVC alone to call restriction (TLC is mandatory); ② remembering only the 12% for a positive BD test and forgetting the 200 mL; ③ misclassifying a patient with chest wall deformity as pulmonary fibrosis (a normal DLCO rules it out).
- Diagnosis = post-BD FEV₁/FVC < 0.70; GOLD 1–4 grades severity, but initial therapy follows ABE (symptoms + exacerbation history) — group E starts on LABA+LAMA immediately.
- Inflammation includes CD8⁺ T lymphocytes and, in some patients, eosinophils; Eos ≥ 300/μL predicts a good ICS response.
- Pulmonary rehabilitation has strong evidence; IV theophylline has weak evidence and is not routine.
- AECOPD: inhaled SABA+SAMA, systemic steroids for 5 days, antibiotics when indicated, NIPPV, SpO₂ 88–92%.
- HRCT can diagnose bronchiectasis (signet ring sign).
- Traps: ① "give chronically hypercapnic COPD patients all the oxygen they want" (causes CO₂ retention); ② "COPD inflammation is only neutrophils" (misses CD8 + eosinophils); ③ "pulmonary rehabilitation has limited benefit" (its evidence is actually the strongest).
- Positive reversibility = FEV₁ ↑ ≥ 12% and ≥ 200 mL (both conditions at once).
- Mechanistic chain = TSLP/IL-25/IL-33 → ILC2/Th2 → IL-5 (eosinophils)/IL-4·13 (IgE, AHR) → FeNO↑; this is Th2.
- Every adult regimen must include ICS; SABA is never used alone; the step-up answer is almost always adding regular LABA.
- Step-down requires ≥ 3 months of stability.
- Pregnancy, anesthesia, AERD, and ABPA are mostly not contraindications — ABPA's primary treatment is actually oral corticosteroids.
- Traps: ① writing IL-12/IL-10 into the asthma mechanism (they are actually anti-inflammatory); ② calling ICS in pregnant asthma a contraindication; ③ treating rising SABA use as "step-up therapy" (it is actually worsening control).
- The key distinction among the three types = whether respiratory effort is present: OSA present, CSA absent, OHS present and often coexisting with OSA.
- AHI thresholds: ≥ 5 with symptoms, ≥ 15 without; severity cutoffs: 15 and 30.
- BMI is a risk factor, not a severity index.
- OHS = obesity + awake PaCO₂ ≥ 45 + other causes excluded; treatment is NIV/CPAP + weight loss.
- CPAP is first-line for moderate-to-severe OSA; OSA is a treatable cause of secondary/resistant hypertension.
- Traps: ① judging OSA severity by BMI (should use AHI/ODI/nadir SpO₂); ② "OSA always needs AHI > 15" (≥ 5 suffices with symptoms); ③ jumping straight to COPD for obesity + hypercapnia (think OHS first).
- Classify by PaCO₂ first: myasthenia gravis + CO₂↑ = type 2 pump failure.
- NIPPV contraindications = coma/shock/copious secretions; a high PaCO₂ is not a contraindication — it is the indication.
- ARDS = a leak (PAWP ≤ 18, per the older 1994 AECC criteria); cardiogenic edema = a flood (PAWP > 18).
- ARDS treatment = tidal volume 6 mL/kg, plateau pressure < 30, PEEP, prone positioning when needed.
- Hypoxemia with a normal CXR = PE, shunt, hepatopulmonary syndrome, asthma (pulmonary edema does not belong here).
- Traps: ① listing a high PaCO₂ as a NIPPV contraindication (it is actually the indication); ② reversing the PAWP cutoffs (ARDS ≤ 18); ③ using a high tidal volume in ARDS (it must be 6 mL/kg predicted body weight, not actual body weight).
- The triad: ↓fremitus + dull = effusion; ↓fremitus + hyperresonance = pneumothorax; ↑fremitus + dull = consolidation.
- Light's criteria: any one positive criterion means exudate (protein ratio > 0.5 / LDH ratio > 0.6 / LDH > 2/3 of the upper limit).
- Empyema drainage (older textbook ranking; current guidelines: pH discriminates best, glucose cutoff 60): glucose < 40 is the strongest indicator, followed by pH < 7.2.
- Chylothorax = TG > 110; hemothorax = effusion Hct > 50% of peripheral Hct; tuberculous effusion = lymphocyte-predominant + ADA > 40.
- Tension pneumothorax = a clinical diagnosis; needle decompression is immediate and does not wait for imaging.
- Ultrasound cannot detect mediastinal/hilar lymph nodes.
- Traps: ① mistaking bronchial breath sounds heard peripherally for effusion (it is actually consolidation); ② judging chylothorax by cholesterol (use TG instead); ③ ordering an X-ray before treating tension pneumothorax (a fatal delay).
- Cause of death = cardiogenic shock from right-heart failure (classified as obstructive shock; not hypoxemic respiratory failure).
- D-dimer is a rule-out tool, not a diagnostic one; diagnosis = CTPA.
- High risk (hypotension) = systemic thrombolysis with tPA; intermediate/low risk relies mainly on anticoagulation.
- Unprovoked PE carries the highest recurrence risk and needs long-term anticoagulation; provoked PE needs about 3 months.
- Top priority in anaphylactic shock = IM epinephrine into the lateral thigh (not steroids/antihistamines).
- Wells does not include plain chest pain.
- Traps: ① treating a positive D-dimer as diagnostic; ② giving steroids/antihistamines before epinephrine in anaphylactic shock; ③ writing the cause of death in PE as hypoxemic respiratory failure.
- VAP head-of-bed = 30–45 degrees (60 degrees is wrong).
- Supine aspiration lung abscess = RUL posterior segment + superior segments of the lower lobes; the right middle lobe/lingula are not favored sites.
- Aspiration risk factors = impaired swallowing/esophageal motility (scleroderma, Parkinson disease); not pulmonary fibrosis, not asplenia.
- Bronchiectasis imaging = tram-track/signet-ring sign, favoring both lower lobes.
- Diffuse bronchiectasis = PCD/CF/hypogammaglobulinemia/ABPA; pulmonary sequestration is a focal cause.
- Rib fracture in the elderly → pneumonia: prevented by analgesia + chest physiotherapy, not reflexive antibiotics.
- Bronchial breath sounds heard over a peripheral lung field = consolidation (not effusion or pneumothorax).
- Traps: ① a 60-degree head-of-bed for VAP prevention; ② treating pulmonary fibrosis/asplenia as aspiration-pneumonia risk factors; ③ treating pulmonary sequestration as a cause of diffuse bronchiectasis.
- SCLC paraneoplastic syndromes: SIADH, ectopic ACTH (Cushing), Lambert-Eaton; squamous cell paraneoplastic syndrome: PTHrP-mediated hypercalcemia.
- Adenocarcinoma = peripheral + nonsmoker/female + EGFR/ALK; lepidic subtype has the best prognosis, micropapillary/solid the worst.
- Horner's syndrome = cervical sympathetic chain (not the phrenic nerve); diaphragmatic paralysis = phrenic nerve; hoarseness = recurrent laryngeal nerve.
- For an apical lesion, choose the lordotic view; monophonic wheeze most commonly = lung cancer; clubbing + HOA most commonly = bronchogenic carcinoma.
- Absolute contraindications to curative resection of NSCLC = SVC syndrome, malignant pleural/pericardial effusion, N3 contralateral mediastinal nodes, M1; FEV1 > 1 L, N1 disease, and stable angina are NOT absolute contraindications.
- First-line therapy for extensive-stage SCLC = systemic chemotherapy (etoposide + platinum), often with immunotherapy added; mild SVC compression does not require emergent radiotherapy.
- A 50-year-old with chronic cough plus a mass on chest film — rule out lung cancer first.
- Traps: ① Writing SCLC as "secreting PTHrP causing hypercalcemia" (that's squamous cell carcinoma); ② Misreading Horner's syndrome as diaphragmatic paralysis; ③ Listing FEV1 > 1 L as an absolute surgical contraindication.
Lung cancer essentials
- Reactivation TB favors the upper lung zones, because oxygen tension is highest there and the tubercle bacillus is an obligate aerobe.
- LTBI: TST or IGRA; not contagious; roughly 10% lifetime progression; treatment cuts it by 60–90%; cannot distinguish latent vs. active.
- Tuberculous pleural effusion = delayed-type hypersensitivity (type IV); lymphocytes >50%, mesothelial cells <5%, ADA ≥40.
- RIPE: INH neuropathy requires added B6; rifampin stains fluids orange-red plus enzyme induction; PZA raises uric acid; ethambutol causes optic neuritis.
- Monitoring: liver function + CBC; CK not required routinely.
- Liver enzymes <3× normal, asymptomatic → continue; >3× with symptoms or >5× → stop.
- Resistance genes: rpoB→RIF, katG/inhA→INH, pncA→PZA, embB→EMB; MDR = simultaneous resistance to INH+RIF.
- BCG gives poor protection against adult-type reactivation TB and cannot replace N95 respirators and negative-pressure isolation.
- Traps: ① Treating latent infection as contagious and isolating the patient; ② Ordering CK to monitor RIPE therapy (unnecessary); ③ Writing MDR as "resistant to INH alone" (both INH and RIF must be resistant).
Tuberculosis essentials
- Restrictive-pattern formula: FEV1/FVC normal or ↑ + TLC/FVC↓ + DLco↓; chest wall deformity has a normal DLco, which rules it out.
- Sarcoidosis's three pillars: non-caseating granulomas, BAL CD4/CD8↑, corticosteroid treatment; hypercalcemia comes from macrophage 1α-hydroxylase (not ACE); Löfgren syndrome carries the best prognosis; asymptomatic stage I often remits spontaneously.
- IPF = UIP (honeycombing) = steroid-unresponsive = pirfenidone/nintedanib; NSIP responds to corticosteroids.
- Hypersensitivity pneumonitis = organic antigen; pneumoconiosis = inorganic dust; prevention hierarchy engineering controls > administrative controls > PPE.
- Eosinophilic pneumonia: BAL eosinophils >25% is diagnostic; NSAIDs are a common trigger.
- Traps: ① Writing sarcoidosis hypercalcemia as ACE-driven (it's actually macrophage 1α-hydroxylase); ② Prescribing corticosteroids for IPF (ineffective); ③ Writing CD4/CD8 as decreased (it's actually elevated).
ILD essentials
- Inspiratory stridor = upper airway; expiratory wheezing = lower airway.
- Steeple sign = croup (subglottic, parainfluenza, single-dose dexamethasone); thumb sign = epiglottitis (Hib, no tongue depression); bronchiolitis = RSV, <2 years old, SABA ineffective.
- Asthma under age 5 relies on history (pulmonary function testing impossible, IgE cannot confirm diagnosis); ICS is the most effective controller; LTRA is less effective than ICS.
- Mediastinal widening at age 2, most commonly = normal thymus.
- Allergy prevention: no routine probiotics; early introduction of complementary foods (including peanut) from 4–6 months lowers allergy risk.
- Traps: ① Swapping steeple and thumb signs; ② Directly depressing the tongue to examine epiglottitis (can be fatal); ③ Reflexively recommending delayed introduction of complementary foods (early introduction is actually correct).
Pediatric acute airway disease
- Spastic = bilateral UMN; flaccid = LMN; ataxic = cerebellum (scanning speech); dysarthria is a muscular execution problem, distinct from aphasia.
- Total glossectomy (oral phase) → chin-up (gravity-assisted); use chin-tuck to prevent aspiration; patients without a tongue cannot use Masako.
- Absolute contraindications to cardiac rehabilitation = acute pericarditis/myocarditis, unstable angina, uncontrolled arrhythmia; a stabilized MI, post-CABG/PCI are indications.
- MVO₂ ≈ double product = heart rate × systolic blood pressure.
- Pulmonary rehabilitation: drain with the affected side up; expectorants should be used actively; active respiratory distress is an indication.
- Traps: ① Choosing chin-tuck or Masako for total glossectomy (both require a tongue to propel the bolus); ② Listing a stabilized acute MI as a contraindication (it's an indication); ③ Draining with the healthy side up (the affected side should be up).
Rehabilitation essentials
- RQ: carbohydrate 1.0 (highest), protein 0.8, fat 0.7.
- CO = diffusion-limited (clinically measured as DLco); N₂O = perfusion-limited; normal O₂ and CO₂ = perfusion-limited, O₂ shifts to diffusion-limited during exercise or fibrosis.
- Anemia: PaO₂ and SaO₂ normal, Hb↓, oxygen content↓; CO poisoning: PaO₂ normal but SaO₂↓, pulse oximetry may be falsely normal.
- A shunt cannot be corrected even with 100% oxygen; V/Q mismatch and diffusion impairment can be corrected with supplemental oxygen.
- Chloride shift: HCO₃⁻ out, Cl⁻ in, AE1 is an exchanger (not a cotransporter).
- During forced exhalation, intrapleural pressure can turn positive → dynamic compression, effort-independent.
- Surfactant comes from type II alveolar cells; glucocorticoids mature the fetal lung; the most sensitive cough-reflex trigger = the carina.
- Traps: ① Assuming anemia always means low PaO₂ (it's actually normal); ② Relying on pulse oximetry for CO poisoning (falsely normal); ③ Writing AE1 as a cotransporter.
Gas exchange physics
- OSA = respiratory effort persists; CSA = respiratory effort is absent. OSA occurs in both NREM and REM sleep.
- Gold-standard diagnosis = PSG; severity by AHI (>30 severe); HSAT is a screening tool, not diagnostic.
- Risk factors: obesity, tonsillar hypertrophy, male sex, alcohol, supine sleep, micrognathia; mandibular prognathism is NOT one; hypertension is a consequence or comorbidity.
- First-line treatment = CPAP; first-line in children = tonsillectomy.
- DSPS (adolescents) has a delayed phase, treated with morning light exposure + evening melatonin; nighttime light exposure is the wrong treatment. ASPS (elderly) has an advanced phase.
- Traps: ① Treating hypertension as an OSA risk factor (it's actually a consequence); ② Treating mandibular prognathism as a risk factor (it actually enlarges the airway); ③ Using nighttime light exposure for DSPS (it delays the phase further).
Sleep breathing and circadian rhythm
- Appendix = simple columnar with goblet cells (not stratified squamous); esophagus = nonkeratinized stratified squamous; alveoli = type I simple squamous.
- Parietal cell acid secretion: H⁺/K⁺-ATPase pumps H⁺; HCl forms in the lumen of the intracellular canaliculi.
- The brachial artery is muscular type; the aorta and pulmonary trunk are elastic type.
- Liver: Zone 3 dies first (around the central vein); Zone 1 regenerates first (around the portal tract).
- Purkinje fibers = specialized cardiac myocytes; albumin comes from hepatocytes; alveolar macrophages cannot digest TB; CF = CFTR, autosomal recessive; mitochondria = double membrane.
Histology essentials
- Stanford A = ascending aorta involved = emergency surgery; B = descending aorta only = medical therapy. DeBakey II involves the ascending aorta only (not the arch).
- Diagnosis = CT angiography (TEE if unstable); IMH has no false-lumen flow; a normal X-ray cannot rule it out.
- β-blocker first, then vasodilator (reversing the order causes reflex tachycardia and worsens the dissection); target HR<60, SBP 100–120.
- Type A with malperfusion carries a markedly worse prognosis; complicated type B → TEVAR preferred.
- AAA surgical threshold = ≥5.5 cm; Marfan = FBN1, autosomal dominant; mycotic aneurysm = bacterial (not fungal).
- The IABP balloon sits in the descending aorta, 2 cm distal to the left subclavian; CSF drainage benefits both open surgery and TEVAR; OPCAB shows no clear advantage.
- Traps: ① Giving nitroprusside before the β-blocker (reversing the order worsens the dissection); ② Writing DeBakey II as "including the aortic arch"; ③ Mistaking a mycotic aneurysm for a fungal infection.
Aortic dissection
- ABI < 0.9 = PAD; > 1.3 is falsely normal from calcification — switch to toe-brachial.
- Fontaine: I asymptomatic → II claudication → III rest pain → IV tissue loss; III/IV = CLI.
- First line for claudication: smoking cessation + the three highs + antiplatelet therapy + supervised exercise + cilostazol; don't rush to bypass.
- Traps: ① Writing ABI > 1.3 as "healthier" (it's actually calcification); ② Scheduling bypass the moment you see claudication (exercise and medication come first); ③ Writing cilostazol as an antiplatelet agent (it's actually a PDE inhibitor).
- The 6 P's; the most common cause = cardiac embolism (atrial fibrillation).
- Differentiation: embolism is sudden with a normal contralateral pulse; thrombosis occurs on old PAD with milder symptoms.
- Reperfusion: hyperkalemia, CK↑, myoglobinuria, acidosis, compartment syndrome; NOT hypercalcemia (early hypocalcemia instead).
- Traps: ① Picking "hypercalcemia" for reperfusion; ② Writing the contralateral pulse in atrial-fibrillation embolism as weak (it's normal); ③ Treating an acute embolism as in-situ thrombosis and just anticoagulating (embolectomy is needed).
- Virchow's triad: stagnant flow, vessel injury, thickened blood.
- May-Thurner syndrome = the cause (right iliac artery compressing the left iliac vein, causing an isolated left-sided iliofemoral DVT), not a complication.
- Diagnostic pathway: Wells score → D-dimer (negative excludes) → compression ultrasound (first-line for confirmation, >95%).
- Treatment: anticoagulation leads; extensive disease/phlegmasia adds thrombolysis or thrombectomy; an IVC filter is for contraindication to or failure of anticoagulation; placing a filter in a chronically, completely occluded IVC is useless.
- D-dimer NPV >95% (up to 99%) — "<90%" is the trap answer.
- Traps: ① Writing May-Thurner syndrome as a complication of DVT (it's actually the cause); ② Placing a filter in a completely occluded IVC (useless); ③ D-dimer NPV listed as <90%.
- First choice for infrapopliteal bypass = autologous great saphenous vein; PTFE is not first-line.
- TOS: young women, mostly neurogenic type, Adson/Halsted/Wright tests (breath test is not valid).
- Carotid stenosis classically at the origin of the ICA; traumatic CCF is high-flow, first-line = endovascular embolization.
- Hemangiomas involute at 5–7 years (not before age 1); use propranolol when treatment is needed; AVM is high-flow → embolization (not sclerotherapy).
- Pectus excavatum: Haller index > 3.25; Nuss procedure at 6–14 years; bar left in place 2–3 years.
- Traps: ① Hemangiomas involuting before age 1 (it's actually 5–7 years); ② Injecting sclerosant into an AVM (high flow causes reflux); ③ Operating on pectus excavatum before age 3 (prone to recurrence).
- Triad = wall breaks (free wall), septum breaks (VSD), rope snaps (papillary muscle); AR is not included.
- IABP-SHOCK II: no survival benefit in cardiogenic shock; but VSD / acute MR still require an IABP bridge.
- IABP contraindications: moderate-to-severe AR, aortic dissection, severe PAD.
- CABG under shock favors on-pump; off-pump is not mandatory.
- Emergency life-saving care carries the presumed consent exception.
- Traps: ① listing AR as a mechanical complication of AMI; ② stating IABP "improves survival" in cardiogenic shock; ③ forcing off-pump CABG onto AMI + shock.
- The four immediately lethal injuries: tension pneumothorax / open pneumothorax / massive hemothorax / cardiac tamponade.
- Tension pneumothorax vs. cardiac tamponade → check whether breath sounds are symmetric; both share jugular venous distension and hypotension (not useful for distinguishing them).
- Thoracotomy thresholds: >1,500 mL or >200 mL/hr × 3–4 hr or instability; stable at 500 mL means no thoracotomy needed.
- Subcutaneous / mediastinal emphysema → check the esophagus and trachea; Boerhaave syndrome requires surgery, and a delay >24 hours carries 50–70% mortality.
- The most common EA/TEF is Gross type C (85%); stabilize and screen for VACTERL (cardiac) first → elective surgery.
- Anterior mediastinum — the 4 T's; thymoma is treated primarily with surgery, staged by Masaoka; 30–50% of thymoma patients have concurrent MG, but only 10–15% in reverse.
- Seminoma does not secrete AFP; AFP↑ → NSGCT.
- Barrett esophagus = intestinal metaplasia → adenocarcinoma (not squamous cell carcinoma); Nissen = 360° (not partial); first-line GERD therapy is PPI.
- Chylothorax: TG >110, lymphocyte-predominant, ligated via right thoracotomy.
- Traps: ① waiting for an X-ray before treating tension pneumothorax (a fatal delay); ② labeling Nissen a partial wrap; ③ calling Barrett's malignancy squamous cell carcinoma (it is actually adenocarcinoma).
- Squamous cell carcinoma: central, cavitating, sputum-positive, PTHrP hypercalcemia; adenocarcinoma: peripheral, high brain metastasis rate, EGFR/ALK.
- SCLC metastasizes widely early, is treated mainly with chemotherapy, and carries many paraneoplastic syndromes.
- Preoperative (older cutoffs; ACCP 2013: ppoFEV1 and ppoDLCO both above 60% = low risk, either below 30% → cardiopulmonary exercise testing): FEV1 > 80%; ppo-FEV1 > 40% (< 30% is high risk); DLCO < 50% → add VO₂max; resecting the right middle lobe has the least impact.
- In COPD, FEV1/FVC falls (it does not rise).
- Screening = LDCT (NLST); PET-CT = staging (don't mix them up).
- Traps: ① using PET-CT to screen for lung cancer; ② writing COPD's FEV1/FVC as rising; ③ feeling safe to operate at a ppo-FEV1 of 50% (it is already high risk below 40%).
- Venous cannula in the SVC/IVC, arterial cannula in the ascending aorta; no cannula in the pulmonary artery.
- Hypothermia → lower flow; using 2.4 at 20°C is too high (that's the normothermic value) — the actual figure is about 1.0–1.5.
- CPB inevitably triggers SIRS (complement + coagulation + white cells); "no SIRS" is wrong.
- Duration is limited: the longer it runs, the more coagulopathy, embolism, and organ injury (<6 hours).
- Full-course heparinization (ACT > 400–480 seconds), reversed at the end with protamine; myocardial protection relies on cross-clamp + high-potassium cardioplegia.
- Traps: ① treating a pulmonary artery cannula as venous drainage (it's actually SVC/IVC); ② running 2.4 flat-out at 20°C (loses the benefit of cooling); ③ stating "CPB does not trigger SIRS."
- The costal margin is formed by the 7th–10th costal cartilages; true ribs 1–7, false ribs 8–10, floating ribs 11–12.
- VAN runs in the costal groove along the inferior rib border; needle entry is along the superior rib border; the brachiocephalic trunk gives off no intercostal arteries; the lateral cutaneous branch emerges at the midaxillary line.
- In the left hilum, the PA sits highest; in the right hilum, the bronchus sits highest.
- Anterior to the transverse pericardial sinus = the ascending aorta + pulmonary trunk; the only direct branches of the ascending aorta = the coronary arteries.
- The right phrenic nerve runs lateral to the SVC; the right recurrent laryngeal nerve loops the right subclavian artery, the left loops the aortic arch.
- Pulmonary valve auscultation = left 2nd intercostal space (auscultation site); anatomic projection = left 3rd costal cartilage — don't confuse the two.
- Traps: ① inserting the needle along the inferior rib border (injures the VAN); ② treating the brachiocephalic trunk as a source of intercostal arteries; ③ writing the pulmonary valve's anatomic projection as its auscultation site.
- Posterior cord = master of extension (axillary, radial, thoracodorsal); the thoracodorsal nerve supplies latissimus dorsi (not subscapular / long thoracic).
- Erb (upper trunk C5–C6) = waiter's tip hand; Klumpke (lower trunk C8–T1) = claw hand ± Horner.
- Surgical neck → axillary nerve (numb regimental badge area, cannot abduct); mid-shaft humerus → radial nerve (+ profunda brachii) → wrist drop; supracondylar → AIN (cannot make the OK sign) + brachial artery; wrist → median (ape hand, thenar wasting, sensation of the lateral three and a half digits); medial epicondyle → ulnar nerve claw hand.
- Winged scapula = long thoracic nerve (serratus anterior), not the accessory nerve.
- Radial tuberosity—biceps brachii, ulnar tuberosity—brachialis; the terminal branch of the musculocutaneous nerve = lateral antebrachial cutaneous nerve.
- C6 thumb, C7 middle finger, C8 little finger.
- Traps: winged scapula ≠ accessory nerve (that is shrugging); swapping Erb and Klumpke; writing the terminal branch of the musculocutaneous nerve as the "medial" cutaneous nerve; reversing the muscles that attach to the radial and ulnar tuberosities.
- Anterior compartment dorsiflexes (deep fibular), lateral everts (superficial fibular), posterior plantarflexes (tibial); femoral = knee extension, obturator = adduction.
- Common fibular nerve (fibular neck) = foot drop, steppage gait (the most easily injured nerve of the lower limb); tibial nerve = cannot rise onto tiptoe; superior gluteal nerve (gluteus medius) = Trendelenburg.
- The ITB is fed by the tensor fasciae latae + gluteus maximus and inserts on Gerdy's tubercle; runner's knee = friction over the lateral femoral epicondyle.
- O'Donoghue triad = MCL + medial meniscus + ACL (the MCL is joined to the medial meniscus, not the lateral).
- The patellar ligament inserts on the tibial tuberosity (Osgood-Schlatter).
- Bleeding from the lateral plantar artery: compress the posterior tibial artery at the tarsal tunnel; cardiac catheterization (in anatomy questions; radial access now dominates clinically) prefers the femoral artery; deep plantar arch = anastomosis of the deep branch of the dorsalis pedis + lateral plantar artery.
- Sural nerve pairs with the small saphenous and covers the small toe; the saphenous nerve pairs with the great saphenous and covers the medial side.
- Traps: choosing the tibial nerve for the fibular neck (the tibial is the tiptoe nerve); choosing the lateral meniscus for the unhappy triad; pressing the dorsalis pedis for lateral plantar artery bleeding (the wrong upstream vessel); writing the anterior tibial trunk for the deep plantar arch (the correct answer is the deep branch of the dorsalis pedis).
- Direction: proximal→distal, gross→fine (determined by the sequence of myelination plus the size of the cortical map).
- Earliest gross-motor milestone = rolling over (about 4 months); fine motor at 12 months = mature pincer grasp (fingertip-to-fingertip pinch); stacking 2 blocks = 15–18 months.
- Traps: ① moving block stacking forward to 12 months (wrong); ② naming sitting unsupported as the earliest gross-motor milestone (6 months, later than rolling over); ③ giving "places a small object into a cup" as the 12-month fine-motor marker (that belongs to the immature stage at 9–10 months).
- The basis of medical decision-making = the patient's best interest, not the interests of the National Health Insurance/hospital/physician.
- Domestic violence is subject to mandatory reporting (medical personnel are the obligated reporters), and the patient's refusal does not exempt them.
- Traps: ① taking "saving National Health Insurance expenditure" as the basis for a decision (wrong); ② taking "the family objects" as a reason not to report (wrong — the family member may be the very perpetrator); ③ taking "wait for the patient's consent before reporting" as a lawful option (wrong — the law bypasses the chain of consent).
- 7% → aging; 14% → aged; 20% → super-aged. Mnemonic: "7 aging, 14 aged, 20 super" (original chant "7 化, 14 齡, 20 超").
- Traps: ① labeling 14% as "super-aged" (wrong — that is 20%); ② computing 7% as a share of "the total population" while forgetting the restriction to those aged 65 and above; ③ swapping the names "aged society" and "aging society" (one character apart — 化 — and 7 percentage points apart).
- GBS = post-infectious autoimmune demyelination (molecular mimicry attacking Schwann cell myelin), distal→proximal ascending symmetric weakness, loss of reflexes, CSF albuminocytologic dissociation.
- CMT = hereditary, chronic, distal atrophy (stork legs, pes cavus, foot drop), CMT1 affects myelin → NCV ↓; pain is atypical.
- Traps: ① writing the direction of GBS paralysis as "from the trunk downward" (wrong — it is from the bottom up); ② stuffing "severe pain" into the typical features of CMT (wrong — CMT is atrophy, not pain); ③ writing the CSF in GBS as "both cells and protein elevated" (wrong — protein elevated with a normal cell count is correct).
- Strongest overall and for rotation/lateral bending = halo vest (skull pins lock the halo ring + thoracic vest).
- SOMI = good flexion control (especially the lower segments, C1–C5), poor for extension/lateral bending (its selling point is flexion, not lateral bending/rotation).
- Traps: ① treating the SOMI as the strongest for rotation control (wrong — that is the halo); ② treating the soft collar as usable for an unstable cervical fracture (wrong — it is only a reminder); ③ treating the Philadelphia collar as able to block rotation (wrong — it blocks only flexion-extension).
- Principle: work against the contracture (scar contraction pulls the joint toward flexion/adduction, so position it in abduction/extension to counteract this).
- Axilla = abduction to about 90° (airplane splint); neck = extended; hand = safe position (MCP flexed, IP extended, thumb abducted).
- Traps: ① taking the "comfortable position" as the principle of positioning (wrong — comfort = the contracture direction); ② positioning the axilla in adduction against the trunk (wrong); ③ describing the safe position of the hand as "fully straight or a clenched fist" (wrong — the MCP joints must be flexed).
- Cervical orthoses: strongest in all directions = halo vest (locked with skull pins); the SOMI is strong in flexion (especially the lower segments, C1–C5), poor for lateral bending/rotation.
- Burn positioning: work against the contracture, axilla abducted to about 90° (airplane splint); hand = safe position (MCP flexed, IP extended).
- Amputation prostheses: early intervention (IPOP/soft residual-limb sock), no need to wait for complete healing; PTB weight-bearing (exam answer; the main load also falls on the medial tibial flare) = patellar tendon, medial femoral condyle; avoid the tibial crest and fibular head (common peroneal nerve).
- An AFO cannot completely eliminate subtalar joint motion; wheelchair camber: lateral stability/hand protection are advantages, uneven tire wear is a disadvantage.
- FES for foot drop stimulates the deep peroneal nerve → dorsiflexors (tibialis anterior), not the tibial nerve (that produces plantarflexion).
- Traps: ① treating IPOP as "usable only after healing" (wrong — it is early intervention); ② listing the tibial crest as a PTB weight-bearing area (wrong — that is a bony prominence); ③ describing FES as "stimulating the tibial nerve to lift the foot" (wrong — stimulating the tibial nerve causes plantarflexion and the foot droops further); ④ listing camber's "uneven wear" as an advantage (wrong — it is a physical price).
- Ulnar nerve = claw hand (most conspicuous in the ring/little fingers, lumbricals paralyzed); ulnar paradox: a distal lesion produces more pronounced clawing (FDP preserved).
- Median nerve = ape hand (thenar atrophy, loss of opposition); CTS is the most common cause.
- Radial nerve = wrist drop (midshaft humerus fracture, Saturday night palsy).
- Traps: ① describing the claw as "uniform across all five fingers" (wrong — the ring/little fingers are most conspicuous); ② labeling an ulnar nerve lesion at the elbow as "the most severe clawing" (wrong — it is actually milder, the paradox); ③ attributing wrist drop to a median nerve injury (wrong — the median nerve gives the ape hand).
- Night/rest pain, no relief lying flat, progressive → tumor/infection (continuous irritation by inflammatory mediators, which does not stop with rest).
- Saddle anesthesia + bowel and bladder incontinence + bilateral lower-limb weakness = cauda equina syndrome, a surgical emergency (MRI + decompression within 48 hours).
- Traps: ① treating "worse with activity, relieved by rest" as a red flag (wrong — this is classic mechanical pain); ② stating that rheumatoid arthritis (RA) favors the lumbar spine (wrong — RA favors the small joints); ③ contemplating physical therapy first when signs of cauda equina compression appear (wrong — MRI and surgery come first).
- Claw hand = ulnar nerve (lumbricals paralyzed, most conspicuous in the ring/little fingers); ulnar paradox = a distal lesion produces more pronounced clawing (FDP preserved).
- Low back pain red flags: night/rest pain → tumor/infection; cauda equina = surgical emergency.
- Osgood-Schlatter = tibial tuberosity apophysis (adolescent boys, self-limiting); RA does not typically involve the lumbar spine.
- First-choice study for NMJ disease = RNS (MG decrements, Lambert-Eaton increments).
- Heat therapy most readily causes contact burns in patients with sensory deficits; contraindications to ultrasound/TENS include pacemaker, growth plate, pregnancy and malignancy.
- Traps: ① treating NCS as the first choice for NMJ disease (wrong — RNS is); ② placing tennis elbow at the medial epicondyle (wrong — lateral epicondyle; the medial epicondyle is golfer's elbow); ③ applying heat therapy over an area of sensory loss (wrong — most prone to burns); ④ describing Osgood-Schlatter as a patellar lesion (wrong — the lesion is at the tibial tuberosity).
- Location decides fate: perimembranous (most common, ~70%), subarterial/supracristal (East Asians, prone to AR), inlet (AVSD spectrum, Down syndrome), muscular (self-closing, "Swiss cheese").
- "VSD + AR" → subarterial (type I): the hole sits beneath the aortic valve; Venturi suction pulls down the right coronary cusp → prolapse → AR — AR itself is an indication for surgery.
- Closure rates: muscular highest; perimembranous ~47–57%, higher when small; inlet/subarterial do not self-close.
- Surgical threshold: Qp:Qs > 2:1 (the classic exam cutoff — pulmonary flow at least double systemic), refractory heart failure, early pulmonary hypertension, failure to thrive; observe if Qp:Qs < 2:1. <!-- Note: 2018 AHA/ACC adult CHD guidelines allow repair from Qp:Qs ≥ 1.5 with LV volume load and acceptable PVR; for the licensing exam answer >2:1. -->
- The volume load lands on the left heart (LA + LV dilate) — the key contrast with ASD (right-heart dilation). Do not reverse them.
- Traps: ① picking perimembranous for VSD + AR → wrong, choose subarterial; ② assigning the volume load to the right heart → that is ASD; ③ believing muscular is rarer than perimembranous at closing → muscular has the highest closure rate.
- Signature sound = wide, fixed splitting of S2; mechanism: continuous left→right feeding keeps right-heart filling constantly high → P2 closes late all year, never merging with expiration.
- ASD dilates the right heart (LV spared); it is VSD that dilates the left — never reverse.
- Type pairings (location decides neighbors): secundum (fossa ovalis) most common; primum → MR (the cleft sits beside the mitral valve); sinus venosus → PAPVR (right at the pulmonary vein doorway); coronary sinus type rare.
- The murmur quartet: fixed S2, left second-interspace ESM (relative PS), tricuspid mid-diastolic murmur (relative TS), and no loud split S1 (trap option).
- A large ASD can also reach Eisenmenger — but far more slowly than VSD/PDA (small pressure gradient, slow progression).
- Traps: ① attributing fixed splitting to VSD → wrong; ② putting the volume load on the left heart → that is VSD; ③ pairing sinus venosus with MR → MR belongs to ostium primum; sinus venosus goes with PAPVR.
- All four pulmonary veins drain to the wrong side; mixing via PFO/ASD is obligatory → cyanosis.
- Types: supracardiac most common; infracardiac most obstruction-prone.
- Surgery: reconnect to the LA + ligate the vertical vein; preserving the vertical vein is the wrong move (exam answer; some centers leave it open temporarily when the left heart is small).
- Decision logic: choose the option that grows with the child.
- First: balloon valvuloplasty; then the Ross procedure (autologous pulmonary valve).
- A mechanical valve is the worst option: no growth + anticoagulation risk.
- Unstable → synchronized cardioversion 0.5–1 J/kg; stable → vagal maneuvers → adenosine 0.1 mg/kg.
- It is synchronized cardioversion, not defibrillation.
- Pediatric infective endocarditis is caused mainly by viridans streptococci / S. aureus; pneumococcus is uncommon (its territory is pneumonia, bacteremia, meningitis).
- Highest-risk IE groups (prophylaxis indicated): prosthetic valves/material, previous IE, unrepaired cyanotic CHD / surgical shunts / first 6 months after repair or residual defect, transplant valvulopathy; rheumatic heart disease and MVP were removed in 2007; age < 1 year is not itself a criterion.
- Upper-limb hypertension + lower-limb hypotension + weak/delayed femorals; X-ray shows inferior rib notching and the figure-3 sign.
- Male > female (~2:1); associated with Turner syndrome and bicuspid aortic valve (most common association, 50–85%).
- Traps: "superior-border" notching, "female-predominant," and filing CoA under cyanotic disease — all wrong.
- The tetrad PROVe, each letter earning its place: PS (sets cyanosis severity — it fixes the pulmonary-side resistance), RVH (compensatory consequence, not cause), Overriding aorta (gives RV blood a shortcut into the aorta), VSD (a large hole equalizing ventricular pressures so that blood obeys resistance alone).
- Cyanosis timing follows PS severity (right→left shunt): severe PS/pulmonary atresia → neonatal cyanosis; mild PS → "pink tet," acyanotic at birth, progressing over months. Never write "cyanotic from birth" as a blanket rule. X-ray: boot-shaped heart (RVH tips the apex upward), oligemic lung fields.
- Tet spell: the core is a sudden ↓SVR → the balance tips systemic → blood bypasses the lungs; every treatment reverses it — squatting/knee-chest (compress femorals, instantly ↑SVR), oxygen (↓pulmonary resistance), morphine (↓catecholamines, eases infundibular spasm), fluids (support the RV), phenylephrine (pure α — pharmacological squatting).
- The logic is the inverse of adult hypertension management — here you *raise* SVR.
- Traps: ① antihypertensives during a tet spell → lethal, wrong direction; ② pairing the boot-shaped heart with pulmonary plethora → reversed, TOF lungs are oligemic; ③ calling RVH the cause → RVH is the long-term *consequence* of PS load.
- Murmur: continuous machinery murmur below the left clavicle (systole + diastole); bounding pulses, wide pulse pressure.
- Imaging: a tubular channel between main PA and descending aorta (not a focal bulge, not a pinched lumen).
- Drug directions: PGE₁ keeps it open (duct-dependent lesions); indomethacin/ibuprofen closes it (preterm) — reverse them and someone dies.
- d-TGA: continuous PGE₁ to hold the PDA, ASO within 2 weeks; Rashkind septostomy when needed.
- The cellular chain: large L→R shunt → abnormal shear → endothelial dysfunction (NO/PGI₂↓, ET-1↑) → medial smooth-muscle hypertrophy → intimal fibroproliferation → plexiform lesions → PVR↑↑ irreversible → shunt reverses R→L → cyanosis, clubbing, secondary erythrocytosis.
- Lesions that can get there: VSD, PDA, truncus arteriosus, large ASD/AVSD (all L→R); VSD/PDA fastest, ASD slowest.
- Once established, never close the defect — the RV loses its only vent; afterload has no exit → acute right-heart failure and death.
- Remaining treatment: vasodilators (bosentan, sildenafil) for palliation, ultimately heart–lung transplant; avoid pregnancy, dehydration, altitude.
- Unrepaired cyanotic disease → highest IE risk, prophylaxis required.
- Traps: ① closing the VSD in Eisenmenger → lethal error; ② believing vasodilators cure → palliation only; ③ believing ASD never reaches Eisenmenger → large ASDs do, just slowly.
- Too much lung flow → PA banding (tie it down); too little → BT shunt (pipe it in) — never reverse.
- Valved RV–PA conduit for truncus arteriosus and pulmonary atresia + VSD.
- d-TGA: PGE₁ holds the PDA + ASO within 2 weeks; delay deconditions the LV.
- Single-ventricle physiology (post-Glenn): never leave a systemic–pulmonary shunt in place — two roads flood the lungs, overload the ventricle, and shorten survival.
- Pulmonary artery sling = obstructive (a vascular ring), not cyanotic — do not misfile it.
- After Eisenmenger, never close the defect; vasodilators palliate, transplant is the endgame.
- Laplace reasoning: wall tension ∝ radius × pressure → bigger, higher, faster = operate sooner.
- Thresholds: ascending TAA ≥ 5.5 cm; AAA men ≥ 5.5 / women ≥ 5.0; connective-tissue disease (Marfan, Loeys-Dietz) / bicuspid valve lowered to 4.5–5.0; growth > 0.5–1 cm/yr or symptoms also operate.
- Small TAA (4 cm) → annual CT surveillance; CT, not TTE (echo cannot see the distal descending aorta — tool trap).
- AAA: infrarenal, atherosclerotic type mostly > 4 cm; old male smoker = the risk trio; screen men 65–75 with smoking history once by ultrasound.
- Rupture triad: abd/back pain + hypotension + pulsatile mass → straight to the OR, no CT.
- Traps: ① 4 cm TAA followed by TTE → CT; ② asymptomatic 5.2 cm AAA in a man "observe" → male threshold is 5.5, female 5.0; ③ Marfan AAA at 4.6 cm observed → connective-tissue threshold is 4.5–5.0; ④ believing AAA is usually < 4 cm → atherosclerotic ones are mostly > 4 cm.
- The AAS spectrum = dissection (intimal flap, double lumen), IMH (crescentic wall thickening, no flap), PAU (deep penetrating crater); shared picture: abrupt tearing chest/back pain, asymmetric pulses, large inter-arm BP gap; CTA is the first-line diagnosis.
- Risk factors (brittle wall + high pressure): hypertension (most common), Marfan/Ehlers-Danlos, bicuspid valve, pregnancy (third trimester), cocaine, trauma, aortitis; sick sinus syndrome is unrelated (rhythm problem — trap option).
- Stanford A (ascending involved) → emergency surgery (tamponade, acute AR, coronary ostium); Stanford B (descending only) → medical BP + rate control first, intervene only for complications (organ ischemia, expansion, rupture).
- The BP iron rule: the core quantity is dP/dt, not pressure alone. β-blocker first (esmolol, labetalol), rate to 60, dP/dt down, vasodilator only afterward; nitroprusside alone → reflex tachycardia → dP/dt up → tear extends.
- Targets: SBP 100–120, MAP < 65–70.
- Traps: ① nitroprusside first for tearing pain → worsens it; ② sick sinus syndrome as a dissection risk factor → unrelated; ③ Stanford B straight to the OR regardless of symptoms → uncomplicated goes medical first; ④ 4 cm TAA followed by TTE → CT, echo can't see the distal descending aorta.
- Bruit = turbulence at a stenosis (carotid / renal artery); shunt = continuous machinery murmur (AVM, fistula) — different mechanisms, never swap.
- Orthostatic hypotension = within 3 minutes of standing, SBP↓ ≥ 20 or DBP↓ ≥ 10; the trap writes 15/5.
- Neurogenic: pressure falls, rate does not rise; hypovolemic: pressure falls, rate rises > 15–20 bpm.
- Three causal families: autonomic failure, hypovolemia, drugs.
- Mechanism: valve failure → reflux → venous hypertension → edema, pigmentation, venous ulcer.
- Venous ulcer: medial malleolus, relieved by elevation; arterial ulcer: toes/heel, worse on elevation (no inflow).
- First-line diagnosis: venous duplex ultrasonography (anatomy + reflux).
- Risk factors: family history, female sex, pregnancy, prolonged standing, obesity, HRT/OCP — HRT/OCP raise risk, never protect.
- Primary disease = superficial great saphenous; deep involvement is usually post-thrombotic after DVT.
- Compressions: 100–120/min, 5–6 cm deep, full recoil, minimal interruption, no over-ventilation (adults 8–10 breaths/min).
- ETCO₂: live gauge of compression effectiveness; < 10 mmHg = ineffective; sudden surge → ROSC.
- Ventilation and compression must balance; over-ventilation = high intrathoracic pressure, blocked venous return, output ↓.
- Unstable (any of: hypotension / altered consciousness / ischemic chest pain / acute HF / shock) → immediate synchronized cardioversion; pulseless VT/VF → defibrillation.
- Stable SVT → vagal → adenosine → verapamil/β-blocker; normal pressure is never shocked outright.
- Stable SVT does not get amiodarone first; adenosine — ultra-short half-life, selective AV-node block — is safe and doubles as diagnosis.
- Chain: K-wasting diuretics → low K/Mg → delayed ventricular repolarization, long QT → EADs at the repolarization tail → premature beat lands on the T-wave peak (R-on-T) → polymorphic VT twisting around the baseline.
- First line: IV magnesium sulfate 2 g push (even with normal Mg; it stabilizes L-type Ca channels, suppresses EADs); replete K to a target > 4.0.
- Refractory: isoproterenol / overdrive pacing at 100–120 bpm — shorter RR → proportionally shorter QT → narrower vulnerable window; pacing at 70 bpm is useless.
- Avoid all QT-prolongers: Ia (quinidine, procainamide), III (sotalol, amiodarone), macrolides, antipsychotics, ondansetron — fuel on the fire.
- Pulseless TdP → defibrillation.
- Traps: ① amiodarone for TdP → itself prolongs the QT; ② withholding Mg because levels are normal → first line regardless; ③ slow pacing (70 bpm) → useless, 100–120 squeezes the QT.
- Threshold: men ≥ 2, women ≥ 3; non-valvular AF → DOAC first (apixaban, rivaroxaban, edoxaban, dabigatran) — short half-life, no INR checks, less bleeding (especially intracranial).
- Scoring: C (CHF) 1 + H (HTN) 1 + A₂ (≥75) 2 + D (DM) 1 + S₂ (stroke/TIA) 2 + V (MI/PAD/aortic plaque) 1 + A (65–74) 1 + Sc (female) 1.
- Worked example (76-year-old woman + HTN + DM) = A₂(2)+H(1)+D(1)+Sc(1) = 5; dropping A₂ or Sc is the classic lost point.
- New guidelines ban aspirin monotherapy for AF stroke prevention (weak protection, undiminished bleeding).
- Rheumatic MS / mechanical valve AF = warfarin, mandatory — no DOAC (mechanical valves failed in RE-ALIGN; rheumatic MS never approved).
- Traps: ① aspirin alone for the 76-year-old → violates current guidelines; ② apixaban on a mechanical valve → contraindicated; ③ forgetting the female +1; ④ scoring A₂ as 1; ⑤ "rate control is enough, skip anticoagulation" → stroke is the real killer.
- AV node = vagal suppression + sympathetic excitation + RCA supply (hence inferior MI involvement).
- Causes AV block: excess vagal tone, inferior MI, hyperkalemia, β-blocker/CCB/digoxin.
- Does not: hyperthyroidism (sinus tach/AF instead), α-blockers (unrelated to bradycardia).
- Transplanted heart: atropine useless (denervated); use catecholamines / pacing.
- Seven steps: rhythm → rate → axis → P → PR → QRS → ST/T/QT.
- Mobitz I (Wenckebach): PR stretches then drops, within the node, mostly benign.
- Mobitz II: PR fixed, sudden drop, below the His, usually paced.
- Third degree: P and QRS fully dissociated, bradycardic, syncopal → permanent pacemaker.
- Long: low K / low Ca / low Mg, Ia/III antiarrhythmics, macrolides, antipsychotics, ondansetron, hypothyroidism, LQTS, hypothermia.
- Short: hypercalcemia, hyperthyroidism (not long — the classic reversal), digoxin effect, SQTS.
- The long QT's endgame = TdP; the cure is IV Mg, not more antiarrhythmics.
- Delta wave = WPW; Osborn J wave = hypothermia < 32°C; Epsilon wave = ARVC; electrical alternans = tamponade; prominent U = hypokalemia.
- Brugada = V1–V3 ST elevation, pseudo-RBBB; Wellens = critical proximal LAD, no stress test; de Winter = acute proximal LAD occlusion, STEMI-equivalent.
- AC beats DC at triggering VF (lands in the vulnerable window).
- Tl-201 = K⁺ analog + Na-K pump active transport; redistribution = ischemia (viable), fixed defect = infarct.
- The useless syncope test = pulmonary function testing.
- Fork on ST → troponin: STEMI (total occlusion, red thrombus) → immediate primary PCI, door-to-balloon < 90 min / lytics within 30 min without a lab; NSTEMI (subtotal, white thrombus, troponin ↑) → by risk tier (very high < 2 h; GRACE > 140 high < 24 h; intermediate < 72 h); UA (normal troponin) → antithrombotics + stratification.
- STEMI iron law: ECG diagnosis activates PCI — no waiting for enzymes; oxygen only if SpO₂ < 90% (routine O₂ is useless, possibly harmful).
- Platelet three-step: adhesion (vWF–GPIb) → activation (ADP, TXA₂, shape change) → aggregation (GP IIb/IIIa conformational change, fibrinogen bridging two platelets).
- Four antiplatelet mechanisms (four stations): irreversible COX-1 (aspirin, lifelong) / P2Y12 antagonists (clopidogrel, prasugrel, ticagrelor) / GP IIb/IIIa antagonists (abciximab, eptifibatide, tirofiban — the finish line) / PAR-1 antagonist (vorapaxar, thrombin-mediated activation).
- Stable CAD: COURAGE/BARI 2D/ISCHEMIA — PCI helps symptoms, not MI/death; hard outcomes belong to ACS.
- Traps: ① STEMI held for enzyme results → muscle wasted; ② routine 100% oxygen → only below SpO₂ 90%; ③ pasting stable-CAD PCI conclusions onto ACS → never mix; ④ GP IIb/IIIa receptors binding each other directly → fibrinogen must bridge.
- Chain: inferior MI (RCA) hits the RV → thin-walled passive pump, steep Frank-Starling slope → preload lost, output collapses → left preload starved → hypotension/shock.
- Four-part cluster: inferior STEMI + hypotension + JVD + clear lungs (no crackles); V4R ST elevation ≥ 1 mm confirms.
- First move = rapid fluids, 1–2 L saline (preload back, RV filling held).
- Absolute contraindications = nitrates (all routes) / morphine / diuretics — every preload-cutter severs the lifeline.
- Fluids fail → dobutamine, IABP; definitive = RCA PCI.
- Traps: ① treating inferior STEMI + hypotension like left failure with nitro/morphine/lasix → lethal; ② never hooking up V4R → missed diagnosis; ③ pairing JVD with "pulmonary edema" → RV MI's signature is JVD *with clear lungs.*
- Very high < 2 h; high (GRACE > 140) < 24 h; intermediate < 72 h; low — elective.
- Not every NSTEMI gets PCI within 12 hours.
- Post-sheath bradycardia + hypotension = vasovagal → atropine + fluids.
- Stress-test contraindications: symptomatic severe AS is absolute; asymptomatic AS is not.
- Physiologic (widens on inspiration); Wide = P2 delayed (PS/RBBB); Fixed = ASD; Paradoxical = A2 delayed (severe AS/LBBB); single S2 = severe AS/Eisenmenger.
- The paradoxical key is a delayed A2, not the mitral valve.
- MS + pregnancy: volume ↑ + rate ↑ → gradient spikes → pulmonary edema; decompensation typically mid-to-late.
- Management: β-blocker rate control, salt restriction, balloon valvuloplasty.
- Pregnancy: ACEI/ARB forbidden; high-risk pre-eclampsia gets low-dose aspirin; GDM uses insulin; mechanical valves switch to LMWH in the first trimester.
- AR's three doors (any one → surgery): ① symptoms (any EF) ② reduced EF (old < 50%, 2020 AHA/ACC ≤ 55%) ③ LVESD > 50 mm (or LVESDi > 25 mm/m²); example: asymptomatic, normal EF, LVESD 30 mm → below threshold, follow (decoys say "operate").
- AS: any of the big three (angina/syncope/failure), or asymptomatic EF < 50% → replace; drugs don't change the course; prognosis in years/months (never just observe); TAVR now reaches intermediate/low risk (PARTNER 3, Evolut Low Risk).
- MS + AF + embolism → warfarin, Class I + optional Maze procedure at surgery.
- Ross procedure (autologous pulmonary valve to aortic seat + homograft rebuild): for the young, children, childbearing women (no anticoagulation, growth, pregnancy); not for the elderly (bioprosthesis achieves anticoagulation-freedom without the two-valve gamble).
- Mechanical < 50 leaning (durable, no reoperation); bioprosthetic > 65 (aortic)/> 70 (mitral) leaning; mechanical = warfarin only, DOAC contraindicated (RE-ALIGN failure); INR target 2.5–3.5 by valve type.
- Triangle of Koch (coronary sinus os, septal leaflet attachment, tendon of Todaro) — apex = AV node; deep tricuspid stitches → complete AV block ("no conduction worry in tricuspid surgery" is false).
- Traps: ① replacing an asymptomatic AR at LVESD 30 mm → below threshold; ② observing severe symptomatic AS on meds → drugs never change the course; ③ DOAC on a mechanical valve "to skip INR checks" → contraindicated; ④ Ross in the elderly → population reversed; ⑤ DOAC for embolized MS + AF → rheumatic disease takes warfarin.
- Commonest cause = idiopathic/viral (coxsackie by name); commonest symptom = chest pain.
- Pain eases leaning forward, worsens supine; friction rub = high-pitched scratch, clearest leaning forward at end-expiration, disappears as effusion grows (calling it low-pitched is the trap).
- ECG: diffuse ST elevation + PR depression (the fingerprint); four stages: ST up → baseline → T inversion → recovery.
- First line: NSAID (or aspirin) + colchicine (colchicine's recurrence cut is the core); steroids not first line — autoimmune, uremic, or refractory only.
- Beck's triad = hypotension + JVD + muffled sounds (no Kussmaul, no rub).
- Pulsus paradoxus (inspiratory SBP↓ > 10 mmHg) = tamponade's signature; uncommon in constriction.
- Kussmaul sign (JVP rises on inspiration) = constriction, RV infarct, severe TR — never tamponade (the high-frequency trap).
- Y descent: blunted in tamponade; steep and deep in constriction.
- Constriction cath = dip-and-plateau (square root), RV systolic < 50 mmHg (vs pulmonary hypertension).
- Management: tamponade → pericardiocentesis; constriction → pericardiectomy. Diuretics may decongest constriction — never in tamponade.
- Mechanism = MYH7 (commonest, β-myosin heavy chain) / MYBPC3 sarcomere mutations (AD) → asymmetric septal hypertrophy → systolic flow through a narrowed LVOT → Venturi effect sucks the anterior mitral leaflet septum-ward (SAM) → LVOT obstruction + MR (a leaflet pulled away cannot close).
- Pathology: myofiber disarray + interstitial fibrosis (DCM: stretched but orderly).
- Murmur dynamics: "emptier is tighter" — Valsalva strain / standing / nitrates → preload ↓ → small chamber → louder; squat / leg raise / handgrip → loads ↑ → softer (the exact inverse of AS).
- Treatment iron law = guard the loads and the rate: first-line β-blocker (slow, long diastole, less suction) or verapamil; no aggressive diuretics, no nitrates, no digoxin (all three empty the chamber). Severe obstruction: alcohol septal ablation / myectomy; the new agent mavacamten is a myosin inhibitor built for obstructive disease.
- ~3–8.5% (usually cited 3–5%, < 10%) burn out into DCM physiology; LVH emerges in adolescence (not at birth); SCD high-risk (family SCD, unexplained syncope, NSVT, wall ≥ 30 mm, flat exercise BP) → ICD.
- Traps: ① swollen legs → furosemide (+ nitrate + digoxin) → triple landmine; ② applying AS dynamics (louder on squatting) → reversed; ③ hypertrophy visible from birth → adolescence; ④ digoxin for "more squeeze" → harder suction, worse obstruction.
- Commonest primary cardiac tumor (benign); primaries ~75% benign; > 75% sit at the left atrial septum near the fossa ovalis.
- Clinical triad: embolism, obstruction (MS-like, positional, tumor plop), systemic symptoms (fever, weight ↓, ESR ↑ — mimics endocarditis).
- Female:male ≈ 2:1; some link to Carney complex.
- Diagnosis: echocardiography first (not CT); treatment = surgical excision (never anticoagulation alone once embolic).
- Childhood champion = rhabdomyoma (tuberous sclerosis) — never confuse with the adult myxoma.
- The four: DCM weak-pump balloon / HCM stiff self-plug / RCM stiff-but-normal-size (stuffed) / ARVC fat-replaced RV firing wild.
- DCM causes = alcohol, doxorubicin (dose-dependent), TTN mutations (commonest single-gene), viral myocarditis, peripartum (within 1 month post-delivery; Black women, twins, advanced age); histology "stretched but orderly" + fibrosis, no disarray.
- HCM hallmark = myofiber disarray (absent in DCM); ARVC biopsy = RV muscle replaced by fat/fibrosis (desmosome mutations).
- Cardiac amyloid = a leading RCM cause; thick walls + low ECG voltage (the mismatch fingerprint — amyloid fills space but conducts nothing); ATTR (elderly men or hereditary; carpal tunnel/macroglossia clues) → tafamidis; AL (plasma-cell light chains) → chemo ± auto-SCT; ultrastructure = non-branching 7.5–10 nm fibrils, Congo red apple-green birefringence.
- MI timeline: 0–4 h no light-microscope change, arrhythmia; 4–24 h coagulation necrosis + contraction bands; 1–3 d neutrophils + fibrinous pericarditis; 3–7 d macrophages, weakest wall → the three ruptures (free wall/tamponade, septum/acute VSD, papillary/acute MR); 1–2 wk granulation; > 2 wk collagen scar, Dressler, persistent ST → true aneurysm.
- Degenerative vs rheumatic: commissural fusion = rheumatic (commonest MS cause), "fish-mouth" valve, acute Aschoff body with central fibrinoid necrosis ringed by Anitschkow cells (owl-eye nuclei); nodular calcification, no fusion = degenerative (commonest elderly AS cause).
- Traps: ① thick walls auto-filed as HCM → elderly low-voltage should scream amyloid; ② DCM paired with disarray → that is HCM; ③ elderly MS labeled "nodular calcification" → MS is mostly rheumatic, fused commissures; ④ rupture on day 2 → the peak is days 3–5; ⑤ aneurysm's ST elevation read as re-infarction → chronic scar behavior.
- Classes: HFrEF EF < 40 / HFmrEF 41–49 / HFpEF ≥ 50; NYHA I–IV moves with therapy — 10 trips down to 5, fine at rest = Class II (mis-filed as III).
- Four pillars (survival) = ① ARNI (beats ACEI/ARB) ② β-blocker (Car-Bi-Met only: carvedilol/bisoprolol/metoprolol succinate; propranolol has no evidence) ③ MRA (spironolactone/eplerenone) ④ SGLT2i (dapagliflozin/empagliflozin, diabetes or not).
- Symptom-only (no survival): diuretics (furosemide), digoxin, hydralazine + nitrate (intolerance substitute), ivabradine (rate still > 70).
- Contraindicated: non-DHP CCB (verapamil, diltiazem) in HFrEF (strong negative inotropy); propranolol has no HFrEF survival data.
- BNP traps: obesity reads low (adipocyte NPR-C clearance; BNP 100 excludes nothing in the obese); renal failure, age, female, AF read high; ARNI raises BNP (unreliable) while NT-proBNP stays honest — track NT-proBNP.
- Among signs, the RV heave adds least to a left-failure/valve diagnosis (downstream consequence only).
- Traps: ① verapamil for HFrEF rate → banned, β-blocker instead; ② BNP rising on ARNI → not deterioration, sacubitril blocked degradation; ③ propranolol counted in GDMT → excluded; ④ digoxin counted as survival drug → symptoms/admissions only.
- Anticoagulants: UFH/LMWH/fondaparinux act through AT-III — indirect (UFH hits Xa + IIa, monitor aPTT; LMWH mostly Xa; fondaparinux pure Xa); -xabans directly inhibit Xa, dabigatran directly inhibits IIa; warfarin blocks the vitamin K cycle (II/VII/IX/X, proteins C/S), initially procoagulant — bridge with heparin; DOACs banned at mechanical valves and severe MS.
- Antiplatelets: aspirin irreversibly inhibits COX-1; P2Y12 antagonists (clopidogrel/prasugrel/ticagrelor); abciximab GP IIb/IIIa (final pathway); vorapaxar PAR-1.
- Antihypertensives by site: diuretics, β, CCB, ACEI/ARB, ARNI, α, central clonidine, direct hydralazine, mineralocorticoid antagonists.
- Natriuretic system: ANP/BNP → NPR-A → cGMP ↑ → diurese/dilate; neprilysin degrades them; sacubitril inhibits neprilysin (ARNI); nesiritide is recombinant BNP — neither is an inotrope.
- Inotropes ride cAMP (dobutamine β₁, milrinone PDE3); NO/nitrates ride cGMP (never cAMP).
- Ductus: ibuprofen closes the PDA (preterm); PGE₁ keeps it open (cyanotic disease).
- Transplant = last resort; contraindications: surgically correctable congenital disease, irreversible pulmonary hypertension (PVR > 5 WU, TPG > 15), active infection/malignancy, severe irreversible other-organ failure, inability to comply with immunosuppression.
- Irreversible pulmonary hypertension → consider heart-lung transplant.
- End-stage alternatives: LVAD (BTT or destination therapy); acute cardiogenic shock bridges = IABP/ECMO.
- IABP: inflate in diastole → coronary perfusion ↑; deflate before systole → afterload ↓. Contraindications: AR, aortic dissection.
- STITCH: both arms improved symptoms equally; SVR added nothing, survival unchanged (smaller volume ≠ longer life; primary endpoint 59% vs 58%, ESVI −19% vs −6%); the core of failure therapy remains GDMT.
- Primary cardiac tumors ~75% benign, myxoma first (adult, left atrial septum); metastases far outnumber primaries; malignant = angiosarcoma, lymphoma; children = rhabdomyoma (tuberous sclerosis).
- Chylomicron: gut → exogenous TG → periphery; apoB-48; LPL hydrolysis.
- VLDL: liver → endogenous TG → periphery; apoB-100; LPL hydrolysis.
- LDL: from IDL, delivers cholesterol outbound; apoB-100; cleared by LDL receptors.
- HDL: liver/gut → collects peripheral cholesterol → back to liver (reverse transport); apoA-I; LCAT esterification.
- Trap: LPL splits TG ≠ LCAT locks cholesterol.
- At any xanthoma ask the lipid first: eruptive = extreme TG; tendon = extreme LDL (FH); palmar = Type III (apoE2/E2).
- Above TG 1,000 the killer is acute pancreatitis, not CAD.
- Commonest primary hyperlipidemia = Type IV (VLDL up, TG up).
- I and V: LPL/apoC-II defects, extreme TG → pancreatitis, no atherosclerosis.
- Eruptive ≠ tendon — the exam's favorite swap.
- Four statin indications: established ASCVD; LDL ≥ 190 (suspect FH); DM 40–75 with LDL 70–189; 10-year risk ≥ 7.5%.
- Intensity = percent drop: high ≥ 50% (atorvastatin 40–80, rosuvastatin 20–40), moderate 30–49%; never absolute mg.
- LDL targets: very-high-risk < 55 (ESC), high-risk < 70; quoting < 100 is obsolete.
- High LDL → statin base; TG > 500 → fibrate first, pancreatitis before CAD.
- Statin mechanism = HMG-CoA reductase inhibition (not oxidase, not direct LDL binding); myopathy's leading mechanism = mevalonate → CoQ10 drained → mitochondrial failure.
- Grapefruit trap: inhibits CYP3A4 → simvastatin/lovastatin/atorvastatin levels climb → myopathy; pravastatin, rosuvastatin unaffected.
- PCSK9 = the LDL-receptor demolition crew: high activity → fewer receptors → higher LDL; LOF mutants live low-LDL and protected; the inhibitors (evolocumab/alirocumab) mimic LOF — the largest LDL drops of any class.
- Bile-acid resins banned in high TG (they raise it); niacin flush is PGD2, aspirin prevents.
- Traps: ① "PCSK9 LOF raises LDL" → reversed, it lowers; ② LDL < 100 as the very-high-risk target → obsolete; ③ TG 2,000 treated first with a statin → fibrate first, pancreatitis is the clock.
- ACC/AHA 2017: Stage 1 ≥ 130/80, Stage 2 ≥ 140/90.
- ESC/ESH: diagnostic line still ≥ 140/90 (2018/2023/2024 unchanged). <!-- Note: 2024 ESC adds an "Elevated BP" middle band (120–139/70–89) with an SBP 120–129 treatment target for the high-risk; 2025 ACC/AHA keeps the 2017 cutoffs (changing PREVENT risk assessment and strategy, not the diagnostic line). -->
- Taiwan 2022: home BP ≥ 130/80 = hypertension.
- Diagnosis: multiple days, or home/ambulatory BP; the white-coat effect is excluded at home.
- Primary ≈ 95%; secondary clues = young, abrupt, resistant, low K, nocturia, paroxysms, Cushingoid, arm > leg pressure.
- Low K + hypertension → primary aldosteronism (ARR screen).
- Paroxysmal headache and sweats → pheochromocytoma (metanephrines).
- Old diabetic smoker + creatinine jump on ACEI → renal artery stenosis.
- Snoring, obese, sleepy by day → OSA.
- Trap: hyperlipidemia is a risk factor, never a secondary cause.
- Most settings: renoprotective, afterload down, proteinuria down, heart-failure mortality down (diabetic nephropathy, CHF, HFrEF).
- Bilateral renal artery stenosis bans ACEI/ARB — mechanism: GFR is propped by AngII squeezing the efferent arteriole; remove AngII → efferent dilates, intraglomerular pressure collapses → creatinine leaps.
- Side-effect directions: potassium up (AngII blocked → aldosterone ↓ → potassium kept) — hyperkalemia is the contraindication, hypokalemia is not; dry cough (bradykinin); angioedema (rare, lethal); banned in pregnancy (fetal renal dysgenesis, oligohydramnios, calvarial hypoplasia).
- Unilateral RAS usually tolerates the drug (the healthy kidney compensates); bilateral is the absolute ban.
- Traps: ① creatinine 1.3 → 2.6 on ACEI called drug-induced AKI → it unmasked bilateral RAS; ② hypokalemia listed as an ACEI contraindication → reversed, it is hyperkalemia; ③ ACEI in pregnancy → teratogenic; ④ banning unilateral RAS too → only bilateral.
- Definition: BP > 180/120 + acute target-organ damage (encephalopathy, hemorrhagic/ischemic stroke, ACS, pulmonary edema, dissection, pre-eclampsia/eclampsia, acute AKI).
- Treatment: IV labetalol (α+β, single-agent capable), nicardipine, clevidipine, nitroprusside (cyanide on prolonged use) — titratable.
- Speed iron rule: MAP ≤ 25% down in hour one, ~160/100 by 2–6 h, target by 24–48 h; dissection excepted — SBP 100–120 fast.
- Why not slam: chronic hypertension shifted cerebral autoregulation upward — a plunge means cerebral hypoperfusion, ischemia.
- Urgency (extreme BP, no acute damage) → oral, gradual; no IV demolition.
- Pregnancy: labetalol / nifedipine / methyldopa; ACEI/ARB absolutely banned (renal dysgenesis, oligohydramnios, calvarial defects).
- Traps: ① IV nitroprusside for the asymptomatic 200/118 → urgency over-treated as emergency; ② halving MAP at once in an emergency → cerebral ischemia; ③ ACEI in pregnancy → teratogenic; ④ sick sinus or hyperlipidemia listed as emergency criteria → not on the organ list.
- Q = ΔP / R; R ∝ ηL/r⁴ → Q ∝ r⁴.
- Radius doubled → flow ×16 (not diameter, not squared).
- Viscosity ↑ (polycythemia) → Q ↓.
- MAP = CO × TPR; MAP ≈ DBP + ⅓ pulse pressure (not the plain average).
- Vasoconstriction dominates resistance — the fourth power at work.
- CO = HR × SV; SV runs on preload, afterload, contractility.
- Frank-Starling: preload ↑ → SV ↑ (rolls over past the ceiling).
- Pressure overload (AS, HTN) → concentric hypertrophy; volume overload (AR, MR) → eccentric, dilated.
- Chronic AR compensation = RAAS on → volume ↑ → Frank-Starling; decoy = salt-dumping/ANP (reversed).
- MAP ≈ DBP + ⅓ pulse pressure.
- Sensors: carotid sinus (CN IX), aortic arch (CN X).
- Center: medullary NTS (not the thalamus).
- Pressure ↑ → firing ↑ → parasympathetic ↑ / sympathetic ↓ → dilation, HR ↓, SV ↓ → pressure down.
- Orthostatic hypotension: within 3 min, SBP↓ ≥ 20 or DBP↓ ≥ 10 ("20/10, 3 minutes").
- Fibrous pericardium = pleuropericardial membranes + septum transversum fused; the membranes smuggled in the phrenic nerve + common cardinal vein.
- Serous parietal = somatic mesoderm; visceral (epicardium) = splanchnic mesoderm.
- Purkinje fibers = specialized cardiomyocytes (never neuronal).
- 10-year patency ranking: LIMA-LAD (> 90%) ≫ RIMA > radial > SVG (~50–60%); femoral unsuitable (wide, short, limb ischemia, far from field).
- Why arteries beat veins: endothelium continuously secreting NO + PGI₂ (antithrombotic, anti-proliferative), elastic media holding arterial pressure; a vein in arterial circulation runs "early intimal hyperplasia → late graft atherosclerosis."
- LIMA→LAD = the golden pairing, Class I; the IMA endothelium resists atherosclerosis best of all conduits.
- Radial as second conduit (2021 ACC/AHA Class I over SVG); requires target stenosis ≥ 70–90% (else it competes with native flow and closes), spasm-prone — CCB prophylaxis.
- BIMA cautions: poorly controlled DM (high HbA1c), obesity, advanced age, chronic steroids, renal failure (sternal supply halved → deep sternal wound infection, mediastinitis); inhaler-treated COPD is not a contraindication (standing decoy).
- Off-pump vs on-pump: ROOBY and CORONARY show equivalent long-term patency and survival; "off-pump patency is better" is the planted falsehood.
- Emergency CABG indications: STEMI mechanical complications (papillary rupture, septal perforation, free-wall rupture), acute left main unsuitable for PCI, failed PCI, cardiogenic shock + multivessel disease; life before washout (bleeding is replaceable, myocardium is not).
- Digoxin improves symptoms, never mortality; mortality belongs to the four GDMT pillars (ACEI/ARNI, β-blocker, MRA, SGLT2i).
- Traps: ① ranking SVG above LIMA-LAD; ② COPD inhalers as a BIMA contraindication; ③ off-pump as patency-superior; ④ delaying emergency CABG for ticagrelor washout → time is muscle; ⑤ counting digoxin among the survival pillars → it is not.
- MHC class I × 8, class II × 4; class III encodes complement/TNF and takes no part in presentation; neutrophils are not major APCs.
- Two-signal model: missing signal 2 → anergy (not activation); CD3 = ITAM, ITIM = KIR/PD-1 (CTLA-4 lacks a classic ITIM).
- The CTL's three weapons: perforin + granzyme + FasL; IFN-γ is not a direct killing mediator; ADCC belongs to NK cells/Fc receptors, not CD8.
- AIRE → medullary negative selection against peripheral tissue antigen → APECED; class I/TAP deficiency → CD8↓; class II (BLS-II, CIITA/RFX) → CD4↓.
- RLRs recognize RNA, cGAS recognizes DNA, NLRP3 → IL-1β; IFN-α is a cytokine, belongs to innate immunity, and is secreted by pDCs/infected cells.
- Complement converges on C3: C3b is an opsonin, C5a is a chemoattractant and anaphylatoxin; C5-9 deficiency = recurrent Neisseria; C1-INH deficiency = HAE; CD59 blocks the MAC.
- NK cells = missing-self; M cells only sample and transport.
- V(D)J (RAG+TdT, antigen-independent) → SHM/CSR (AID, germinal center); SHM acts only on the variable region; CSR adds no diversity.
- IgM: primary response/pentamer/strongest complement activation; IgG crosses the placenta; secretory IgA = 2 IgA + J chain (plasma cell) + secretory component (epithelium); IgA switching needs IL-10/TGF-β; IgG subclasses differ in Fc-receptor affinity.
- TI antigens (polysaccharides) elicit a poor response under age 2 → conjugation converts them to TD.
- Hyper-IgE/Job syndrome (STAT3) → Th17↓ → cold abscesses from Candida + Staphylococcus.
- Working backward from the infection fingerprint: antibody deficiency→enteroviruses/encapsulated organisms; T-cell deficiency→viruses/fungi/live vaccines are fatal; phagocyte deficiency→catalase-positive organisms; C5-9 deficiency→Neisseria meningitidis.
- Gene pairings: X-linked agammaglobulinemia (XLA)=BTK, Hyper-IgM=CD40L/AID, Wiskott-Aldrich (WAS)=WASp (not NF-κB), NEMO=NF-κB, ataxia-telangiectasia (AT)=ATM, DiGeorge=22q11, Hyper-IgE/Job=STAT3, chronic granulomatous disease (CGD)=NADPH oxidase, Mendelian susceptibility to mycobacterial disease (MSMD)=IFN-γR.
- Positive-selection defects: MHC class II→CD4↓; MHC class I/TAP→CD8↓.
- Severe combined immunodeficiency (SCID) is an absolute contraindication to live vaccines; X-linked SCID=IL-2Rγc (T⁻B⁺NK⁻); adenosine deaminase deficiency (ADA) (T⁻B⁻NK⁻).
- In chronic HIV, CTLs/antibodies are produced but their function fails; CD4<200→AIDS.
- Vaccines: polysaccharide=T-independent (TI), conjugate=T-dependent (TD); give conjugate vaccines under age 2; mucosal immunity requires an oral/mucosal route; pertussis=acellular (aP); poliovirus's only host=humans; HPV-16/18≈70% of cervical cancer; measles has a high R0, herd immunity≈95%.
- Transplant: hyperacute=preformed antibody; acute=T cells; chronic=vascular disease; the mixed lymphocyte reaction (MLR) does not reduce graft-versus-host disease (GVHD) — it activates T cells instead.
- Tumor: three phases of editing=elimination/equilibrium/escape (pruning, not shrinking); CTLA-4 on the T cell, PD-L1 on the tumor; trastuzumab→HER2; tyrosinase=a melanoma TAA.
- Tolerance: Treg=CD4⁺CD25⁺/FoxP3, not cytotoxic; FoxP3→IPEX; IL-10→inflammatory bowel disease (IBD); CTLA-4/FasL→autoimmunity.
- SLE: anti-dsDNA → TLR-9 → IFN-α; type 1 diabetes (T1DM) is cell-mediated and does not rely on IgG crossing the placenta; CD23 is not central to tolerance.
- Traps: writing WAS as NF-κB (it is actually the WASp cytoskeleton); using the MLR to reduce GVHD (it activates T cells instead); placing CTLA-4 on the tumor (it is actually on the T cell); claiming 60% coverage is enough for measles herd immunity (it needs ≈95%); claiming a T1DM mother's IgG crosses the placenta to transmit diabetes to her baby (it is cell-mediated and is not transmitted); claiming SCID patients can receive BCG (an absolute contraindication).
- Gell-Coombs types 1234 = IgE / cytotoxic IgG / immune complex / T cell; Graves' disease and myasthenia gravis belong to the receptor-mediated subtype of Type II; only Type IV does not depend on antibody.
- The complete Type I chain: sensitization (Th2→IgE) → binds FcεRI → cross-linking on re-exposure → degranulation (histamine + LTC4/D4) → immediate reaction + a late-phase reaction 4–8h later as IL-5 recruits eosinophils.
- The hygiene hypothesis = excessive cleanliness/antibiotics → a Th2 skew → allergy↑; the dust mite is visible under a light microscope.
- Anaphylaxis = epinephrine 0.3–0.5 mg IM into the thigh; antihistamines/corticosteroids are not life-saving drugs; hereditary angioedema (HAE) works through bradykinin, and antihistamines are ineffective.
- First line for chronic urticaria = a second-generation antihistamine (desloratadine); the step-up ladder: quadruple the dose → omalizumab → cyclosporine.
- Rheumatic fever: group A Streptococcus (Streptococcus pyogenes), an interval of 2–4 weeks, JONES, carditis is the most severe finding, erythema marginatum <5%; long-term penicillin prevents recurrence.
- Gynecology: bacterial vaginosis (BV, fishy odor + clue cells) / candidiasis (Candida albicans, curd-like discharge + itching) / trichomoniasis (Trichomonas vaginalis, green frothy discharge + strawberry cervix, an STI requiring the partner to be treated); pelvic inflammatory disease (PID) shows cervical motion tenderness, Fitz-Hugh-Curtis syndrome; ASB in pregnancy ≥10⁵ must always be treated (30–40% progress to pyelonephritis).
- Malaria: malignant malaria (P. falciparum) has an irregular, most lethal course (cytoadherence, blackwater fever); vivax malaria (P. vivax)/ovale malaria (P. ovale) carry a hypnozoite, requiring added primaquine (check G6PD); malariae malaria (P. malariae) carries immune-complex nephritis; IV artesunate is first-line for severe malaria.
- Amoebae: E. histolytica, 4 nuclei, pathogenic; Entamoeba coli, 8 nuclei, the largest, non-pathogenic; Acanthamoeba keratitis = contact lenses + tap water.
- Trematodes: schistosomes penetrate the skin with no metacercarial stage; other flukes are ingested as metacercariae; a snail is the shared first intermediate host; S. japonicum has the highest egg output/the worst Katayama fever; S. haematobium→bladder squamous cell carcinoma; the liver fluke (Clonorchis)→cholangiocarcinoma; the lung fluke (Paragonimus)→can reach the brain; the giant intestinal fluke (Fasciolopsis) stays confined to the small intestine; Fasciola→halzoun syndrome→triclabendazole; praziquantel for the rest.
- Traps: writing Graves' disease as Type I (it is actually the receptor-mediated subtype of Type II); writing the first line for anaphylaxis as IV or subcutaneous (it must be IM); giving HAE an antihistamine (ineffective; C1-INH/icatibant is required); writing rheumatic fever as group B or a 3-month interval (it is actually group A, 2–4 weeks); leaving asymptomatic bacteriuria in pregnancy untreated (it must always be treated); writing vivax as having no hypnozoite (it actually does, requiring primaquine to clear the liver).
- Structure: the scolex uses suckers and hooks to anchor to the gut; each proglottid is hermaphroditic and reproduces sexually; there is no digestive tract, and absorption occurs through the tegument.
- The fork: eat the larva (meat) → the human is the definitive host, intestinal taeniasis; eat the egg → the human is the intermediate host, a tissue lesion.
- The pork tapeworm is the only one with a dual identity: eating meat grows an adult worm in the gut, eating eggs grows a cyst in the brain (neurocysticercosis).
- The fish tapeworm competes for B12 → megaloblastic anemia; Echinococcus = ingesting eggs (from dog feces), forming a hepatic/pulmonary hydatid cyst — aspiration is forbidden.
- H. nana is the only tapeworm needing no intermediate host and can autoinfect; the dog flea tapeworm is transmitted via the flea.
- Treatment: praziquantel for intestinal tapeworms; albendazole for Echinococcus and neurocysticercosis (combined with corticosteroids).
- Roundworm/hookworm larvae migrate through the lungs (Löffler syndrome); pinworm is diagnosed by the morning tape test; heavy whipworm infection causes rectal prolapse; hookworm penetrates the skin and causes iron-deficiency anemia.
- Strongyloides stercoralis: can autoinfect; immunosuppression→dissemination + gram-negative sepsis; eosinophils may not rise; ivermectin is first-line.
- Angiostrongylus cantonensis: eating raw snails/slugs/greens→eosinophilic meningitis; the human is an accidental host, the definitive host is the rat.
- Trichinella: adult in the gut, larva encysted in striated muscle; periorbital edema + high eosinophils; confirmed by muscle biopsy, stool is useless.
- Onchocerca volvulus: transmitted by the blackfly→river blindness + subcutaneous nodules; does not cause pulmonary nodules; diagnosed by skin snip; ivermectin.
- Capillaria philippinensis: eating raw fish containing the larva (not the egg); Gnathostoma: migratory subcutaneous/periorbital swellings.
- Three broad classes: flyers (flies, sandflies, blackflies, mosquitoes) mostly transmit protozoa/filariae/viruses; crawlers, ticks and mites, mostly transmit rickettsiae/spirochetes; lice and fleas transmit typhus/plague.
- Tsetse fly → Africa, T. brucei, sleeping sickness (by bite); kissing bug → the Americas, T. cruzi, Chagas disease (by fecal contamination).
- Sandfly→kala-azar; blackfly→river blindness; chigger mite, larval stage→scrub typhus with an eschar.
- The hard tick Ixodes, one vector many diseases: Babesia + Lyme disease + Anaplasma co-infection.
- Division of labor among the three mosquitoes: Anopheles for malaria; Aedes (day-biting) for dengue/yellow fever/Zika/chikungunya; Culex for Japanese encephalitis + Wuchereria bancrofti.
- Name check: kala-azar (sandfly/Leishmania) ≠ blackwater fever (a complication of malignant malaria) ≠ the Black Death (rat flea/plague).
- SLE blood counts show "all three lineages falling" (hemolytic anemia, leukopenia, thrombocytopenia); C3/C4 fall during the active phase.
- ANA screens (sensitive); dsDNA tracks the course/nephritis; Sm is the most specific but does not change. Ro/La→neonatal lupus with heart block; histone→drug-induced lupus.
- JIA: onset <16 years, arthritis ≥6 weeks; subtyping looks at the joint count within the first 6 months (don't confuse the two "sixes").
- Oligoarthritis (ANA+) → chronic, asymptomatic anterior uveitis (requires follow-up); enthesitis-related (B27) → acute, symptomatic uveitis.
- Still disease: spiking fever + salmon-colored rash + MAS; anti-IL-6/IL-1 is first-line.
- Omalizumab is an anti-IgE agent and is unrelated to JIA — a distractor option.
- Live attenuated vaccines (oral rotavirus, intradermal BCG, subcutaneous varicella, subcutaneous MMR) are contraindicated in pregnancy and severe immunodeficiency.
- Two injectable live vaccines, if not given the same day, need at least a 4-week interval; inactivated vaccines carry no such restriction. Defer live vaccines for several months after recent IVIG/transfusion.
- Kawasaki disease = fever ≥5 days + CRASH ≥4 features; desquamation occurs in the 2–3-week convalescent period; IVIG + high-dose aspirin given within 10 days.
- Mycoplasma pneumonia: no cell wall→ macrolide; diagnosis relies on cold agglutinins/IgM/PCR.
- Graves' = TRAb (stimulating) → hyperthyroidism + exophthalmos; pathology is follicular hyperplasia + scalloping.
- Hashimoto's = anti-TPO/Tg (destructive) → hypothyroidism; pathology is lymphocytic infiltration + germinal centers + Hürthle cells.
- Distinguish Graves' by looking at the whole combination (hyperthyroidism + exophthalmos + TRAb), not lymphocytic infiltration alone.
- Behçet's: HLA-B51; three cardinal features — oral/genital/ocular; anterior uveitis is the most common (traditional teaching; cohort studies find panuveitis most common; ≠ the most severe); pathergy test.
- Healthy people are often ANA-positive (about 20–30% at 1:40, about 5% at 1:160); specificity is not 90%; anti-histone → drug-induced lupus.
- DNA general rule: double-stranded, replicates in the nucleus; exceptions: Parvo single-stranded, Poxvirus in the cytoplasm, HBV reverse transcription.
- Nonenveloped mnemonic "bare PPPA": Parvo/Papilloma/Polyoma/Adeno.
- Oncogenesis: HPV E6→p53, E7→pRb; SV40 large T→p53+pRb, small t→PP2A; adenovirus E1A/E1B; HHV-8→Kaposi; JC→oligodendrocytes, PML.
- Hepatitis nucleic acid: only B is DNA; HCV most prone to chronicity (~80%); HEV high fatality in pregnancy; HDV borrows HBsAg for its envelope.
- Negative-sense/dsRNA must carry its own RdRp; enfuvirtide is a peptide fusion inhibitor (gp41, subcutaneous).
- Influenza: HA for attachment, NA for release; oseltamivir inhibits NA; shift = reassortment pandemic, drift = point-mutation seasonal.
- LAIV restricted to healthy people aged 2–49; rabies→Negri bodies; EV71 death = brainstem encephalitis; rubella diagnosed by serum/PCR.
- Five targets: cell wall, 30S, 50S, DNA/RNA, folate synthesis; four resistance mechanisms: enzymatic degradation, target alteration, uptake/efflux, metabolic bypass.
- MRSA = PBP2a target alteration (β-lactamase inhibitors ineffective); VRE = D-Ala-D-Lac (both vancomycin and dalbavancin ineffective).
- Class B β-lactamase = metalloenzyme (Zn²⁺) that hydrolyzes carbapenems (NDM/IMP/VIM), unaffected by clavulanate.
- β-lactamase inhibitors themselves (except sulbactam, which is active on its own against Acinetobacter) have almost no bactericidal activity; they only protect the β-lactam.
- FQ resistance = GyrA/ParC mutation; sulfonamides strike folate synthesis (unrelated to PBP); linezolid = 50S initiation complex.
- Tuberculosis HRZE: INH → peripheral neuropathy (supplement B6); rifampin → orange-red fluids + CYP induction; pyrazinamide → hyperuricemia; ethambutol → optic neuritis/red-green color blindness.
- Three routes of horizontal transfer: transformation/transduction/conjugation (pilus transfers a plasmid, the main resistance route).
- Plasmid = circular dsDNA, replicates independently, found in both G+ and G−.
- Nonsense → a stop codon that truncates the protein; silent leaves the amino acid unchanged; missense swaps the amino acid.
- The lac operon = catabolite repression + lactose induction, dual control, unrelated to quorum sensing.
- Diphtheria toxin A → ADP-ribosylates EF-2; cholera→Gs/cAMP↑; Shiga→cleaves 28S rRNA.
- Tuberculosis: blocks phagosome-lysosome fusion; mycolic acid→acid-fast; high GC; membrane has no sterols; immunity is Th1.
- Prions contain no nucleic acid → UV is ineffective; routine autoclaving is not enough.
- Gram-negative: thin peptidoglycan, stains red, binary fission; LPS = O antigen + core + lipid A; O=LPS, H=flagellum, K=capsule; porins sit in the outer membrane.
- Kanagawa (+) = produces TDH; plague = flea regurgitation (not vomiting); Legionella is cleared by cell-mediated immunity.
- Catalase sorts staph from strep; only coagulase can distinguish S. aureus vs. S. epidermidis (catalase cannot).
- Group A S. pyogenes: bacitracin-sensitive, PYR(+); group B S. agalactiae: bacitracin-resistant, CAMP(+), hippurate(+), neonatal meningitis.
- S. saprophyticus: novobiocin-resistant, UTI in young women.
- Coagulase forms fibrin; staphylokinase dissolves fibrin (opposite directions).
- Protein A binds the IgG Fc portion, blocking opsonophagocytosis; TSST-1 is a superantigen.
- Diphtheria: humans are the sole host; the toxin gene sits on bacteriophage β (not a plasmid); ADP-ribosylates EF-2.
- Anthrax: PA + EF + LF; EF is a calmodulin-dependent adenylate cyclase; three forms = cutaneous/inhalational/gastrointestinal (CDC also lists injection anthrax), no muscle-necrosis form.
- Listeria: facultative intracellular, still grows at 4°C, tumbles at 25°C, polymerizes actin via ActA to move between cells.
- Pneumococcal vaccine = capsular polysaccharide (PCV is a conjugate vaccine), not a surface protein.
- STa/STb → ETEC; EF → anthrax (do not assign to S. aureus).
- Mucor = non-septate, broad, 90° right angle; Aspergillus = septate, 45° acute angle.
- Coccidioides turns into a spherule containing endospores in tissue, not a yeast.
- Malassezia culture requires olive oil; C. glabrata forms no hyphae; C. neoformans appears coffee-brown on birdseed agar; C. gattii infects immunocompetent hosts with more severe disease.
- Epidermophyton has no microconidia; Microsporum is rich in macroconidia; Trichophyton is rich in microconidia.
- Polyene = binds ergosterol directly and punches holes; azole/terbinafine = inhibit ergosterol synthesis; echinocandin = inhibits cell-wall β-glucan.
- Pneumocystis lacks ergosterol → amphotericin/azole ineffective; treat with TMP-SMX.
- Six-step chain: gp120 binds CD4 → gp41 binds CCR5/CXCR4 → membrane fusion → reverse transcription + integration → chronic viremia exhausts CD4 → CD4<200 enters AIDS.
- gp120 binds CD4 plus a coreceptor (R5/CCR5 or X4/CXCR4), and gp41 mediates membrane fusion; CCR5 Δ32 confers resistance to R5.
- CD4 < 200 → Pneumocystis pneumonia (PJP); < 100 → Toxoplasma/Cryptococcus; < 50 → cytomegalovirus (CMV)/Mycobacterium avium complex (MAC).
- AIDS-defining conditions include Kaposi sarcoma, non-Hodgkin lymphoma (NHL, including Burkitt/primary CNS lymphoma), and invasive cervical cancer; Hodgkin lymphoma does not count.
- Diagnosis: enzyme immunoassay (EIA) screening → must be confirmed by Western blot or antibody differentiation; the acute phase uses HIV RNA or p24 antigen.
- Vertical transmission: 25–30% untreated; < 1% with complete cART and undetectable virus (U=U).
- TB/HIV: CD4 < 50 → start ART within 2 weeks of anti-TB therapy; ≥ 50 → within 2–8 weeks; TB meningitis deferred to 4–8 weeks (starting early raises mortality instead).
- Protease inhibitors (PIs) cannot be combined with rifampin (CYP3A4 induction) → switch to rifabutin or nine months of isoniazid.
- Traps: treating a positive EIA as diagnostic (Western blot is required); waiting for antibody positivity in the acute phase (RNA/p24 is required); calling CD4<200 an early infection (it is already AIDS); listing Hodgkin lymphoma as AIDS-defining (it is not — only NHL is); starting ART early for TB meningitis just because CD4 is low (it must be deferred 4–8 weeks); prescribing rifampin for latent TB in a patient on a PI (it suppresses the PI's concentration).
- Sepsis five-step chain: PAMP/DAMP → TLR/PRR → massive cytokines (TNF-α/IL-1/IL-6) → systemic vasodilation + ↑permeability → distributive shock + lactate accumulation.
- Sepsis-3: sepsis = infection + organ failure; septic shock = vasopressor to maintain MAP≥65 + lactate>2.
- Cytokine storm = TNF-α/IL-1/IL-6; IL-5 belongs to allergy/eosinophils (distractor).
- 1-hour bundle: lactate → blood cultures → antibiotics within 1h → crystalloid 30 mL/kg → vasopressor.
- First-line vasopressor = norepinephrine; bicarbonate is not a priority (reserved for pH<7.2).
- Spontaneous bacterial peritonitis (SBP) main cause = G(−) enteric organisms (not G(+)); cellulitis tissue culture positivity 20–30% (not 70%).
- Traps: using SIRS as the sepsis standard (already retired); giving sodium bicarbonate first to suppress the acidosis (the real fix is fluids + antibiotics); skipping cultures before antibiotics; writing SBP as predominantly G(+); claiming cellulitis tissue-culture positivity >70%; calling vancomycin the first-line "pressor" for sepsis (the first-line vasopressor is norepinephrine).
- Mechanism: endothelial injury → sterile thrombus (NBTE) → bacteremic colonization → vegetation; course 4–6 weeks IV (a vegetation has no blood supply).
- Pairings: after dental work = viridans streptococci; tricuspid valve in IVDU = Staphylococcus aureus; early prosthetic valve = S. epidermidis; S. gallolyticus → look for colon cancer; culture-negative → think HACEK/Q fever/Bartonella.
- Duke major criteria number only two: typical-organism bacteremia + endocardial involvement (modified Duke; the 2023 Duke-ISCVID adds intraoperative findings); fever, Janeway lesions, and Osler nodes are all minor.
- Osler is painful (immune), Janeway is painless (embolism); TTE comes first, TEE is first-line for a prosthetic valve.
- Three major surgical indications: heart failure, uncontrollable infection (bacteremia ≥7–10 days), and prevention of embolism; fever in the first 3 days is not a surgical indication.
- Prophylaxis narrowed to: prosthetic valve/prior IE/cyanotic congenital heart disease + a dental procedure that breaches the mucosa; stop 6 months after complete repair; mitral valve prolapse (MVP)/atrial septal defect (ASD)/gastrointestinal or genitourinary procedures do not routinely need prophylaxis.
- Traps: treating Osler/Janeway as major (they are minor); listing ASD as high-risk for IE (no jet lesion, so risk is actually low); treating IE with a 4-week oral course (it must be 4–6 weeks IV); requiring dental prophylaxis for simple MVP (not needed); operating just because fever persists at 3 days (the surgical threshold is ≥7–10 days).
- Southeast Asia + diabetes + pulmonary infiltrates + splenic abscess + safety-pin appearance → melioidosis; intensive phase ceftazidime/meropenem → eradication phase TMP-SMX for 3–6 months.
- Pneumonia after a cruise + diarrhea + altered mentation + hyponatremia → Legionella.
- Wading through water + rat urine + conjunctival injection → Leptospira (contact, not mosquito-borne).
- Traveler's diarrhea: bismuth is contraindicated in children; azithromycin is first-line in Southeast Asia (safe in pregnancy).
- Suspected influenza in pregnancy → oseltamivir, must not be delayed; the common cold = rhinovirus.
- Jarisch-Herxheimer reaction 50–90%, self-limited, do not stop treatment; treatment remains benzathine penicillin G.
- FUO = >38.3°C, ≥3 weeks, cause not found; three major categories = infection/tumor/autoimmune; do not fire antibiotics blindly first.
- EBV triad = fever + pharyngitis + posterior cervical lymphadenopathy; incubation 30–50 days; ampicillin causes a rash; avoid contact sports with splenomegaly; CMV has a negative heterophile antibody.
- Ludwig's angina = lower-molar dental source, bilateral submandibular swelling, tongue base obstructs the airway; secure the airway first.
- Rhino-cerebral fungal infection (DKA): Mucor non-septate/right-angle; Aspergillus septate/acute-angle; treatment = debridement + amphotericin B.
- Osteomyelitis: predominantly S. aureus; X-ray first, MRI most sensitive; biopsy culture is the gold standard.
- CSF: low glucose → bacterial/tuberculous/fungal; normal glucose → viral; protein is high in all — differentiate by predominant cell type plus glucose.
- Listeria = G(+) bacillus; ampicillin is first-line, cephalosporins do not cover it; vancomycin/ciprofloxacin perform poorly.
- High-risk groups (neonate/>50/pregnant/immunocompromised): standard regimen + ampicillin.
- Dexamethasone before the first dose reduces hearing loss from pneumococcal disease.
- Cryptococcal three phases: induction with ampho+5FC ≥2 weeks, consolidation with fluconazole for 8 weeks, maintenance for ≥1 year; total >12 weeks.
- Tuberculous meningitis: culture is the gold standard; PCR is an adjunct and has not replaced it.
- Suspected HSV encephalitis → give acyclovir immediately; PCR can remain positive for several days of treatment.
- Three axes: device + positioning + resistant organisms; ventilator-associated pneumonia (VAP) prevention = head of bed elevated 30–45°, sedation vacation, oral chlorhexidine.
- Sucralfate does not raise gastric pH and does not increase VAP risk (vs. H2 blockers/PPIs).
- Alcohol rub fails for visibly soiled hands and after Clostridioides difficile–associated diarrhea (CDAD) → soap and water.
- Febrile neutropenia first-line = cefepime/pip-tazo/carbapenem (covering Pseudomonas aeruginosa); vancomycin is not first-line.
- Methicillin-resistant Staphylococcus aureus (MRSA) is resistant to all β-lactams (except ceftaroline); first-line is vancomycin; do not use daptomycin for pneumonia (inactivated by surfactant).
- No renal adjustment needed: metronidazole, azithromycin, ceftriaxone, moxifloxacin, linezolid, clindamycin, doxycycline.
- Chelation: tetracycline/fluoroquinolone vs. Ca/Mg/Al/Fe → separate dosing by 2 hours.
- Viral URI: purulent discharge is not evidence of bacterial infection; asymptomatic bacteriuria (except pregnancy, before urologic surgery) is not treated.
- Needlestick HIV PEP: best <2 hours, 72-hour cutoff → go to the emergency department that same night.
- Traps: alcohol rub alone after CDAD (soap and water is required); giving vancomycin first for febrile neutropenia (an antipseudomonal agent must come first); using daptomycin for pneumonia (inactivated by pulmonary surfactant); adding a β-lactamase inhibitor to kill MRSA (ineffective — the target has changed, it is not being cleaved by an enzyme); delaying a needlestick to the next day (PEP must start that same night).
- Fever = upper urinary tract/pyelonephritis; simple cystitis has no fever; most common organism = E. coli.
- Cervical spinal injury = spastic UMN; flaccid LMN requires injury at S2-S4 or lower.
- Imaging for recurrent infant UTI: ultrasound first → VCUG to rule out VUR; UPJ obstruction → pyeloplasty (not reimplantation).
- IC = no bacteria, no pyuria; the main cause of unresolved bacteriuria = resistance; think glomerular first for hematuria in children (once UTI is excluded).
- Terminal complement C5-C9 deficiency → recurrent Neisseria infection (check CH50, vaccinate against meningococcus).
- Organophosphates = DUMBELS (increased secretions, miosis); treatment = atropine + pralidoxime; physostigmine is contraindicated.
- Thunderclap headache + neck stiffness + loss of consciousness → SAH; non-contrast CT first-line → if negative but suspicion is high, do an LP for xanthochromia.
- Vertebral osteomyelitis favors the lumbar spine, is usually S. aureus, and MRI is first-line.
- Only two absolute contraindications: active infection (e.g., open pulmonary TB) and active malignancy; stable HIV, cancer cured for five years, and age >70 are all relative.
- Three great sensitizing factors: transfusion, pregnancy, previous transplant → PRA↑; eosinophilia is not a sensitizing factor.
- A positive cross-match = transplantation is absolutely forbidden; ABO incompatibility can be managed with desensitization (plasmapheresis + rituximab + IVIG) — it is not an absolute contraindication.
- Best timing: pre-emptive transplantation, before dialysis begins; living donation is superior to deceased donation.
- Native nephrectomy indicated for: symptomatic polycystic kidneys, recurrent pyelonephritis, renal cancer, refractory hypertension/proteinuria; controllable hypertension does not require removal.
- Post-transplant recurrence: high for FSGS and DDD; a minority of SLE also recurs (do not memorize it as "never").
- Asthma is Type I (IgE); epinephrine is the drug of first choice for systemic anaphylaxis (not antihistamines/steroids).
- SLE's five-step chain: complement deficiency (C1q/C3/C4) → failed clearance of apoptotic cells → self nuclear antigens exposed → autoantibodies form immune complexes → deposition activates complement and causes tissue injury (C3/C4 fall from consumption).
- SLE = immune complex (Type III); vascular fibrinoid necrosis, Libman-Sacks bilateral-surface vegetations (mitral valve), wire-loop lesions belong to diffuse proliferative (Class IV).
- Dense deposit disease (DDD): C3↓, factor B↓, C1 normal; C3 nephritic factor (C3NeF) stabilizes C3 convertase (not inhibits it).
- Immune thrombocytopenic purpura (ITP): anti-GPIIb/IIIa, bone marrow megakaryocytes increased, favors women of childbearing age.
- IgG4-related disease (IgG4-RD) — the least likely finding: neutrophilic infiltrate.
- Myasthenia gravis (MG), thymus: follicular hyperplasia is most common; only about 15% is thymoma.
- Traps: SLE active phase "C3/C4 rise" (actually fall from consumption); lupus nephritis deposit written as anti-GBM (actually an immune complex); wire-loop filed under Class V membranous (actually Class IV diffuse proliferative); DDD with "C1 also low" (only the alternative pathway burns; C1/C4 are normal); ITP "megakaryocytes decreased" (actually compensatorily increased); MG "usually thymoma" (follicular hyperplasia is actually the most common).
- VZV reactivation: blisters along a single unilateral dermatome, not crossing the midline; antiviral therapy within 72 hours.
- Erythrasma = bacterial (Corynebacterium), coral-red fluorescence (coproporphyrin III), treated with an antibiotic (first choice; topical azoles also work).
- Tinea versicolor: yellow-green/gold; tinea capitis: green; erythrasma: coral-red; vitiligo: bright white (no infection).
- Scabies confirmation: microscopy showing mite/eggs/fecal pellets, any one suffices; first choice permethrin; lindane is neurotoxic, contraindicated in pregnancy and children; first-infection incubation 4–6 weeks.
- Warts = HPV (not S. aureus); most common opportunistic fungus in immunocompromise = Candida.
- Anti-dsDNA, anti-Sm = specific for SLE; anti-SSB/La = most specific for Sjögren (SSA/Ro is not specific).
- DILE = anti-histone (+), dsDNA (−), complement normal, little renal involvement, resolves with withdrawal; drug mnemonic HIP (hydralazine, isoniazid, procainamide).
- DLE → SLE progression rate only about 5%; SLE's cutaneous ACR items = malar rash, photosensitivity, discoid rash, oral ulcers (urticaria does not count).
- Systemic sclerosis = Raynaud (>90%), skin sclerosis, ANA (+); heliotrope is dermatomyositis, not sclerosis.
- Sclerosis skin sclerosis (mainly localized scleroderma; systemic sclerosis skin → MTX or MMF first) → UVA1 phototherapy; digital ulcers → vasodilator (not a topical steroid).
- First question: does the split lie within the epidermis (pemphigus) or beneath it (pemphigoid)?
- Pemphigus: Nikolsky positive, flaccid, DIF intercellular chicken-wire; pemphigoid: Nikolsky negative, tense, DIF linear basement membrane.
- PV, anti-Dsg3 → oral mucosa affected first, suprabasal split, tombstoning; PF, anti-Dsg1 only → most superficial layer, no mucosal involvement.
- BP vs. EBA: indistinguishable on H&E; salt-split DIF — BP's antibody stains the roof, EBA's the floor.
- Gottron papules (violaceous papules over the dorsal finger joints) are pathognomonic for dermatomyositis; heliotrope is highly suggestive but not pathognomonic; dermatomyositis is often pruritic and is associated with malignancy.
- CSF triad: low glucose + neutrophils = bacterial; normal glucose + lymphocytes = viral; low glucose + lymphocytes + high protein = tuberculous/fungal.
- Management: blood cultures → antibiotics immediately (+ dexamethasone) → then CT/LP; never delay for cultures.
- Empiric therapy in adults: ceftriaxone + vancomycin; add ampicillin (for Listeria) if >50 or immunocompromised; neonates: ampicillin + cefotaxime.
- HSV encephalitis: anterior temporal hemorrhagic necrosis; start acyclovir on suspicion alone; EEG = PLEDs.
- Neurosyphilis: serum treponemal (+) + CSF VDRL (+); IV penicillin.
- Tuberculous meningitis should have steroids added (not contraindicated). The Cushing reflex is a slow heart rate (not fast).
- vCJD: young, linked to beef, psychiatric symptoms come first; CJD's EEG = PSWC ≈ 1 Hz triphasic waves.
- Central = oligodendrocyte (MS/NMOSD/MOGAD/CPM); peripheral = Schwann cell (GBS/CIDP).
- NMOSD = anti-AQP4 (attacking astrocyte AQP4), LETM ≥3 segments, female:male 9:1, often coexists with other autoimmune disease; thymoma belongs to MG, not NMOSD. MOGAD = anti-MOG.
- MS: incidence↑ at high latitude, female:male 2:1; CSF protein <100, usually <50; oligoclonal bands (+) (serum negative).
- GBS: post-infectious autoimmunity, ascending symmetric weakness + areflexia, CSF albuminocytologic dissociation; treatment IVIG/plasmapheresis, steroids do not work.
- CPM: hyponatremia corrected >8–10 mEq/L/24h → onset only after 1–5 days.
- SCD (B12): knee-jerk↑, ankle-jerk↓, pain/temperature sensation normal, vibration sense lost, plus a history of veganism.
- Calcium oxalate: do not restrict dietary calcium (restricting it actually raises urinary oxalate↑); only uric acid and cystine stones can be dissolved by alkalinizing the urine.
- Uric acid stones: radiolucent, acidic urine; treatment alkalinize urine + allopurinol; probenecid/benzbromarone are contraindicated (uricosurics worsen the stone).
- Struvite = urease-producing bacteria (Proteus), staghorn calculus; E. coli, 75–85%, is the most common cause of community-acquired UTI.
- ASB is treated only in pregnancy and before urologic surgery; not treated in the elderly, diabetics, or catheterized patients.
- Obstruction + infection = a surgical emergency: emergency double-J stent or PCN + antibiotics; antibiotics alone are not enough.
- Ureteral stones: first choice URS (superior to ESWL); <5–6 mm can be managed conservatively.
- Reflux nephropathy = asymmetric atrophy + irregular contour; calling it "symmetric" is wrong.
- Omalizumab binds IgE's Fc-epsilon segment → allergic asthma, chronic spontaneous urticaria, peanut allergy.
- Abatacept = CTLA-4-Ig, occupies B7 to block CD28's second signal; not a TNF antagonist.
- Etanercept = TNF-receptor fusion protein (decoy); infliximab/adalimumab = anti-TNF monoclonal antibodies.
- -mab/-cept are injected; -tinib (JAK) is oral; RA's first-choice conventional DMARD = methotrexate.
- Every TNF inhibitor requires screening for LTBI and HBV before starting; may trigger demyelination and DILE.
- Cyclosporine/tacrolimus → calcineurin → IL-2↓; sirolimus → mTOR, lowest nephrotoxicity.
- Echinacea is immune-enhancing (not suppressive), an adjunct for upper respiratory tract infection.
- Sort the target first: cell wall/30S/50S/DNA gyrase/RNA polymerase/folate/cell membrane.
- Amoxicillin resistance = β-lactamase hydrolysis (countered by adding clavulanate); PBP mutation = MRSA.
- Imipenem must be paired with cilastatin (a DHP-I inhibitor that protects the drug).
- Cefepime + amikacin act synergistically (breaching the wall to let the drug penetrate); aminoglycosides are concentration-dependent (once-daily, high-dose), β-lactams are time-dependent; aminoglycosides are naturally resistant against anaerobes, toxicity = renal + ototoxic.
- Sulfonamide selectivity: the human body does not make its own folate, taking it from food instead; side effects — SJS/G6PD hemolysis/kernicterus.
- Acyclovir is a prodrug requiring viral TK; has no effect on latent infection; TK mutation = resistance.
- Oseltamivir is not used for HIV (that's the influenza drug); tenofovir is less effective against adefovir-resistant strains.
- Polyenes bind ergosterol directly; azoles inhibit the synthesis of ergosterol.
- Light's criteria: protein ratio >0.5, LDH ratio >0.6, LDH > 2/3 the upper limit of normal — any one makes it an exudate.
- Malignant effusion, overall most common = lung adenocarcinoma; in women = breast cancer; for recurrent effusion, first choice talc pleurodesis (the best option, not the worst; an indwelling pleural catheter is also first-line when the lung is expandable).
- Parapneumonic effusion pH <7.2 = a chest tube is required; antibiotics alone are insufficient. S. aureus bacteremia can spread to the lung hematogenously and cause multiple abscesses.
- Aspergilloma with hemoptysis: surgery is the first choice (antifungals penetrate poorly); mechanism = colonization inside an old tuberculous cavity.
- Bronchogenic cyst, CPAM, and sequestration favor resection even when asymptomatic; CPAM carries malignant potential.
- Pancoast→Horner (ptosis + miosis + anhidrosis); superior mediastinum→SVC syndrome; pseudopolycythemia = dehydration, unrelated to the thorax.
- Sarcoidosis = non-caseating; TB = caseating; sarcoidosis involves the lung in >90% of cases.
- A new bone lesion in a patient >40 should first suggest metastasis (breast/lung/thyroid/kidney/prostate); prostate cancer is blastic.
- Osteosarcoma: ages 10–20, metaphysis around the knee, nighttime pain, sunburst/Codman triangle, ALP↑; ~15–20% already have lung metastasis at diagnosis.
- Osteoid osteoma: diaphysis, nighttime pain, markedly relieved by NSAIDs; osteoblastoma responds poorly to NSAIDs and requires surgery.
- Osteochondroma on a flat bone carries a higher risk of malignant transformation; MHE is autosomal dominant with high penetrance.
- Chondrosarcoma grading requires all three together (clinical + radiologic + pathologic).
- Diabetic foot osteomyelitis: X-ray lags 2–3 weeks; MRI is most sensitive; a normal early X-ray cannot rule it out.
- Paget's disease: both resorption and formation are ↑, mosaic cement lines, ALP↑; treatment bisphosphonate (not PTH).
- Fibrous dysplasia: blood tests are usually normal; ground-glass appearance.
- Sacral pain after pelvic radiotherapy + the Honda sign = an insufficiency fracture, not metastasis/recurrence.
- Category 2 notifiable communicable disease, reported within 24 hours; four serotypes, a second infection with a different serotype causes severe disease via ADE.
- Aedes aegypti: south of Budai, Chiayi, indoors, prefers human blood, bites multiple people → the primary vector in the south; Aedes albopictus: island-wide below 1,500 m, outdoors, lower transmission efficiency.
- The 24–48 hours around defervescence is the warning period for plasma leakage, not the recovery period.
- Warning signs: abdominal pain, persistent vomiting, fluid accumulation, mucosal bleeding, lethargy/restlessness, hepatomegaly >2 cm, hematocrit↑ + platelets↓.
- Diagnosis: within 5 days, NS1/RT-PCR; after 5 days, IgM/IgG.
- Treatment: fluids + acetaminophen; aspirin/NSAIDs contraindicated; the core of prevention is eliminating man-made standing-water breeding sites.
- In 2015 the nation's locally acquired cases exceeded 43,000 (the most severe on record); Tainan saw another large outbreak in 2023.
- Category 3 notifiable communicable disease, reported within one week; a Flavivirus.
- Culex tritaeniorhynchus is the main vector, breeding in rice paddies and irrigation ditches; active at dusk and dawn.
- Pig = amplifying host; human = dead-end host, no person-to-person spread.
- Epidemic season May–October, peaking June–July; encephalitis may show an extrapyramidal syndrome.
- Current vaccine: cell-culture-derived live attenuated chimeric vaccine (17D backbone + SA14-14-2's prM/E), first dose at 15 months, second dose 12 months later; contraindicated in pregnancy and severe immunocompromise.
- The 1998 epidemic: 405 severe cases, 78 deaths, a 19.3% case-fatality rate among severe cases; it led to the establishment of the Centers for Disease Control in 1999.
- Fatal mechanism = brainstem encephalitis → neurogenic pulmonary edema/cardiopulmonary failure (not dehydration, not latent infection).
- Four prodromal signs of severe disease: myoclonic jerk during sleep, persistent vomiting, tachypnea or tachycardia, lethargy and poor activity/limb weakness.
- From prodrome to severe disease, the window can be as short as 8–12 hours → send to a major hospital immediately if any one sign appears.
- A non-enveloped virus → alcohol hand rub works poorly; requires soap-and-water scrubbing + chlorine-based bleach for environmental disinfection.
- Enterovirus infection with severe complications = Category 3, reported within one week.
- Reporting is a statutory duty: the deadline is counted in hours, and the middle of the night and holidays count the same; report on suspicion, do not wait for culture.
- Categories 1, 2, and 5: 24 hours; Category 3: one week; Category 4: as announced (mostly 24 hours; Creutzfeldt-Jakob disease: 1 month).
- Rabies = Category 1; dengue, Hantavirus, both forms of dysentery = Category 2; tuberculosis, Japanese encephalitis, severe enterovirus disease, HIV = Category 3; scrub typhus, melioidosis, leptospirosis, Q fever, invasive pneumococcal disease = Category 4.
- Scrub typhus: east coast and outlying islands, bitten by the mite's larval stage, eschar hidden under clothing, doxycycline is first choice at every age.
- Leptospirosis: after flooding, rat urine, calf pain + conjunctival suffusion, Weil's disease = jaundice + renal failure + hemorrhage.
- Melioidosis: after typhoon rains, diabetes is the highest risk, safety-pin morphology, ceftazidime/meropenem → TMP-SMX for 3–6 months.
- Q fever: aerosol from cattle/sheep parturition, occupational exposure, one cause of culture-negative endocarditis.
- Rabies PEP: soap and copious water for ≥15 minutes, plus vaccine, plus (for the previously unvaccinated) HRIG infiltrated around the wound; the wound should not be sutured immediately; there is no "wait and see" option.
- Invasive pneumococcal disease = isolation of the organism from a sterile site (a positive sputum culture does not count); asplenia is high risk.
- Ordinary tuberculosis = Category 3, reported within one week; multidrug-resistant tuberculosis (MDR-TB) = Category 2, reported within 24 hours.
- Taiwan's incidence fell from about 73 per 100,000 in 2005 to about 25 per 100,000 in 2025, with new cases at 5,742, dropping below six thousand for the first time; target is elimination by 2035.
- MDR-TB is selected for by an interrupted course, not by the patient's constitution; so the core of control is DOTS (directly observed therapy).
- Latent tuberculosis infection (LTBI) causes no disease, is not contagious, and comes with a normal X-ray; roughly a 10% lifetime risk of progression, higher in the immunocompromised.
- BCG interferes with the TST (false positives) but not with IGRA (ESAT-6/CFP-10 come from the RD1 region deleted from BCG).
- Taiwan's current LTBI regimens: 3HP (once weekly, 12 doses total), 3HR, 4R, 9H, plus 1HP and 6H; the shorter the course, the higher the completion rate.
- HIV infection = Category 3, reported within one week; anonymous screening is designed to lower the psychological barrier of identity exposure.
- U=U: regular treatment that brings the viral load to undetectable means no sexual transmission → treatment is prevention.
- PrEP publicly funded groups (current Taiwan policy): the spouse or sexual partner of a person with HIV (women prioritized); citizens 35 or younger at high risk; those in chemsex addiction treatment and sex workers are exempt from the age limit.
- HIV-negative status must be confirmed before prescribing PrEP; using it by mistake during the window period → induces drug resistance; the acute phase relies on HIV RNA/p24.
- PEP = within 72 hours after exposure, 4-week course (a needlestick is an emergency — handle it that same night).
- Taiwan was once a hepatitis B high-prevalence region, with mother-to-child vertical transmission as the dominant route.
- The younger the age at infection, the higher the chronicity rate (about 90% in infancy) → so the interception point is the first vaccine dose within 24 hours of birth (plus HBIG if the mother is e-antigen-positive).
- Starting July 1984 for newborns of carrier mothers, expanded to all newborns in July 1986 — the world's first program of its kind; the pediatric carrier rate fell from about 10% to under 1%, and childhood hepatocellular carcinoma dropped sharply (1997, *NEJM*).
- Hepatitis D borrows HBsAg as its envelope → the hepatitis B vaccine simultaneously prevents hepatitis D.
- No vaccine exists for hepatitis C (E1/E2 are highly variable); DAA course 8–12 weeks, cure rate near 99%.
- Taiwan added DAAs to National Health Insurance in 2017 and removed the liver-fibrosis threshold for full reimbursement starting January 2019; reached the WHO elimination target ahead of schedule in 2025.
- Acute viral hepatitis B, C, D, and E are all Category 3 notifiable diseases, reported within one week.
- Resistance = a product of selective pressure; the hospital = a three-in-one breeding ground of high antibiotic density + weak host + invasive catheters.
- CRAB: Taiwan's medical center ICU resistance rate rose from 59.6% in 2008 to 70.6% in the third quarter of 2017; mechanism = OXA-type carbapenemase + porin loss + efflux pumps; desiccation-tolerant, survives weeks on surfaces → environmental cleaning and contact precautions matter equally.
- MRSA = a target change via mecA/PBP2a, unaffected by β-lactamase inhibitors; CA-MRSA carries PVL, causing skin abscesses and necrotizing pneumonia.
- CRE: KPC (class A) and NDM/IMP/VIM (class B metallo-enzymes, zinc-dependent, unaffected by clavulanate).
- ASP's four D's: right Drug/Dose/De-escalation/Duration; strategy = prospective audit and feedback + preauthorization; Taiwan adds National Health Insurance reimbursement rules as an extra lever.
- The four HAI categories = VAP/CAUTI/CLABSI/SSI; shared structure = tube + time + host, with biofilm defeating the drugs → daily assessment and early removal is the common closing line of every bundle.
- CLABSI bundle: hand hygiene, maximal sterile barrier precautions, chlorhexidine, avoid the femoral vein, scrub the hub. CAUTI bundle: insert only with an indication, closed drainage, collection bag below the bladder and off the floor, remove as early as possible.
- The five moments for hand hygiene: before touching a patient, before an aseptic procedure (protects the patient); after body-fluid exposure, after touching a patient, after touching the environment (protects you and the next patient).
- Three transmission-based precaution routes: contact (MRSA/CRAB/*C. difficile*); droplet (influenza, pertussis, meningococcus) → surgical mask; airborne (tuberculosis, measles, varicella) → negative-pressure isolation room + N95. Measles and varicella are airborne, not droplet (a high-frequency trap).
- SARS, 2003: the Heping Hospital lockdown exposed the errors of collapsed in-hospital infection control and "isolation that became congregation"; it gave rise to revision of the Communicable Disease Control Act, a negative-pressure ward network, infection control audits, fever screening, and the TOCC intake routine.
- COVID-19: the mask name-based rationing system replaced price competition with quota sales through the National Health Insurance card; now classified as Category 4 notifiable disease "COVID-19 with severe complications."
- Sequence: TSH → ultrasound → (risk-based) FNA; only a low TSH triggers a radionuclide scan to rule out a hot nodule.
- PET, CA markers, physical exam alone, and proceeding straight to surgery are all common wrong answers.
- Bethesda III/IV is the gray zone requiring molecular testing or lobectomy; V/VI go straight to surgery.
- Papillary (most common, lymphatic), follicular (hematogenous, hard to confirm by FNA), medullary (calcitonin, MEN2), anaplastic (dismal prognosis).
- Differentiated cancer is followed with Tg; medullary cancer with calcitonin plus CEA; the most important risk factor = history of head and neck radiation.
Thyroid nodule evaluation
- Storm regimen: PTU + propranolol + hydrocortisone + iodine (1 hour after the ATD).
- Iodine must never precede the ATD; amiodarone (iodine-containing) is contraindicated; fever + sore throat on an ATD → check WBC/ANC to rule out agranulocytosis.
- First-line for routine hyperthyroidism: methimazole; PTU is preferred only in storm and the first trimester of pregnancy.
- Total thyroidectomy raises complication risk (not lowers it): hypoparathyroidism (postoperative perioral numbness, Chvostek/Trousseau signs), RLN injury (bilateral = airway obstruction).
Thyroid storm and total thyroidectomy
- Mass in age <40/pregnancy/lactation → ultrasound; mammography primary at ≥40.
- CA15-3 cannot diagnose breast cancer (used only to monitor metastasis); a normal exam does not stop follow-up; proceeding straight to surgery or relying on PET alone are both wrong.
- Chemotherapy decision factors: size, nodal status, ER/PR/HER2, Ki-67/grade; tumor location is not a decision factor.
- Medial upper-arm numbness after axillary clearance = intercostobrachial n.; winged scapula = long thoracic n.
- Absence of skin dimpling cannot rule out breast cancer (high PPV ≠ high sensitivity).
- Pituitary apoplexy: severe headache + bitemporal hemianopsia + acute hypopituitarism → steroids first ± decompressive surgery.
Breast masses and pituitary apoplexy
- Classification: sleeve/AGB/VBG = purely restrictive; RYGB = restrictive + malabsorptive; BPD/DS = strongly malabsorptive (not purely restrictive).
- Most common = sleeve; RYGB is first-line for severe GERD; target population = type 2 diabetes (not type 1).
- Indications: BMI ≥ 40, or ≥ 35 + comorbidity (2022 guideline: recommended at ≥ 35) (threshold can drop to ≥30 for poorly controlled T2DM); psychiatric evaluation is mandatory — "decided at a family meeting" and "no psychiatric evaluation needed" are both wrong.
- The mechanism is not purely mechanical: GLP-1↑, PYY↑, ghrelin↓; glycemic improvement often precedes weight loss.
- Complications: early leak (often requires surgery), nutritional deficiency (worst with malabsorptive procedures), dumping, gallstones.
Bariatric surgery
- Incarcerated vs strangulated: incarcerated is irreducible but blood flow is still intact; strangulated has interrupted blood flow with tissue death — emergency.
- Direct vs indirect (relative to the inferior epigastric artery): direct is medial, indirect is lateral; femoral hernia is below the inguinal ligament, more common in women, highest incarceration rate.
- Standard repair = tension-free Lichtenstein mesh; bowel obstruction plus a groin mass in an elderly patient = incarcerated hernia.
- TAPP has more space, TEP is tight; preperitoneal repair must not ligate the lateral femoral cutaneous nerve (meralgia paresthetica); avoid placing tacks in the "triangle of doom/pain."
- Elective repair after MI is delayed ≥6 months (current ACC/AHA: ≥60 days); most common short-term postoperative complication = pain; SILS umbilical fascia = absorbable suture.
- When a patient requests treatment outside the indication (e.g., albumin) → decline professionally after thorough discussion.
Hernias
- Sequence: APC → KRAS → TP53/SMAD4; adenoma to carcinoma takes about 5–10 years (10–15 years); "1–2 years" is always wrong.
- Two fast lanes: serrated (BRAF/MSI), Lynch (MMR deficiency).
- Risk: age, low-fiber diet high in red meat, family history, IBD, obesity/sedentary lifestyle (increases, not decreases), smoking and alcohol.
Colorectal cancer mechanism and risk
- Stage III colon cancer: FOLFOX/CAPOX adjuvant chemotherapy, no targeted therapy added.
- Stage IV: chemotherapy plus targeted therapy (bevacizumab; cetuximab/panitumumab restricted to RAS wild-type, left-sided).
- Locally advanced rectal cancer: neoadjuvant chemoradiation → TME → adjuvant chemotherapy.
- TME protects the autonomic nerves → sexual dysfunction does not increase; laparoscopic vs open surgery: comparable oncologic outcomes, faster recovery.
- Hereditary syndromes: PJS = STK11, hamartomas plus mucocutaneous pigmentation; FAP = APC, carpeted with adenomas; Lynch = MMR, fewer polyps but fast, MSI-high, predominantly right-sided.
Staged treatment and surgery
- The levator ani = puborectalis + pubococcygeus + iliococcygeus; the piriformis/gluteus maximus are not included.
- Above the dentate line: columnar/transitional epithelium, IMA → portal vein, autonomic nerves (painless), internal iliac nodes, internal hemorrhoids.
- Below the dentate line: squamous epithelium, internal pudendal → IVC, pudendal n. S2–S4 (painful), superficial inguinal nodes, external hemorrhoids.
- The middle rectal artery = the internal iliac artery (not the IMA); IMA branches = left colic/sigmoid/superior rectal.
- The sigmoid colon's propensity to perforate = diverticula + small diameter → high intraluminal pressure by Laplace's law, not a thinner bowel wall.
Anal canal anatomy
- ACS: bladder pressure (not a nasogastric tube); sustained IAP ≥12 = IAH; >20 plus organ dysfunction = ACS; CVP is falsely elevated, has a clear effect on breathing, heart rate rises reflexively, renal blood flow↓ → oliguria; definitive treatment = decompressive laparotomy.
- UGIB vs LGIB divided by the ligament of Treitz; LGIB includes the jejunum (traditional; now termed small-bowel bleeding); about 80% stops spontaneously.
- Free air under the diaphragm on an upright film, most common cause = perforated peptic ulcer (not cholecystitis/pneumothorax/liver abscess).
Three questions in the acute abdomen
- Diverticulitis favors the sigmoid colon; Hinchey III/IV → emergency surgery; a colovesical fistula = elective surgery; a small abscess can be managed with CT-guided drainage; chronic anemia is not an indication for emergency surgery.
- UC: mucosal, continuous, rectum upward, can show backwash ileitis, more often associated with PSC, flares with smoking cessation.
- Crohn's: transmural, skip pattern, mouth to anus, fistulas/perianal disease, worsened by smoking.
- Free air under the diaphragm = perforated peptic ulcer is the most common cause.
Diverticular disease, IBD, and perforation
- Double-bubble + bilious vomiting = duodenal atresia (~30% associated with Down syndrome); single bubble + projectile bile-free vomiting + olive-shaped mass + hypochloremic, hypokalemic alkalosis = hypertrophic pyloric stenosis.
- Bile is the watershed: bilious vomiting = obstruction below the ampulla.
- Gastroschisis: beside the umbilicus, no membrane, few associated anomalies; omphalocele: at the midline, has a membrane, about 50% associated anomalies.
Neonatal gastrointestinal obstruction plus abdominal wall defects
- NEC: prematurity + ischemia + feeding → pneumatosis intestinalis; usually conservative (NPO, decompression, antibiotics, fluids), free air (perforation) is what mandates surgery; portal venous gas = severe disease.
- Thyroglossal duct cyst = midline, moves with swallowing, Sistrunk procedure; branchial cleft cyst = anterior border of the SCM; cystic hygroma = transilluminates in the posterior neck.
- A supraclavicular lymph node → highly suspicious for malignancy, biopsy; cervical teratoma is extremely rare.
- Neonatal teratoma favors = the sacrococcygeal region (40–70%); early diagnosis and early surgery give a better prognosis; excising the coccyx reduces recurrence.
NEC/neck masses/teratoma
- Monkey bite → herpes B virus → acyclovir/valacyclovir (antiviral); fatality rate about 80%; irrigate the wound copiously for ≥15 minutes.
- Dog/cat/human bite → Pasteurella/Eikenella → Augmentin.
- Seawater/fish spine → Vibrio vulnificus → fluoroquinolone + a third-generation cephalosporin; freshwater → Aeromonas → fluoroquinolone.
- Common to all: debridement, delayed closure in most cases, tetanus booster, rabies risk assessment.
Bite wounds
- Logic: never go complex when simple will do; exposed bare bone/tendon/hardware → a flap is mandatory, a skin graft is not an option.
- Skin grafts: FTSG, thick dermis → least contracture; STSG, thin → most contracture; the three chief causes of failure = shear, hematoma, infection.
- Mathes-Nahai: I gastrocnemius, II soleus, III gluteus maximus/rectus abdominis, IV sartorius (no free flap), V latissimus dorsi/pectoralis major.
- The pectoralis major's vascular pedicle = the thoracoacromial artery (not the internal mammary); the radial forearm flap = fasciocutaneous type B.
- Microsurgery = large defects, free tissue transfer, vascular/nerve repair; "small area" is always wrong.
- Ischemia: muscle warm ischemia 1–2 hours, skin 4–6 hours; digit warm ischemia ≤12 hours/cold 24 hours; limb warm ischemia ≤6 hours; when cooling, never immerse directly in ice.
- Digit replantation: thumb, young children, multiple digits, distal amputations — replant aggressively; a single non-thumb digit with multi-level amputation is a relative contraindication.
- The advantage of a perforator flap = preserving donor-site muscle function (do not mistake this for a disadvantage).
- Glomus tumor = subungual, pinpoint pain, cold sensitivity, point tenderness.
- Stage 4 pressure ulcer → debridement plus a local muscle flap (not a skin graft).
The reconstructive ladder
- Laser = selective photothermolysis; CO2/Er:YAG → water; PDL → oxyhemoglobin; ruby/alexandrite → melanin/tattoo pigment.
- Residual fine lines after a facelift = fractional CO2 (ablative).
- Z-plasty angle–lengthening: 30/45/60/75/90° → 25/50/75/100/120%; 60° is the most commonly used.
- RSTLs run perpendicular to the direction of muscle contraction and parallel to the dynamic wrinkles; on the lip, perpendicular to the vermilion border.
- Lidocaine: ordinary 4–5 mg/kg, 7 mg/kg with epinephrine, tumescent technique up to 35 mg/kg.
- Syndactyly most commonly involves the middle and ring fingers; the first allogeneic face transplant: France, 2005.
The finer points of plastic surgery
- Crohn's = skip lesions, transmural, granulomas, fistulas, worsened by smoking; UC = continuous, superficial, no granulomas, thin bowel wall, curable.
- A thick bowel wall = Crohn's (a trap answer choosing UC as thickened is wrong); the focus of cancer surveillance = UC.
- 5-ASA is used in UC, no longer used in Crohn's; moderate-to-severe Crohn's favors early top-down biologics.
- Asian IBD incidence is lower than in Europe and North America.
- Short bowel diet: MCT preferred (absorbed directly into the portal vein); B12 must be supplemented after terminal ileum resection; preserving the ileocecal valve is key to prognosis.
- Traps: "smoking worsens UC" (reversed — UC paradoxically flares after smoking cessation) / "Crohn's is continuous" (reversed — skip lesions are correct) / "5-ASA for Crohn's maintenance" (obsolete).
- The SMA supplies through the proximal two-thirds of the transverse colon; the IMA takes over through the upper rectum, with its terminal branch = the superior rectal artery.
- Watershed zones = the splenic flexure and the rectosigmoid junction, the favored sites for ischemic colitis.
- Left lower quadrant pain plus bloody stool after AAA repair = ischemic colitis (IMA injury).
- The internal pudendal/gluteal/vesical arteries belong to the internal iliac artery, not branches of the IMA.
- The most common cause of small bowel bleeding = angiodysplasia.
- NEC occurs mainly in preterm infants but can affect term infants too; favors the ileocecal region; thrombocytopenia; perforation with free air requires surgery.
- The most common cause of adult bowel obstruction = postoperative adhesions; the most common electrolyte abnormality in paralytic ileus = hypokalemia.
- For pediatric intussusception, enema reduction is first-line (successful in most cases); surgery is reserved for perforation/failed reduction.
- The four steps of the Ladd procedure: counterclockwise detorsion → division of Ladd's bands → widening the base of the mesentery → appendectomy.
- Gastroschisis: no membrane + jejunoileal atresia; omphalocele: has a membrane + cardiac/chromosomal anomalies.
- The most common primary malignant small bowel tumor (per the licensing exam) = adenocarcinoma, favoring the duodenum; GIST is "the most common mesenchymal tumor," not the most common malignant tumor.
- The key factors in short bowel syndrome = the amount of ileum resected, the ileocecal valve; smoking is a risk factor in Crohn's disease.
- Grade I–III internal hemorrhoids: ligation; a thrombosed external hemorrhoid: excise <72h, manage conservatively >72h.
- The standard Goodsall's rule = curved posteriorly, straight anteriorly (posterior curves to 6 o'clock, anterior runs straight); if the official key states "posterior runs straight to the corresponding clock position," answer per the official key.
- Parks type 2 = transsphincteric.
- A fissure is located at the posterior midline; the triad = a posterior wound + bright red blood + a sentinel skin tag.
- 80–90% of acute fissures heal with conservative treatment; LIS is reserved for refractory cases.
- H. pylori: 1994 IARC Group I; strongly linked to both gastric cancer and MALToma.
- Among gastric polyps, only the adenomatous type is removed; the others are mostly benign.
- Gastric cancer diagnosis = endoscopy + biopsy; CT is a staging tool.
- EGC = confined to the mucosa or submucosa, regardless of nodal metastasis; only invasion through the submucosa counts as advanced.
- Indications for ulcer surgery = perforation, bleeding, obstruction, refractory to treatment; H. pylori infection alone is not a reason for surgery.
- The parietal cell is eosinophilic (mitochondria-rich) and secretes intrinsic factor.
- Advanced gastric cancer = adequate margins plus D2 lymphadenectomy.
- HCC imaging = arterial-phase wash-in, delayed-phase washout, no biopsy needed; a normal AFP does not exclude HCC.
- The classic paraneoplastic presentation = hypoglycemia plus erythrocytosis; hypercalcemia is comparatively rare.
- Child-Pugh's five components (A/B/C/D/E): A=5–6, B=7–9, C=10–15; a score of 6 belongs to class A.
- Insulinoma is the most common, about 90% benign; gastrinoma is mostly malignant.
- Acute pancreatitis = hypocalcemia (fat saponification).
- Calot's triangle = the cystic duct, the common hepatic duct, the inferior border of the liver; the right portal vein is not a boundary.
- Calculous cholecystitis = early laparoscopy (within 72h) is the standard, not a contraindication.
- The most common source of pyogenic liver abscess = biliary infection (in Taiwan mostly cryptogenic Klebsiella, can cause endophthalmitis).
- The most valuable preoperative test for biliary atresia (confirmatory gold standard: intraoperative cholangiography) = liver biopsy; the Kasai procedure must be done within 60 days.
- CO2 pneumoperitoneum is the standard, giving a uniform, wide field; the gasless retractor is inferior.
- Pneumoperitoneum side effects = ↑airway pressure, ↓venous return, CO2 retention and acidosis; pressure 12–15 mmHg.
- Trocars avoid crossing hands (fulcrum effect).
- Splenectomy in portal hypertension = high bleeding risk; simulation training builds depth perception and hand-eye coordination.
- General surgery basics = gallbladder, hernia, appendix; hysterectomy belongs to gynecology.
- Class IV = delayed primary closure or healing by secondary intention; primary closure = deep abscess.
- Clean wound SSI = 1–5%, not 0.1–0.3%.
- Prophylactic antibiotics within 60 minutes before incision; vancomycin/FQ within 120 minutes; redosing after 2 half-lives or blood loss > 1500 mL; stopped 24 hours after surgery.
- Antibiotics cannot prevent CRBSI/UTI; rely on sterile insertion and early catheter removal.
- Proliferative-phase fibroblasts migrate in from local tissue, not delivered by blood.
- Early dumping (15–30 min) = osmotic + vasomotor reaction; late (1–3 hr) = hypoglycemia.
- Earliest ECG sign of hyperkalemia = tall peaked T wave; first step in resuscitation = IV calcium to stabilize the membrane; sequence is "stabilize, shift, remove."
- Kayexalate is slowest, not the first step.
- Warfarin held 5 days, INR < 1.5; high thrombotic risk → LMWH bridging; clopidogrel 5–7 days; DOAC 2–3 days.
- DFSP is locally aggressive but rarely metastatic — wide excision/Mohs, no lymph node dissection needed; MFH and angiosarcoma are both high-grade and can metastasize.
- Kaposi sarcoma pathogen = HHV-8; Bence Jones protein belongs to multiple myeloma.
- Giant CMN (over 40 cm) can coexist with leptomeningeal melanocytosis, diagnosed by MRI.
- Choroid plexus tumor is in the fourth ventricle in adults; meningioma arises from arachnoid cap cells; sudden deterioration of a brain abscess = rupture into the ventricle.
- NPH = Wet, Wacky, Wobbly (no tremor); gait is earliest to appear and first to improve.
- Vessel responsible for trigeminal neuralgia = SCA; first-line for refractory temporal lobe epilepsy = anterior temporal lobectomy.
- Four principles = autonomy, beneficence, non-maleficence, justice; pathway = capacity → advance directive → emergency.
- A legal proxy takes priority over family and need not be a relative; an emergency with no proxy = implied consent to save the life first.
- HIV is reported to the health authority; the spouse may not be told directly; Tarasoff = minimum necessary disclosure.
- A surgical error = commission; regardless of negligence, disclose honestly.
- AD applies to terminal/irreversible/vegetative state/extremely severe dementia/announced unbearable suffering; acute traumatic coma does not apply → saving the life comes first.
- Organ allocation = equity + no buying or selling; "affects national health insurance" is a distractor.
- Domestic violence/child protection/sexual assault: a statutory duty of healthcare workers, must be reported within 24 hours at the latest; not the police's duty alone.
- HIV's four layers: confidentiality is the default; the partner is told only with consent, without consent, report to the health authority first; HIV is a notifiable disease, the physician must report it; concealment causing infection carries criminal liability.
- Conflict-of-interest distractor = patient privacy (irrelevant, eliminate it).
- Industry code: academic time ≥ 2/3; the only payment allowed is a lecture honorarium; gift certificates = money, may not be accepted.
Reporting, confidentiality, industry ties
- Three elements: decision-making capacity + adequate disclosure + voluntariness; missing any one invalidates it.
- A capacitated adult refusing life support / withholding disclosure from parents / refusing admission: respect autonomy, process an AMA discharge and document the chart; neither force them to stay nor simply let them leave unrecorded.
- Three conditions of implied consent: cannot express a choice + no legal proxy + withholding treatment would endanger life; reasonable resuscitation time for an unidentified comatose patient is 30 minutes to 1 hour.
- A prior refusal of an elective procedure ≠ a refusal covering a sudden emergency loss of consciousness; treat in an emergency regardless.
- Manipulation = selective exaggeration/concealment plus family pressure, undermining voluntariness.
Informed consent and emergency implied consent
- Medical Care Act Articles 63/64: only the physician may explain; the audience for the explanation is flexible; treatment may proceed directly in an emergency.
- Surrogacy: adult children rank equally, no eldest-child priority, no majority vote, paying does not confer priority; divided opinions → consensus through a family meeting.
- Hospice Palliative Care Act = terminal patients, nearest relatives may sign a DNR in order of priority; Patient Right to Autonomy Act = five conditions + ACP + AD, the AD cannot be signed by the family on the patient's behalf.
- Scarce resources: the principle of utility = priority to the better prognosis (not age, not first-come-first-served).
- A medical record addendum must be dated, or a court may refuse to accept it as evidence.
Informed consent and resource allocation
- Pathophysiology: obstruction → ischemia → necrosis → perforation; fecalith is most common (lymphoid hyperplasia in children, tumor in the elderly).
- Classic migratory pain (periumbilical → right lower quadrant) plus McBurney's point tenderness is the diagnostic eye.
- Imaging: ultrasound is first-line in children/pregnant women/young women (>6 mm, target sign); CT is the gold standard in adults; X-ray cannot confirm the diagnosis.
- Psoas = retrocecal; Obturator = pelvic; Rovsing = peritoneal irritation.
- Treatment: laparoscopy is first-line; 25–40% still need surgery within a year after antibiotic therapy; an abscess can be drained.
- Most common postoperative complication = SSI (10–20% with perforation); think tumor in the elderly.
Appendicitis
- Level IA = both anterior digastric bellies + hyoid (spanning the midline) (submental); IB = contains the submandibular gland.
- Salivary gland: most common overall = pleomorphic adenoma (benign); most common malignant = mucoepidermoid carcinoma; ACC: perineural invasion, late lung metastasis.
- ACC's three histologic patterns, by prognosis: tubular best > cribriform > solid worst.
- OSCC AJCC 8th: DOI >10 mm alone makes T3 (on par with >4 cm); N2b = multiple ipsilateral nodes ≤6 cm, no ENE.
- The goal of orthognathic surgery = Angle Class I (not II or III).
Neck and oral cancer
- Blunt trauma most often injures the spleen (liver next); penetrating/gunshot injury most often injures the small bowel; stab wounds most often hit the liver.
- FAST is highly specific but only moderately sensitive (a negative result cannot rule out injury); CT = the gold standard (first choice for a stable patient).
- Unstable + positive FAST → straight to laparotomy; do not wait for CT.
- Neck: Zone II (cricoid cartilage → angle of mandible) is easiest to operate on; hard signs always mean exploration, otherwise no-zone + CTA.
- L1 Chance fracture → duodenal injury.
- Pregnancy: left lateral decubitus; secretion pH ≥ 6.5 = ruptured membranes; pelvic exam contraindicated if placenta previa is suspected; CT may be done when necessary.
- AAST liver injury has six grades.
- Mafenide: strong penetration + metabolic acidosis + pain; SSD has weak penetration and is painless.
- Burn infection: early G(+), later G(-); no routine prophylactic antibiotics.
Trauma
- Infant direct hyperbilirubinemia + pale stool + tea-colored urine = a surgical emergency; Kasai surgery after 60 days in biliary atresia carries a worse prognosis; Alagille = JAG1 + paucity of bile ducts + butterfly vertebrae + pulmonary artery stenosis + posterior embryotoxon.
- For diarrhea, check the response to fasting first: secretory persists during fasting, osmotic improves with fasting; congenital chloride diarrhea (SLC26A3) = secretory + alkalosis + hypochloremia (the direction is a common reversal trap).
- Low potassium + alkalosis + low urinary calcium + low serum magnesium = Gitelman; high urinary calcium = Bartter; hypertension = Liddle.
- Main cause of gallbladder hydrops = Kawasaki disease (CF is atypical); bloody stool in an exclusively breastfed infant = maternal cow's milk protein; enema reduction is first-line for intussusception; for constipation, stool in the rectum is not a red flag.
- Mild-to-moderate VUR is managed conservatively first, with prophylactic antibiotics, not immediate surgery.
Infant digestion and electrolytes
- Sequence: ABC + fluids + airway protection → endoscopy once stable; do not perform colonoscopy in the acute phase; β-blockers are contraindicated in the acute phase (for prevention, not hemostasis).
- Esophageal variceal combination: octreotide/terlipressin + IV ceftriaxone + EVL; for refractory cases, bridge with an SB balloon, then TIPS.
- Hb can be normal at the very start of massive acute bleeding (hemodilution has not yet occurred); judge blood loss by hemodynamics.
- Forrest: Ia highest at 55%, III lowest at 2–5%; high-risk patients get endoscopy + 72-hour high-dose PPI.
- Mesenteric ischemia clue: AF/cardiac catheterization + severe pain with a soft abdomen; add flow, don't constrict vessels; vasoconstrictors are contraindicated; early vascular reconstruction.
GI bleeding
- IBS essence = gut–brain axis dysregulation + visceral hypersensitivity; about 80% of moderate-to-severe cases are women; Rome IV = abdominal pain ≥1 day/week + ≥2 defecation-related items.
- Fecal calprotectin = an IBD marker (not elevated in IBS); fecal occult blood/white cells should be negative in IBS, and a positive result means ruling out IBD/cancer.
- Tenesmus ≠ a definitive indicator of rectal tumor.
- Chronic alcohol use = secretory diarrhea; bowel sounds in mechanical obstruction go hyperactive first, then absent.
- B12 deficiency = neuropathy + megaloblastic anemia (not tetany; tetany comes from low Ca/Mg).
- In an older child with intussusception, a lead point must be sought.
IBS and diarrhea
- Psoas = retrocecal appendix; Obturator = pelvic; Murphy = halts on inspiration (not expiration); Grey Turner = flank bruising; Cullen = periumbilical bruising.
- B12 and bile acids are absorbed in the terminal ileum; iron and calcium in the duodenum/upper jejunum; resecting the duodenum does not affect B12.
- Fat-soluble vitamins = A, D, E, K.
- Hemorrhoids: grade three reduces manually, grade four cannot be reduced (don't reverse these).
- Diverticular disease: CT is first-line, smoking is a risk factor, mesalazine reduces symptomatic recurrence.
- Esophageal indentation: the aortic arch is on the left side.
Signs of the acute abdomen and the small bowel map
- ALF definition = no chronic liver disease + INR ≥ 1.5 + encephalopathy (< 26 weeks); neither condition may be missing.
- Severity is judged by PT/INR + bilirubin + encephalopathy; ammonia does not track in parallel, and ALT paradoxically falls in the end stage — neither should be judged alone.
- Etiology: acetaminophen is most common worldwide (antidote NAC); HBV predominates in Taiwan; Wilson's disease = young + KF ring + negative viral markers.
- Treatment: find the cause, prevent cerebral edema, no routine prophylactic FFP; King's College criteria → liver transplantation.
- Wilson's labs: ceruloplasmin ↓, free copper ↑, urinary copper ↑ (direction is a common reversal trap); treatment is D-penicillamine/trientine/zinc.
- ACLF (acute decompensation of chronic liver disease) differs from ALF, with different management and prognosis.
- Traps: ALT falling means improvement (backwards — it may mean the hepatocytes have all died) / ammonia level equals the severity of encephalopathy (not parallel) / Wilson's urinary copper should be low (backwards — it is elevated).
Acute liver failure and Wilson's disease
- SBO's most common cause = adhesions; LBO's most common cause = colorectal cancer (volvulus second).
- Mechanical SBO does not raise amylase; a rise should suggest strangulation or pancreatitis.
- Simple SBO is managed conservatively first (NPO + NG + IV fluid); surgery only for signs of strangulation.
- The sigmoid colon is where volvulus favors, with bird-beak on CT; endoscopic decompression is first-line.
- Rovsing's sign = pressing the left lower quadrant elicits right lower quadrant pain; appendicitis's "periumbilical first, right lower quadrant later" is migratory pain.
- DU: pain when fasting, relieved by eating; GU: pain after eating, requires biopsy.
- Stop the PPI two weeks before UBT; wait four weeks after eradication before retesting.
- GERD has no causal link to H. pylori; H. pylori connects to peptic ulcer, gastric adenocarcinoma (intestinal type), and MALT lymphoma.
- The sliding hiatal hernia is the most common type (about 95%); the paraesophageal type is less common but carries a risk of strangulation.
- Afferent loop syndrome = postprandial bloating and pain, relieved after vomiting bile, elevated MCV; dumping syndrome's most common trigger = high carbohydrate intake, with the late phase = reactive hypoglycemia.
- Type A gastritis = body of the stomach + autoimmune (B12 deficiency); Type B = antrum + H. pylori.
- Parietal cells are rich in mitochondria; eradicating H. pylori after early gastric cancer resection lowers metachronous gastric cancer recurrence.
- PBC = women, AMA(+), granulomatous destruction of intrahepatic small bile ducts, UDCA; PSC = men, onion-skin fibrosis, beaded bile ducts, associated IBD, high risk of cholangiocarcinoma.
- MCN = ovarian-type stroma; IPMN communicates with the pancreatic duct; SPN favors young women (not men).
- FAP = APC mutation, with polyps appearing only at puberty and nearly 100% malignant transformation.
- AAC risk factors = trauma / major surgery / fasting / burns / TPN (sepsis is also a risk factor; alcohol is not).
- Pseudomembranous colitis relies on toxin testing, not culture; treatment is oral vancomycin or fidaxomicin.
- Intestinal-type gastric cancer ↔ H. pylori; diffuse type ↔ CDH1 / signet-ring cells.
- Fundic gland polyps ↔ long-term PPI use.
- CD = transmural / skip lesions / fistula and stricture / ASCA(+); UC = mucosal / continuous / bloody stool / p-ANCA(+).
- Smoking worsens CD and protects against UC; appendectomy protects against UC; oral contraceptives increase CD risk (a direction often reversed on exams).
- Corticosteroids can induce but must never maintain; 5-ASA is the mainstay for UC maintenance; anti-TNF is the mainstay for moderate-to-severe CD, promoting fistula healing and reducing surgery.
- Bowel rest + TPN for inducing CD remission ≈ corticosteroids (older data; current: bowel rest is unnecessary, exclusive enteral nutrition is first-line in children, and TPN is only for those who cannot be fed enterally); when CD drug therapy fails, the next step = step up to a biologic, not surgery.
- Toxic megacolon = transverse colon > 6 cm + systemic toxicity; anticholinergics and antidiarrheal agents are contraindicated.
- HCV is most likely to become chronic (75–85%); neonatal HBV chronicity >90%; 95% of adults with acute hepatitis B recover, <5% become chronic, and nucleos(t)ide analogs do not shorten the course.
- Progression factors in chronic hepatitis C: male sex / heavy alcohol use / infection after age 30 / HIV or HBV coinfection (not female sex).
- The course of HBV is determined by host immunity and age at infection, not viral genotype.
- Primary prophylaxis against varices = a nonselective β-blocker.
- Hepatic encephalopathy: lactulose + rifaximin.
- Fatty liver on CT: liver density < spleen; in pregnancy, ALP↑ while AST/ALT do not rise.
- Cholangiocarcinoma risk = PSC; AMA(+) = PBC.
- Diagnosis requires two of three criteria, with lipase/amylase > 3 times normal.
- The most important initial treatment = aggressive IV fluid resuscitation (current: early, moderate goal-directed fluids — WATERFALL 2022); antibiotics are not routine; ERCP is urgent only with concurrent cholangitis/obstruction.
- BISAP's P = pleural effusion; Hct > 44% on admission suggests severe disease.
- The imaging of choice for acute pancreatitis = abdominal CT; a barium esophagram is entirely inappropriate (current practice: ultrasound on admission, CT only for an unclear diagnosis or no improvement at 48–72 h).
- Serum calcium in acute pancreatitis is low (consumed by fat saponification); type 3c diabetes fears hypoglycemia, not DKA.
- Pancreatic cancer's resectability rate is 15–20%; R1 resection occurs in about 30%; postoperative FOLFIRINOX/gemcitabine is the standard of care.
- Traps: giving prophylactic antibiotics for pancreatitis (not routine) / rushing to ERCP whenever lipase rises (reserved for cholangitis or obstruction) / claiming type 3c DM is prone to ketoacidosis (backwards — it is in fact less prone).
- T2 = invades the muscularis propria; N2 = ≥4 nodes; T2N2M0 = Stage III.
- Stage II/III rectal cancer: preoperative CCRT for downstaging; cetuximab is effective only in RAS wild-type disease; CRC's most common recurrence = distant metastasis.
- Lynch = MMR, proximal adenomas, early age of diagnosis; Peutz-Jeghers = STK11, hamartomas; Turcot pairs with brain tumor, Gardner pairs with osteoma.
- Sessile (broad-based) polyps are more invasive than pedunculated (stalked) ones.
- Intestinal-type gastric cancer favors the antrum/body; diffuse type can arise anywhere in the stomach, with no specific site.
- H. pylori shows the weakest association with esophageal adenocarcinoma (even protective).
- Early HCC (BCLC 0/A) = surgical resection / RFA / liver transplantation; TACE is palliation for intermediate-stage disease.
- Morphine is contraindicated for biliary pain (constricts the sphincter of Oddi); choose meperidine or an NSAID (the exam answer; NSAIDs are now first-line and meperidine is largely avoided).
- Charcot's triad = pain, fever, jaundice (does not include gallbladder enlargement); add shock plus altered mental status = Reynolds' pentad → emergency ERCP.
- Acalculous cholecystitis favors ICU/TPN/trauma/burn patients; "cholecystitis must involve a stone" is wrong.
- UDCA dissolves only small, radiolucent, pure cholesterol stones, used in patients at high surgical risk.
- PSC = the strongest risk factor for cholangiocarcinoma.
- Imaging questions: Rokitansky-Aschoff sinuses + comet-tail artifact = adenomyomatosis; tubular hyperechoic structures + reverberation artifact = pneumobilia.
- Traps: giving morphine for biliary colic (contraindicated — constricts the sphincter of Oddi and raises biliary pressure) / including gallbladder enlargement in Charcot's triad (it is not included) / delaying ERCP to the next day in cholangitis (a fatal delay — it must be done urgently).
- Muscle lacks G-6-Pase, so it cannot release glucose into the blood; gluconeogenesis occurs mainly in the liver.
- Ethanol and even-chain fatty acids are not substrates for gluconeogenesis; glycerol, lactate, glucogenic amino acids, and propionyl-CoA are.
- F-2,6-BP = the master switch of glycolysis/gluconeogenesis: up → glycolysis, down → gluconeogenesis.
- Glycolysis's rate-limiting enzyme = PFK-1; gluconeogenesis's = F-1,6-BPase; the PPP's = G6PD.
- Anaerobic glycolysis → 2 ATP + lactate (in humans; only yeast proceeds to ethanol).
- The three ketone bodies: acetoacetate, β-OH-butyrate, acetone (α-KG is not one).
- Oxidation at C-1 = gluconic acid.
- Saliva: both sympathetic and parasympathetic are stimulatory (the opposite of the rest of the gut).
- Fat entering the duodenum = the strongest signal for inhibiting gastric emptying.
- About 90% of serotonin comes from gut EC cells; the vomiting center is in the medulla.
- Gastrin has the strongest trophic effect; CCK governs pancreatic enzymes/gallbladder; secretin inhibits gastric acid and promotes HCO₃⁻; GIP is an incretin.
- Fatty acids <12C travel by the portal vein; long-chain fatty acids travel by the lacteals/lymphatics.
- ENS = myenteric plexus + submucosal plexus + ICC; the nodose ganglion does not belong to the ENS.
- Intrinsic factor is secreted by parietal cells; B12 is absorbed in the terminal ileum.
- Somatostatin (D cell) = the universal inhibitor.
- The spleen = mesenchyme (dorsal mesogastrium), not foregut endoderm; the gallbladder is the true foregut derivative (hepatic diverticulum).
- Sertoli → MIS → Müllerian regression; Leydig → testosterone → Wolffian differentiation.
- Ureter / renal pelvis / collecting ducts / trigone = mesonephric duct; nephron = metanephric mesenchyme.
- The umbilical vein → the ligamentum teres hepatis.
- Prostate ↔ Skene's glands; Cowper's ↔ Bartholin's.
- The secondary spermatocyte = n, 2C (not 1C).
- Pancreatic head veins → SMV (not the splenic vein); SMV + splenic vein → portal vein; IMV → splenic vein.
- Above and below the pectinate line: above = portal / painless / internal iliac lymphatics (internal hemorrhoids); below = systemic / painful / inguinal lymphatics (external hemorrhoids).
- The lateral end of the inguinal ligament attaches to the ASIS; the conjoint tendon = internal oblique + transversus abdominis.
- An indirect hernia runs lateral to the inferior epigastric artery; a direct hernia runs medial to it (Hesselbach's triangle).
- The pelvic inlet includes the pecten pubis (where fractures favor); the ischial spine belongs to the outlet.
- The levator ani relaxes during defecation (it does not contract).
- The perineal membrane = the superior boundary of the superficial perineal pouch.
- The cisterna chyli = the intestinal trunk + the left/right lumbar trunks, draining via the thoracic duct into the left venous angle.
- Double-stranded DNA: A=T, G=C; A+G (purines) = T+C (pyrimidines) = 50%.
- Calculation formula: given T=31% → A=31%, the remaining 38% is split between G and C → C=G=19% (not 31%).
- B-DNA = right-handed, 10 bp/turn, base-pair rise of 3.4 Å (the predominant physiological conformation).
- A-DNA = right-handed, 11 bp/turn, 2.6 Å (dehydrated conditions, RNA-DNA hybrids).
- Z-DNA = left-handed, 12 bp/turn, 3.7 Å (alternating GC sequences, transcriptionally active regions).
- Traps: ① B-DNA listed as 3.6 Å (wrong — it is 3.4); ② B-DNA called left-handed (wrong — left-handed is Z); ③ T=31% leads you to write C as 31% too (wrong — it is 19%).
- The primer in DNA replication is RNA (synthesized by primase, not DNA).
- AZT mechanism = chain termination from the missing 3'-OH; target = HIV reverse transcriptase.
- Proofreading activity = Pol III's 3'→5' exonuclease (Taq lacks this activity → low fidelity).
- Primer removal = Pol I's 5'→3' exonuclease; sealing the nick = DNA ligase (not a polymerase).
- The lagging strand is made of Okazaki fragments; once the primer is excised, the gap is filled in and sealed.
- Traps: ① listing the AZT target as protease/RNase H/host polymerase (wrong — it is reverse transcriptase); ② listing nick-sealing as polymerase/helicase (wrong — it is ligase); ③ listing the proofreading direction as 5'→3' (wrong — it is 3'→5').
- BER: DNA glycosylase excises the abnormal base (deamination, oxidation, uracil) → AP endonuclease.
- NER: handles large distorting lesions such as UV pyrimidine dimers; deficiency = XP (xeroderma pigmentosum).
- MMR: post-replication mismatches; MutS recognizes, MutH nicks the unmethylated new strand; deficiency = Lynch syndrome / HNPCC.
- SOS: RecA activation → LexA autocleavage (the one being cleaved) → repair genes are derepressed.
- Traps: ① listing DNA glycosylase under MMR (wrong — it belongs to BER alone); ② assigning UV dimers to BER (wrong — they need NER); ③ naming UvrA or RecA as the one broken down in SOS (wrong — it is LexA).
- Three steps: 95 / 50–65 / 72°C (denaturation / annealing / extension).
- Main reason for using Taq = heat resistance (*E. coli* Pol is inactivated at 95°C); Taq's lack of proofreading is a side effect.
- One primer pair → one specific segment; multiple sites require multiplex PCR.
- Traps: ① listing the main reason as "Taq has high fidelity" (wrong — it is actually low); ② claiming one primer pair can amplify multiple regions (wrong — only one segment); ③ listing the polymerase used in PCR as *E. coli* Pol (wrong — it would be heat-inactivated).
- Genomic library = restriction enzyme + ligase (no reverse transcriptase needed; contains introns).
- cDNA library = reverse transcriptase + ligase (no introns; allows eukaryotic protein expression in prokaryotes).
- RFLP is used for paternity testing, linkage analysis, and DNA fingerprinting (not for building a cDNA library).
- Largest vector = YAC (contains an origin of replication, telomere, and centromere).
- Type II restriction enzymes recognize palindromic sequences; transformation = CaCl₂ + 42°C heat shock; site-directed mutagenesis needs no reverse transcriptase.
- The three blots: Southern = DNA, Northern = RNA, Western = protein (using antibodies).
- Traps: ① adding reverse transcriptase to a genomic library (wrong — not needed); ② using RFLP to build a cDNA library (wrong — unrelated); ③ describing transformation as "low-voltage electrophoresis" (wrong — it is heat shock or electroporation).
- lac = inducible: fully on only when no glucose (glucose low, cAMP↑, CAP-cAMP activation) and lactose is present (repressor released) → lacZYA is transcribed.
- lacZ = β-gal, lacY = permease, lacA = transacetylase, lacI = repressor.
- trp = repressible: Trp high → termination, Trp low → continuation; the mechanism is a switch in mRNA secondary structure (terminator vs. antiterminator), not the leader peptide acting directly on RNA pol.
- Traps: ① assuming lactose alone turns it fully on (wrong — glucose must also be low); ② assuming Trp high leads to continuation (wrong — it leads to termination); ③ swapping lacZ/lacY (wrong — Z is β-gal).
- The main reason housekeeping-gene expression levels differ = the promoter's affinity for RNA pol (not degradation rate).
- The direct binder of the enhancer = the activator (a transcription factor); the coactivator is a bridge, and TBP binds TATA.
- Traps: ① attributing enhancer binding to coactivator/TBP (wrong — it is the activator); ② attributing expression-level differences to degradation rate (wrong — it is promoter strength).
- DNA methylation: DNMT acts on CpG (not TATA / CAAT / telomere) → transcriptional repression.
- HAT acetylation → loosens → activation; HDAC deacetylation → condenses → repression.
- Mediates dimerization = leucine zipper; main DNA-binding motif = zinc finger; homeotic genes contain a homeodomain and, expressed late, determine "segment structure".
- Traps: ① listing the methylation hotspot as TATA/CAAT/telomere (wrong — it is CpG); ② listing zinc finger or β-barrel as mediating the dimer (wrong — it is the leucine zipper); ③ pairing homeotic genes with "specific organs" (wrong — it is "body segments").
- NAD⁺ structure: two nucleotides + a pyrophosphate bridge; the hydrogen-accepting site = nicotinamide C4, accepting a hydride; the reduced form is NADH.
- NADP⁺ vs. NAD⁺: the only difference is one extra phosphate on the 2'-position of the ribose at the adenine end.
- NADH is routed toward catabolism (energy production); NADPH is routed toward biosynthesis and antioxidant defense.
- Vitamin sources: NAD/NADP ← B3 niacin; FAD/FMN ← B2 riboflavin.
- Quick reference for other coenzymes: B1 = TPP (oxidative decarboxylation), B5 = CoA (acyl transfer), B6 = PLP (transamination/decarboxylation), B7 biotin = carboxylation (requires CO₂ + ATP), B9 = THF (one-carbon transfer), B12 = cobalamin (methyl transfer/isomerization).
- Traps: ① writing NADH₂ (wrong — it is NADH; FADH₂ is the one with two H's); ② listing NAD as coming from B2 (wrong — it is B3); ③ routing NADPH toward catabolic energy production (wrong — it goes toward biosynthesis and antioxidant defense).
- Histones carry a positive charge (rich in Lys/Arg) → they grip the negatively charged DNA electrostatically (not covalently or hydrophobically).
- Hierarchy: DNA → nucleosome (8 histones) → 30 nm fiber (with H1's help) → chromosome.
- The protein-coding fraction of the human genome = about 1.5–2% (not >40%).
- Traps: ① describing the histone-DNA interaction as covalent/hydrophobic (wrong — it is electrostatic); ② listing the coding fraction as 40% (wrong — it is 1.5–2%); ③ pairing the nucleosome with H1 (wrong — H1 assists in forming the 30 nm fiber).
- Homologous recombination = requires homology (meiosis, double-strand break repair).
- Site-specific recombination = requires no homology; V(D)J belongs here, RAG1/2 recognize the RSS.
- Transposition/viral integration = requires no homology; after retroviral integration, the LTR is duplicated at both ends (gag/pol/env occur only once).
- V–J occurs in DNA, J–C occurs via RNA splicing.
- Traps: ① listing V(D)J as homologous recombination (wrong — it is site-specific); ② claiming gag/pol/env are also duplicated after integration (wrong — only the LTR is); ③ claiming J–C is also DNA recombination (wrong — it is RNA splicing).
- Sickle cell disease: β-globin Glu→Val point mutation (qualitative); β/α-thalassemia: reduced/absent chain synthesis (quantitative).
- Telomere sequence = repeating TTAGGG; the single-stranded overhang forms a four-stranded G-quadruplex (not three- or five-stranded).
- Telomerase shows high activity in stem/germ/cancer cells.
- Terminally differentiated cells exit the cycle → G0 phase; the cycle = G1→S→G2→M.
- Traps: ① describing sickle cell as "too little chain made" (wrong — it is a wrong substitution); ② listing the G-quadruplex as three- or five-stranded (wrong — it is four-stranded); ③ saying differentiated cells arrest in G1 (wrong — it is G0).
- HGPRT deficiency = Lesch-Nyhan: salvage blocked, uric acid↑, intellectual disability, self-mutilation; de novo synthesis is intact and even accelerated.
- APRT deficiency = adenine is oxidized by XO into 2,8-DHA → kidney stones.
- Overactive PRPP synthetase = de novo synthesis↑ → uric acid↑ → gout.
- Xanthine has no salvage enzyme and can only be oxidized by XO into uric acid.
- Allopurinol/febuxostat inhibit XO; an acute flare is treated with NSAIDs/colchicine/steroids, never started with a urate-lowering drug.
- Traps: ① describing Lesch-Nyhan as "de novo broken" (wrong — salvage is broken, and de novo actually accelerates); ② claiming xanthine can also be salvaged (wrong — no enzyme exists for it); ③ giving allopurinol first in acute gout (wrong — it would provoke a flare).
- Orotic aciduria (part of the same family of metabolic defects as galactosemia) = UMP synthase deficiency; supplementing uridine bypasses the defect and provides feedback to suppress orotic acid; it does not improve with folate/B12.
- dUMP→dTMP is carried out by thymidylate synthase (methyl donor = 5,10-methylene-THF); 5-FU inhibits thymidylate synthase, methotrexate inhibits DHFR.
- The difference between thymine and uracil = one extra methyl group at the 5-position.
- 5-methylcytosine deaminates → thymine (mutational hotspot); cytosine→uracil; adenine→hypoxanthine; guanine→xanthine.
- End products: purines → uric acid; pyrimidines → β-alanine / β-aminoisobutyric acid.
- Traps: ① supplementing thymine or adenosine for orotic aciduria (wrong — it should be uridine); ② claiming 5-mC deaminates to uracil (wrong — it becomes thymine); ③ listing uric acid as a pyrimidine breakdown product (wrong — uric acid comes from purines).
- PDH = 3 enzymes, 5 coenzymes (TPP, lipoic acid, CoA, FAD, NAD⁺); biotin/CoQ are neither. B1 deficiency → Wernicke-Korsakoff syndrome, beriberi.
- One turn of the TCA cycle: 2 CO₂, 3 NADH, 1 FADH₂, 1 GTP; net OAA consumption = 0; rate-limiting enzyme = isocitrate DH.
- Substrate-level phosphorylation = occurs in both the cytosol and the mitochondrion; oxidative phosphorylation = only at the inner mitochondrial membrane.
- Electron pathway: I → CoQ → III → Cyt c → IV → O₂; the one that hands off directly to O₂ = Complex IV; FADH₂ enters at II.
- Pumping H⁺: matrix → intermembrane space (I, III, IV); ATP yield = NADH 2.5 / FADH₂ 1.5.
- Inhibitors (oxygen consumption↓): rotenone (I), antimycin A (III), CN⁻/CO/H₂S/azide (IV), oligomycin (V).
- Uncouplers (oxygen consumption↑, heat production↑, ATP↓): 2,4-DNP, aspirin overdose, UCP1.
- Clearing H₂O₂ = glutathione peroxidase; reductase uses NADPH to recharge GSH.
- Acetyl-CoA: a high-energy thioester bond.
- Traps: ① listing biotin or CoQ among the PDH coenzymes (wrong — neither is); ② claiming cyanide blocks Complex I (wrong — it is IV); ③ saying 2,4-DNP decreases oxygen consumption (wrong — it rises instead).
- Fed = insulin-dominant (storage); fasting = glucagon-dominant (mobilization, lipolysis, ketogenesis).
- Low-carbohydrate, high-protein → β-oxidation↑ → ketone bodies↑ → high-anion-gap metabolic acidosis (not alkalosis); urea↑; fat↓.
- β-OHB is the most abundant; the nitroprusside strip cannot detect β-OHB (urine ketones may be falsely negative).
- The liver makes but does not use ketone bodies (lacking SCOT/thiophorase); ketone bodies serve the brain, heart, and muscle.
- HIF-1↑ → PDK1↑ → PDH↓ → glycolysis, ROS↓ (decreased) (one of the Warburg mechanisms).
- N-glycosylation attaches to Asn (amide nitrogen), consensus Asn-X-Ser/Thr (X≠Pro), initiated by GlcNAc, in the ER; O-glycosylation attaches to Ser/Thr (hydroxyl), initiated by GalNAc, in the Golgi.
- Cysteine is not a standard glycosylation site.
- Traps: ① describing a low-carb, high-protein diet as causing alkalosis/decreased urea (wrong — it is acidosis/increased urea); ② ruling out DKA on a negative strip (wrong — β-OHB cannot be detected); ③ saying HIF-1 activation leaves ROS unchanged (wrong — it decreases).
- Oncogene: gain-of-function, dominant (one allele is enough for disease). Metaphor = gas pedal stuck to the floor.
- Tumor suppressor: loss-of-function, recessive, two-hit (RB is the prototype; LOH achieves the second hit).
- DNA repair gene: a mutator, usually also two-hit.
- Exception: TP53's dominant-negative effect lets Li-Fraumeni show a clear cancer increase with a single germline mutation; some suppressors also show haploinsufficiency.
- "The most commonly mutated tumor suppressor" = TP53, not RB.
- Traps: ① listing oncogenes as recessive (wrong — they are dominant); ② claiming RB is also dominant-negative (wrong — that is TP53); ③ listing RB as the most commonly mutated (wrong — it is TP53).
- Lynch (HNPCC) = MMR mutation (MLH1/MSH2/MSH6/PMS2) → MSI-high.
- Favors the right colon + endometrial cancer; often <50 years old; does not arise through a large number of polyps.
- FAP = APC (a suppressor), covered with polyps.
- Screening uses the Amsterdam/Bethesda criteria; diagnosis relies on MSI testing + genetics.
- MSI-high / dMMR → respond well to anti-PD-1 (pembrolizumab) (a frequent, newer test point).
- Traps: ① listing Lynch as APC (wrong — it is MMR); ② describing Lynch as a field of polyps (wrong — that is FAP); ③ saying Lynch favors the left colon (wrong — it is the right).
- KRAS mutation → anti-EGFR ineffective (a frequent, high-stakes question).
- BRCA1/2 → PARP inhibitor (synthetic lethality).
- Burkitt = MYC t(8;14); CML = BCR-ABL t(9;22).
- "The most commonly mutated tumor suppressor" = TP53.
- Traps: ① giving cetuximab despite a KRAS mutation (wrong — it is ineffective); ② listing Burkitt as t(9;22) (wrong — it is t(8;14)); ③ pairing BRCA with an EGFR inhibitor (wrong — it pairs with a PARP inhibitor).
- B1 (TPP) → PDH, α-KGDH; deficiency = beriberi, Wernicke-Korsakoff syndrome. In patients with alcohol use disorder, give thiamine before glucose.
- B3 (NAD/NADP): the 3 D's of pellagra; Hartnup disease / carcinoid / INH can all cause pellagra-like presentations.
- B5 (CoA) comes from pantothenic acid, not folate (a frequent trap).
- B6 (PLP): transamination, decarboxylation; coenzyme for ALA synthase → sideroblastic anemia; INH causes deficiency.
- B7 (biotin): carboxylation; avidin in raw egg white binds biotin and causes deficiency.
- Vitamin C: hydroxylates collagen (scurvy), reduces iron; it is not merely an antioxidant.
- Traps: ① listing CoA as coming from folate (wrong — it is pantothenic acid, B5); ② claiming INH causes B12 deficiency (wrong — it is B6); ③ giving glucose before thiamine in alcohol use disorder (wrong — the order is reversed).
- B12 deficiency = MMA↑ + Hcy↑ + neurological deficit; folate deficiency = only Hcy↑, no neurological symptoms.
- Folate alone must not be used: it corrects the anemia while worsening the neuropathy.
- Pernicious anemia = autoimmune destruction of gastric parietal cells → IF deficiency → poor B12 absorption.
- The structural metal of B12 = cobalt (Co); active forms = methyl-/adenosylcobalamin.
- CoA comes from pantothenic acid (B5), not folate (a frequent, high-stakes question).
- The zinc finger = Cys+His coordinating zinc; do not confuse it with the leucine zipper.
- Traps: ① treating B12 deficiency with folate alone (wrong — it worsens the neuropathy); ② listing the B12 metal as iron or magnesium (wrong — it is cobalt); ③ claiming folate deficiency also raises MMA (wrong — only B12 deficiency does).
- Transamination → deamination → ammonia disposal; blood ammonia transport = glutamine (whole body/brain) + alanine (muscle, Cahill cycle).
- The urea cycle's two nitrogen sources: free NH₄⁺ (via CPS-I) + aspartate.
- Final products = urea + fumarate; fumarate enters the TCA cycle.
- CPS-I is the rate-limiting enzyme, requiring activation by NAG; the first 2 steps occur in the mitochondrion, the last 3 in the cytosol.
- OTC deficiency (X-linked, most common) → hyperammonemia + orotic aciduria.
- Traps: ① calling the final products urea + OAA (wrong — it is fumarate); ② claiming both nitrogens come from NH₄⁺ (wrong — the second is aspartate); ③ claiming all six steps occur in the cytosol (wrong — the first two occur in the mitochondrion).
- PKU: PAH or BH4 deficiency; Tyr becomes essential; avoid aspartame; the BH4 variant also disrupts neurotransmitters.
- Homocystinuria: CBS (requires B6) deficiency; downward lens dislocation (Marfan: upward); some patients respond to high-dose B6.
- MSUD: deficiency of branched-chain α-ketoacid dehydrogenase (requires B1).
- Albinism = tyrosinase; alkaptonuria = homogentisate oxidase; PKU = PAH — do not confuse the three.
- GSH = γ-Glu–Cys–Gly (γ bond); creatine = Gly + Arg + Met (SAM supplies the methyl group).
- OI (osteogenesis imperfecta) = type I collagen mutation, usually a glycine substitution.
- Traps: ① calling the PKU deficiency tyrosinase (wrong — that is albinism); ② homocystinuria dislocating the lens upward (wrong — it is downward; Marfan is upward); ③ GSH as α-Glu-Cys-Gly (wrong — it is a γ bond).
- Rate-limiting step of fatty acid synthesis = ACC (→ malonyl-CoA, requires biotin); rate-limiting step of cholesterol synthesis = HMG-CoA reductase.
- Synthesis in the cytosol, oxidation in the mitochondrion; malonyl-CoA also inhibits CPT-I (the gate to β-oxidation).
- Odd-chain fatty acid → propionyl-CoA → (B12) → succinyl-CoA; B12 deficiency → MMA↑.
- COX substrate = arachidonate (C20:4), not a saturated fatty acid; aspirin does not affect cholesterol synthesis.
- Cardiolipin is in the inner mitochondrial membrane; integral membrane proteins require detergent extraction; PAF = alkyl-ether, plasmalogen = vinyl-ether.
- Lipoproteins: HDL performs reverse transport (esterification by LCAT); LDL travels via the LDL receptor (defective in FH).
- Traps: ① aspirin lowering cholesterol (wrong — it acts on COX); ② naming palmitate as the COX substrate (wrong — it is arachidonate); ③ placing cardiolipin in the plasma membrane (wrong — it is in the inner mitochondrial membrane).
- Lipid-soluble → receptor inside, slow and long-lasting; water-soluble → receptor on the membrane, fast and brief. Hsp90 binds the ligand-binding domain, not the DNA-binding domain.
- Gs/Gi/Gq downstream: cAMP↑ / cAMP↓ / IP3 + DAG.
- Cholera = locks Gsα on (inhibits GTPase); pertussis = locks Giα off (cannot bind GTP); both raise cAMP↑.
- Insulin MAPK sequence: IRS-1 → Grb2-Sos → Ras → Raf → MEK → ERK.
- ANP = membrane-bound GC → cGMP; JAK-STAT = IL, GH, EPO, leptin, IFN.
- The β receptor does not directly activate Ras (Ras belongs to the RTK pathway).
- Cyclin is the regulatory subunit and does not catalyze directly; CDK is the catalyst.
- Traps: ① Hsp90 binding the DNA-binding domain (wrong — it is the ligand-binding domain); ② cholera and pertussis modifying the same G protein (wrong — Gs vs. Gi); ③ MEK downstream of ERK (wrong — it is upstream).
- Pol I → large rRNA / Pol II → pre-mRNA / Pol III → tRNA + 5S rRNA; α-amanitin: Pol II most sensitive, Pol I insensitive.
- Prokaryotes have only one RNA polymerase; mammals have no Pol IV (a trap).
- The three major mRNA modifications occur entirely in the nucleus, co-transcriptionally; 3′ processing = polyadenylation, not phosphorylation; signal = AAUAAA.
- Group I = exogenous G 3′-OH; group II and the spliceosome = internal A 2′-OH (lariat).
- The 3′ end of every tRNA = -CCA-OH.
- Traps: ① Pol I being most sensitive to amanitin (wrong — it is Pol II); ② calling 3′ processing phosphorylation (wrong — it is poly(A)); ③ group I using an internal A (wrong — it uses an exogenous G).
- Initiator tRNA: prokaryotes fMet, eukaryotes Met; the small subunit binds mRNA first, the large subunit last.
- The SD sequence pairs with the 3′ end of 16S rRNA (prokaryotes); eukaryotes use cap → scanning.
- Peptide bond catalysis = 23S rRNA (a ribozyme); polypeptide N→C, mRNA 5′→3′.
- Ampicillin hits the cell wall, not the ribosome (a trap); 30S = aminoglycoside/tetracycline; 50S = chloramphenicol/macrolide.
- Iron deficiency → HRI → eIF2α phosphorylation → global translation shutdown.
- Calculation: (bp/3) − 1 = aa; aa × 110 ≈ Da.
- Gly-Pro → β-turn; the disulfide bond belongs to tertiary structure, the α-helix relies on hydrogen bonds.
- Codon-anticodon = hydrogen bonds, not covalent.
- Traps: ① ampicillin hitting the ribosome (wrong — it hits the cell wall); ② eukaryotic initiation using fMet (wrong — it is Met); ③ the peptide bond being catalyzed by a protein enzyme (wrong — it is 23S rRNA).
- When [S] ≪ Km, the rate constant = kcat/Km (second-order rate constant; Vmax/Km = kcat/Km × [E]t), not kcat.
- LB plots for the three inhibition types: competitive shares the y-intercept / noncompetitive shares the x-intercept / uncompetitive runs parallel; competitive: Km↑, Vmax unchanged; uncompetitive: Km↓, Vmax↓.
- A280 = Trp > Tyr > Phe; non-aromatic residues do not absorb; A280 is for quantification only, not identification.
- The disulfide bond belongs to tertiary structure, the only covalent bond; the α-helix relies purely on backbone hydrogen bonds (i↔i+4).
- SDS-PAGE measures molecular weight and destroys activity; IEF measures pI; in gel filtration, large molecules elute first — it cannot identify a protein's identity.
- Irreversible inhibition (aspirin acetylating COX, organophosphates inhibiting AChE) causes covalent inactivation, which kinetically resembles a drop in [E].
- Traps: ① answering kcat when [S] ≪ Km (wrong — it is kcat/Km); ② Asn also absorbing at 280 (wrong — it has no aromatic ring); ③ using IEF to measure molecular weight (wrong — IEF measures pI).
- First trimester = low PAPP-A + high free β-hCG + thick NT.
- Second-trimester quad test = low AFP, low uE3, high hCG, high inhibin A (two low, two high).
- uE3, AFP, and inhibin A are not first-trimester markers — a common trap.
- Edwards syndrome (18) = triple-low; open NTD = AFP elevated in isolation.
- NIPT is a screening test; diagnosis rests on amniocentesis or CVS.
- NST reactive = ≥ 2 accelerations within 20 minutes, each ≥ 15 bpm and lasting ≥ 15 seconds (at ≥ 32 weeks).
- Late/early decelerations belong to the CST, not the NST.
- BPP: each item scores only 0 or 2; breathing ≥ 30 seconds within 30 minutes = 2 points; total score ≤ 4 requires intervention.
- The worst umbilical artery Doppler finding = REDV (reversed), not AEDV.
- TTTS: the donor is small, oligohydramniotic, and anemic; the recipient is large, polyhydramniotic, and polycythemic.
- Folic acid started 4 weeks before conception cuts NTD risk by ~70%; open NTD = AFP elevated in isolation.
- The Kleihauer-Betke test estimates fetomaternal hemorrhage volume, which sets the anti-D dose.
- GBS gets penicillin intrapartum — not early treatment the moment the screen turns positive.
- Core mechanism = impaired trophoblast invasion → placental ischemia → sFlt-1 ↑, PlGF ↓ → endothelial dysfunction.
- The classic triad = hypertension + proteinuria + edema (current: edema is not a diagnostic criterion); elevated blood glucose does not count (that is GDM).
- Severe = blood pressure ≥ 160/110, PLT < 100,000, liver/kidney/lung/neurologic damage; the amount of proteinuria is not a severity marker.
- MgSO4 = seizure prevention (not an antihypertensive); toxicity begins with loss of deep tendon reflexes, antidote calcium gluconate.
- Acute blood pressure control = hydralazine / labetalol / nifedipine; postpartum hemostasis = oxytocin.
- Methergine is contraindicated in preeclampsia (vasoconstriction).
- Management of severe preeclampsia = immediate admission + evaluation for delivery; outpatient follow-up alone is not acceptable.
- The complication most increased in obese pregnant women = GDM (3–7 fold, higher than preeclampsia's 2–4 fold).
- Risk factors for pulmonary edema = preeclampsia / sepsis / tocolytics; GDM is not one of them.
- First-choice medication for GDM in pregnancy = insulin; diet control must not be forgotten.
- Treating 100 mg of proteinuria as severe (it does not even reach the 300 mg diagnostic threshold).
- Mistaking MgSO4 for an antihypertensive.
- Using methergine for postpartum hemostasis in preeclampsia (blood pressure spikes).
- Choosing preeclampsia as the top complication in an obese pregnant woman (it should be GDM).
Traps:
- Late period + lower abdominal pain + bleeding → test for pregnancy first to rule out a ruptured ectopic.
- Incomplete abortion = open cervical os + retained tissue → D&C.
- MTX and salpingostomy carry a similar risk of repeat ectopic pregnancy (MTX is not higher).
- Painless, bright-red bleeding = previa (ultrasound, no digital exam); pain plus a rigid uterus = abruption (guard against DIC).
- Shoulder dystocia: McRoberts plus suprapubic pressure is first-line; fundal pressure is forbidden.
- The most common cause of PPH = uterine atony (the Tone in the 4 T's); its most common cause = overdistension (twin pregnancy); first-line oxytocin.
- Ergot is contraindicated in preeclampsia; PGF2α (carboprost) is contraindicated in asthma.
- The earliest sign of hemorrhage = tachycardia (not hypotension).
- Active management of the third stage = oxytocin + controlled cord traction + massage (WHO 2012: massage replaced by uterine tone assessment); does not include manual extraction of the placenta.
- Chorioamnionitis → antibiotics + prompt delivery; tocolytics are forbidden.
Traps: using fundal pressure for shoulder dystocia, using ergot for PPH in preeclampsia, using carboprost in asthma, treating hypotension as the earliest sign of hemorrhage, blaming atony on previa/abruption, and giving tocolytics after infection is confirmed.
- Nullipara = para 0; a miscarriage (< 20 weeks) does not count toward para; a twin delivery is +1 para but Living +2.
- Fundal height reaches the umbilicus at 20 weeks; after 20 weeks, fundal height (cm) ≈ gestational age in weeks.
- Amniotic fluid pH 7.0–7.5 (alkaline): Nitrazine turns blue plus ferning; vaginal secretions pH 4.5–5.5 (acidic); blood, semen, and BV can cause false positives.
- First-stage active phase with ≥ 4–6 hours of no progress = arrest; third stage > 30 minutes = retained placenta.
- Station 0 = engaged; operative delivery requires station ≥ +2.
- Perineal laceration third degree = includes the anal sphincter (memorize the cumulative order).
- Prolactin makes the milk, oxytocin ejects it (the most frequently reversed trap).
- The contraindication to VBAC is a classical vertical incision; epidural analgesia is not a contraindication.
- Protection of vulnerable research populations = limited capacity for autonomous consent, not small numbers.
Traps: counting para as the number of pregnancies, using fundal pressure for shoulder dystocia (see Chapter 3), swapping prolactin and oxytocin, and mistakenly believing VBAC forbids epidural analgesia.
- Apgar assesses the response to resuscitation and is never used to decide whether to start resuscitation; a heart rate of 75 = 1 point, cyanosis all over = 0 points.
- NRP: heart rate < 100 with no breathing → PPV for 30 seconds first; only if still < 60 add compressions (3:1); if still < 60, give adrenaline. Starting compressions without first giving PPV is wrong.
- The core of neonatal resuscitation = ventilation (the reverse of the adult approach).
- Physiologic weight loss ≤ 10%; recovers by day 7–10; anything more is abnormal.
- Acrocyanosis is normal; central cyanosis requires cardiopulmonary evaluation.
- IDM = hypoglycemia within 24 hours, hypocalcemia, hypomagnesemia, polycythemia, macrosomia; not hyperglycemia.
- Nuchal rigidity is the least reliable sign of neonatal meningitis; a bulging fontanelle is the reliable one; GBS = a gram-positive coccus, ascending from the birth canal.
- Breast milk jaundice = unconjugated → phototherapy only above the threshold; MRCP is not needed.
Traps: judging a newborn by adult-style nuchal rigidity, treating an 11% weight loss as normal, jumping straight to chest compressions at heart rate < 100, writing hypercalcemia for IDM, and ordering an MRCP for breast milk jaundice.
- Epididymis = pseudostratified columnar + stereocilia (immotile); fallopian tube = simple columnar + true cilia (motile).
- Ectocervix = non-keratinized stratified squamous epithelium; the SCJ = the favored site of cervical cancer.
- Spermiogenesis = the remodeling of a spermatid into a sperm, with no division; spermatogenesis is the one that includes meiosis.
- The zona pellucida = first appears at the primary follicle (absent in the primordial follicle).
- Semen: seminal vesicle fructose 60%, prostate PSA 30%; the corpus cavernosum contributes nothing.
- The skin of the penile shaft has no subcutaneous fat.
- Seminiferous tubule: Leydig cells secrete testosterone (outside the tubule); myoid cells secrete nothing; Sertoli cells form the blood-testis barrier.
- The myometrium's middle layer is thickest; during pregnancy it undergoes hypertrophy plus hyperplasia.
Traps: writing "true cilia" for the epididymis, saying the primordial follicle already has a zona pellucida, listing the corpus cavernosum as a source of semen, answering that myoid cells secrete testosterone, and writing that the outer layer of the myometrium is thickest.
- hCG comes from the syncytiotrophoblast (not the corpus luteum, not the decidua, not the pituitary).
- The action of hCG = rescuing the corpus luteum → progesterone sustains the pregnancy (not a direct effect of hCG itself).
- The outermost layer of the villi is always syncytiotrophoblast.
- Capillaries appear only at the tertiary villus stage; secondary villi go only as far as connective tissue.
- The placental barrier thins as pregnancy advances (as the cytotrophoblast regresses).
- The decidua arises from the maternal endometrium.
Traps: saying the corpus luteum secretes hCG, saying secondary villi already have blood vessels, writing the outermost layer as cytotrophoblast, or counting the decidua as fetal tissue.
- The three evaluation axes: male semen, HSG, ovulation; check the man's semen first, image the tubes with HSG, assess ovulation with luteal-phase progesterone.
- Most uterine fibroids are not the primary cause of infertility; only submucosal fibroids directly impair implantation.
- The LH surge threshold = E2 ≥ 200 pg/mL sustained for > 50 hours; not a progesterone value.
- Clomiphene is ineffective in hypothalamic-pituitary failure; the next step after clomiphene resistance = metformin / letrozole / gonadotropin, not a dopamine agonist.
- Letrozole = first-line ovulation induction in PCOS (higher live-birth rate than clomiphene).
- PCOS = insulin resistance → SHBG↓ → free androgen↑, anovulation, unopposed endometrial thickening.
- The first step for azoospermia = repeat the semen analysis, not immediate treatment.
- ART: only IUI skips egg retrieval.
- Meiosis II is completed after fertilization, not at ovulation.
- COC contraindications: smoking > 35 years old, VTE, migraine with aura.
Traps: choosing a dopamine agonist for clomiphene resistance, assuming any fibroid is the cause of infertility, placing completion of meiosis II at ovulation, or mistakenly remembering the LH surge threshold as a progesterone value.
- Body pairings: Schiller-Duval = yolk sac tumor (AFP); Call-Exner = granulosa cell tumor; abundant psammoma bodies = serous tumor, well differentiated; dysgerminoma = large cells, pale cytoplasm, prominent nucleoli.
- Endometrioid ovarian carcinoma often coexists with endometrial cancer; clear cell carcinoma is linked to endometriosis and is uniformly grade 3.
- Cervical cancer FIGO staging: invasion of the lower 1/3 of the vagina = IIIa; parametrial involvement = IIb; ureteral obstruction / hydronephrosis = IIIb; lymph node metastasis = IIIc (c1 pelvic, c2 para-aortic, added in 2018).
- CIN2 / CIN3 → conization / LEEP; CIN1 → observation; the HPV vaccine has no therapeutic effect.
- Postmenopausal bleeding → history + pelvic exam + TVS → endometrial sampling; do not go straight to hysterectomy or estrogen.
- Choriocarcinoma most often metastasizes to the lung; brain metastasis is assessed by CSF/serum hCG ≥ 1:60; high-risk disease uses EMA-CO.
- Avoid monopolar electrocautery when transecting the IP ligament (risk of ureteral injury).
Traps: ruling out IIIa because "there is no parametrial invasion" (lower 1/3 vaginal involvement already upstages it), simply observing CIN2, giving estrogen to work up postmenopausal bleeding, or reading a 1:100 ratio as evidence of brain metastasis.
- Dysgerminoma typically occurs at ages 10–30, marker LDH, radiosensitive; ovarian malignancy under age 10 is mostly the yolk sac tumor (AFP + Schiller-Duval bodies).
- Complete mole: 46,XX, sky-high hCG, 15–20% malignant transformation; partial mole: triploid, 1–5% malignant transformation.
- Ectopic pregnancy: 95% occur in the fallopian tube (ampulla most common).
- Mammary Paget disease ≈ almost always an underlying breast cancer; extramammary Paget disease usually has no underlying invasive cancer.
- BPH = transition zone + combined epithelial and stromal hyperplasia (prostate cancer arises in the peripheral zone).
- Cryptorchidism most often arrests in the inguinal canal, raising the risk of seminoma.
- Site of onset in orchitis: tuberculosis / gonorrhea / E. coli start in the epididymis; syphilis / mumps start in the testis.
- The adult granulosa cell tumor = low-grade malignant, can recur late, secretes estrogen, Call-Exner bodies.
Traps: answering "dysgerminoma" for a child (it should be yolk sac tumor), calling the adult granulosa cell tumor benign, assuming extramammary Paget disease carries invasive cancer the way mammary Paget disease does, saying tuberculosis strikes the testis first, or describing BPH as simple epithelial hyperplasia.
- The three mechanisms of high intra-abdominal pressure in laparoscopy = CO2 absorption (hypercarbia) + compression of the inferior vena cava (hypotension) + CO2 embolism.
- Least related to the pneumoperitoneum = hyperglycemia (a spot-the-exception test point).
- Abortion in a minor = written consent from a legal guardian.
- A forged consent form = void from the outset; lawful consent must be obtained to cure it; good intentions cannot bypass the procedure.
- Facilitated diffusion = down the gradient, requires a membrane protein, consumes no ATP, saturable; simple diffusion has no ceiling.
- Primary hydrolyzes ATP directly; secondary borrows the Na⁺ gradient; the wellspring of it all is the Na⁺-K⁺ ATPase (3 Na⁺ out, 2 K⁺ in, electrogenic; inhibited by ouabain/digoxin).
- H⁺-K⁺ ATPase (parietal cell) = the body's largest ionic concentration gradient (on the order of a million-fold).
- For secondary active transport, whether "this ion moves down or against" depends on locking onto the ion the question asks about (SGLT: Na⁺ down, glucose against).
- Resting Vm lies closest to E_K (≈ −90 mV); opening Na⁺ channels moves it toward +60, opening K⁺ channels toward −90.
- Hypertonic > 300, isotonic = 0.9% NaCl; 5% dextrose ends up hypotonic (trap).
- Traps: picking Na⁺-K⁺ for the largest ionic gradient; labeling secondary active transport as consuming ATP directly; assuming cells swell in a hypertonic solution; treating 5% dextrose as isotonic over the long run.
- Hypothalamic set point: anterior for heat loss, posterior for heat production; damage drives each in the opposite direction.
- Fever (PGE₂ raises the set point): antipyretics are effective; heat stroke (set point normal, heat dissipation fails): use physical cooling, antipyretics are ineffective.
- The first few seconds of exercise = creatine phosphate; 10 seconds to 2 minutes = anaerobic glycolysis (lactate produced); > 2 minutes = aerobic.
- Pernicious anemia = intrinsic factor deficiency → B12 malabsorption → megaloblastic anemia + subacute combined degeneration; replace B12, never folate alone (it masks the neuropathy); folate deficiency causes no neurological symptoms.
- Traps: antipyretics mistakenly given for heat stroke; aerobic metabolism chosen for the first few seconds; folate alone masking the neuropathy.
- Adrenal medulla = a specialized postganglionic neuron, so it is innervated by preganglionic sympathetic fibers + ACh, not postganglionic + NE. Trap: choosing "postganglionic + NE" pastes ordinary sympathetic wiring onto the medulla.
- Cortisol: suppresses white cells (eosinophils/lymphocytes↓), stimulates RBCs, suppresses bone, and produces a pseudo-rise in neutrophils (demargination); its permissive effect enables α-mediated vasoconstriction — Addison crisis → hypotension. Trap: extending "suppresses white cells" to RBCs, writing "increases bone mass," or forgetting that the neutrophil rise is pseudo.
- The β cell uses GLUT2 (high Km, non-saturable); the signaling chain is ATP↑ → K_ATP closes → depolarization → Ca²⁺ influx → insulin exocytosis. Sulfonylureas close K_ATP directly. Trap: writing GLUT4 or a GPCR.
- Insulin within seconds: GLUT4 translocation, K⁺/amino acids entering the cell, Na⁺/K⁺-ATPase activation (= the hyperkalemia rescue mechanism); protein synthesis takes hours, not an acute effect. Trap: treating "protein synthesis" as a seconds-scale acute effect.
- Steroids/thyroid hormone = lipid-soluble, intracellular receptors; peptides/catecholamines = water-soluble, membrane receptors; insulin = RTK (not cAMP). Trap: labeling cortisol as a membrane receptor, or insulin as cAMP.
- The antrum's appearance = secondary follicle; the cumulus oophorus appears only at the Graafian stage; an unrescued corpus luteum lasts ≈14 days. Trap: slotting the cumulus oophorus into the primary follicle.
- O₂ content = (1.34 × Hb × SaO₂) + dissolved O₂; anemia: PaO₂/SaO₂ normal, only Hb↓; CO poisoning: PaO₂ normal, SaO₂↓, oximeter falsely normal. Trap: misjudging anemia as PaO₂↓, or trusting a normal SpO₂ in CO poisoning.
- A–a gradient: normal → hypoventilation or high altitude (correctable with pure O₂); elevated and uncorrectable with pure O₂ = shunt. Trap: misclassifying oxygen-refractory hypoxia as V/Q mismatch.
- CO is always diffusion-limited, N₂O is always perfusion-limited; CO₂ travels in three forms: HCO₃⁻≈70% > carbamino-Hb≈23% > dissolved 7%; the chloride shift runs both ways (AE1 is an exchanger, not a cotransporter). Trap: reversing the direction of HCO₃⁻ at the tissue end, or mistaking AE1 for a cotransporter.
- During forced expiration, intrapleural pressure can turn positive → dynamic compression downstream of the equal pressure point; RQ: carbohydrate 1.0 > protein 0.8 > fat 0.7. Trap: writing "intrapleural pressure is always negative."
- Surfactant = secreted by type II cells, built from DPPC; the cough reflex's most sensitive point = the carina. Trap: choosing type I cells or the larynx.
- Poiseuille: Q ∝ r⁴; doubling the radius multiplies flow ×16 and drops resistance to 1/16 (tuning the radius is the most efficient lever). Trap: calculating it as ×2 or ×4.
- Compensation in valve disease: AR = volume expansion, Frank-Starling, eccentric hypertrophy; AS = concentric hypertrophy; AR never takes the ANP↑/natriuresis↑ route (that runs the opposite direction). Trap: choosing ANP↑ as AR's compensation.
- Papillary muscle/chordae = prevent the valve from prolapsing into the atrium, not open it.
- Baroreflex relay station = the NTS in the medulla (not the thalamus); baroreceptor firing↑ = blood pressure is high → the reflex response lowers it. Trap: choosing the thalamus, or equating firing↑ with raising pressure.
- Coronary arteries fill during diastole; tachycardia shortens diastole → ischemia; a β-blocker both lowers oxygen demand and lengthens perfusion time.
- The main driver of endurance training's oxygen-carrying gain = EPO↑ → RBC↑ (not vital capacity, not 2,3-DPG); vWF = endothelium + megakaryocytes (not smooth muscle). Trap: attributing vWF production to smooth muscle.
- Referred pain converges in the spinal cord (not the medulla/thalamus); gallbladder/diaphragm → right shoulder (C3–C5, phrenic nerve) — do not write left shoulder. Trap: placing the convergence point in the medulla, or writing gallbladder-referred pain as left shoulder.
- Skeletal muscle = DHPR (senses voltage) → RyR1 (releases calcium) → troponin-C, independent of extracellular calcium; smooth muscle = Ca-calmodulin → MLCK phosphorylates MLC, relaxation via MLCP, no troponin; the latch state lets smooth muscle sustain tension at extremely low energy cost. Trap: writing that DHPR releases calcium directly, or that skeletal muscle needs extracellular calcium.
- The NMJ end-plate = nicotinic (not muscarinic).
- Planning a voluntary movement = basal ganglia + cerebellum + cortex (never the cortex alone); a cerebellar lesion produces ipsilateral ataxia (two crossings = no crossing). Trap: choosing "the cortex alone."
- Taste = CN VII / IX / X; CN V carries the tongue's general sensation (touch, temperature, pain), not taste. Trap: mistaking the trigeminal nerve for a taste nerve.
- The auditory receptor = the organ of Corti in the inner ear (not the middle ear).
- Nasal fibers cross, temporal fibers do not; central compression of the optic chiasm → bitemporal hemianopia (pituitary macroadenoma, craniopharyngioma). Trap: writing "all fibers cross," or choosing homonymous hemianopia.
- Four kinds of membrane transport: simple diffusion, facilitated diffusion (with the gradient, needs a carrier, no ATP), primary active (against the gradient, direct ATP), secondary active (borrows the sodium gradient). Trap: describing SGLT as "active transport that spends ATP directly."
- Na⁺-K⁺ ATPase = electrogenic, 3 out, 2 in; the body's largest gradient = H⁺-K⁺ ATPase (gastric acid, ~10⁶-fold). Trap: choosing the Na⁺-K⁺ ATPase as the largest gradient, or reversing the 3:2 ratio.
- The parietal cell's three acid-secretion pathways: ACh + gastrin + histamine; an H₂ blocker blocks one pathway, a PPI blocks the final shared exit (the strongest option).
- Opening a given channel → the membrane potential drifts toward that ion's equilibrium potential; a hypertonic solution → red cells crenate (not swell). Trap: misjudging a hypertonic solution as causing swelling, or treating opening a Cl⁻ channel and opening a K⁺ channel as pulling in the same direction.
- IP₃R releases calcium, SERCA recaptures it (opposite directions). Trap: describing SERCA as releasing calcium.
- Saliva = both sympathetic and parasympathetic input stimulate secretion (parasympathetic gives copious and thin, sympathetic gives scant and thick); saliva is hypotonic. Trap: writing "the sympathetic system inhibits salivation."
- The strongest brake on gastric emptying = fat entering the duodenum (via CCK); gastric distension promotes emptying instead. Trap: choosing gastric distension as the brake.
- The four major gastrointestinal hormones: gastrin = acid + growth, CCK = bile + enzymes, secretin = neutralization, GIP = boosts insulin; GIP + GLP-1 = the two major incretins. Trap: swapping the functions of CCK and gastrin.
- The nodose ganglion ≠ the ENS (it is a vagal sensory ganglion); 90% of 5-HT comes from gut EC cells; the vomiting center sits in the medulla. Trap: filing the nodose ganglion under the ENS, or writing that 5-HT is mainly secreted by the brain.
- Long chains travel by lymph (as chylomicrons), short chains travel by portal vein; bile salts are reabsorbed at the terminal ileum. Trap: describing short chains as traveling by lymph.
- GFR = P_GC − (P_BS + π_GC); urinary obstruction → P_BS↑ → GFR↓; Ang II constricts the efferent arteriole to prop up GFR → an ACEI/ARB causes GFR to collapse in renal artery stenosis. Trap: reversing the efferent and afferent chains.
- Autoregulation: the myogenic reflex + tubuloglomerular feedback (macula densa → adenosine); stable across MAP 80–180. Trap: remembering only nerves/hormones and forgetting the macula densa.
- Glucose reabsorption occurs only in the PCT; NKCC2 is in the TAL (where loop diuretics act), NCC is in the DCT (where thiazides act); loop diuretics waste calcium, thiazides spare calcium. Trap: reversing the calcium direction of loop diuretics and thiazides.
- A low-protein diet → urea↓ → a weaker medullary gradient → concentrating capacity↓ (never enhanced). Trap: writing that a low-protein diet enhances concentration.
- AQP2 is translocated via ADH/V2/cAMP/PKA; AQP1 in the PCT/descending limb stays permanently open; every AQP = passive. Trap: writing that AQP1 is regulated by ADH, or treating an AQP as active transport.
- Aldosterone escape = only the sodium-retaining half escapes; K⁺/H⁺ excretion never escapes (so primary hyperaldosteronism keeps its persistent low K⁺ and metabolic alkalosis). Trap: assuming the escape includes potassium excretion.
- Renal compensation in DKA = reabsorbing almost all filtered HCO₃⁻ (none extra appears in urine) + Kussmaul breathing. Trap: writing that HCO₃⁻ is excreted into the urine in large amounts.
- The temperature center = the hypothalamus (anterior for heat loss, posterior for heat production); fever = the set point shifts up, heatstroke = regulation itself fails; NSAIDs/acetaminophen break a fever by inhibiting PGE₂. Trap: choosing the premotor cortex, or using antipyretics for heatstroke.
- The fueling sequence: stored ATP (seconds) → CP via creatine kinase (roughly 10–15 seconds) → anaerobic glycolysis (minutes) → aerobic metabolism (>2 minutes). Trap: attributing the first few seconds to glycolysis.
- Pernicious anemia = autoimmune process → intrinsic factor↓ → B₁₂↓; presentation: megaloblastic anemia + subacute combined degeneration (SCD) + atrophic gastritis; MMA↑ identifies B₁₂ deficiency; treatment = B₁₂ injection; folate only masks it. Trap: giving folate and assuming the correction is complete.
- BCC = most common, almost never metastasizes to viscera, best prognosis; high risk (morpheaform, perineural invasion, H-zone, recurrent) → Mohs surgery.
- AK progresses to SCC (not melanoma); SCC spreads via regional lymphatics.
- Melanoma prognosis is determined first by Breslow thickness; BRAF V600E-positive tumors can be treated with BRAF+MEK inhibitors; the most common subtype in Taiwan = acral lentiginous (lower BRAF mutation rate).
- Hutchinson's sign = subungual pigment extending onto the proximal nail fold, a red flag for subungual melanoma.
- Port-wine stain = benign vascular malformation, not a tumor; Sturge-Weber is associated with leptomeningeal angioma, glaucoma, and seizures.
- Keratoacanthoma = rapid growth over weeks on the face, crater-shaped; histology resembles SCC but behavior leans benign.
- NF-1 café-au-lait spots: > 5 mm in children, > 15 mm in adults (not 30 mm).
- Traps: describing BCC as "readily metastatic," describing melanoma as "good prognosis," saying AK turns into melanoma, listing port-wine stain among malignant tumors, rewriting the NF-1 threshold as 30 mm, and assuming acral melanoma always carries a BRAF mutation — all are common exam-killers.
- Sarcoidosis = cutaneous granuloma + bilateral hilar adenopathy; ACE↑, hypercalcemia/hypercalciuria; the Löfgren triad has a good prognosis; erythema nodosum is an accompanying feature, not histologically a granuloma.
- Scleredema diabeticorum: symmetric, asymptomatic induration of the upper back / nape / shoulders, with obesity plus poorly controlled T2DM; begins centrally on the trunk, no Raynaud phenomenon, no autoantibodies (contrast scleroderma, which begins acrally).
- Necrobiosis lipoidica = yellow-brown atrophic pretibial plaque (diabetes); acanthosis nigricans = insulin resistance / visceral malignancy (if sudden onset).
- Atopic dermatitis = Th2, eosinophils↑, IgE↑, flexor surfaces, filaggrin barrier defect; it is eosinophils that rise (not neutrophils); new treatment dupilumab (anti-IL-4Rα).
- Psoriasis = Th17/IL-23, extensor surfaces, thick silvery scale, Auspitz sign, Koebner phenomenon, nail pitting; avoid oral corticosteroids (abrupt withdrawal → pustular psoriasis); beta-blockers, lithium, and antimalarials can trigger it.
- Pityriasis alba: hypopigmented, finely scaling patches on the face of atopic children, benign, improves with age.
- Lower-leg pigment change + varicose veins = stasis dermatitis (venous), not PAOD (arterial).
- Asteatotic eczema management: moisturizer is king; avoid hot water/soap/excessive bathing (the "least appropriate" answer choice is usually "soak in a hot bath").
- Traps: treating erythema nodosum as sarcoidosis's granulomatous lesion itself (it is only an accompanying feature); reversing the flexor/extensor distribution of eczema and psoriasis; writing the elevated cell type in atopic dermatitis as neutrophils; giving psoriasis oral corticosteroids that rebound into the pustular form on withdrawal; describing scleredema as beginning acrally (that is scleroderma).
- Oral isotretinoin's absolute contraindication = pregnancy (a potent teratogen); adverse effects mucosal dryness, elevated triglycerides, elevated liver enzymes; contraindicated with tetracycline (pseudotumor cerebri).
- Acne should never be treated with oral antibiotic monotherapy (prone to resistance); it must be paired with benzoyl peroxide / a retinoid.
- Androgenetic alopecia = DHT-driven follicular miniaturization, gradual, non-scarring; not "sudden, massive shedding"; treated with minoxidil + finasteride.
- Hidradenitis suppurativa (HS) is fundamentally = follicular occlusion, not a simple bacterial infection; female > male, favors apocrine-bearing areas; adalimumab (anti-TNF-α) was the first approved biologic.
- Hirsutism (androgen-related, androgen-dependent sites in women) ≠ hypertrichosis (androgen-unrelated, any site); swapping the two is a common trap.
- Traps: combining isotretinoin with tetracycline, precipitating pseudotumor cerebri; treating acne with oral antibiotic monotherapy and breeding resistance; describing androgenetic alopecia as "sudden, massive shedding" (that is telogen effluvium); treating HS as a simple bacterial infection with prolonged antibiotics; swapping the definitions of hirsutism and hypertrichosis.
- Three levels of blister split: subcorneal (SSSS, pemphigus foliaceus) / intraepidermal suprabasal (pemphigus vulgaris, acantholysis) / subepidermal basement membrane zone (bullous pemphigoid, DH); shallow and fragile vs. deep and tense.
- Immunofluorescence as the conviction: pemphigus = net-like intercellular IgG (desmoglein 3); pemphigoid = linear IgG/C3 at the basement membrane (BP180/230); DH = granular IgA in the dermal papillae + celiac disease, treated with dapsone.
- Parakeratosis = psoriasis; spongiosis = eczema; acantholysis = pemphigus; change one part of the word and the diagnosis flips.
- Erythema migrans (Lyme disease) lesions yield Borrelia on culture; EM and EN are immune reactions and cannot be cultured; EM and erythema migrans sound alike but mean entirely different things.
- BSA cutoffs: SJS < 10%, overlap 10–30%, TEN > 30%; SCORTEN scores prognosis.
- Carbamazepine + HLA-B*1502 + Han Chinese → SJS/TEN, screening required before treatment; allopurinol pairs with HLA-B*5801; abacavir pairs with HLA-B*5701.
- AGEP fastest, SJS/TEN intermediate, DRESS slowest; DRESS comes with eosinophilia + visceral involvement + HHV-6 reactivation.
- Fixed drug eruption: recurs with the same drug at the same site every time, leaving post-inflammatory pigmentation.
- Erythema multiforme pathology = interface dermatitis, not dermal fibrosis; linked to HSV, preventable with acyclovir.
- SJS/TEN management = stop the drug + burn-style supportive care + ophthalmology consult; evidence growing for ciclosporin/etanercept, corticosteroids and IVIG remain controversial, avoid prophylactic antibiotics.
- Palmoplantar erythema: think of three things: drug allergy / secondary syphilis / EM.
- Sorafenib (a multikinase inhibitor) → hand-foot skin reaction + hair loss; EGFR inhibitors (cetuximab, erlotinib) → acneiform eruption.
- Elevated IgE ≠ atopic dermatitis (not a diagnostic criterion).
- Traps: flushing SJS/TEN with high-dose corticosteroids (controversial evidence), prophylactic systemic antibiotics (increase resistance); swapping erythema migrans with erythema multiforme; writing parakeratosis as hyperkeratosis or acantholysis as acanthosis; starting a Han Chinese patient on carbamazepine without first screening HLA-B*1502.
- Chronic urticaria is defined as ≥ 6 weeks (the trap writes 4 weeks).
- First line = second-generation antihistamine; do not use long-term oral corticosteroids; cyclosporine (CsA) is a later-line agent.
- CSU can be a preceding manifestation of autoimmune thyroid disease (Hashimoto's); screen recurrent cases with anti-TPO.
- A wheal resolves within 24 hours and leaves no trace; if > 24 hours, painful, and leaves a trace → urticarial vasculitis (biopsy required).
- Three types of angioedema: allergic (urticaria present, antihistamines effective) / ACEI (bradykinin) (no urticaria, antihistamines ineffective, stop the drug) / HAE (C1-INH deficient, C4 low).
- Penicillin allergy: fatal anaphylaxis can still occur on the very first exposure (no prior allergy history is no guarantee of safety).
- First line for anaphylaxis = IM adrenaline; antihistamines and corticosteroids are adjuncts only.
- Itch plus a wheal = histamine type; swelling alone with no itch, unresponsive to antihistamines = bradykinin type (ACEI / HAE).
- Traps: writing the CSU definition as 4 weeks (should be ≥ 6 weeks); writing first line as cyclosporine or long-term oral corticosteroids; continuing to add antihistamines for ACEI-induced angioedema (should stop the ACEI instead); giving corticosteroids/antihistamines for HAE (ineffective — needs C1-INH); assuming safety just because there is no prior history of penicillin allergy.
- Ichthyosis vulgaris ↔ filaggrin ↔ coexists with atopic dermatitis; X-linked ↔ steroid sulfatase (males, maternal labor may be delayed); Lamellar/CIE ↔ TGM1 (collodion baby); Harlequin ↔ ABCA12, the most severe, ectropion/eclabium.
- Darier: ATP2A2/SERCA2, acantholysis plus dyskeratosis, corps ronds/grains, V-shaped nail notches; worsens with summer/heat/sweat/sun (not winter); contrast with Hailey-Hailey = ATP2C1/SPCA1, flexural sites, no dyskeratosis.
- EB is a genetic disease, not autoimmune; treatment is supportive only; EBS intraepidermal (K5/14) / JEB junctional (laminin-332) / DEB superficial dermal (collagen VII — scarring, mitten-hand fusion of the digits, esophageal strictures, ↑SCC).
- Vitiligo = melanocytes autoimmune-destroyed and "gone" (not merely reduced function); enhances under Wood's lamp; frequently coexists with autoimmune thyroid disease, T1DM, pernicious anemia.
- Follicular repigmentation after phototherapy for vitiligo draws pigment from the outer-root-sheath reservoir; repigmentation is poor in hairless areas.
- Chemical leukoderma: occupational exposure to phenol / hydroquinone derivatives / monobenzone / 4-TBC; the key treatment is removing the source of exposure.
- Albinism: tyrosinase deficiency, normal cell number but unable to produce pigment (distinguish from vitiligo's "cells vanish").
- Melasma = ↑melanocyte activity (normal cell number), driven by UV + hormones; mainstay = sun protection + topical hydroquinone (inhibits tyrosinase); laser easily darkens and comes last.
- Reversible pigment changes: pityriasis alba, tinea versicolor (Malassezia produces azelaic acid, inhibiting tyrosinase) — pigment returns after treatment; do not mistake these for permanent depigmentation.
- Traps: describing vitiligo as "reduced cell function" (it is actually cell loss); describing melasma as an increase in melanocyte number (it is actually increased activity); treating melasma with laser first-line (easily darkens); calling Darier a winter-worsening disease (it is summer); mistaking EB for an autoimmune blistering disease; confusing the collodion baby with Harlequin (the latter is more severe and molecularly ABCA12).
- Axial myopia is the most common and the most severe; axial length outweighs corneal refractive power as the most important determinant of myopic power.
- The key differentiator for pseudomyopia = cycloplegic refraction — the myopia resolving after cycloplegia confirms it.
- Trap: treating corneal refractive power as the primary cause (wrong), or treating axial length as a secondary factor (wrong).
- First cut: epithelial (~50%) vs. non-epithelial (~50%, inflammatory/lymphoid).
- Most common benign epithelial tumor = pleomorphic adenoma; most common malignant epithelial tumor = adenoid cystic carcinoma.
- Pain = malignant (perineural invasion); bone "eaten away" = malignant. Painless, bone "pressed into" a remodeled shape = benign.
- Pleomorphic adenoma trap: never biopsy it — perform complete en bloc excision.
- Every symptom traces back to "light being scattered": blur, glare, monocular diplopia, myopic shift, yellowed colors; it does not cause "dry, gritty eyes" (that is dry eye disease), nor does it cause pain.
- The most common cause of renewed blur late after surgery = posterior capsular opacification (PCO); treatment = Nd:YAG laser posterior capsulotomy. It is not a cataract recurrence.
- Congenital cataract: unilateral cases are more likely to cause amblyopia than bilateral cases, requiring surgery within weeks plus patching therapy.
- Associated with cataract: diabetes mellitus, myotonic dystrophy (Christmas tree), atopic dermatitis; Graves' disease does not cause cataract (a high-frequency "does NOT" answer).
- Long-term steroids → PSC + elevated IOP + CSC; optic neuritis is not included.
- Marfan → superotemporal; homocystinuria → inferonasal.
- Alkali is more dangerous than acid (saponification, deep penetration); the first step is always copious irrigation; limbal ischemia = the most important visual prognostic factor.
- Hyphema → the danger is elevated intraocular pressure; elevate the head of the bed, avoid aspirin/NSAIDs, and guard against rebleeding (2–5 days); sickle cell disease carries higher risk.
- Orbital blowout fracture shows "visible" indirect signs on plain X-ray (it is not undiagnosable); white-eyed blowout with the oculocardiac reflex → an early surgical emergency.
- The most common benign orbital tumor in adults = cavernous hemangioma, which does not spontaneously regress; only the child's capillary hemangioma regresses.
- Treatment for direct CCF = endovascular embolization, not radiotherapy.
- Bilateral retinal hemorrhage in an infant without trauma → think shaken baby syndrome; manage congenital NLDO conservatively before age 1.
- Conjunctival injection (peripheral, mobile, blanches with phenylephrine) → conjunctivitis (painless, with discharge); ciliary flush (violaceous ring at the limbus) → keratitis/uveitis/acute glaucoma (pain, decreased vision).
- CCF presents with corkscrew vessels (mistaking it for conjunctivitis is the trap).
- The trachoma inclusion body = cytoplasmic, basophilic (not intranuclear and eosinophilic).
- Gonococcal ophthalmia neonatorum appears at 2–5 days (not 3–4 weeks); chlamydial at 5–14 days.
- Normal corneal curvature = Fuchs endothelial dystrophy (the other three all involve a curvature change).
- Episcleritis rarely progresses to true scleritis; scleritis is associated with rheumatologic disease.
- The least likely cause of hypopyon in a 4-year-old = HLA-B27 anterior uveitis (an adult-onset entity).
- No steroids for corneal infection before diagnosis (they let fungi/HSV/*Acanthamoeba* expand and suppress repair → melt and perforation).
- RP triad = bone-spicule pigment + waxy disc pallor + attenuated arterioles; the earliest symptom = night blindness (rods fail first); CME is not part of the triad.
- Coloboma location = 6 o'clock (unclosed inferonasal embryonic fissure).
- AMD risk factors = age, smoking, White race; Black patients are not high-risk; dry is more common / wet progresses fast (CNV, anti-VEGF).
- For retinal detachment in high myopia, LASIK does not lower the risk (it operates on the cornea, not the axial length); angioid streaks are not a feature of high myopia.
- Choroidal melanoma spreads hematogenously, most often to the liver (the eye has no lymphatics); collar-button–shaped elevation.
- In VKH, cutaneous vitiligo is a late finding (eye/brain first, skin/hair later); bilateral granulomatous panuveitis, sunset glow fundus.
- Aqueous humor is recovered into the venous system, not the lymphatics (the eye has no lymphatic vessels).
- POAG: an IOP ≤21 does not guarantee safety — individualize the target IOP; the angle is open.
- AACG emergency management: acetazolamide + mannitol to lower the pressure first, then perform LPI; LTP must not be done immediately (LTP is an open-angle treatment and cannot reach the target when the cornea is edematous and the angle closed); prophylactic LPI for the fellow eye.
- Congenital glaucoma triad: epiphora, photophobia, blepharospasm; buphthalmos, corneal edema, Haab striae; iris color is usually normal (the "least likely" answer).
- Phacomorphic glaucoma: a swollen lens pushes the iris → angle-closure; removing the swollen cataract is the definitive fix.
- CAI electrolytes: hypokalemia + metabolic acidosis (not hyperkalemia); contraindicated in sulfa allergy, predisposes to kidney stones.
- Prostaglandins lower IOP the most (via the uveoscleral pathway); timolol is contraindicated in asthma.
- Skeletal muscle: DHPR (voltage sensor) → mechanically activates RyR1 → SR releases calcium → binds troponin C.
- Smooth muscle: SR + extracellular calcium → calmodulin → MLCK phosphorylates MLC (on); MLCP dephosphorylates it (off).
- The neuromuscular end plate = the nicotinic (Nm) receptor (not muscarinic); this is exactly what the antibodies in MG attack later on.
- Traps: mistaking DHPR for the release channel itself, reversing the direction of MLCK/MLCP, swapping troponin and calmodulin.
- Skeletal muscle: DHPR is the voltage sensor (not the release channel) → mechanically activates RyR1 → binds troponin C.
- Smooth muscle: MLCK turns it on, MLCP turns it off; calcium binds calmodulin.
- The neuromuscular end plate = nicotinic (Nm); the antibodies in MG attack it.
- Referred pain converges in the spinal cord (not the medulla); gallbladder → right shoulder (phrenic nerve, C3–5); myocardium → left arm and jaw (T1–T4).
- The planning of voluntary movement is done by the basal ganglia + cerebellum; the cortex handles execution.
- The auditory receptor is in the inner ear (organ of Corti); taste is carried by CN 7-9-10 (the trigeminal has nothing to do with taste); nasal retinal fibers cross, temporal fibers do not.
- Young + pain on eye movement + RAPD = optic neuritis (may be the first presentation of MS); treatment = IV methylprednisolone; standard-dose oral prednisone alone is forbidden (the ONTT showed it increases relapse).
- Elderly + sudden painless blindness = vascular occlusion (CRAO's cherry-red spot / CRVO's blood-and-thunder fundus); elderly + temporal headache + ESR↑ = GCA — give steroids immediately, do not wait for the biopsy.
- First-line treatment for accommodative esotropia = full hyperopic correction; hyperopia is more amblyogenic than equivalent myopia (a child's accommodative power is actually "stronger" than an adult's).
- A CN VI palsy in a child = a red flag demanding an aggressive workup; a CN VI palsy in an elderly diabetic can be observed for 3 months.
- Unilateral ptosis does not rule out MG; MG is fatigable.
- Traps: DHPR ≠ the release channel; the end plate is nicotinic, not muscarinic; accommodative convergence does not belong to the tonic category; the ONTT forbids standard-dose oral prednisone alone; a CN VI palsy in a child must never simply be observed.
- The three long tracts: motor + proprioception are ipsilateral, pain and temperature are contralateral (the spinothalamic tract crosses the instant it enters).
- Central cord syndrome = arms worse than legs (the medial part of the lateral corticospinal tract governs the arms); syringomyelia = cape-distribution dissociated loss of pain/temperature with proprioception preserved.
- Brown-Séquard = ipsilateral motor/proprioception loss, contralateral pain/temperature loss; anterior cord = motor + pain/temperature loss, proprioception preserved.
- Jefferson = a ≥3-part burst fracture of C1; odontoid type II is the most common and hardest to heal; Hangman = bilateral C2 pars fracture + hyperextension; double-lumen sign = facet joint dislocation (C6–7).
- Neurogenic shock: low BP + bradycardia/normal rate + warm skin → a vasopressor (not fluids alone); spinal shock = complete loss of reflexes, with return of the BCR marking its end — do not mix these two up.
- Acute steroids in SCI are no longer the standard of care; at most an option within 8 hours; withheld in penetrating trauma.
- Imaging: CT first when a fracture is suspected; MRI to see cord edema.
- AD = at/above T6, chronic phase; the most common trigger = a distended bladder; presentation = paroxysmal hypertension + bradycardia + a flushed, sweating upper body; the first step = sit upright + remove the trigger, medicate only if still high.
- ASIA: any voluntary anal contraction = incomplete; most muscles < 3 → C, ≥ 3 → D.
- A urinary tract infection is the most common complication; heterotopic ossification must not be resected while immature; a reflexogenic erection = S2–4 parasympathetic, a psychogenic one = T11–L2 sympathetic; sleep-disordered breathing in cervical cord injury is predominantly OSA.
- Cauda equina/conus = LMN; saddle numbness + urinary difficulty = a surgical emergency (decompress within 24–48 hours).
- Erb (C5–6) = the waiter's tip posture; Klumpke (C8–T1) = claw hand + Horner syndrome.
- Traps: writing pain/temperature loss as ipsilateral, mistaking neurogenic shock for hemorrhagic shock, answering "standard of care" for methylprednisolone in SCI, giving an antihypertensive in AD before removing the trigger, sending a cauda equina patient home as simple low back pain.
- An elderly patient who suddenly turns confused — think delirium first; the only dividing line between MCI and dementia is ADLs.
- AD's CSF: Aβ42↓, p-tau↑ (piling up in the brain means less makes it into the CSF).
- DLB = fluctuating cognition + visual hallucinations + spontaneous parkinsonism + REM sleep behavior disorder; D2 receptors are excessively fragile → haloperidol and dopamine agonists are contraindicated; use low-dose levodopa + a cholinesterase inhibitor.
- NPH's triad: gait disturbance first (the enlarged ventricle compresses the corticospinal tract's leg fibers), urinary incontinence, dementia; diagnosis is confirmed by a tap test, 30–50 mL.
- CJD = rapid dementia + myoclonus + cerebellar dysfunction, fatal within months; prions require 134°C, high-pressure sterilization for 18 minutes to destroy.
- TGA = sudden onset, personal identity preserved (time orientation usually impaired), self-limited; do not treat it as a stroke emergency.
- The four reversible/treatable dementias: NPH, B12 deficiency, hypothyroidism, neurosyphilis.
- Traps: distinguishing MCI from dementia by language or executive function (only ADLs should be used); giving haloperidol in DLB; remembering NPH's sequence as dementia appearing first; thinking ordinary sterilization is enough to kill prions.
- Seizure vs. syncope: autonomic prodrome + rapid recovery = syncope; biting the side of the tongue + a postictal state = seizure.
- Absence seizure = 3 Hz spike-and-wave, no postictal state; myoclonic seizures leave consciousness preserved.
- TLE arises from the hippocampus + amygdala of the medial temporal lobe; bilateral hippocampal sclerosis forbids bilateral resection.
- Status epilepticus ≥5 minutes; ladder: a BZD (increases GABA-A opening frequency) → levetiracetam / valproate / fosphenytoin (a different mechanism, avoiding desensitization) → midazolam / propofol plus intubation; pediatric mortality 3–9% (not >50%).
- The Cushing reflex = hypertension + bradycardia + irregular breathing (pressure up, rate down).
- Seizures occur in 75–90% of Sturge-Weber; confusional arousal is not part of the narcolepsy tetrad.
- Traps: escalating a BZD indefinitely in status epilepticus; reversing the direction of the Cushing reflex; mistaking a myoclonic seizure for loss of consciousness; underestimating the seizure rate in Sturge-Weber.
- Hyperacute ischemia: look at DWI (minutes, cytotoxic edema); FLAIR needs 6–12 hours.
- Hemorrhagic transformation: MRI GRE/SWI beats CT (counter to intuition).
- The empty delta sign = cerebral venous sinus thrombosis; a young woman, the postpartum period, oral contraceptives, dehydration.
- TSC = cortical tubers + subependymal calcified nodules + SEGA; mechanism = mTOR overactivation.
- A calcified intra-axial tumor in an adult = oligodendroglioma (1p/19q); the most common adult posterior fossa lesion = metastasis; the pattern reverses in children.
- ALS/FTD = TDP-43, SOD1 (do not pair with tau); AD = Aβ (plaques) + tau (NFTs); PD/DLB = α-synuclein.
- Hypertensive hemorrhage is deep + Charcot-Bouchard; CAA = Aβ + lobar + ApoE.
- HSV encephalitis = Cowdry A + hemorrhagic necrosis of the temporal lobe (traveling up along V1 and the olfactory tract); caseating granulomas never occur in HSV.
- Medulloblastoma prognosis: WNT best, Group 3 worst; craniopharyngioma = enamel-organ-like + Rathke's pouch.
- The finding least associated with traumatic brain injury sequelae = demyelinating disease.
- Traps: pairing ALS with tau; writing CAA as piling up tau; putting caseating granulomas into HSV; linking traumatic brain injury with MS.
- On CT, white = blood, black = ischemia; a normal early CT cannot rule out a stroke.
- A lacunar stroke never produces cortical signs (no aphasia/neglect/hemianopia).
- Thalamus = contralateral pure sensory loss; basilar artery/ventral pons = locked-in syndrome (only vertical eye movement spared).
- Wallenberg (PICA) = crossed pain/temperature loss (ipsilateral face, contralateral trunk) + Horner syndrome + dysphagia/hoarseness + vertigo/nystagmus + ipsilateral cerebellar signs — the lateral medulla packs its structures densely, so one PICA occlusion knocks out five systems.
- tPA ≤4.5 hours (the time window comes from balancing salvageable penumbra against hemorrhage risk); thrombectomy can extend to 24 hours (DAWN/DEFUSE-3 imaging-mismatch selection); anticoagulation for secondary prevention in cardioembolic stroke.
- In acute ischemic stroke, a BP <220/120 is not urgently lowered; a target of <185/110 is needed before tPA or thrombectomy; over-lowering will starve the penumbra.
- ICH location = cause: deep + Charcot-Bouchard = hypertensive; lobar = CAA.
- ICH management: control BP to around 140, steroids are forbidden, operate for a cerebellar hemorrhage >3 cm.
- SAH = thunderclap headache + a star-shaped pattern of white on CT; if CT is negative → LP looking for xanthochromia; nimodipine for 21 days prevents vasospasm.
- Moyamoya = terminal ICA + origins of the ACA/MCA (the PCA is spared); East Asian, bilateral, ischemic in children / hemorrhagic in adults; an STA-MCA bypass is the standard treatment.
- The three axes of aphasia: Broca is nonfluent / Wernicke is fluent but cannot comprehend / conduction has poor repetition / transcortical has preserved repetition.
- The Barthel Index excludes medication/IADLs; DVT patients cannot be kept on bed rest for a week; CRPS I spares the elbow; never forcefully pull on a subluxed shoulder.
- Traps: writing moyamoya as MCA+PCA; giving steroids in ICH; pairing a lacunar stroke with hemianopia; failing to answer "why 4.5 hours" for the tPA window with the penumbra-versus-hemorrhage-risk tradeoff.
- PD = nigral dopaminergic degeneration + Lewy bodies; dysmetria is cerebellar, not part of PD.
- Levodopa → dyskinesia (pulsatile); DA agonist → impulse control disorder, hallucinations (D3 reward).
- CO poisoning → globus pallidus necrosis → delayed-onset parkinsonism (primary PD is in the substantia nigra — don't confuse the site).
- Huntington disease: chorea diminishes in late disease (shifts to dystonia).
- Valproate causes postural tremor; distinguish from ET.
- Parkinsonism before age 40 + liver disease + psychiatric symptoms → Wilson disease (K-F ring, ceruloplasmin↓, urinary copper↑).
- RLS: worse with rest, better with movement, nocturnal, high risk in pregnancy/iron deficiency; alcohol does not relieve it.
- Traps: attributing hallucinations and gambling to levodopa, placing the CO poisoning lesion in the substantia nigra, claiming Huntington's chorea worsens in late disease, describing ET as a resting tremor.
- Headache: rule out secondary causes first; every letter of the SNOOP red flags has a mechanistic reason.
- The three primary-headache mechanisms: migraine = trigeminovascular activation + CGRP; tension-type = myofascial tension; cluster = hypothalamic + trigeminal-autonomic reflex.
- Cluster headache = oxygen + triptan for acute attacks, verapamil for prevention.
- Ergotamine = α-agonist + 5-HT agonist (not a β-agonist); contraindicated in peripheral vascular disease.
- Carbamazepine = first-line for trigeminal neuralgia, does not prevent migraine; chronic TTH prevention = amitriptyline.
- Temporal arteritis = large-vessel vasculitis (also involving medium branches such as the temporal artery), palpable temporal artery, ESR↑, steroids immediately, don't wait for biopsy.
- Positional headache + diffuse dural enhancement = intracranial hypotension; obese young woman + papilledema + LP opening pressure↑ = IIH (acetazolamide; untreated leads to blindness).
- Migraine + analgesic use >10–15 days/month = MOH; stop the drug.
- Traps: labeling ergotamine a β-agonist, claiming CBZ prevents migraine, reversing positional versus thunderclap headache.
- Meningioma = the most common primary tumor (not second); extra-axial, dural tail, can enlarge with female sex/pregnancy; the most common tumor overall = metastasis.
- Low-grade gliomas present with seizures more often than GBM does; GBM = focal deficit + raised intracranial pressure, ring enhancement + central necrosis, crossing the corpus callosum.
- WHO Grade IV = GBM; now specifically IDH-wildtype; oligodendroglioma = 1p/19q co-deletion.
- Vestibular schwannoma = vestibular nerve (not cochlear); bilateral = NF2; surgical complication involves CN VII; small tumors can have radiosurgery.
- A pituitary tumor is associated with prolactin "elevation" (stalk effect/prolactinoma); first-line for prolactinoma is a DA agonist; medication precedes surgery; a macroadenoma can cause pituitary apoplexy.
- The most common source of leptomeningeal metastasis = breast cancer plus leukemia/lymphoma (don't remember only lymphoma).
- Sturge-Weber: seizures in 75–90%; TSC = mTOR hyperactivation; NF1 = neurofibromin (17q, Ras upregulated); NF2 = merlin (22q), bilateral vestibular schwannomas.
- Childhood brain tumors are mostly in the posterior fossa; most common benign = pilocytic astrocytoma, most common malignant = medulloblastoma; the opposite direction from adults.
- Traps: ranking meningioma as second most common, pairing ALS with tau, claiming a pituitary tumor causes low prolactin, listing CN VI as the surgical complication of vestibular schwannoma, underestimating the Sturge-Weber seizure rate.
- MG = postsynaptic AChR antibody + thymoma + weaker with use; LEMS = presynaptic P/Q calcium channel antibody + SCLC + stronger with use; on EMG, MG shows low-frequency decrement / LEMS shows high-frequency increment; avoid aminoglycosides in MG.
- DMD = X-linked recessive, calf pseudohypertrophy, Gower sign, sky-high CK; DM1 = autosomal dominant, CTG repeat, distal + facial + myotonia; CMT = autosomal dominant, pes cavus, foot drop, inverted champagne bottle legs.
- GBS = 1–3 weeks post-infection (Campylobacter), ascending symmetric weakness + areflexia, CSF albuminocytologic dissociation, IVIG/PLEX (steroids alone are ineffective), watch the FVC; a bone scan is entirely useless; Miller Fisher = ophthalmoplegia + ataxia + areflexia + anti-GQ1b.
- MS = CNS demyelination, young women, optic neuritis can be the presenting feature, Dawson's fingers, CSF oligoclonal bands, McDonald DIT + DIS; acute attacks use IV methylprednisolone; multiple DMTs available; cognitive impairment in 40–65% (not rare); Uhthoff = symptoms worsen with rising body temperature.
- CNS infection CSF profiles: bacterial: PMN/glucose↓, viral: lymphocytes/glucose normal, tuberculous: lymphocytes/glucose↓↓, protein↑↑; HSV-1: temporal lobe, immediate acyclovir, don't wait for PCR; brain abscess: DWI hyperintense (opposite of GBM's necrotic DWI hypointense).
- CP: spastic diplegia = prematurity + PVL, no hearing loss; athetoid = kernicterus, most prone to hearing loss.
- Febrile seizure: age 6 months–5 years; simple type <15 minutes, generalized, does not damage the brain, no long-term AED needed; West syndrome: 4–8 months, hypsarrhythmia, ACTH or vigabatrin (the latter for TSC).
- TORCHeS: CMV most common, periventricular calcification + hearing loss; Toxoplasma: diffuse calcification + chorioretinitis; Rubella: cataracts + hearing loss + PDA.
- Cauda equina/conus medullaris = LMN, a surgical emergency (already covered in §2); don't confuse neurogenic shock with spinal shock (§2).
- Traps: reversing the effort-response contrast between MG and LEMS, treating GBS with steroids, calling MS cognitive impairment rare, giving every febrile seizure a long-term AED, missing urgent treatment for West syndrome, attributing hearing loss to the diplegic type of CP, waiting for PCR before treating HSV encephalitis.
- The nucleolus has no membrane; the Nissl body never enters the axon; after axotomy = central chromatolysis (the face of repair); rabies/tetanus ride retrograde dynein.
- CNS myelin = oligodendrocyte (one wraps many); PNS myelin = Schwann cell (one wraps one segment); CNS myelin clearance = microglia + macrophages; microglia are the only glia not of ectodermal origin.
- BBB = tight junctions + basement membrane + astrocyte end-feet; the area postrema/posterior pituitary lack a BBB.
- Sites normally containing CSF = subarachnoid space, ventricles, central canal; the subdural space is potential only.
- Vesicle → brain region → ventricle: telencephalon→lateral ventricles, diencephalon→third, mesencephalon→aqueduct, metencephalon+myelencephalon→fourth.
- Cerebellum = metencephalon; aqueductal stenosis = obstructive hydrocephalus.
- Neuropores: rostral day 25, caudal day 27–28; failure of rostral closure = anencephaly, failure of caudal closure = spina bifida (folic acid deficiency).
- Dandy-Walker (bulges outward) vs Chiari II (pushed downward); alar plate sensory/basal plate motor; the red nucleus is from the basal plate.
- Optic nerve = CNS extension→oligodendrocyte myelin extends only to the optic disc; retina = neuroectoderm (not neural crest).
- Craniopharyngioma = Rathke's pouch remnant + keratinized squamous epithelium + machinery-oil fluid + calcification.
- Traps: giving the nucleolus a membrane, placing Nissl substance in the axon, deriving the cerebellum from the prosencephalon, swapping Dandy-Walker with Chiari II, assigning the red nucleus to the alar plate, calling the retina neural crest.
- Antiepileptics = suppress excitation (Na⁺/Ca²⁺/glutamate) + strengthen inhibition (GABA); topiramate does not act on the glutamate transporter.
- First-line for absence seizures = ethosuximide (T-type Ca²⁺); status epilepticus rescue = BZD → levetiracetam/VPA/fosphenytoin → anesthetic agent with intubation (the mechanism changes at each step).
- Check HLA-B*1502 in Asian patients before CBZ; titrate lamotrigine slowly; valproate causes NTDs; baclofen = GABA-B.
- Nalbuphine = μ partial antagonist + κ agonist (still analgesic, with a ceiling); naloxone/naltrexone = pure antagonists, no analgesia.
- Olanzapine causes less EPS because of low D2 affinity plus 5-HT2A antagonism (it still blocks D2); risperidone is the exception (strong D2 blockade, prone to hyperprolactinemia); clozapine requires monitoring for agranulocytosis.
- First-line for ADHD is methylphenidate (inhibits reuptake); pitolisant = H3 inverse agonist (releases the brake, ↑histamine); ondansetron = 5-HT3 antagonist (QT prolongation); antipyretic for viral illness in children = acetaminophen; aspirin is contraindicated (Reye syndrome).
- Second messengers: β→cAMP↑, α1/M1/M3→Ca²⁺↑, α2/M2→cAMP↓; cGMP does not belong to β.
- Bladder: α1 = sphincter contraction (storage); M3 = detrusor contraction (voiding). OAB → M3 antagonist/β3 agonist; BPH → α1 antagonist.
- Strongest IOP-lowering agent for glaucoma = bimatoprost (PGF2α); cycloplegia uses an anticholinergic (not a sympathomimetic); timolol is contraindicated in asthma.
- Acute asthma rescue = albuterol (inhaled, minimal systemic side effects); COPD maintenance = tiotropium (a LAMA, q24h, does not cross the BBB); cromolyn = prevention, not rescue.
- Traps: calling nalbuphine a pure antagonist, pairing cGMP with β, pairing α1 with the detrusor, calling ergotamine a β-agonist (§5), giving aspirin for antipyresis in children.
- Origin sites: NE→locus coeruleus, 5-HT→raphe nuclei, DA→substantia nigra/VTA, ACh→nucleus of Meynert, histamine→tuberomammillary nucleus; in the CNS, epinephrine is never the major source.
- The corpus striatum = caudate + putamen + globus pallidus (striatum proper = caudate + putamen); the substantia nigra and subthalamic nucleus are not in the striatum (they are in the circuit).
- The limbic system = amygdala/hippocampus/cingulate/hypothalamus/mammillary body/olfactory bulb/anterior thalamic nucleus/fornix; the dentate nucleus and substantia nigra are not part of it.
- Auditory = MGB/transverse temporal gyrus; visual = LGB/calcarine sulcus; the MGB belongs to the thalamus, not the midbrain.
- A cortical lesion makes the eyes look toward the lesion; a brainstem lesion makes the eyes look away from the lesion.
- Corneal reflex: V1 in, VII out; the trochlear nerve (CN IV) is the only one that exits the dorsal brainstem and decussates; the habenular nucleus governs limbic and olfactory function, not memory.
- The four back layers: superficial trapezius/latissimus → middle posterior serratus (respiration) → deep erector spinae/transversospinalis → deepest suboccipital muscles; extrinsic muscles derive from the ventral rami, intrinsic muscles are innervated by the dorsal rami.
- Dermatomes: T4 nipple, T6–7 xiphoid, T10 umbilicus, L1 inguinal; L5 dorsum of the foot, S1 lateral foot.
- A lumbar paracentral herniation compresses the level below (L4–5→L5, L5–S1→S1); only a far lateral herniation compresses the level above.
- The ALL is anterior to the vertebral body; the PLL is inside the spinal canal and continues as the tectorial membrane; ligamentum flavum hypertrophy causes stenosis; the nucleus pulposus belongs to the disc and does not extend to the skull base.
- Dorsal rootlets are purely sensory, ventral rootlets are purely motor, and every ramus is mixed.
- Atlanto-occipital = nodding, atlantoaxial = head rotation; the alar ligament = dens–occipital condyle.
- Cranial exit foramina: ophthalmic artery→optic canal; V2→foramen rotundum, V3→foramen ovale; VIII→internal acoustic meatus; VII exits via the stylomastoid foramen.
- Tongue muscles: protrusion = genioglossus; the transverse muscle narrows it, the vertical muscle flattens it; all run on XII except palatoglossus (X); a unilateral XII palsy deviates the protruded tongue toward the affected side.
- Tongue sensation: anterior two-thirds — general = V3/taste = VII chorda tympani; posterior one-third = IX; epiglottis = X.
- Pharynx: the longitudinal muscles elevate the pharynx (stylopharyngeus is the exception, IX), the constrictors push the food (X); CN X injury → aspiration pneumonia (vocal folds + soft palate + constrictors all fail together).
- The ansa cervicalis innervates the sternohyoid/sternothyroid/omohyoid; the thyrohyoid and geniohyoid carry C1 fibers riding on XII (not the ansa cervicalis); stylohyoid = VII.
- The Vidian nerve = the greater petrosal (VII) + the deep petrosal (sympathetic); the lesser petrosal (IX→parotid) is not included.
- The four parasympathetic ganglia: III → ciliary; VII → pterygopalatine and submandibular; IX → otic.
- The dorsal scapular nerve arises from C5, pierces the middle scalene, and innervates the rhomboids and levator scapulae; injury to the long thoracic nerve → winging of the scapula.
- Three locks: before age 12 + ≥2 settings + functional impairment; DSM-IV's "before age 7" is an outdated trap.
- First line = central stimulants (methylphenidate, amphetamine); alternatives = atomoxetine, α2 agonists.
- Stimulants can transiently affect growth/appetite/sleep; most patients with comorbid tics can still use them — not an absolute contraindication.
- Traps: distractors built on "only at school," "only counts before age 7," and "comorbid tics absolutely forbid stimulants."
- Tourette = dopamine overactivity → D2 antagonists improve it, agonists worsen it; inheritance is often tested as "autosomal dominant, incomplete penetrance" (modern view: polygenic).
- ASD: ABA/speech therapy/CBT are evidence-based; sensory integration has no evidence for core symptoms — the most common trap.
- Conduct disorder can be diagnosed past age 18 but only if ASPD criteria are not met (the two are not diagnosed together); the diagnosis does not automatically change.
- Traps: treating sensory integration as an effective core therapy; restricting conduct disorder to under-18s.
- Normal aging: DA/ACh/NE/5-HT all decline; "NE rises" is a trap.
- Prevalence of late-life depression is about 15%; arthritis is the most common cause of disability; persecutory delusions dominate late-onset delusional disorder.
- Late-life psychosis: usually responds to low-dose antipsychotics, but stay alert for EPS/falls.
- FTD early = the person changed (behavior/social skills/language); AD early = the facts are forgotten (memory).
- Traps: writing NE as "rising"; describing FTD's social cognition as "relatively preserved"; equating disability with dementia.
- Positive symptoms respond well to medication; negative symptoms are the long-term core and the source of disability.
- Bleuler's 4 A's: Associations / Autism (subjectivity) / Affect / Ambivalence; "objectivity" is the reverse trap.
- Most common hallucination = auditory (command hallucinations are the most dangerous); olfactory hallucinations should raise suspicion for an organic cause/temporal lobe epilepsy.
- Diagnostic timeline ≥6 months; schizophreniform 1–6 months; brief psychotic disorder <1 month.
- haloperidol = first-generation; treat akathisia with propranolol.
- Clozapine is the only agent effective for treatment-resistant disease and the only one that lowers suicide risk; monitor CBC regularly (agranulocytosis).
- Prevalence about 1%, roughly equal between sexes; suicide mortality traditionally 10%, newer data about 5%.
- Involuntary hospitalization must follow Mental Health Act procedures; not a single physician's call.
- Traps: olfactory hallucinations, "objectivity," "6 months" rewritten as "1 year," haloperidol misclassified as second-generation, "women twice as often," a 25–50% suicide rate, involuntary hospitalization by one physician.
- Depression monoamines: NE from the locus coeruleus, 5-HT from the raphe nuclei; antidepressants inhibit reuptake.
- PET in depression shows decreased anterior (left DLPFC) metabolism; REM latency shortens (not increases).
- Bipolar disorder's first episode can be depressive; pregnancy mnemonic: lithium → heart, valproate (VPA)/carbamazepine → spine; valproate is most to be avoided, while lamotrigine is relatively the safest.
- PMS/PMDD occur in the luteal phase → do not include hot flashes; PMDD does not include delusions.
- Suicide: psychosis is a high-risk factor, not protective.
- ASD and PTSD are divided by the one-month mark; ASD must include dissociation.
- GAD: ≥6 months, ≥3 somatic symptoms, about 60% become chronic.
- First line: SSRI/SNRI + CBT; OCD needs high doses + ERP; PTSD uses prazosin for nightmares, benzodiazepines are not recommended.
- OCD is roughly equal between sexes, with earlier onset in men; IBS is the most common anxiety comorbidity.
- Traps: antidepressants "enhancing" reuptake, REM latency increasing, bipolar disorder always starting with mania, PMDD including delusions, ASD excluding dissociation, using benzodiazepines in PTSD.
- Intoxication and withdrawal run in opposite directions; depressant withdrawal can be fatal (alcohol/BZD).
- Alcohol withdrawal timeline = tremor (6–8h) → hallucinosis (12–24h) → seizure (24–48h) → DT (48–72h); BZD is first-line, thiamine before glucose.
- Blackout = anterograde amnesia, with long-term memory preserved.
- Amphetamine-induced psychosis = stop the drug + haloperidol; do not use carbamazepine.
- Ketamine = NMDA antagonism; opioid intoxication = pinpoint pupils + respiratory depression, reversed with naloxone.
- Delirium: first-line is short-acting oral haloperidol + find the underlying cause; withdrawal delirium: first-line is a BZD.
- Diazepam IM has erratic absorption and is unsuitable for acute intramuscular use.
- Lithium/VPA/CBZ: check serum levels; clozapine: check the white cell count.
- SSRIs do not cause a rapid rise in blood glucose; discontinuation syndrome is least likely with fluoxetine.
- EPS: treat akathisia with propranolol, do not increase the dose; tardive dyskinesia = VMAT2 inhibitor, worsened by anticholinergics.
- NMS = rigidity + ↓reflexes + slow onset → dantrolene/bromocriptine; serotonin syndrome = myoclonus + hyperreflexia + fast onset → cyproheptadine.
- Traps: giving haloperidol for withdrawal delirium, writing SSRIs as causing a blood glucose spike, increasing the dose for akathisia, giving an anticholinergic for TD, and swapping rigidity and myoclonus to the wrong side.
- SSD no longer requires "medically unexplained"; the DSM-5 focus is on an excessive response.
- Two axes: deliberate × external benefit — not deliberate = conversion disorder; deliberate + no benefit = factitious disorder; deliberate + benefit = malingering (not a mental disorder).
- Most common in conversion disorder = limb weakness/paralysis; response to suggestion/lorazepam = supports the diagnosis; la belle indifférence is not specific; never say "it's imagined."
- BDD = SSRI + CBT; cosmetic surgery is ineffective and harmful.
- DID = ≥2 personality states + amnesia; depersonalization has reality testing that stays intact; confabulation = a memory disorder (Korsakoff/B1 deficiency), not dissociation.
- After transplantation, the least likely diagnosis = delusional disorder.
- AN = significantly low body weight; DSM-5 has removed amenorrhea as a criterion; a person at low body weight is still AN (binge-eating/purging type) even with binge eating/purging.
- AN complications: hypothermia, bradycardia, amenorrhea, osteoporosis, lanugo; vomiting → hypokalemia (not hyperkalemia); hospitalize below 70% of ideal body weight (current SAHM 2022: below 75% of median BMI); refeeding syndrome = hypophosphatemia/hypokalemia/hypomagnesemia; weight regain after bariatric surgery is multifactorial, and B12/iron cannot prevent it.
- BN: binge eating + compensation + self-evaluation influenced by weight; first-line fluoxetine 60 mg; bupropion is contraindicated in both AN and BN (seizure risk).
- BPD first-line is DBT; benzodiazepines are ineffective and carry a risk of dependence.
- Kleptomania = impulsive, unplanned, not for the object's value; gender dysphoria criterion A1 = desire to be the other gender, children too require ≥6 months, conversion therapy is opposed.
- Ethics: autonomy wins out for a patient with capacity; confidentiality is not absolute (may be broken to protect a third party); active vs. passive euthanasia is divided by "administering death" vs. "withdrawing support"; withdrawing and withholding are equivalent; genetic testing is risk assessment, not prediction; organ donation must never deceive the family.
- Traps: writing SSD as "requiring no cause found," calling conversion disorder "imagined," requiring amenorrhea for AN, hyperkalemia from vomiting, using benzodiazepines for BPD, forcing a terminal patient onto dialysis, deceiving a family to encourage donation.
- Free face = faces outward; lateral face = binds to neighbors; basal face = roots downward.
- Desmosomes and hemidesmosomes connect to intermediate filaments (IF); adherens junctions connect to microfilaments (actin); tight junctions have no cytoskeleton, and gap junctions are connexin channels.
- Pemphigus = attacks desmosomes (Dsg) (intraepidermal blister, acantholysis, Nikolsky +); bullous pemphigoid = attacks hemidesmosomes (BP180) (subepidermal blister).
- Traps: ① writing that the adherens junction connects to intermediate filaments (wrong, it connects to actin); ② placing the pemphigus blister beneath the epidermis (wrong, it is intraepidermal); ③ describing the tight junction as "connecting to actin to maintain the barrier" (wrong, it connects to no cytoskeleton and relies on claudin/occludin).
- Merkel = stratum basale (touch, wired to nerves); Langerhans = stratum spinosum (immune patrol); the two are routinely swapped as a distractor.
- Melanocyte = stratum basale, neural crest origin; stratum lucidum only in thick skin (palms, soles).
- The olfactory region contains no goblet cells (mucus is secreted by Bowman glands); olfactory cells = bipolar neurons, capable of regeneration.
- Sebaceous gland = holocrine (the whole cell disintegrates); goblet cell = unicellular exocrine gland, merocrine.
- Traps: ① placing Merkel cells in the stratum spinosum (wrong, stratum basale); ② labeling the sebaceous gland merocrine (wrong, holocrine); ③ crediting the olfactory region with "goblet cells" (wrong, Bowman glands take over that function); ④ claiming the stratum lucidum is "present in the epidermis throughout the body" (wrong, thick skin only).
- Apoptosis = caspase cleavage → shrinkage, intact membrane, ladder DNA, apoptotic bodies, no inflammation, ATP required.
- Necrosis = ATP depletion → Na⁺/K⁺ pump stalls → swelling, membrane rupture, smear DNA, DAMP leakage with inflammation, no ATP required.
- Epithelioid tissue has no free surface and no basement membrane (macrophage-derived — the key difference from true epithelium).
- Traps: ① describing apoptosis as "provoking inflammation" (wrong, it is cleanly engulfed); ② giving necrosis a ladder pattern of DNA (wrong, it is a smear); ③ treating epithelioid tissue as "having a free surface" (wrong, macrophage-derived cells lack polarity); ④ describing apoptosis as "not requiring ATP" (wrong, it is an active process and requires ATP).
- Cartilage: hyaline ① and elastic ② have a perichondrium → appositional + interstitial; fibrocartilage ③ has no perichondrium → interstitial only; lacunae = present in fibrocartilage, absent in dense connective tissue (the distinguishing point).
- Bone: osteoblast = mesenchymal, builds bone; osteocyte = longest-lived, lives in a lacuna, communicates via gap junctions; osteoclast = hematopoietic lineage, multinucleated, shortest-lived. Compact bone = Haversian canals longitudinal, Volkmann canals transverse.
- Remodeling: RANKL promotes resorption, OPG (osteoprotegerin) inhibits it; denosumab = anti-RANKL; after menopause estrogen↓→OPG↓→osteoporosis.
- Ossification: intramembranous = skull/clavicle; endochondral = long bones; primary ossification center = diaphysis, secondary = epiphysis; bone cannot grow interstitially and forms bone only circumferentially.
- Fat: brown = multiple droplets, many mitochondria, UCP-1 lets the protons leak → heat, abundant in neonates.
- Traps: ① writing osteoclasts as mesenchymal in origin (wrong, hematopoietic origin); ② writing fibrocartilage as "capable of appositional growth" (wrong, no perichondrium); ③ writing the skull/clavicle as endochondral ossification (wrong, intramembranous); ④ writing OPG as promoting resorption (wrong, it is the brake, not the accelerator); ⑤ writing bone as "capable of interstitial growth" (wrong, circumferential only).
- Smooth muscle is mononucleated, and multinucleation belongs to skeletal muscle (a common trap); alias of the skeletal muscle cell = muscle fiber; cardiac intercalated disc = desmosomes + gap junctions.
- Sliding filament theory: I and H shorten, A is unchanged; the principal function of ATP is to separate myosin from actin (no ATP → rigor mortis).
- Skeletal muscle excitation-contraction coupling: sarcolemma → T-tubule → DHP receptor → RyR → SR releases Ca²⁺; skeletal muscle has triads (A-I junction), cardiac muscle dyads (Z line); smooth muscle has no T-tubules and relies on caveolae.
- Striated muscle relies on troponin (thin filament), smooth muscle on calmodulin-MLCK (thick filament).
- Unique to smooth muscle = dense bodies (= Z line), external lamina (= basement membrane), caveolae (= T-tubule).
- Junctional folds are formed by infolding of the sarcolemma itself.
- MG = anti-nAChR, weaker with use, thymoma; LEMS = anti-presynaptic Ca²⁺ channel, stronger with use, small cell lung cancer; botulinum toxin inhibits release, organophosphates inhibit AChE.
- Traps: ① calling smooth muscle multinucleated (wrong — mononucleated; only skeletal muscle is multinucleated); ② writing that the A band "shortens during contraction" (wrong — the A band is unchanged); ③ swapping the "stronger/weaker with use" of MG and LEMS (wrong); ④ describing junctional folds as "infolding of the sarcoplasmic reticulum" (wrong — it is the sarcolemma itself); ⑤ writing that ATP "only supplies energy for the power stroke" (wrong — its main job is to separate myosin from actin).
- Weber toward the affected side = conductive (blocked, so bone conduction gets the advantage); toward the healthy side = sensorineural. Trap: reversing the direction.
- Tympanometry: A = normal, B = flat = effusion, C = negative pressure without effusion; do not swap B and C. Trap: misreading flat type B as negative pressure.
- The key feature of AOM is bulging of the tympanic membrane (distinguishing it from simple effusion); first line is high-dose amoxicillin, switching to amoxicillin-clavulanate on failure or with concurrent conjunctivitis. Trap: treating a non-bulging membrane as AOM.
- OME must persist ≥ 3 months before a tympanostomy tube is considered; it does not itself require routine antibiotics. Trap: placing a tube as soon as it is discovered.
- Cholesteatoma favors the attic above the pars flaccida; mechanism = chronic negative pressure → retraction pocket → keratin accumulation → bone erosion.
- Cholesteatoma surgery = mastoidectomy + tympanoplasty; does not include stapedectomy (that belongs to otosclerosis). Trap: treating stapedectomy as standard for cholesteatoma.
- SSNHL = 72 hours, 3 frequencies, ≥30 dB; first line is corticosteroids (systemic or intratympanic), with a 2-week golden window. Trap: choosing antibiotics instead; misjudging high-frequency loss as having a good prognosis.
- First-line for adult OSA is nasal CPAP; pediatric OSA is mostly due to tonsillar/adenoidal hypertrophy → surgery. Trap: treating a child like an adult with CPAP.
- Diagnosis = PSG, metric = AHI; mild 5–15, moderate 15–30, severe >30. Trap: relying only on a questionnaire or oximetry.
- The most common cause of acquired laryngotracheal stenosis = prolonged endotracheal intubation; the congenital form is unrelated to intubation. Trap: answering with a congenital cause.
- Nodule = chronic abuse, bilateral and symmetric, voice therapy first-line; polyp = a single episode of vocal strain/smoking, unilateral, surgery. Trap: operating on a nodule directly.
- Alkali is more dangerous than acid (liquefactive necrosis dissolves progressively deeper); neutralization and induced vomiting are both contraindicated. Trap: memorizing it backward.
- Branchial fistula: the 2nd arch most commonly opens into the tonsillar fossa; the 3rd/4th arches open into the pyriform sinus (left-sided, can cause acute suppurative thyroiditis). Trap: writing the tonsillar fossa for the 3rd/4th arches.
- Inhaled corticosteroids + diabetes → oropharyngeal candidiasis; prevention is rinsing plus a spacer. Trap: mistaking it for a bacterial infection.
- Taste: seven-front (facial nerve CN VII via the chorda tympani), nine-back (glossopharyngeal nerve CN IX), ten-epiglottis (vagus nerve CN X); general sensation of the anterior 2/3 = mandibular division of the trigeminal nerve (CN V₃). Trap: attributing epiglottic taste to the hypoglossal nerve.
- Motor function = hypoglossal nerve (CN XII) (except the palatoglossus, supplied by the vagus); the hypoglossal nerve never handles taste.
- Middle-ear/chorda tympani injury → loss of taste over the anterior 2/3 of the tongue, with touch and motor function normal. Trap: mistaking it for neurologic disease.
- An HIV-positive physician may still practice under proper precautions; U=U is the modern consensus. Trap: choosing a blanket prohibition.
- After a needlestick: wash (do not squeeze, do not suck, do not use bleach) → three-drug PEP within < 72 hours for 28 days; do not wait for serology. Trap: squeezing out blood or waiting to observe first.
- Endolymph = high K⁺, low Na⁺; the +80 mV comes from the stria vascularis (via the KCNQ1 potassium channel). Trap: attributing it to the spiral ganglion or the organ of Corti.
- COWS (fast-phase direction): Warm = Same, Cold = Opposite; the head is elevated 30° during testing. Trap: reversing the direction.
- Peripheral = unidirectional nystagmus, suppressible by fixation; direction-changing/purely vertical/not suppressed by fixation → central.
- HINTS: a normal head impulse test + direction-changing nystagmus + skew deviation = central (stroke), more sensitive than early MRI. Trap: assuming only an abnormal head impulse test is dangerous.
- BPPV = dislodged otoconia, positive Dix-Hallpike, Epley repositioning; vestibular neuritis = persistent vertigo without hearing loss, may evolve into BPPV; Ménière disease = endolymphatic hydrops, vertigo + fluctuating hearing loss + tinnitus (most often accompanied by hearing loss); Tullio phenomenon = vertigo provoked by loud sound pressure (superior canal dehiscence).
- Acute epiglottitis: drooling + tripod position + muffled voice + thumb sign; never use a tongue depressor; secure the airway before giving antibiotics. Trap: a tongue depressor triggering laryngospasm.
- Emergency airway = cricothyrotomy (fast); long-term = tracheostomy (2nd–3rd tracheal ring); children <12 years avoid cricothyrotomy. Trap: using cricothyrotomy for a long-term need.
- An esophageal foreign body most often lodges at the cricopharyngeus; perforation = cervical/mediastinal emphysema, NPO + nasogastric tube + antibiotics; avoid oral contrast.
- Contraindications to ear-canal irrigation: tympanic membrane perforation, beans that swell on contact with water, button batteries (remove immediately); water must be at body temperature to avoid vertigo.
- Bell palsy = the most common peripheral facial palsy; forehead wrinkling lost = peripheral, preserved = central; oral corticosteroids within 72 hours; Ramsay Hunt syndrome = ear vesicles + palsy + hearing loss, caused by VZV. Trap: treating Bell palsy as a stroke and giving tPA.
- The most common delayed complication of tonsillectomy = secondary hemorrhage (5–10 days); vocal cord paralysis is the least likely. Trap: answering with recurrent laryngeal nerve injury.
- Placing a drain without informing the patient = violates disclosure/autonomy, not confidentiality.
- Risk factors = tobacco + alcohol + betel nut (oral/laryngeal/hypopharyngeal); HPV-16 → oropharyngeal cancer, better prognosis; NPC = EBV + preserved foods + heredity (relatively unrelated to tobacco/alcohol). Trap: writing HPV+ disease as having a worse prognosis.
- T>4 cm = T3; a single ipsilateral node 3–6 cm = N2a; any N2/N3 without M = at least Stage IVA.
- Referred otalgia: oropharynx = glossopharyngeal nerve (CN IX, Jacobson's nerve); larynx/hypopharynx = vagus nerve (CN X, Arnold's nerve); unilateral ear pain with a normal ear → look at the oropharynx.
- MRI salt-and-pepper appearance = paraganglioma (highly vascular; assess hemorrhage risk before biopsy).
- Persistent unilateral serous otitis media in an adult → exclude NPC; primary treatment is radiotherapy; do not rebiopsy the neck mass once confirmed by biopsy. Trap: taking one more biopsy.
- Early glottic cancer (T1–2) may be treated with either surgery or radiotherapy (radiotherapy preserves the voice). Trap: surgery only.
- A neck mass of unknown primary should first undergo FNA, avoiding direct open biopsy.
- Distinguishing viral from bacterial sinusitis depends on the time course: only >10 days, severe from the outset, or double sickening suggests bacterial disease; first-line is amoxicillin-clavulanate. Trap: judging by discharge color.
- Red flags (consciousness/orbit/neurologic) → get a CT; X-ray is insufficient.
- Orbital complications most commonly arise from the ethmoid sinus (via the lamina papyracea), not the sphenoid. Trap: answering with the sphenoid sinus.
- Diabetes/DKA + black nasal eschar → mucormycosis; hyphae are broad, non-septate, right-angle branching; has a predilection for invading blood vessels; management = debridement + amphotericin B + glucose control. Trap: waiting for culture.
- The narrowest point of the nasal airway = the internal nasal valve (the angle between the upper lateral cartilage and the septum), not the external valve. Trap: answering with the external nasal valve.
- Skin prick testing is suppressed by antihistamines (not an advantage); the alternative is serum-specific IgE. Trap: treating "unaffected by medication" as an advantage.
- First-line for persistent moderate-to-severe allergic rhinitis = intranasal corticosteroids; SCIT/SLIT is the only treatment that alters the disease course.
- The absolute indications for FESS do not include "acute exacerbation." Trap: treating acute exacerbation as a surgical indication.
- Groove outside, pouch inside, membrane between, three layers; pharyngeal arch nerves: 1→trigeminal, 2→facial, 3→glossopharyngeal, 4/6→vagus (no arch-5 nerve). Trap: listing arch 4 as having its own separate nerve.
- Pouch 1 → middle ear + eustachian tube (nasopharynx); pouch 3 → inferior parathyroid + thymus; pouch 4 → superior parathyroid + C cells. Trap: reversing it as "3 above, 4 below" (pouch 3 rides with the thymus, travels far, ends up down below).
- The respiratory primordium arises from the caudal foregut (at the level of pouch 4). Trap: answering pouch 1.
- 1st pharyngeal groove → external auditory canal (the only one that persists); persistence = branchial cleft cyst (lateral neck); branchial cleft fistula: 2nd pair most common, opens into the tonsillar fossa, 3rd/4th pairs track to the piriform sinus (left side, can cause acute suppurative thyroiditis).
- Auditory ossicles = malleus + incus (arch 1) + stapes (arch 2); inner ear = otic placode; tympanic membrane = ectoderm + mesoderm + endoderm, excluding neural ectoderm. Trap: stating it "contains neural ectoderm."
- The neurocranium protects the brain, the viscerocranium is the facial skeleton; congenital torticollis = sternocleidomastoid abnormality. Trap: describing the viscerocranium as protecting the brain.
- Unstable blood pressure + negative FAST → bleeding is in the retroperitoneal pelvic space; pelvic binder first, then angiography/embolization or packing; laparotomy only if FAST is positive.
- Retroperitoneal bleeding is most commonly venous (80–90%); only arterial bleeding requires embolization; the binder must sit at the level of the greater trochanters.
- Blood at the urethral meatus → retrograde urethrogram first, never pass a Foley directly (a partial tear can become a complete transection).
- Lumbosacral plexus injury has a prognosis far worse than a peripheral nerve injury (proximal lesion with a long regeneration distance, often with root avulsion); most often combined with the VS pattern.
- The pelvic binder works best for APC/open-book fractures; in LC-type fractures it may actually worsen the compression.
- Thigh compartment syndrome is uncommon in pelvic fracture (it occurs mostly in the leg and forearm).
- Traps: ① laparotomy for hypotension without checking FAST first; ② placing the binder on the iliac crest instead of the greater trochanters; ③ passing a Foley directly for meatal bleeding (converts a partial tear into a complete transection).
- Posterior hip dislocation (dashboard injury, 90% of cases) = shortening + flexion + adduction + internal rotation; an orthopedic emergency threatening femoral head blood supply (AVN) and the sciatic nerve — urgent reduction is required.
- The carpal bone most often fractured in FOOSH = the scaphoid; its blood supply runs retrograde from distal to proximal, so snuffbox pain plus a negative X-ray still warrants immobilization (thumb spica cast), with repeat imaging or MRI at 1–2 weeks; delay means avascular necrosis/nonunion.
- Bennett fracture: intra-articular fracture of the first metacarpal base + CMC dislocation; the large fragment is pulled by APL into radial/proximal/dorsal displacement (not EPL/ECRL).
- Radial head fracture: no displacement/no blockage → conservative management; a loose body in the joint space or mechanical locking → surgery (continuing conservative care is the least appropriate choice).
- Proximal radius/radial neck → most likely to be combined with PIN injury (traversing the arcade of Frohse); PIN injury = wrist extends, fingers don't, no sensory deficit (ECRL is innervated directly by the main trunk).
- Acute swelling of the distal radius calls for a dorsal slab first, switching to a complete cast after swelling subsides (to prevent compartment syndrome); ankle splints go in the neutral position; cast material uses room-temperature water.
- Imaging: ankle adds a mortise view; calcaneus uses lateral view (Böhler's angle) + Harris axial + CT, with AP view being inadequate; anterior mandibular dislocation is the most common type, and after reduction a soft diet without wide mouth opening is advised for 1–2 weeks.
- Traps: ① sending the patient home on a negative X-ray (the scaphoid will necrose); ② picking EPL as the pulling force in Bennett fracture (it should be APL); ③ diagnosing a radial neck fracture as main-trunk transection (check whether the wrist can extend); ④ applying a complete circumferential cast to an acute distal radius fracture (it should be a dorsal slab); ⑤ ordering an AP view for the calcaneus (it should be lateral + Harris).
- Compartment syndrome 5 P's: Pain (severe pain on passive stretch, earliest), Paresthesia, Pressure, Paralysis, Pulselessness (latest — never wait for this); Painless is not one of the P's.
- Diagnosis: compartment pressure > 30 mmHg, or delta pressure (diastolic pressure − compartment pressure) < 30 mmHg (use diastolic pressure, not systolic); once diagnosed, go straight to fasciotomy; never elevate the limb above the heart, and remove any circumferential cast.
- Rhabdomyolysis → aggressive fluid resuscitation + urine alkalinization (urine pH > 6.5); "fluid restriction" is wrong; CK markedly elevated, urine dipstick positive for blood but no red blood cells on microscopy; hyperkalemia, hyperphosphatemia, hypocalcemia — do not routinely correct early hypocalcemia (causes rebound hypercalcemia).
- Gustilo: I < 1 cm, II 1–10 cm, III > 10 cm or severe contamination/tissue loss/vascular injury; severe contamination is always III (never II); early antibiotics + tetanus prophylaxis + debridement.
- Polytrauma: Life > Limb; vessels → skeleton → nerve (skeletal fixation before nerve repair).
- Volkmann: extrinsic muscles die, intrinsic muscles may remain normal (their blood supplies belong to different compartments); "the intrinsic muscles could never be normal" is the least appropriate statement.
- Digit replantation, least suitable: single digit with multiple-level amputation; suitable: thumb, multiple digits, any digit in a child, palm/wrist-level amputation.
- Traps: ① waiting for the pulse to disappear before doing a fasciotomy (should act at the onset of severe pain); ② calculating delta pressure from systolic pressure (should use diastolic); ③ restricting fluids in rhabdomyolysis (should give aggressive fluids); ④ routinely correcting calcium early in rhabdomyolysis (causes rebound hypercalcemia); ⑤ repairing nerves before the skeleton (the bone must be stabilized first); ⑥ classifying severe contamination as Grade II (should be III).
- Wrist compartment mnemonic: 1–APL/EPB, 2–ECRL/ECRB, 3–EPL, 4–EDC/EIP, 5–EDM, 6–ECU; de Quervain's is in compartment 1, with a positive Finkelstein test.
- ACL = noncontact twisting + immediate, large hemarthrosis (richly vascularized, accounting for ~70% of acute traumatic hemarthroses); Lachman is most sensitive; PCL = dashboard posterior blow + minimal swelling, weakness going downstairs.
- Unhappy triad = ACL + MCL + medial meniscus (the traditional correct answer on the licensing exam; the lateral meniscus may actually be more common in reality).
- Carpal tunnel (median nerve): numbness in the thumb, index, and middle fingers, worse at night, flick sign; cubital tunnel (ulnar nerve) — diagnostic test of choice is NCV/EMG, not MRI.
- PIN injury: wrist extends, fingers don't, no sensory deficit (ECRL is innervated directly by the main trunk of the radial nerve); transection of the main trunk = true wrist drop + sensory deficit.
- Apprehension test for anterior shoulder instability: shoulder abduction 90° + external rotation (not internal rotation); often combined with Bankart + Hill-Sachs lesions.
- Traps: ① classifying de Quervain's under compartment 3 (it should be compartment 1); ② swapping the mechanisms of ACL and PCL (noncontact with rapid swelling vs. struck with minimal swelling); ③ choosing MRI as first-line for cubital tunnel (should be NCV/EMG); ④ claiming PIN injury causes wrist drop (the wrist should still extend); ⑤ applying internal rotation for the apprehension test (should be external rotation).
- Age axis: infancy DDH → school age Perthes → obese adolescent SCFE.
- Three tests for DDH: Ortolani reduces, Barlow dislocates, Galeazzi compares knee height; the Patrick (FABER) test is not a DDH screening tool (classic least-appropriate answer).
- In Perthes disease, a younger age means a better prognosis (more room for remodeling); lateral pillar involvement and >50% necrosis carry a worse prognosis.
- SCFE = adolescent obesity, often presenting as knee/anterior thigh pain (referred pain); management is urgent in-situ pinning, never forceful reduction (increases avascular necrosis); often accompanied by hypothyroidism, growth hormone abnormality.
- Torticollis = SCM fibrosis (not trapezius); head tilts toward the affected side, chin rotates to the opposite side.
- Congenital pseudarthrosis of the tibia is combined with NF-1, with anterolateral bowing.
- MPS skeletal changes are predominantly valgus; coxa vara is the least common.
- LLD: <2 cm — shoe lift; 2–5 cm — epiphysiodesis; >5 cm — limb lengthening.
- 90% of HIVDs occur at L4–5 and L5–S1 (not L3–4); L5–S1 → absent ankle reflex; cauda equina syndrome = emergency surgery.
- Three layers of spinal tumors: extradural = metastasis (most common overall, favors the thoracic spine/Batson plexus); intradural-extramedullary = meningioma/schwannoma/neurofibroma; intramedullary = ependymoma/astrocytoma (anaplastic astrocytoma is intramedullary); intramedullary metastasis is rare.
- Metastatic tumor without neural compression → imaging + biopsy + radiotherapy first, not immediate surgery.
- AIS: thoracic curve convex to the right; the Risser sign assesses skeletal maturity; <25° observation, 25–45° bracing, >45–50° surgery.
- Chiari I = tonsillar descent >5 mm + syringomyelia, not combined with spina bifida/hydrocephalus.
- Traps: ① swapping Ortolani and Barlow; ② using the FABER test to screen for DDH; ③ claiming a younger age in Perthes means a worse prognosis; ④ forceful reduction in SCFE (should be in-situ pinning); ⑤ choosing trapezius for torticollis (should be SCM); ⑥ choosing L3–4 for HIVD (should be L4–5/L5–S1); ⑦ treating intramedullary metastasis as common (it is rare); ⑧ operating immediately on a metastatic tumor (should be imaging + biopsy + radiotherapy first).
- Gout = negatively birefringent needle-shaped crystals (MSU) + punched-out lesions; CPPD = positively birefringent rhomboid crystals + chondrocalcinosis; serum urate can be normal during an acute attack; don't newly start allopurinol during an acute attack (current ACR 2020: may start during a flare under anti-inflammatory cover), but continue it without interruption if the patient was already taking it; first-line is NSAIDs or colchicine.
- OA = cartilage degeneration + osteophytes + Heberden's nodes (DIP); RA = autoimmune synovitis + marginal erosions, symmetric MCP/PIP involvement in both hands, no osteophytes.
- RANKL/RANK promote resorption; OPG (secreted by osteoblasts) is the RANKL decoy receptor → suppresses resorption; denosumab = anti-RANKL; Wnt/LRP5-6/RUNX2 belong to the osteoblast pathway (not the RANKL decoy).
- Osteoclast activity: osteopetrosis (low), postmenopausal osteoporosis (high), Paget disease (abnormally overactive); senile osteoporosis (↓osteoblast activity) and osteomalacia (mineralization defect) are not resorption-driven.
- AVN risk factors: alcohol use, steroids; imaging — the crescent sign and a low-signal band on T1 MRI are earliest and most sensitive.
- Kienböck disease combined with ulnar minus variance → radial shortening; radial lengthening is the least appropriate choice.
- The femoral head uses cobalt-chromium or ceramic (hard, wear-resistant); the stem uses titanium alloy (elasticity close to bone, good osseointegration); titanium alloy is not used as the weight-bearing joint head.
- PMMA polymerization is exothermic; the monomer must be stored away from light; shock at the moment of implantation = monomer or fat embolism (bone cement implantation syndrome).
- Prosthetic joint infection prevention: cefazolin, 30–60 minutes before skin incision, discontinue ≤24 hours postoperatively; choosing the right antibiotic matters more than the duration.
- Osteoporosis: DXA T-score ≤ −2.5; antiresorptive vs. anabolic agents; teriparatide, given intermittently at low dose, builds bone (in contrast to continuous high PTH, which resorbs it).
- FCD = a small, eccentric, multilobulated, radiolucent focus in the distal femur of a child, self-resolving; ABC = expansile lytic lesion in an adolescent + blood-filled cystic spaces + giant cells; IBM = rimmed vacuoles on Gomori stain, poor response to steroids.
- Septic arthritis in children under two and across age groups in general = S. aureus (not Salmonella; Salmonella is seen in sickle cell disease); neonates add GBS and gram-negative rods; think N. gonorrhoeae in sexually active adolescents.
- Renal osteodystrophy: ↓calcium, ↑phosphate, ↓active vitamin D, ↑PTH (secondary hyperparathyroidism); thyroid hormone is unrelated; adynamic bone disease is often caused by excessive suppression of PTH.
- The six deep posterior hip external rotators (PGOGOQ): piriformis, superior/inferior gemellus, obturator internus/externus, quadratus femoris; quadratus femoris belongs, the quadriceps does not; piriformis hypertrophy compresses the sciatic nerve → piriformis syndrome.
- Intrinsic vs. extrinsic hand muscles: FDP/FDS are extrinsic (muscle belly in the forearm); the median nerve = LOAF (Lumbricals 1, 2 + OAF); adductor pollicis is the ulnar-nerve exception; a positive Froment sign = ulnar nerve pathology.
- Strong indications for digit replantation: thumb, multiple digits, any digit in a child, palm or wrist level; relative contraindications: a single adult digit proximal to the FDS insertion (zone II), a single digit with multiple-level amputation.
- Traps: ① starting allopurinol directly for acute gout (should continue existing use, never start new); ② ruling out gout with a normal serum urate (should aspirate the joint); ③ attributing osteophytes to RA (RA has none); ④ classifying Wnt/RUNX2 as the RANKL decoy (they belong to the osteoblast pathway); ⑤ treating senile osteoporosis as high-resorption (it is low-formation); ⑥ performing radial lengthening for Kienböck disease (should be shortening); ⑦ using titanium alloy for the femoral head (should be cobalt-chromium); ⑧ giving three days of postoperative antibiotics for a prosthetic joint (should be within 24 hours); ⑨ choosing Salmonella for pediatric septic arthritis (should be S. aureus); ⑩ linking renal osteodystrophy to thyroid hormone (they are unrelated); ⑪ including the quadriceps among the hip's short external rotators (should be quadratus femoris); ⑫ assigning adductor pollicis to the median nerve (it is the ulnar-nerve exception).
- Fertilization occurs in the ampulla; the morula has 16 cells; implantation on day six; week two comes in pairs (two layers, two cavities, two kinds of trophoblast); week three: primitive streak → three germ layers (the primitive streak appears last in this period).
- Inner cell mass → the embryo proper; trophoblast → placenta/chorion (not the fetus).
- Notochord → neural induction + precursor of the nucleus pulposus; chordoma favors the sacrum and the skull base.
- Four sources of the diaphragm: septum transversum, pleuroperitoneal membranes, dorsal mesentery of the esophagus, body wall musculature; the pleuropericardial membrane is not involved.
- Phrenic nerve C3–C5 (because in week four the septum transversum lies at the cervical somites); the dorsal part finally settles at about L1.
- Pleuroperitoneal membranes: a large share early, a small share in the newborn; Bochdalek hernia is left posterolateral.
- Traps: writing "uterine cavity" for fertilization; naming the blastocyst as the last to appear (the notochord actually forms after the streak); including the pleuropericardial membrane among the diaphragm's sources; reversing the direction of Bochdalek.
- Malformation (intrinsic) / deformation (external compression) / disruption (external destruction) — never swap the directions of these three words.
- Peak teratogen sensitivity = weeks 3–8 (organogenesis); timing decides the malformation, and dose has a threshold.
- The cornea is induced by the lens vesicle (not the retina); the lens is induced by the optic vesicle; the neural plate is induced by the notochord.
- TEF = the most common congenital anomaly of the lower respiratory tract; the 85% type = proximal blind pouch + distal esophagus joined to the trachea; accompanied by polyhydramnios + VACTERL.
- Premature sagittal suture closure → scaphocephaly (elongated front to back); premature coronal suture closure → brachycephaly.
- Neural tube defect = folate deficiency, AFP↑; rubella triad = PDA, cataract, deafness.
- Thalidomide → phocomelia; Warfarin → nasal bone hypoplasia (switch to heparin); ACEI/ARB → renal hypoplasia; Valproate → NTD; alcohol → the most common preventable intellectual disability.
- Klinefelter 47,XXY = usually normal at birth, discovered only at puberty.
- Traps: naming the retina as the inducer of the cornea; writing brachycephaly for premature sagittal closure; swapping malformation and deformation; assuming Klinefelter is obvious at birth; confusing TEF with diaphragmatic hernia.
Cushing's three steps: confirm excess → test ACTH → localize.
The three screening tools: overnight 1 mg DST, 24h UFC, late-night salivary cortisol — a single random cortisol is meaningless.
Most common ACTH-dependent cause = Cushing disease (pituitary adenoma); most common ACTH-independent cause = adrenal adenoma; ectopic ACTH → think small-cell lung cancer.
The fingerprint of exogenous Cushing: looks like Cushing, ACTH↓, cortisol↓, UFC↓ (the synthetic steroid is not detected by the assay).
Traps: ① treating a single random cortisol as a screening tool; ② guessing adrenal adenoma the moment you see a moon face (iatrogenic disease is actually the most common look-alike); ③ skipping the high-dose DST just because ACTH is low (only ACTH-independent disease skips it — ACTH-dependent disease still needs it).
PA tetrad: aldosterone↑, renin↓, low K⁺, metabolic alkalosis; screen with ARR↑.
PA is the most common endocrine cause of secondary hypertension (not pheochromocytoma).
Unilateral adenoma → surgery; bilateral hyperplasia → spironolactone.
Traps: ① mistaking secondary disease's "renin high, aldosterone high" for primary disease; ② guessing pheochromocytoma before ever checking the ARR; ③ seeing hypokalemia and thinking only of diuretics, forgetting the endocrine cause.
CAH reasoning chain: enzyme blocked → cortisol↓ → ACTH↑ (hyperplasia) + substrate detour (androgen↑).
21-OHD (most common): cortisol↓, aldosterone↓ (salt-wasting), androgen↑, 17-OHP↑, virilization in female infants, low blood pressure.
11β-OHD: salt retention → hypertension + virilization.
17α-OHD: disorder of sexual development + hypertension (no virilization).
Traps: ① assuming CAH raises cortisol (it can't be made at all); ② mistaking 17-OHP for cortisol itself; ③ assuming both 11β-OHD and 21-OHD waste salt (wrong — 11β-OHD instead retains salt and causes hypertension).
Long-term glucocorticoids: inhibited intestinal absorption + increased renal calcium excretion → hypocalcemia (not hypercalcemia; clinically, serum calcium usually stays normal and overt hypocalcemia is rare); secondary PTH↑ worsens bone loss.
Never stop abruptly — with the HPA axis suppressed, the adrenal glands have already atrophied, and abrupt discontinuation precipitates an adrenal crisis.
Traps: ① mistakenly believing chronic steroids cause hypercalcemia; ② stopping steroids the moment a patient develops a severe infection (the dose should instead be increased for stress coverage); ③ forgetting that steroids also suppress growth and cause peptic ulcers.
Iron rule for managing adrenal crisis: immediate IV hydrocortisone + aggressive normal saline, without waiting for labs.
Diagnosis of pheochromocytoma: plasma/24h urinary metanephrines (long half-life, stable) — not catecholamines measured directly.
Preoperative medication sequence: α-blocker first (phenoxybenzamine) + volume expansion over several days → then the β-blocker; reversing the order causes a hypertensive crisis.
Rule of 10s: 10% bilateral, 10% extra-adrenal, 10% malignant, 10% familial (VHL/MEN2/NF1).
Traps: ① giving β first in pheochromocytoma; ② measuring catecholamines directly (too much fluctuation); ③ waiting for lab results to come back before giving steroids in a crisis.
GFR formula: NFP = P_GC − P_BS − π_GC; ureteral obstruction → P_BS↑ → GFR↓ (direct, not reflex).
Ultrafiltration is a glomerular function; the renal tubule handles only reabsorption and secretion.
Glucose is reabsorbed only in the proximal tubule; what drives the proximal basolateral membrane is Na⁺-K⁺-ATPase (NKCC sits on the apical membrane of the TAL).
Low-protein diet → urea↓ → medullary gradient↓ → urine-concentrating ability↓ (not a rise).
ADH moves AQP2 onto the membrane, and water passively follows the osmotic gradient out; AQP1 sits in the proximal tubule + descending limb (constitutively in the membrane).
Aldosterone escape: sodium retention lasts only days (about 3–5) before escape, after which urinary sodium matches intake; blood pressure remains high and low K⁺ persists.
DKA: urinary HCO₃⁻ does not increase (nearly all of it is reabsorbed); acid is excreted via NH₄⁺ and titratable acid, plus Kussmaul breathing.
Traps: ① placing NKCC on the PCT basolateral membrane; ② believing AQP1 is regulated by ADH; ③ believing aldosterone escape can persist beyond two weeks.
CKD-MBD reasoning chain: kidney fails → phosphate can't get out (hyperphosphatemia) + active vitamin D can't be made (low D) → hypocalcemia → PTH↑ → bone is gnawed away.
Renal failure causes hyperphosphatemia, not hypophosphatemia (the direction most often flipped on exams).
Treatment: phosphate restriction + phosphate binder (non-calcium agents such as sevelamer and lanthanum preferred) + calcitriol + cinacalcet.
Traps: ① writing renal failure as hypophosphatemia; ② believing secondary hyperparathyroidism raises calcium (it doesn't — calcium rises only once the parathyroid becomes tertiary and autonomous); ③ choosing a calcium-containing phosphate binder as first line (it increases vascular calcification).
Three principles of hypospadias repair: preserve the urethral plate, correct the chordee, preserve the foreskin; a second-stage operation requires at least about 6 months' interval.
Weigert-Meyer: upper-pole → inferomedial, prone to a ureterocele; lower-pole → superolateral, prone to VUR.
Traps: ① spacing the second operation only 3 months apart (wrong — it should be 6); ② circumcising before surgery (this loses reconstructive material); ③ swapping the insertion positions of the upper and lower renal segments.
Storage = sympathetic (β3 relaxes the detrusor + α1 closes the bladder neck); voiding = parasympathetic (M3 contracts the detrusor).
Detrusor: M2 is most abundant (about 80%, inhibits cAMP); M3 is most important (Gq→IP3→Ca²⁺).
Spinal cord injury → detrusor overactivity + DSD (high pressure); diabetes → impaired sensation + residual urine↑ (not overactivity).
Detrusor underactivity is not caused by urinary stones (those cause obstruction).
Pediatric neurogenic bladder: a storage pressure ≥ 40 cmH₂O is the red line for the upper urinary tract; the management goal is to lower storage pressure (CIC + anticholinergics).
Traps: ① attributing detrusor underactivity to urinary stones; ② mistaking diabetic cystopathy for detrusor overactivity; ③ staying unalarmed just because a child isn't leaking (a pressure of 40 has already damaged the kidney).
BPH's two axes, two drug classes: α-blocker (relaxes muscle, fast, α1A) vs. 5-ARI (shrinks the gland, slow, significant only above 40 mL).
A 5-ARI cuts PSA by roughly 50%; correct by ×2 when tracking; α1A is the main target (not α1D).
PSA↑ + pyuria/WBC↑ → antibiotics first, then retest PSA; PSA↑ + free PSA↓ + a hypoechoic lesion → biopsy.
PSA has low sensitivity for lymph-node metastasis (< 40%); staging relies on imaging (CT/MRI, bone scan).
DRE-estimated size shows no clear correlation with LUTS severity.
Post-prostatectomy ED: injury to the cavernous nerves within the NVB (parasympathetic).
In the initial workup of BPH, serum creatinine/renal ultrasound is the least urgent (order it only when postrenal disease is suspected).
Traps: ① believing a 5-ARI works regardless of gland size (wrong — it needs > 40 mL); ② mistaking α1D for tamsulosin's main target; ③ going straight to biopsy just because PSA is high (rule out inflammation first); ④ using PSA to estimate lymph-node spread (sensitivity is far too low).
RCC: clear-cell type is most common, linked to VHL, smoking; many paraneoplastic syndromes — Stauffer syndrome = abnormal liver function without liver metastasis (IL-6/GM-CSF), reversible after nephrectomy; the most common VEGF/TKI side effect = hypertension (not hypothyroidism).
AML: fat density on CT (negative HU) = benign, linked to tuberous sclerosis, treated only above 4 cm.
Renal pelvis carcinoma: a filling defect on IVU/CT; risk factors include aristolochic acid and phenacetin.
Bladder cancer: most common = TCC (not adenocarcinoma); the biggest risk factor = smoking; Schistosoma → squamous cell carcinoma. The most common primary that metastasizes to the bladder = melanoma.
Seminoma: radiosensitive, AFP never rises; NSGCT: BEP chemotherapy, AFP↑.
Orchidopexy does not lower testicular cancer incidence (it only helps examination, fertility, and prevents torsion).
Traps: ① mistaking Stauffer syndrome for true liver metastasis; ② choosing hypothyroidism as the TKI side effect; ③ choosing adenocarcinoma as the most common bladder cancer; ④ believing pure seminoma also raises AFP (wrong).
Most common = calcium-containing stones (hypercalciuria is the most common cause); citrate and magnesium are inhibitors (protective factors).
85–90% of urinary oxalate is endogenous (diet accounts for only 10–15%); high-oxalate foods should still be avoided, and eating them with calcium reduces absorption.
Diagnostic test of choice = non-contrast CT (KUB cannot see radiolucent uric acid stones and shows faintly radiopaque cystine stones poorly).
Radiolucent = uric acid (cystine is only faintly radiopaque); alkalinizing the urine can dissolve uric acid stones; struvite = urease-producing bacteria, staghorn-shaped, complete removal by PCNL + antibiotics.
Stone + sepsis → drain first (PCN/double-J) + antibiotics; never go straight to lithotripsy.
ESWL is contraindicated in pregnancy; anticoagulated patients get flexible URS; ESWL contraindications = coagulopathy, aneurysm, skeletal deformity, pregnancy — obesity is not a contraindication.
Traps: ① treating magnesium or citrate as a promoter; ② going straight to lithotripsy for a stone plus sepsis; ③ listing obesity as a contraindication to ESWL.
Testicular torsion: sudden severe pain, Prehn's sign worsens, cremasteric reflex absent, Doppler flow absent; surgical detorsion within 6 hours + bilateral fixation.
Epididymitis pathogens: young = Chlamydia/gonorrhea (not diabetes); older = E. coli/coliforms.
Leydig + LH = testosterone; Sertoli + FSH = spermatogenesis + inhibin.
Fructose comes from the seminal vesicles (not the prostate); corporal venous leakage is a vascular/structural problem (not low testosterone).
PDE5i inhibits PDE5 (PDE6 is in the retina and causes blue vision); absolute contraindication = nitrates; rifampin is not a contraindication (only weakens efficacy).
Negative exam + negative ultrasound ≠ anorchia → laparoscopic exploration; orchidopexy is completed at 6–18 months, but it does not lower the malignancy rate (exam key; current evidence: prepubertal surgery lowers it).
Traps: ① treating rifampin as an absolute contraindication to PDE5i; ② answering diabetes for epididymitis in a young man; ③ declaring anorchia from a negative exam plus negative ultrasound alone.
- Medulla = neural crest, releases catecholamines under direct preganglionic sympathetic (ACh) stimulation; main secretion = epinephrine (about 80%). Cortex = mesoderm, runs on ACTH/Ang II/K⁺.
- The macula densa belongs to the distal tubule (not the straight/convoluted proximal tubule); function = sensing luminal NaCl → TGF (GFR↓); renin is secreted by JG cells.
- Eyeball wall: iris = vascular layer (not the fibrous layer); ciliary muscle = smooth muscle + parasympathetic CN III.
- Traps: ① placing the macula densa in the straight proximal tubule; ② attributing renin to the macula densa (it's actually the JG cells); ③ answering NE as the medulla's main secretion (it's actually epinephrine at 80%).
- AA mechanism: DNA adduct → TP53 mutation → interstitial fibrosis + upper urinary tract cancer.
- The triad: rapid renal failure + disproportionate anemia + urothelial carcinoma of the upper urinary tract.
- Unrelated to DNA damage = Mesoamerican nephropathy (heat stress/dehydration).
- Karyomegalic interstitial nephritis mechanism = FAN1 deficiency, a DNA-repair defect.
- Traps: ① filing Mesoamerican nephropathy under DNA damage too; ② forgetting aristolochic acid's urinary-tract cancer risk; ③ filing Karyomegalic nephritis under a simple toxin (it's actually FAN1).
- Prevalence of intracranial aneurysm in ADPKD = 5–10%.
- Women > men; a question stating "higher in men" = wrong.
- MRA screening is advised with a family history or high risk.
- Traps: ① reversing the sex distribution to "higher in men"; ② stating the prevalence as < 2%; ③ screening with MRA indiscriminately even without a family history.
- Building the house at the pretubular aggregation stage = Wnt4/Emx2/Fgf8.
- Does not participate in this stage = VEGF-A/Kdr (belongs to angiogenesis).
- Renal tubule formation relies on MET (not EMT).
- Traps: ① writing the direction as EMT; ② counting VEGF-A as part of the tubular aggregation stage; ③ filing Wnt4 under angiogenesis.
- Starting RRT alone makes it AKI Stage 3; staging follows whichever of urine output or creatinine is worse.
- Prerenal FeNa <1%, ATN FeNa >2% + muddy brown cast; FeNa is unreliable when CKD is complicated by AKI — switch to FeUrea <35%.
- Postobstructive diuresis occurs only after relief of bilateral obstruction or obstruction of a solitary functioning kidney.
- HES is banned for resuscitation; severe AKI gets adequate protein (1.2–2.5 g/kg/d); emergent dialysis = AEIOU; hyperkalemic acidotic AKI calls for HD/CRRT, plasmapheresis is inappropriate.
- AIN = mild proteinuria (>3.5 g/d is atypical); CIN peaks at 3–5 days; high risk includes multiple myeloma.
- Traps: ① claiming postobstructive diuresis after relieving unilateral obstruction; ② prescribing a low-protein diet in severe AKI; ③ choosing plasmapheresis for hyperkalemic acidosis.
- FGF-23 rises earliest and suppresses PTH via Klotho; late-stage Klotho goes on strike → PTH runs wild.
- Secondary hyperparathyroidism = low/normal Ca, high P; tertiary = the glands turn autonomous, calcium flips high.
- CKD anemia: replace folate/B12/iron first, then give EPO; CKD stage 4 + proteinuria: a low-protein diet + a single ACEi/ARB, NSAIDs forbidden, combining ACEi + ARB forbidden.
- Survival: transplant > PD ≈ HD, with HD worst at 5 years.
- Fungal peritonitis → remove the catheter immediately.
- Emergent therapy for uremic bleeding = DDAVP; androgen side effects = hepatotoxicity/virilization (not thrombosis).
- HD can clear gadolinium; NSF is linked to linear gadolinium + CKD stage 4–5.
- Sirolimus → hyperlipidemia/proteinuria; tacrolimus → PTDM; cyclosporine → hyperuricemia.
- Traps: ① writing FGF-23 as stimulating PTH; ② pinning hyperuricemia onto sirolimus; ③ claiming HD cannot clear gadolinium.
- Nephritic = hematuria + inflammation; nephrotic = heavy proteinuria + edema.
- The three-way complement split in nephritic disease: C3↓ = PSGN/MPGN; C3↓C4↓ full-house = lupus; normal complement + linear = anti-GBM; normal complement + pauci-immune = ANCA.
- Goodpasture = anti-α3-NC1; α5 = Alport.
- PSGN follows the infection by 1–3 weeks; IgA is synpharyngitic at 1–3 days.
- RPGN treatment = high-dose steroids + cyclophosphamide; ANCA ranks rituximab equal to or ahead of cyclophosphamide; anti-GBM/severe disease adds plasmapheresis.
- MN = the highest thrombotic risk among the nephrotic syndromes (renal vein thrombosis 30–40%); anti-PLA2R positivity = primary MN.
- The dipstick does not detect light chains; suspect myeloma and order serum immunoelectrophoresis.
- C4d = AMR, treated with plasmapheresis + IVIg + rituximab; basiliximab is inappropriate for AMR.
- Traps: ① reversing the PSGN and IgA timelines; ② claiming Goodpasture targets α5 (it is actually α3); ③ treating AMR with basiliximab.
- Hyaline arteriolosclerosis = aging/hypertension/diabetes; pheochromocytoma → fibrinoid necrosis (hyaline change is the least likely).
- FMD = string of beads; the media is most common, but any layer can be affected ("confined to the media" = false).
- Drug-induced AIN infiltrate is dominated by T lymphocytes plus macrophages (type IV); eosinophils are not the dominant cell.
- XGP = foamy macrophages + a staghorn calculus; Proteus is the most common organism.
- KW nodules = diabetic nephropathy; idiopathic FSGS does not belong to diabetic pathology.
- RCC forms a tumor thrombus along the renal vein → IVC → right atrium; the renal artery is the least likely site for tumor; remember the paraneoplastic pairing EPO → polycythemia, PTHrP → hypercalcemia.
- Analgesic nephropathy → papillary necrosis, accompanied by UTI in about 50% of cases.
- Traps: ① treating eosinophils as the dominant AIN infiltrate; ② writing FMD as confined to the media; ③ claiming RCC spreads along the renal artery.
- The four steps of acid-base interpretation: pH → primary disorder → Winter's compensation (1.5×HCO₃ + 8±2) → AG.
- Metformin accumulation → a lactic, high-AG acidosis; salicylate = respiratory alkalosis + high-AG acidosis (mixed).
- Delta ratio: 1–2 is a pure high-AG process, <1 means a coexisting normal-AG process, >2 means a coexisting metabolic alkalosis.
- UAG separates diarrhea (negative) from RTA (positive); type IV RTA is the only one with hyperkalemia, type I RTA has urine pH >5.5 plus stones, type II RTA accompanies Fanconi syndrome.
- Principal cells = the target of potassium-sparing diuretics/aldosterone antagonists; type A intercalated cells secrete H⁺.
- Vomiting-induced alkalosis = chloride-responsive, urine Cl⁻ <20, treated with normal saline + KCl; urine osmolality is high, plasma osmolality is not low.
- Traps: ① calling acute diarrhea a high-AG process (it is actually normal-AG); ② assigning potassium-sparing diuretics to the intercalated cells; ③ claiming vomiting-induced alkalosis has low urine osmolality (wrong — it is high).
- Hypokalemia: split by urine potassium — a shift (normal urine K) vs. renal loss (>20); TPP has a urine Ca/P >1.6.
- Bartter syndrome = the thick ascending limb (like furosemide), normal blood pressure; Gitelman syndrome = the distal convoluted tubule (like thiazide), with hypomagnesemia and hypocalciuria.
- Mild cases get oral potassium repletion; only severe cases or an inability to take oral potassium call for intravenous repletion.
- NSAIDs → hyporeninemic hypoaldosteronism → hyperkalemia; in an emergency, calcium gluconate to stabilize the membrane comes first.
- Patiromer's side effect = hypomagnesemia (it trades calcium for potassium), not hypermagnesemia.
- Primary hyperparathyroidism = high calcium + low phosphate; secondary (CKD) = low/normal calcium + high phosphate; tertiary = the glands turn autonomous, calcium flips high; FGF-23 ↑ is the earliest mineral abnormality in CKD.
- Chvostek's/Trousseau's sign = hypocalcemia (neuromuscular hyperexcitability); hypercalcemia = suppression (weakness, constipation, lethargy).
- ADH acts on the terminal distal tubule plus the collecting duct (V2/AQP2); the proximal tubule and the descending limb are not under ADH control.
- In hypervolemic hyponatremia from heart failure, urine Na <20; fluid restriction is first-line for SIADH; correcting too fast → ODS.
- A urine osmolality >300 (such as 450) is solute diuresis, not diabetes insipidus; a >50% response to DDAVP = central, no response = nephrogenic (lithium/hypercalcemia/hypokalemia).
- Liddle syndrome = constitutive ENaC activation → hypertension + hypokalemia + alkalosis, with both renin and aldosterone low.
- Renin ↑ + aldosterone ↓ = a physiological contradiction, the least likely answer.
- Traps: ① recording Patiromer's side effect as hypermagnesemia; ② writing the TPP urine Ca/P as <1.6; ③ misjudging secondary hyperparathyroidism as causing hypercalcemia (only tertiary does); ④ attributing hand numbness and cramping to hypercalcemia (it is actually hypocalcemia that causes this).
- Lubiprostone = PGE1 derivative → activates ClC-2 → promotes secretion and relieves constipation; used for IBS-C, chronic constipation, opioid-induced constipation; the main side effect is nausea (eased with food).
- Crofelemer = inhibits CFTR and CaCC → suppresses secretion and stops diarrhea; a plant extract, almost no systemic absorption; used for ART-associated noninfectious diarrhea.
- Don't flip the channels: Lubi acts on ClC-2, not CFTR; Crofe acts on CFTR, not ClC-2.
- Don't flip the direction: constipation = promote secretion (open); secretory diarrhea = suppress secretion (shut).
- Traps: writing lubiprostone's target as CFTR; giving crofelemer to a constipated patient; assuming crofelemer has significant systemic effects (it is in fact almost unabsorbed); overlooking that lubiprostone's nausea is dose-related.
- Fork: CCS = antimetabolites / spindle poisons / bleomycin (G2); CCNS = alkylating agents / platinum compounds / anthracyclines.
- Cell-cycle localization: irinotecan = S phase (topo I); ixabepilone = M phase (microtubule stabilization); bleomycin = G2 phase.
- Cyclophosphamide = a prodrug, requiring CYP450 activation; signature toxicity = hemorrhagic cystitis (acrolein → MESNA).
- 6-MP is metabolized by XO; combined with allopurinol, it must be reduced to 1/4 dose; the same applies to azathioprine.
- Anthracyclines inhibit topo II (not topo I); cardiotoxicity can be prevented with dexrazoxane (an iron chelator).
- Bevacizumab = anti-VEGF; lapatinib = anti-intracellular HER-2 TK; trastuzumab = anti-extracellular HER-2; catumaxomab = EpCAM + CD3 bispecific.
- Traps: classifying alkylating agents as CCS (wrong — they are CCNS); classifying bleomycin as CCNS (wrong — it is CCS, G2); writing anthracyclines' signature toxicity as pulmonary fibrosis (wrong — that is bleomycin); writing cyclophosphamide's signature toxicity as cardiotoxicity (wrong — it is hemorrhagic cystitis); writing vincristine's signature toxicity as myelosuppression (wrong — that is vinblastine).
- PK ≠ PD: PK changes blood concentration (ADME); PD changes drug effect (additive or opposing at the receptor).
- CYP inhibitors (cimetidine, ketoconazole, erythromycin, grapefruit juice) → substrate toxicity; CYP inducers (rifampin, phenytoin, carbamazepine, barbiturates, chronic alcohol) → substrate failure (contraceptive failure, warfarin failure).
- Treat acid poisoning with base: give NaHCO₃ to alkalinize the urine for acidic-drug poisoning; the weak acid ionizes → is not reabsorbed → excretion accelerates.
- Chelator pairings: arsenic → DMSA / DMPS / BAL (not penicillamine); lead → EDTA / DMSA; copper (Wilson) → penicillamine; iron → deferoxamine.
- Disulfiram-like reaction = ALDH inhibition → acetaldehyde accumulation; other drugs that cause it: metronidazole, cefamandole / cefotetan (NMTT-bearing cephalosporins), chlorpropamide, griseofulvin.
- Cimetidine → antiandrogen effect + CYP inhibition (impotence, gynecomastia); famotidine has the strongest acid suppression and none of these problems.
- Test HLA-B*5701 before abacavir; don't confuse it with HLA-B*1502 (carbamazepine).
- Traps: answering "neutralize blood acid" for acidic-drug poisoning (the correct answer is alkalinizing the urine to accelerate excretion); giving penicillamine for arsenic; mistaking cimetidine for a side-effect-free stomach drug; writing abacavir's HLA as 1502.
- Purpose of biotransformation: convert a lipophilic drug to water-soluble for excretion; not necessarily detoxification (a prodrug instead needs to be activated).
- Phase I = CYP450 oxidation, reduction, hydrolysis; Phase II = conjugation (attaching a large group to inactivate the drug and increase water solubility).
- Henderson-Hasselbalch: a weak acid with pKa = 6 at pH 4 → ionized : nonionized = 1:100; "acid in acid, base in base — nonionized, readily absorbed."
- Inhaled anesthetics: a large blood:gas partition coefficient → slow induction, slow recovery (halothane); small → fast (N₂O, desflurane).
- Four types of antagonism: competitive shifts the curve right and is reversible; noncompetitive lowers the ceiling and is irreversible; chemical does not need to bind the receptor (protamine neutralizing heparin); physiologic acts through different receptors.
- The route with the highest bioavailability = IV (100%); oral bioavailability is affected by absorption plus first-pass metabolism.
- Zero-order kinetics drugs = PEA (phenytoin, ethanol, high-dose aspirin); the zero-order half-life lengthens as concentration rises and has no fixed value.
- Half-life t½ = 0.693 × Vd / Cl; a large Vd or small Cl → a long half-life.
- Warfarin's two genes = CYP2C9 (metabolism) + VKORC1 (target); don't mistakenly choose CYP3A4 or CYP2D6.
- Traps: treating a zero-order drug as first-order (a small dose increase causes a large surge); reversing the direction of the blood:gas partition coefficient (mistakenly thinking large means fast); imagining chemical antagonism requires binding the receptor; calculating a weak acid at pKa = 6, pH = 4 as 100:1 (the direction reversed); treating all biotransformation as "detoxification" (a prodrug is instead activated).
- The shared precursor of platelets and red cells = MEP; lymphocytes arise solely from the CLP.
- Granulocytes and monocytes share a root in the GMP, so myeloid leukemia commonly shows abnormalities in both together.
- Trap: assuming "platelets have no nucleus, therefore no organelles" (they still contain microfilaments, mitochondria, and alpha and dense granules); assuming lymphoid leukemia must directly lower the platelet count (it only does so once the marrow has been crowded out of space).
- The shared precursor of platelets and red cells = MEP; lymphocytes arise solely from the CLP.
- By the time erythroid maturation reaches the normoblast, the cell is "the last stage with a nucleus, no longer dividing"; the reticulocyte is already anucleate but still contains RNA.
- The most numerous cell in the blood = the erythrocyte (120-day lifespan).
- Primary lymphoid organs (bone marrow, thymus) have no germinal centers; only secondary organs do. The thymus has Hassall's corpuscles but no germinal center.
- Peyer's patches = aggregates of lymphocytes in the submucosa of the ileum (GALT).
- Platelets are anucleate but organelle-containing (microfilaments, mitochondria, secretory granules); "no nucleus" ≠ "no organelles."
- The cell least likely to be seen on peripheral blood = the mast cell (it lives in tissue); the basophil is the least abundant circulating leukocyte.
- Lymphatic capillaries = blind-ended, overlapping-flap junctions, discontinuous basement membrane, with valves appearing only in larger lymphatic vessels.
- Yellow marrow = inactive, fat-filled marrow (not fibrotic), able to revert to hematopoiesis when needed.
- Traps: describing the thymus as having germinal centers; describing Peyer's patches as capillaries or neural tissue; describing yellow marrow as fibrotic; swapping the basophil and the mast cell.
- First cut, MCV: for microcytic anemia, ferritin separates IDA (↓) from ACD (normal/↑); thalassemia is identified by a Mentzer index <13, HbA2 >3.5%, and iron that is not deficient but overloaded.
- Macrocytic: B12/folate plus a hypersegmented neutrophil; only B12 deficiency causes neurologic findings; folate alone masks the neurologic catastrophe of B12 deficiency.
- Second cut, RPI: >2–3 = marrow compensation (hemolysis/blood loss); <2 = inadequate production.
- Localizing hemolysis: intravascular = haptoglobin↓↓ + hemoglobinuria (PNH, ABO incompatibility, G6PD crisis); extravascular = splenic phagocytosis (HS, AIHA, thalassemia).
- HS = autosomal dominant + spherocytes + MCHC↑ + Coombs(−); first-choice diagnosis is the EMA test; treatment is splenectomy (vaccinate against encapsulated organisms 2 weeks beforehand). HS is extravascular hemolysis (the reversed trap).
- Pernicious anemia: anti-parietal cell/anti-intrinsic factor antibodies, glossitis, marrow erythroid precursors increased but ineffective.
- β-thalassemia major: hypertransfusion suppresses extramedullary hematopoiesis; iron overload requires a chelator.
- PNH: PIGA mutation → loss of CD55/CD59 → intravascular hemolysis; the leading cause of death is thrombosis; treatment is eculizumab.
- Aplastic anemia: standard treatment is ATG + cyclosporine; steroids alone are not first-line.
- The dominant hemoglobin at 10–11 weeks = HbF (α2γ2); the Gower hemoglobins are the earlier embryonic forms.
- Traps: labeling HS as intravascular hemolysis; treating thalassemia as iron deficiency and giving iron; masking B12 neurologic symptoms by replacing folate alone; reflexively giving IV vitamin K for a high INR without bleeding; reading the raw reticulocyte percentage directly as the RPI.
- Four quadrants: acute/chronic × myeloid/lymphoid. Auer rods + MPO+ = AML; TdT+ MPO− = ALL; acute blast threshold ≥ 20%.
- CML = t(9;22) BCR-ABL + low LAP + imatinib; radiation is in fact a CML risk factor; immunophenotyping is the least necessary test for diagnosis.
- ALL prognosis: Ph(+) is unfavorable in ALL (don't transplant CML's role onto it); Ph(+) is more common in adults than children; hyperdiploidy/ETV6-RUNX1 are favorable; KMT2A rearrangement is unfavorable.
- ALL CNS prophylaxis = intrathecal chemotherapy (intrathecal MTX) is first-line; cranial radiation is second-line; imatinib does not cross into the CSF and cannot replace intrathecal chemotherapy.
- APL = t(15;17) PML-RARA; give ATRA the moment it is suspected (life-saving); standard therapy is ATRA + ATO; ATRA alone relapses easily; both ATRA and ATO can cause differentiation syndrome (managed with dexamethasone).
- APL's hallmark = DIC + primary hyperfibrinolysis; guard against TLS early in treatment (rasburicase; contraindicated in G6PD deficiency).
- CLL: anemia/thrombocytopenia = advanced stage = worse prognosis (don't reverse the direction); by FISH, del(13q) is best, del(17p) is worst (TP53).
- Traps: treating the Philadelphia chromosome as favorable in ALL (it is actually unfavorable); claiming CML is unrelated to radiation (ionizing radiation is in fact an established risk factor); assuming that giving a TKI in Ph(+) ALL excuses you from CNS prophylaxis (imatinib does not cross into the CSF); withholding ATRA in APL until the genetic report returns (missing the life-saving window); treating anemia in CLL as a favorable sign (it actually signals advanced disease).
- HL's hallmark = the Reed-Sternberg cell (of B-cell origin, CD15+/CD30+ CD45−); contiguous spread; associated with EBV.
- DLBCL = the most common NHL; standard therapy is R-CHOP (CD20+ → add rituximab).
- rituximab → JC virus → PML (progressive multifocal leukoencephalopathy).
- Chromosomes: Burkitt — t(8;14), c-MYC, starry sky, Ki-67 ≈ 100%; Follicular — t(14;18), BCL-2, anti-apoptotic; Mantle cell — t(11;14), Cyclin D1, CD5+CD23−.
- ALCL = CD30+ ALK+, from cytotoxic T cells; nasal NK/T = CD56+ EBV+ with vascular invasion and necrosis.
- CLL = CD20+CD5+CD23+ (a B cell wearing a T-cell coat); distinguished from mantle cell lymphoma (CD23−) by CD23.
- MM = CRAB (hypercalcemia, renal failure, anemia, bone lesions) + M protein + rouleaux.
- Image MM with X-ray/low-dose CT/MRI; a bone scan gives a false negative (osteolytic, with inactive osteoblasts).
- MM's initial therapy is not high-dose chemotherapy; the standard is bortezomib + lenalidomide + dexamethasone → autologous HSCT.
- Autologous HSCT carries no GVHD; in allogeneic transplant, ABO incompatibility needs no added immunosuppression or splenectomy (HLA is what actually drives rejection).
- Traps: reversing the CD23 direction between CLL and mantle cell lymphoma; assessing MM with a bone scan (a false negative); starting MM treatment with high-dose chemotherapy; failing to think of PML when neurologic symptoms appear after rituximab; assuming autologous HSCT also carries GVHD risk.
- PT reflects extrinsic + common; aPTT reflects intrinsic + common; "aPTT↑, PT normal = intrinsic pathway" (hemophilia A/B, VWD, LA).
- Mixing test: corrects = a missing factor (hemophilia, VWD); does not correct = an inhibitor is present (acquired hemophilia, LA).
- Congenital hemophilia A: hemarthrosis, boys, X-linked; treatment is replacing VIII; severe = VIII <1%.
- Acquired hemophilia A: subcutaneous/soft-tissue ecchymoses, postpartum/elderly, anti-VIII antibodies; treatment is immunosuppression to clear the antibody + a bypassing agent (rFVIIa/aPCC); replacing VIII is often neutralized and ineffective.
- VWD: BT↑ + aPTT↑ + PT normal; mucosal bleeding, menorrhagia.
- Warfarin, high INR without bleeding = hold/reduce the dose and observe (no IV vitamin K); severe bleeding uses 4-factor PCC + IV vitamin K.
- Acute arterial thrombosis = catheter-directed thrombolysis/surgery (not systemic thrombolysis).
- Pseudothrombocytopenia = redraw into a sodium citrate (EDTA-free) tube; not a heparin tube.
- The lupus anticoagulant paradox: aPTT↑ in vitro, yet thrombosis-prone in vivo.
- Traps: treating acquired hemophilia as a simple deficiency and aggressively replacing VIII (it gets neutralized by the antibody); reflexively giving IV vitamin K for a high INR without bleeding (thrombosis risk in valve patients); switching to a heparin tube for pseudothrombocytopenia (it introduces its own coagulation interference); forgetting the prolonged aPTT in VWD; assuming the lupus anticoagulant causes bleeding (it actually promotes thrombosis).
- Pediatric cancer map: ALL at 2-5 years (most common childhood leukemia); neuroblastoma <1 year (most common extracranial solid tumor, crosses the midline, VMA/HVA↑, MYCN amplification = poor prognosis); Wilms at 2-5 years, does not cross the midline; retinoblastoma <3 years, leukocoria, RB1. Down syndrome leukemia at 1-3 years is predominantly AML.
- Neuroblastoma marker = urinary VMA/HVA (not AFP); paraneoplastic clues are dancing eyes and raccoon eyes.
- Cut pediatric purpura by platelet count: HSP has normal platelets (IgA vasculitis, palpable purpura); ITP/HUS/HLH all have low platelets; HLH = ferritin↑↑, TG↑, fibrinogen↓.
- Tumor markers: prostate = PSA (not LDH); HPV(+) head and neck cancer has a better prognosis; BRCA1 carries a higher ovarian cancer risk than BRCA2; progestin is a protective factor for endometrial cancer.
- Treatment direction: stage IV RCC does not respond to conventional chemotherapy (immunotherapy/VEGF TKI/mTOR); early laryngeal cancer can preserve the larynx with radiotherapy; HER2(+) breast cancer improves survival with postoperative trastuzumab.
- First move in emergencies: spinal cord compression = dexamethasone + MRI; SVC syndrome = treat the underlying tumor; hypercalcemia = normal saline hydration (thiazides contraindicated); TLS = hydration + uric-acid lowering (rasburicase, contraindicated in G6PD deficiency).
- Transfusion ABO: red cells: O is the universal donor (strictly O−); plasma: AB is the universal donor (opposite directions); giving A red cells to an O patient = acute intravascular hemolysis, contraindicated (no relaxing this even in an emergency).
- AHTR = major ABO incompatibility → intravascular hemolysis; first step = stop the transfusion immediately.
- TRALI: no volume overload/diuresis ineffective; TACO: volume overload/BNP↑, diuresis effective.
- Qualified HSCT sources = bone marrow, PBSC, umbilical cord blood; disqualified = adult splenic cells.
- Traps: writing HSP as having low platelets (actually normal); answering the neuroblastoma marker as AFP (actually VMA/HVA); writing that prostate cancer is tracked with LDH (actually PSA); writing progestin as a risk factor for endometrial cancer (actually protective); giving type A red cells to a type O patient in an emergency (causes intravascular hemolysis); treating adult splenic cells as a qualified HSCT source.
- ANA is a sensitive screen — a negative result nearly excludes SLE; a positive result requires follow-up with anti-dsDNA and anti-Sm.
- Highest specificity = anti-Sm; tracks activity/nephritis = anti-dsDNA.
- During activity, C3/C4 fall (consumed); CRP is often not elevated — if it is, suspect concurrent infection or serositis.
- 2019 EULAR/ACR entry criterion = ANA ≥ 1:80, then scoring to ≥10 points with ≥1 clinical criterion.
- Cornerstone = HCQ (periodic fundoscopy); severe organ involvement = cyclophosphamide / MMF.
- Traps: mistaking ANA for a confirmed diagnosis; assuming C3/C4 rise during activity; treating a high CRP as worsening disease (should suspect infection instead).
- Mechanism = drug remodels histone antigenicity → anti-histone(+); but anti-dsDNA/anti-Sm usually (−), complement normal, renal and CNS involvement rare.
- Common drugs = HIP (hydralazine, INH, procainamide) + minocycline, anti-TNF agents, quinidine.
- Management = stopping the drug usually resolves it; for severe symptoms, a short course of NSAIDs or low-dose steroids — no need for long-term immunosuppression.
- Traps: adding cyclophosphamide / MMF unnecessarily; assuming complement falls; assuming anti-dsDNA turns positive.
- MCTD = high-titer anti-U1RNP; overlap of SLE / SSc / myositis, Raynaud phenomenon, puffy hands.
- limited SSc / CREST = anti-centromere (the CREST mnemonic).
- diffuse SSc = anti-Scl-70 / anti-RNA pol III, pulmonary fibrosis, renal crisis.
- Sjögren's = anti-Ro / anti-La; anti-Ro crosses the placenta causing fetal congenital heart block; extraglandular involvement treated with steroids + immunosuppression.
- anti-Jo-1 = antisynthetase syndrome (myositis + ILD + mechanic's hands + arthritis + Raynaud phenomenon).
- Traps: pairing MCTD with anti-centromere; pairing CREST with anti-Scl-70; treating Sjögren's with artificial tears alone.
- Cause = 2–4 weeks after group A β-hemolytic streptococcal pharyngitis.
- Mechanism = molecular mimicry (type II hypersensitivity), not immune complex deposition.
- Jones major criteria: carditis, migratory polyarthritis, Sydenham chorea, erythema marginatum, subcutaneous nodules.
- Classic sequela = mitral stenosis.
- Traps: answering immune complex deposition; naming aortic stenosis as the long-term sequela.
- LAD: CD18/integrin defect → neutrophils cannot extravasate → elevated in blood, wounds fail to suppurate, delayed umbilical cord separation.
- Sex trap: T1DM is similar between men and women; AS is male > female — do not assume "autoimmune disease favors women" applies universally.
- Traps: answering that LAD lowers neutrophil count; forcing T1DM and AS into the "more common in women" pattern.
- Core mechanism = central sensitization; CRP/ESR normal, antibodies negative, imaging shows no destruction.
- Diagnosis = 2010/2016 ACR clinical criteria (WPI + SSS + ≥ 3 months + exclusion of other causes); the 18 tender points have been replaced.
- All blood work/imaging serves to rule out other diseases, not to confirm this one.
- Treatment: exercise/education as first line; drugs are chosen for central modulation (duloxetine, amitriptyline, pregabalin, gabapentin); NSAIDs and steroids are essentially useless.
- Traps: assuming chronic pain raises CRP/ESR; confirming fibromyalgia with RF or anti-CCP; still using the 18 tender points as the threshold; making NSAIDs or steroids the mainstay of treatment.
- Gold-standard diagnosis = polarized-light microscopy of joint fluid for crystals (not X-ray or serum uric acid).
- Gout = needle, negative, yellow, big toe; CPPD = rhomboid, positive, blue, knee; CPPD's X-ray sign is chondrocalcinosis.
- Shared downstream pathway = NLRP3 inflammasome → IL-1β, so colchicine / IL-1 inhibitors work for both.
- Serum uric acid can be normal during an acute flare — it cannot be used to exclude the diagnosis; asymptomatic hyperuricemia is not routinely treated.
- During the acute phase, only put out the fire (NSAID / colchicine / corticosteroid) — do not start allopurinol / febuxostat (current ACR 2020 conditionally allows starting during a flare under anti-inflammatory cover); patients already taking one should not stop it.
- Thiazides and low-dose aspirin raise uric acid (inappropriate choices in gout); losartan lowers it slightly.
- allopurinol → HLA-B*58:01 → SJS/TEN (screen before use in the Han Chinese population); compare carbamazepine → B*15:02.
- Traps: starting allopurinol during the acute phase; using aspirin for pain relief; excluding gout because uric acid is normal; forgetting HLA-B*58:01 screening.
- Primary lesion = the enthesis; not the synovium (RA), not cartilage (OA).
- Mechanistic axis = HLA-B27 + IL-23/IL-17 → enthesitis → reparative ossification.
- AS: male > female, age 20–30, HLA-B27 ~90%; inflammatory low back pain = worse with rest, morning stiffness >30 minutes, wakes the patient at night.
- Earliest imaging finding = MRI sacroiliac bone marrow edema; late finding = bamboo spine (syndesmophytes).
- Treatment: NSAIDs + exercise as first line (used continuously); on failure, anti-TNF / IL-17 inhibitors; on further failure, JAK inhibitors; methotrexate / sulfasalazine are useless for axial disease (sulfasalazine only rescues peripheral joints).
- Most common extra-articular finding = acute anterior uveitis.
- Reactive arthritis: 1–4 weeks after a GI/genitourinary infection; triad = arthritis + conjunctivitis + urethritis; triggering organisms include Chlamydia / Shigella / Salmonella / Yersinia / Campylobacter — Clostridium does not trigger it.
- HLA: psoriasis itself = Cw6; spine = B27; RA = DR4.
- Traps: choosing methotrexate or oral steroids first-line for AS; using sulfasalazine to treat axial disease; pairing Chlamydia with infective endocarditis; naming Clostridium as a trigger of reactive arthritis.
- Skeleton: large (GCA, Takayasu) / medium (PAN, Kawasaki) / small (ANCA-associated vs. immune complex).
- c-ANCA(PR3) → GPA (upper airway + lung + kidney + granulomas); p-ANCA(MPO) → MPA, EGPA; for EGPA, a negative ANCA cannot exclude it (positivity 30–40%).
- AAV is autoimmune, not autoinflammatory; mechanism = ANCA → neutrophil activation → NETs → small-vessel necrosis.
- GCA: >50 years old, temporal pain, jaw claudication, high ESR; high-dose corticosteroids first, biopsy second; tocilizumab (IL-6) is a steroid-sparing agent.
- Non-severe EGPA can add mepolizumab (anti-IL-5); induction for severe AAV = corticosteroids + cyclophosphamide or rituximab.
- IgG4-RD: lacrimal gland/orbit, pancreas, salivary glands; elevated serum IgG4; storiform fibrosis.
- HAE: C1-INH deficiency → bradykinin accumulates; low C4, total IgE useless; antihistamines / corticosteroids / epinephrine are ineffective.
- PAN: medium vessel, associated with HBV, spares the lung, ANCA-negative, beaded aneurysms; typically does not cause glomerulonephritis (vs. AAV).
- Traps: waiting for biopsy before treating GCA; checking total IgE for EGPA; treating HAE with antihistamines; classifying PAN as ANCA-associated.
- Mechanism = autoimmunity → pannus gnaws bone from the inside out; five steps = HLA-DR4 + environment → citrullination + anti-CCP/RF → synovial infiltration → pannus releases MMP/RANKL/TNF-α/IL-6 → marginal bone erosion.
- MCP / PIP / wrist, symmetric, morning stiffness >1 hour; usually spares the DIP (DIP involvement suggests concurrent OA); can begin as a single joint early on.
- anti-CCP is the most specific (predicts prognosis/erosion); RF is sensitive but not specific; gene = HLA-DR4 (shared epitope).
- Extra-articular: osteoporosis is most common; rheumatoid nodules and Felty syndrome (RA + splenomegaly + neutropenia) are most specific; pleural effusion has extremely low glucose; Caplan = RA + pneumoconiosis; leading cause of death = cardiovascular disease.
- C1–C2 atlantoaxial subluxation: the cervical spine must be assessed before intubation for general anesthesia.
- Treatment: MTX is the cornerstone; on failure, use anti-TNF / IL-6 (tocilizumab) / abatacept / rituximab / a JAK inhibitor.
- Pregnancy: safe = HCQ, sulfasalazine (with folate), low-dose corticosteroids, certolizumab; contraindicated = MTX, leflunomide (requires cholestyramine washout), cyclophosphamide, mycophenolate.
- Traps: keeping MTX during pregnancy; assuming RA always involves the DIP; forgetting the neutropenia in Felty syndrome; forgetting to assess the cervical spine before intubation; treating RF as the most specific antibody.
- Mechanism = MMPs degrade cartilage + failed repair (not pure physical abrasion); CRP/ESR normal.
- Five steps = mechanical loading + aging → MMP/ADAMTS degradation → cartilage thinning and fissuring → subchondral sclerosis + osteophytes → mechanical pain.
- Favored sites = DIP / PIP / first carpometacarpal / knee / hip / spine; spares the MCP / wrist (involvement there suggests hemochromatosis, CPPD).
- Imaging: asymmetric joint-space narrowing, osteophytes, subchondral sclerosis and cysts (vs. RA's symmetric narrowing + marginal erosion + osteopenia).
- Joint fluid: clear and viscous, WBC <2000, predominantly mononuclear; a low-grade single-joint effusion in an RA patient most likely means concurrent OA.
- Treatment: non-pharmacologic (weight loss, exercise) as first line; knee gets topical NSAID preferred; ACR 2019 conditionally recommends against hyaluronic acid; acetaminophen has limited efficacy.
- Differential: lunate collapse = Kienböck disease; MCP involvement + iron overload should suggest hemochromatosis.
- Traps: assuming OA raises CRP; answering the mechanism as pure physical abrasion; using hyaluronic acid as routine therapy; misreading lunate collapse as OA.
- The sequence is, at its core, death speed: A>B>C>D>E; a deteriorating patient always goes back to A.
- GCS ≤ 8 → intubate; intubate even with spontaneous breathing (the airway cannot protect itself).
- For blunt trauma with suspected intra-abdominal hemorrhage: FAST or abdominal CT; abdominal X-ray is the option you should never pick.
- Lethal chest injuries rely on clinical diagnosis: tension pneumothorax → immediate needle decompression, do not wait for X-ray; distinguished from massive hemothorax by jugular venous direction (distended vs. collapsed).
- Traumatic cardiac tamponade is treated first by surgery (thoracotomy/pericardial window); pericardiocentesis is only a bridge.
- DNR ≠ do not treat: respiratory failure from trauma should still be intubated (acute and reversible).
- Transfer to a trauma center follows ATLS physiologic/anatomic high-risk indicators; an isolated open tibial fracture does not qualify.
- Top triage priority = immediate life threat (such as a respiratory rate of 40/min), not loudness or a familiar-sounding term.
- Traps: ① seeing GCS 6 with preserved spontaneous breathing and letting it go (in fact, ≤8 always means intubate); ② getting an X-ray first for tension pneumothorax (it is in fact a clinical diagnosis); ③ assuming a DNR means no intubation (an acute reversible event should still be treated).
- Class III = blood loss of 1500–2000 mL (30–40%), heart rate >120, systolic pressure starting to fall, confusion.
- Systolic pressure falls only at Class III; Class II shows pulse pressure narrowing first (diastolic pressure pushed up).
- Lethal triad = hypothermia + acidosis + coagulopathy; the diamond adds hypocalcemia (citrate chelates calcium).
- "Hypotension" and "arrhythmia" are not members of the lethal triad (the exam's favorite distractors).
- Permissive hypotension: SBP 80–90 mmHg; the definitive treatment is hemostasis — never force it up to 120 with a pressor.
- Large-volume NS → hyperchloremic metabolic acidosis; the first choice is lactated Ringer's solution.
- Massive transfusion ratio RBC:FFP:Plt ≈ 1:1:1; give TXA within 3 hours.
- Emergency transfusion: type O for red cells, type AB for plasma (opposite directions).
- Traps: ① seeing a normal SBP in Class II and relaxing (the pulse pressure has already been squeezed narrow); ② writing the lethal triad as "hypotension + acidosis + coagulopathy" (the member is hypothermia, not hypotension); ③ assuming type AB red cells are universal for emergency transfusion (the universal red cell is O; the universal plasma is AB).
- The cranial vault = fixed volume: brain + blood + CSF; once yielding room is exhausted, ICP spikes exponentially.
- Normal ICP 7–15; treat above 20; a crisis presents with Cushing's triad (BP↑, HR↓, irregular respirations).
- CPP = MAP − ICP; MAP = (SBP + 2×DBP)/3; SBP can never be substituted directly for MAP.
- GCS ≤ 8, intubate; the motor score is taken from the best-performing limb; an intubated patient's verbal score is written V_T.
- Hyperventilation is only an emergency bridge against herniation, PaCO₂ 30–35; never drop it to 20 (cerebral ischemia); prophylactic steroids are contraindicated after head injury (CRASH).
- First line for status epilepticus = a benzodiazepine, not propofol.
- EDH = artery (MMA), lentiform, lucid interval, temporal bone fracture; SDH = vein (bridging veins), crescent-shaped, elderly/anticoagulated.
- The berry aneurysm is an acquired lesion (a congenitally weak wall + long-term shear stress); the most common site at a branch point of the circle of Willis is the anterior communicating artery.
- SAH workflow: CT → if CT(−), lumbar puncture for xanthochromia → once confirmed, CTA to find the aneurysm (not a lumbar puncture to find the cause).
- Vasospasm on days 4–14, peaking on day 7 (not days 1–5); nimodipine for prevention.
- CSF is about 20 mL/hr (0.35 mL/min); an exam value of 40 cc/hr is wrong.
- Traps: ① giving steroids after head injury to reduce edema (CRASH proved it increases mortality — contraindicated); ② giving propofol as first line for status epilepticus (it is in fact a benzodiazepine); ③ dropping PaCO₂ to 20 with hyperventilation (causes cerebral ischemia; the target is 30–35); ④ doing a lumbar puncture first to find the aneurysm after SAH (a lumbar puncture only looks for xanthochromia; CTA is needed once confirmed).
- Snakebite: antivenom dosing follows clinical severity, not body weight — the dose is never reduced for children; Taiwan currently stocks 4 types of antivenom; the hundred-pace pit viper and Russell's viper each have their own dedicated antivenom, which cannot be replaced by a bivalent antivenom.
- Banded krait fang marks are small and initially mild, but can progress to respiratory muscle paralysis hours later — do not discharge early.
- Do not: apply a tight tourniquet, incise and suck, apply ice, or drink alcohol.
- With Russell's viper, watch for acute renal failure (rhabdomyolysis + DIC); have adrenaline ready before giving antivenom, to guard against anaphylactic shock.
- Parkland = 4 × kg × % TBSA (ATLS 10th ed. starts adults at 2 mL); give half in the first 8 hours; count from the time of injury; lactated Ringer's solution, no dextrose; target urine output 0.5 mL/kg/hr.
- Electrical burns/rhabdomyolysis: target urine output 1–1.5 mL/kg/hr; add albumin only after 8–24 hours; first-degree burns are not counted in TBSA.
- Lime/cement = strong alkali, brush off the dry powder before irrigating; HF → 2.5% calcium gluconate gel, watch for hypocalcemia; alkali = liquefactive necrosis (deeper than acid).
- Escharotomy incises skin (not the fascia); fasciotomy incises the fascia (for compartment syndrome).
- Inhalation injury is confirmed by fiberoptic bronchoscopy; chest X-ray is often normal early on and must not be chosen as the first-line tool.
- Progressive airway swelling → intubate early; in CO poisoning, SpO₂ can be falsely normal — measure COHb and give 100% O₂.
- Traps: ① reducing the antivenom dose for a child's snakebite (in fact the dose is never reduced for children); ② counting first-degree burns into the TBSA (only second- and third-degree are counted); ③ seeing an SpO₂ of 98% in CO poisoning and relaxing (a pulse oximeter cannot distinguish COHb — carboxyhemoglobin must be measured directly); ④ doing a fasciotomy first for circumferential eschar constriction (an escharotomy incising the skin is in fact sufficient).
- Compressions 100–120/min, 5–6 cm; 30:2 (not intubated); once intubated, continuous compressions + 1 breath every 6 seconds; ETCO₂ <10 mmHg means poor quality, a sudden rise = ROSC.
- Shockable = VF/pulseless VT; non-shockable = PEA/asystole (never force a shock).
- Pediatric defibrillation 2 → 4 → ≥4 J/kg; adult biphasic starts at 120–200 J.
- Adrenaline 1 mg q3-5 min; refractory VF → amiodarone 300 mg (not lidocaine as first choice).
- Immediately resume compressions for 2 minutes after a shock — do not stop to look at the ECG.
- 5H5T: hypoxia, hypovolemia, H⁺, K⁺ abnormality, hypothermia / tension pneumothorax, tamponade, toxins, thrombosis.
- A DNR applies only to terminal patients; non-terminal + an acute reversible event → resuscitate first; an advance directive outranks a consent form.
- Distributive shock = warm extremities, SVR↓, CO↑ or normal; SvO₂ runs paradoxically high in sepsis.
- First choice in sepsis is norepinephrine (not dopamine); stabilize blood pressure before starting nutrition (not the earlier the better).
- RSBI > 105 means extubation is likely to fail; barotrauma is judged by a plateau pressure > 30 (not 10).
- Discontinuing either TPN or EN can cause rebound hypoglycemia; both require gradual tapering.
- Severe asymptomatic carotid stenosis can still be considered for CEA/CAS, not always managed medically.
- Traps: ① trying a shock on asystole just to see (non-shockable — give adrenaline only); ② starting pediatric defibrillation at 4 J/kg (it is in fact start at 2, follow with 4); ③ thinking earlier nutrition in septic shock is always better (early poor gut perfusion risks ischemia/aspiration); ④ calling a plateau pressure of 10 cmH₂O barotrauma (the threshold is >30).
- Mechanism = blockade of the voltage-gated Na⁺ channel (not calcium or potassium); effect is poor in acidic, inflamed tissue (ionization↑).
- Amides go through hepatic P450 (two i's); esters go through pseudocholinesterase (PABA allergy) — do not reverse them.
- Lidocaine ceiling: 4.5 mg/kg without epi, 7 mg/kg with epi; epi causes vasoconstriction, and must not be added at end-artery sites.
- LAST hits the CNS first, the heart second; hallucination is not a typical CNS feature; treat Bupi cardiotoxicity with Intralipid, never with more lidocaine.
- The marker of epidural LOR = passing through the ligamentum flavum (not the dura mater).
- Spinal block height is affected by baricity, dose, position, height, and obesity (obesity does have an effect).
- Traps: ① calling amides metabolized by pseudocholinesterase (that is esters); ② calling epi a vasodilator (it is actually a vasoconstrictor); ③ listing hallucination as a CNS feature of LAST (it is not typical); ④ giving more lidocaine for bupivacaine cardiotoxicity to control the rhythm (same class of Na channel blocker — it only stacks toxicity; give Intralipid instead); ⑤ claiming obesity has no effect on spinal anesthesia (it actually spreads the block more widely).
- Neuropathic pain is treated first-line with gabapentinoid / TCA / SNRI; it responds poorly to opioids and NSAIDs.
- Pregabalin = the α2δ calcium channel (not the sodium channel); the local anesthetic is the one on the sodium channel — do not mix them up.
- Opioid respiratory depression is mediated by the μ receptor (not κ); tolerance does not develop to miosis or constipation.
- Naloxone reverses opioids (short half-life, needs repeat dosing); flumazenil reverses BZDs (watch for re-sedation); the two are not interchangeable; neither ketamine nor dexmedetomidine can reverse opioids.
- The gold standard for thoracotomy = epidural (current ERAS/PROSPECT: paravertebral block is as effective with fewer side effects); sciatic block works worst for TKA (the pain is anterior); ERAS actively uses nerve blocks (rather than avoiding them).
- Epidurals suppress (lower) sympathetic outflow; cervical epidurals are used, though the risk is higher and imaging is required.
- PCA is not limited to morphine; acetaminophen has no anti-inflammatory effect and does not harm the stomach or kidneys, though overdose causes hepatotoxicity (treat with NAC).
- Traps: ① calling pregabalin a Na channel blocker (that is the local anesthetic; pregabalin acts on the α2δ calcium channel); ② morphine's respiratory depression via κ (it is actually μ); ③ ketamine can reverse opioids (it cannot — only naloxone can); ④ sciatic block as first choice for TKA (useless — anterior pain needs a femoral nerve/adductor canal block); ⑤ ERAS avoids nerve blocks (it actually uses them actively).
- ASA class judges systemic disease severity; adding E denotes an emergency; rheumatic heart disease does not raise airway risk (it affects the valves).
- Difficult ventilation = MOANS; Mallampati IV = only the hard palate visible (hardest to intubate).
- NPO: clears 2, milk 4/6, light meal 6, fatty food 8.
- A pacemaker magnet only reduces, and does not fully prevent, cautery interference; use bipolar cautery.
- Lithotomy injures the sciatic/common peroneal nerve (not the femoral nerve); hip flexion is what injures the femoral nerve; the most common = the ulnar nerve.
- PONV high risk: female sex, non-smoker, history of PONV/motion sickness, postoperative opioid; smoking is actually protective.
- The consent form protects autonomy; decision-making capacity is judged by ability, not diagnosis; Helsinki must weigh both value and non-maleficence.
- An inappropriate physician–patient relationship must be terminated immediately and the patient referred elsewhere.
- Traps: ① counting rheumatic heart disease as a risk factor for difficult ventilation (it only affects the valves); ② lithotomy injuring the femoral nerve (it is actually the sciatic/common peroneal); ③ counting smoking as a PONV high-risk factor (it is actually protective); ④ a psychiatric diagnosis equaling no decision-making capacity (capacity is judged by whether the patient can understand, reason, and express a choice); ⑤ a magnet completely preventing cautery interference (it can only reduce it).
- The extubation period = negative-pressure pulmonary edema (inhaling against a closed glottis after laryngospasm), not positive-pressure.
- Neuraxial anesthesia causes hypothermia too (blocks sympathetic tone, dilates vessels, suppresses shivering).
- Malignant hyperthermia (MH) trigger = inhalational anesthesia + succinylcholine; a sharp ETCO₂ rise is the earliest sign (fever is late); dantrolene starts at 2.5 mg/kg, up to ~10 mg/kg.
- First-line for anaphylaxis = adrenaline; for LAST = 20% lipid emulsion.
- CO₂ embolism = the Durant maneuver (left lateral decubitus + head-down); right lateral decubitus is wrong.
- An awake, capable, DNR patient who refuses intubation → should be respected (autonomy).
- MAC = the alveolar concentration at which 50% show no movement; rapidly raising desflurane concentration → heart rate↑, not ↓; BZDs ↓cerebral oxygen consumption; ketamine is the only agent that raises ICP.
- Opioid respiratory depression is via μ; naloxone and flumazenil are not interchangeable.
- Pulse oximetry uses 660/940 nm; COHb causes a falsely elevated reading; SpO₂ > 90% does not equal no hypoxia.
- SvO₂ 60–80%; CO↓, Hb↓, SaO₂↓, and fever/pain/shivering with VO₂↑ all drive SvO₂↓.
- A sharp ETCO₂ rise = the earliest sign of malignant hyperthermia; a sudden drop to 0 = disconnection/esophageal intubation/cardiac arrest; a sudden rise during CPR = ROSC.
- TOF ratio > 0.9 for safe extubation; TOF assesses non-depolarizing block (depolarizing block shows no typical fade); a normal tidal volume ≠ adequate muscle strength recovery.
- Watch for malignant hyperthermia and hyperkalemia with succinylcholine (contraindicated in burns/crush injury/denervation); sugammadex chelates rocuronium/vecuronium.
- Ketamine and barbiturates affect the EEG differently.
- Traps: ① calling extubation-period pulmonary edema positive-pressure (it is actually negative-pressure); ② claiming neuraxial anesthesia does not cause hypothermia (it does); ③ treating a rise in temperature as the earliest sign of malignant hyperthermia (a sharp ETCO₂ rise is actually earliest); ④ claiming rapidly raising desflurane lowers heart rate (it actually stimulates the sympathetic system and raises it); ⑤ claiming BZDs increase cerebral oxygen consumption (they actually lower it); ⑥ positioning a CO₂ gas embolism patient right lateral decubitus (it should be left lateral decubitus + head-down).
| Exam point | Correct answer | Common trap |
|---|---|---|
| Infections that cause small-vessel vasculitis | Syphilis, typhus, ecthyma gangrenosum | Missing one of them |
| Least associated with chronic inflammation | Edema (an acute feature) | Choosing fibrosis/lymphocytes by mistake |
| Fibrinoid necrosis is most common in | Vasculitis | Choosing a caseous-necrosis scenario by mistake |
| Histology of granulation tissue | Fibroblasts + new capillaries + inflammatory cells | Confusing it with granuloma (epithelioid cells) |
| Actions of histamine | Vasodilation + permeability↑ | Answering chemotaxis (that is LTB4/C5a) |
| Diagnostic cell specific for rheumatic carditis | Anitschkow cell (in the Aschoff body) | Confusing the cell with the lesion (the Aschoff body is the pathognomonic lesion, containing Anitschkow cells and multinucleated Aschoff cells) |
| Depth of inflammation in UC | Mucosa (at most the superficial submucosa), not transmural, no granulomas | Confusing it with Crohn disease (transmural + granulomas) |
| Key cell of acute inflammation | Neutrophil | Answering lymphocyte (that is chronic) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Material accumulating in xanthoma foam cells | Cholesterol (lipid) | Answering triglycerides |
| Correct statement about atrophy | Cells shrink and their number may decrease | Choosing "number unchanged" by mistake |
| Material accumulating in fatty change | Triglycerides | Answering cholesterol |
| Hallmark of irreversible injury | Karyorrhexis and other nuclear changes | Mistaking cell swelling for irreversible injury |
| Barrett esophagus | GERD → squamous→columnar metaplasia (precursor lesion of adenocarcinoma) | Calling it hyperplasia by mistake |
| Bladder transitional epithelium replaced by transitional epithelium | Not metaplasia (same cell type) | Misjudging it as metaplasia |
| Organ with the greatest regenerative capacity | Liver (hepatocytes, stable cells) | Answering nerve/cardiac muscle |
| Neurons, cardiac myocytes | Permanent cells, do not regenerate | Thinking they can regenerate |
| Apoptosis vs necrosis | Apoptosis does not cause inflammation, membrane intact; necrosis triggers inflammation, membrane ruptured | Treating apoptosis as inflammatory |
| Key to the intrinsic apoptotic pathway | Mitochondrial cytochrome c → caspase-9 (inhibited by Bcl-2) | Answering caspase-8 (that is the extrinsic pathway) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Less commonly carries BRAF V600E | Breast cancer (common in melanoma/papillary thyroid/colorectal cancer) | Choosing melanoma by mistake |
| Least associated with EBV | Cervical cancer (caused by HPV) | Choosing nasopharyngeal carcinoma/Burkitt by mistake |
| Common gene-silencing mechanism in malignant tumors | p16 methylation (gene silencing) | Answering point mutation |
| Carcinogenic mechanism of aflatoxin B1 | TP53 mutation → hepatocellular carcinoma | Answering RAS |
| Most common chromosomal change in hematopoietic neoplasms | Translocation | Answering amplification |
| Amplified genes in low-grade osteosarcoma | CDK4 / MDM2 (chromosome 12) | Answering MYC |
| Deciding benign vs malignant in endocrine tumors | Metastasis/vascular invasion/infiltration matter most | Relying on cellular pleomorphism |
| Oncogene vs suppressor | Oncogene: one mutant copy acts dominantly; suppressor: needs two hits | Swapping the two mutation patterns |
| Grade vs stage: which matters more for prognosis | Stage (TNM, extent of spread) | Thinking grade (differentiation) matters more |
| Named -oma yet malignant | lymphoma, melanoma, seminoma, glioma | Assuming anything ending in -oma is benign |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Mechanism of pleural effusion in pulmonary infarction | Inflammatory exudate | Confusing it with lymphatic obstruction (elephantiasis/chylothorax/postoperative) |
| Source of the most lethal PE | Lower-limb deep vein thrombosis (DVT) | Answering superficial varicose-vein thrombosis |
| Why most PEs do not cause infarction | The lung has a dual blood supply | Overlooking that true infarction occurs mainly with coexisting left heart failure |
| Milky-white, high-TG pleural fluid | Chylothorax (lymphatic/thoracic duct obstruction) | Treating it as an ordinary exudate |
| Most common cause of abdominal aortic aneurysm | Atherosclerosis | Answering syphilis (that is the thoracic aorta) |
| Most potent vasoconstrictor | endothelin | Getting the direction backwards vs NO (a vasodilator) |
| Key mechanism of TTP | ADAMTS13↓ → accumulation of large vWF multimers | Thinking it is a coagulation-factor problem |
| Life-saving treatment for TTP | Plasma exchange | Giving/planning platelet transfusion (contraindicated) |
| Composition of arterial vs venous thrombi | Arterial = white (platelets); venous = red (RBCs) | Swapping color and composition |
| Red infarcts typically occur in | Lung, intestine (dual blood supply/venous occlusion) | Treating heart/kidney (white infarcts) as red |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Basic defect in osteogenesis imperfecta | Abnormal synthesis of type I collagen | Answering type III/IV |
| Features of osteogenesis imperfecta | Brittle bones + blue sclerae | Overlooking the scleral clue |
| Inheritance of EDS | Can be either dominant or recessive | Thinking it is always dominant |
| Wilson disease gene | ATP7B | Answering ATP8A / ATP7A (the latter is Menkes) |
| Ocular sign of Wilson disease | Kayser-Fleischer ring, ceruloplasmin↓ | Confusing it with hemochromatosis |
| Hemochromatosis gene/onset | HFE; adult onset | Thinking it starts in childhood |
| Classic hemochromatosis | Bronze diabetes + cirrhosis | Overlooking the "skin + diabetes" combination |
| Usual origin of 22q11.2 deletion | De novo mutation | Thinking it is always inherited from a parent |
| 22q11.2 clinical features | CATCH-22 (hypocalcemia, thymic hypoplasia, cardiac defects) | Missing hypocalcemia/immunodeficiency |
| Pellagra triad | Dermatitis/diarrhea/dementia (3D) | Counting "diverticulitis" in by mistake |
| Less common in lead poisoning | Dilated cardiomyopathy | Choosing hemolytic anemia/peripheral neuropathy/gout by mistake (these are common) |
| RBC feature of lead poisoning | Basophilic stippling | Confusing it with other anemia morphologies |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Medical certificate for a patient who has not come in | Must not issue one containing an assessment of current status (otherwise it is forgery of documents) | Issuing it outright at the family's request |
| Management after an abnormal prenatal diagnosis | Provide information + confirm the diagnosis; respect autonomy, do not urge abortion | Physician proactively urging termination of pregnancy |
| A colleague faces a complaint over a missed cardiac defect | Objectively explain the limitations of ultrasound screening | Confirming the colleague's negligence / evading the question |
| Bone marrow donation by a child | Besides parental consent, the child's own assent is still required; communication by a child-friendly team | Parental consent is enough / coercion / going straight to court |
| Assent vs consent | Child's assent + parents' consent; both are required for non-therapeutic procedures | Thinking only parental consent is needed |
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Answering-strategy reminder: For ethics questions asking for the "most/least appropriate" option, go back to the four principles; the deciding criteria are usually autonomy, honesty, and the child's best interests. Options involving "pressure, concealment, admitting fault on someone else's behalf, or coercion" usually point the wrong way.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Workup of a simple febrile seizure | Routine EEG not needed (clinical diagnosis) | Thinking a routine EEG is required |
| Pattern of a simple febrile seizure | Generalized, <15 min, no recurrence within 24 h | Writing it as focal by mistake |
| First line for anaphylaxis | IM epinephrine 0.01 mg/kg (1:1000), pediatric maximum 0.3 mg | Choosing antihistamines/steroids; getting the dose/concentration wrong |
| Burn with blisters and severe pain | Second degree | Confusing it with first degree (no blisters) or third degree (painless) |
| Hypotension from blood loss in children | Hypotension appears only after 30–45% blood loss | Misremembering it as 20% |
| 8% dehydration | Moderate; blood pressure can still be normal; prolonged capillary refill | Thinking hypotension must be present |
| Triad of abusive head trauma | Retinal hemorrhage + intracranial hemorrhage + cerebral edema, without a history of trauma | Attributing it to meningitis/vascular malformation |
| Scenario that does not meet child-abuse reporting criteria | A single hand fracture in a child over 2 years with a consistent mechanism | Treating ordinary accidents as reporting indicators |
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Answering-strategy reminder: For emergency questions, first pick out "vital signs + life-threatening signs"; for management questions, choose the immediate and effective option (e.g., epinephrine). For "least likely/least common/inconsistent" questions, read the stem in reverse and look for the option that contradicts the standard description.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Appropriate age for table manners | After 3 years | Answering 2.5 years or younger |
| Start and priority of complementary foods | 4–6 months, iron-rich foods first | Overlooking depletion of iron stores |
| Site of iron absorption | Duodenum + proximal jejunum | Answering "distal ileum" (that is B12) |
| Site/requirement for B12 absorption | Distal ileum + requires intrinsic factor | Answering duodenum |
| Protein source under 1 year | Mainly animal (milk) | Requiring plant protein to make up 2/3 (an incorrect statement) |
| Parachute reflex | Appears at 6–9 months, persists for life | Treating it as a neonatal primitive reflex; thinking it disappears |
| No menarche at 13 years | Within normal range, least concerning | Rushing into an endocrine workup |
| When to investigate amenorrhea | No menarche at >15 years / no menarche >3 years after breast development | Premature over-investigation |
| Infant contraindications | No honey before 1 year; no skim milk before 2 years | Using diluted fruit juice (sugary) for hydration |
| Vitamin D for exclusively breastfed infants | Supplement 400 IU daily | Thinking breast milk is "complete nutrition" and vitamin D is unnecessary |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Exception to IEM inheritance patterns | OTC deficiency is X-linked (most others are AR) | Treating all of them as AR |
| Mitochondrial inheritance pedigree | Maternal inheritance; fathers do not pass it to their children | Misjudging it as AD |
| CAH inheritance/enzyme | AR; 21-OH (CYP21A2) deficiency | Treating it as X-linked |
| Mechanism of hypophosphatemic rickets | PHEX→FGF23↑→renal phosphate wasting (not vitamin D deficiency) | Treating it as ordinary vitamin D–deficiency rickets |
| Best indication for GH, with the most evidence/NHI coverage | Turner syndrome | Choosing central precocious puberty by mistake (treated with a GnRH agonist) |
| Features of Bardet-Biedl | Obesity + polydactyly + retinitis pigmentosa + intellectual disability + gonadal/renal anomalies | Confusing it with Prader-Willi |
| Recombinant GH and CJD | Recombinant GH does not cause CJD (only pituitary-extracted GH carried the risk) | Treating CJD as a side effect of recombinant GH |
| Workup of CP due to perinatal asphyxia | Karyotyping is the least needed | Routinely adding chromosome studies |
| Biochemistry of OTC deficiency | Ammonia↑, citrulline↓, orotic acid↑, BUN↓ | Thinking BUN rises |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Pigment in adrenal micronodular hyperplasia | Lipofuscin | Answering melanin |
| S100(+) cells in pheochromocytoma | Sustentacular cells; chief cells are marked by chromogranin | Assigning S100 to the chief cells |
| Direction of hemorrhage in WFS | Medulla → cortex (from the inside out) | Writing it as cortex→medulla |
| Effect of exogenous cortisol on the adrenals | Cortical atrophy (ACTH suppressed) | Answering hyperplasia |
| Complications of pituitary macroadenoma | Pituitary apoplexy (hemorrhagic necrosis within the tumor), bitemporal hemianopia | Overlooking that apoplexy is an emergency |
| Most common cause of (pituitary) hyperfunction | Anterior pituitary adenoma | Choosing hypothalamic disease by mistake |
| Most common ACTH-independent Cushing | Adrenocortical adenoma (low ACTH) | Choosing ectopic ACTH by mistake |
| Characteristic islet pathology in T2DM | IAPP (amyloid) deposition | Confusing it with the insulitis of T1DM |
| First-choice biochemical test for pheochromocytoma | metanephrines | Choosing cortisol alone by mistake |
| Preoperative drug sequence for pheochromocytoma | α-blocker first, then β-blocker | Giving the β-blocker first can precipitate hypertensive crisis |
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| Exam point | Correct answer | Trap |
|---|---|---|
| Weight change in hypothyroidism | Increases (metabolism↓) | Answering decreases |
| Preoperative gold standard for benign vs malignant nodules | FNAC | Choosing ultrasound/scintigraphy as "diagnostic" |
| Follow-up of differentiated thyroid cancer | Thyroglobulin | Answering AFP/CEA |
| Most common thyroid cancer | Papillary carcinoma (80–85%) | Answering follicular carcinoma |
| Medullary carcinoma markers/associations | calcitonin, CEA; MEN2 | Missing MEN2 |
| Graves' ophthalmopathy | Not directly related to thyroid function; can keep worsening | Thinking it will improve once function is normal |
| Pretibial myxedema | Non-pitting | Answering pitting |
| Primary hypothyroidism (TSH↑/T4↓) | No pituitary MRI needed | Ordering unnecessary imaging |
| Central thyroid disorders | TSH alone cannot distinguish them; FT4 must be added | Looking only at TSH |
| Key to sick euthyroid syndrome | rT3↑, T3↓ | Misdiagnosing true hypothyroidism and forcing replacement |
| Drug contraindicated in thyroid storm | No amiodarone (contains iodine) | Using amiodarone to control AF |
| Correct drugs for thyroid storm | PTU + propranolol + iodine (1 hr after ATD) + steroids | Giving iodine ahead of the ATD |
| Fever and sore throat on an ATD | Check WBC/ANC first to rule out agranulocytosis | Treating it as a cold and continuing the drug |
| Radiation therapy for hyperthyroidism | RAI (¹³¹I) | Answering stereotactic radiotherapy |
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| Exam point | Correct answer | Trap |
|---|---|---|
| Long-term metformin | B12 deficiency; hypoglycemia is very rare | Thinking it often causes hypoglycemia |
| Early diabetic nephropathy | Microalbuminuria (creatinine still normal) | Waiting until creatinine rises to screen |
| Initial serum potassium in DKA | Normal or elevated (total-body K depleted) | Answering low |
| Acid–base status in DKA | Metabolic acidosis + respiratory compensation (Kussmaul hyperventilation, PaCO₂↓) | Answering respiratory acidosis |
| Definition of HHS | Glucose >600, osmolality >320 | Misremembering the values |
| Serum sodium in HHS | Not a reliable index of dehydration; must be corrected | Reading the measured value at face value |
| DKA management | Fluids first → check K → low-dose continuous IV insulin | Skipping fluids and giving insulin directly, or switching to oral agents |
| When K⁺ <3.3 | Replace potassium first, hold insulin | Giving insulin as usual, causing fatal hypokalemia |
| Leading cause of fasting hypoglycemia | Glucose-lowering drugs | Answering insulinoma |
| Weight-lowering drugs | SGLT-2i, GLP-1 RA; DPP-4i are weight-neutral | Treating DPP-4i as weight-loss drugs |
| HbA1c target in older adults | <8.0–8.5% (relaxed) | Applying <6.5% |
| Metformin and contrast media | Hold it to prevent lactic acidosis | Continuing as usual |
| Effect of thiazides on glucose | Raise glucose, do not cause hypoglycemia | Thinking they cause hypoglycemia |
| LADA | β-cell decline is slower than in T1DM | Confusing it with T1DM |
| T2DM requiring insulin | Is still T2DM | Calling it a conversion to T1DM |
| Distinguishing insulinoma | Endogenous: C-peptide↑; exogenous insulin: C-peptide↓ | Overlooking C-peptide |
| Pompe disease (GSD II) | GAA deficiency; newborn screening + ERT | Misremembering the enzyme |
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- Acromegaly screening = IGF-1 (GH is pulsatile); confirmation = GH not suppressed after an OGTT; first-line treatment is transsphenoidal surgery, and the first-line drug is a somatostatin analog.
- Main cause of death with GH adenoma: cardiovascular (cardiac hypertrophy, hypertension).
- Differentiating DI: water deprivation alone cannot tell them apart; urine osmolality↑ after desmopressin = CDI, no rise = NDI; the most common drug cause of NDI is lithium.
- ADH secretion is regulated mainly by plasma osmolality; SIADH is ADH excess → hyponatremia (the opposite of DI).
- Sheehan: postpartum hemorrhage → ischemic necrosis of the anterior pituitary; failure of lactation is the first sign; in acute decompensation replace steroids first, then thyroid hormone.
- Hypogonadism: FSH/LH high = primary (including postmenopausal), low = secondary (Sheehan, Kallmann).
- MEN 1 = 3P (Pituitary/Parathyroid/Pancreas); MTC + pheochromocytoma belong to MEN 2 (RET gene).
- Lymphocytic hypophysitis: typically in postpartum women; MRI shows an enlarged gland (not an empty sella).
Common traps
- "A single normal GH level rules out acromegaly" — wrong; GH is secreted in pulses, so rely on IGF-1 + OGTT.
- "FSH falls after menopause" — wrong; ovarian failure removes negative feedback → FSH rises.
- "Sheehan presents first with diabetes insipidus" — the posterior pituitary is usually spared, and the first sign is failure of lactation; DI is actually uncommon.
- "Medullary thyroid carcinoma belongs to MEN 1" — wrong; it belongs to MEN 2.
- "High PRL always means a prolactinoma" — a macroadenoma compressing the pituitary stalk (stalk effect) can also cause moderate PRL elevation.
- Metabolic syndrome = high TG + low HDL + hypertension + hyperglycemia + abdominal obesity, any 3 of 5; high LDL is not included (the core is insulin resistance; LDL changes are "qualitative," not "quantitative").
- Taiwan waist circumference: men ≥ 90, women ≥ 80 cm; Taiwan obesity is BMI ≥ 27 (overweight 24–26.9); BMI 25.7 = overweight, not obese.
- Metabolic syndrome: HDL decreased, adiponectin decreased, leptin increased but with leptin resistance.
- Statin mechanism = inhibition of HMG-CoA reductase (not oxidase), first choice for cardiovascular risk reduction; fibrates promote gallstones.
- Pravastatin is not metabolized by CYP3A4 and is unaffected by grapefruit juice; lova/simva/atorva are affected.
- PCSK9 loss-of-function mutation → lower LDL (protective, not higher); PCSK9 inhibitors give the largest reduction.
- Sitagliptin (DPP-4i) is not approved for weight loss (weight-neutral); the first-choice weight-loss drug is a GLP-1 RA.
- Bariatric surgery indications: BMI ≥ 40, or ≥ 35 with comorbidities (exam answer; 2022 ASMBS/IFSO: BMI ≥ 35 regardless of comorbidity, consider 30–34.9 with metabolic disease, and ≥ 27.5 in Asians); it can reduce mortality and induce diabetes remission.
- Anorexia nervosa: hypotension, hypoglycemia, elevated cortisol, constipation (not diarrhea).
Common traps
- "Metabolic syndrome includes high LDL" — wrong; only high TG + low HDL count.
- "Obesity in Taiwan is BMI ≥ 30" — wrong, it is ≥ 27; the waist cut-offs differ for men and women (not 90 for both).
- "PCSK9 loss of function → LDL rises" — backwards; LOF → LDL falls.
- "Niacin flushing is an allergy" — wrong; it is prostaglandin-mediated, and aspirin can prevent it.
- "DPP-4 inhibitors can be used for weight loss" — wrong; they are weight-neutral and not approved for this.
- Primary hyperparathyroidism = high Ca, low P, high Cl (hyperchloremic acidosis); in hypercalcemia of malignancy (PTHrP) PTH is suppressed.
- The hypercalcemia of FHH mimics PHPT (PTH normal/mildly elevated), but urine calcium is low (Ca/Cr clearance ratio < 0.01), it is benign, and no surgery is needed; CKD → secondary (low/normal Ca, high P); once autonomous it becomes tertiary (turns to high Ca).
- Symptoms of hypercalcemia (stones/bones/groans; neuromuscular depression); only hypocalcemia causes numbness of the hands, tetany, Chvostek/Trousseau signs (neuromuscular excitability).
- First choice in hypercalcemic emergency: NS hydration + loop diuretic (exam answer; current practice: hydration plus calcitonin and an IV bisphosphonate, with loop diuretics only for volume overload); no thiazides; bisphosphonates treat the underlying process but act slowly, while calcitonin acts fast but briefly.
- Order of hypocalcemia evaluation: albumin → PTH → Mg (low Mg must be corrected first, or calcium replacement will fail); 1,25D is not first-line.
- Corrected Ca = measured Ca + 0.8 × (4 − albumin); alkalosis lowers ionized calcium.
- ECG: QTc prolonged in hypocalcemia, shortened in hypercalcemia.
- Osteoporosis: DXA T-score ≤ −2.5; drugs are divided into antiresorptive (bisphosphonate, denosumab, SERM) vs anabolic (teriparatide, romosozumab).
- Antiresorptive agents are used to prevent recurrent fractures, not for acute pain relief of vertebral compression fractures (acute pain relief relies on NSAIDs/calcitonin).
Common traps
- "PHPT has high P and low Cl" — backwards; it is low P, high Cl.
- "Hypercalcemia causes numb hands and cramps" — wrong, that is hypocalcemia; hypercalcemia causes weakness, constipation, and lethargy.
- "Use a bisphosphonate first in a hypercalcemic emergency" — wrong; start with NS hydration (bisphosphonates take 1–3 days to act).
- "Low total calcium with low albumin needs calcium replacement" — correct it first; ionized calcium is often normal.
- "Teriparatide (PTH) should cause bone loss" — intermittent low doses actually promote bone formation; only sustained high PTH causes bone loss.
- "Calcium replacement is not working for hypocalcemia" — check and replace Mg first.
- The first step in any amenorrhea is a pregnancy test; secondary amenorrhea = absence of menses for ≥ 3 months, primary = no menarche by age 15.
- Theca cells, under LH, produce androgens → granulosa cells, under FSH, aromatize them to E2 (two-cell theory); the hCG receptor is on the cell membrane.
- Estrogen: negative feedback at low levels / positive feedback when high and sustained → LH surge (one hormone, two effects).
- The Rotterdam criteria for PCOS do not include obesity/insulin resistance; obese with no desire for fertility → lose weight first; for ovulation induction, Letrozole is first choice. Ultrasound follicle-count threshold: classically ≥12, newer guideline ≥20 per ovary (high-resolution probes), volume ≥10 mL.
- Kallmann: FSH/LH both low + anosmia, a cause of primary amenorrhea; Turner: high FSH + short stature + aortic disease.
- "Breasts but no hair" = CAIS (46,XY); "breasts and hair but no uterus" = MRKH (46,XX; check the kidneys).
- Müllerian duct anomalies require screening of the kidneys and urinary tract; the ovaries are not of Müllerian origin; with vaginal atresia do not induce withdrawal bleeding.
- The most common cause of PMB is endometrial atrophy, but endometrial cancer must be ruled out; hydrosalpinx does not cause uterine bleeding.
- Fibroids: hysteroscopy is first choice for FIGO Type 0; GnRH agonist only preoperatively for ≤6 months; Danazol is not routine.
- HRT: add a progestogen if the uterus is present; estrogen alone if there is no uterus; girls with CAH have a normal uterus and ovaries, with virilization of the external genitalia only.
- Lipid-soluble hormones (steroids, T4, 1,25-DHCC) act via nuclear receptors; water-soluble ones (peptides, amines, epinephrine) act via membrane receptors; T4 being lipid-soluble is a classic trap.
- The adrenal medulla is stimulated by preganglionic sympathetic nerves (not postganglionic) to secrete epinephrine.
- Cortisol is highest in the early morning, stimulates erythropoiesis, and promotes bone resorption (least likely to increase bone mass); ACTH → PKA (not PKC); StAR transporting cholesterol into mitochondria is the rate-limiting step.
- Hyperkalemia directly stimulates the zona glomerulosa to secrete aldosterone; DHEA is driven by ACTH (not LH).
- Primary hyperaldosteronism: hypertension + hypokalemia + metabolic alkalosis + low renin; hypokalemia → insulin↓ → glucose intolerance.
- TSH is most sensitive (early); free T4 is best for confirming hypothyroidism; thyroid hormone binds nuclear receptors; hypothyroidism → PRL↑ → galactorrhea-amenorrhea.
- β cells sense glucose via GLUT2 (board convention; human β cells mainly express GLUT1); the acute actions of insulin (seconds) do not include protein synthesis (hours later); Ca²⁺↑ triggers exocytosis; sulfonylureas close K⁺-ATP channels.
- Parathyroidectomy → serum Ca↓, serum P↑ (not both falling).
- LH→Leydig→testosterone; FSH→Sertoli→sperm + inhibin; oxytocin is synthesized in the hypothalamus and released from the posterior pituitary.
- Klinefelter (47,XXY): testosterone↓ → LH and FSH elevated (not low); 21-OH–deficiency CAH → 17-OHP↑↑ + salt wasting.
- GH promotes growth via IGF-1 (liver) and signals through JAK2/STAT5; secretion peaks during nighttime deep sleep and is stimulated by hypoglycemia; excess before epiphyseal closure = gigantism, after closure = acromegaly; acromegaly is diagnosed by failure of GH suppression after an OGTT. Ghrelin is the only orexigenic gut hormone, the opposite of leptin.
- Nuclear features of PTC: ground-glass nuclei, nuclear grooves, intranuclear pseudoinclusions + psammoma bodies; large red nucleoli are not PTC. BRAF V600E is its common mutation.
- Follicular carcinoma is distinguished from follicular adenoma by capsular/vascular invasion; FNA cannot tell them apart.
- Medullary carcinoma: arises from C cells, secretes calcitonin, stromal amyloid, 25% associated with MEN2 (RET germline); radioiodine is ineffective. MEN2A = MTC + pheochromocytoma + parathyroid hyperplasia; MEN2B = MTC + pheochromocytoma + mucosal neuromas (no parathyroid disease); pheochromocytoma must be excluded before surgery.
- Primary hyperparathyroidism: most common cause = a single adenoma; presents with "high Ca, low P, high PTH."
- Secondary hyperparathyroidism: most common cause = chronic renal failure; presents with "low/normal Ca, high P, high PTH."
- Hypercalcemia of malignancy: PTH is suppressed (the key distinction from primary hyperparathyroidism).
- Thymoma is associated with myasthenia gravis; the most common histologic type of thymic carcinoma = squamous cell carcinoma.
- Most common benign salivary gland tumor = pleomorphic adenoma (chondromyxoid stroma); most common malignant tumor = mucoepidermoid carcinoma (not SCC).
- Warthin tumor: bilayered oncocytic epithelium + lymphoid stroma, no chondroid stroma, associated with smoking.
- Adenoid cystic carcinoma: perineural invasion (pain), cribriform pattern.
- Malignant transformation: oral erythroplakia ~50% ≫ leukoplakia ~5% — biopsy is all the more necessary.
- Nasopharyngeal carcinoma = EBV; oropharyngeal carcinoma = HPV-16 (p16+, better prognosis) — do not mix them up.
- Nasopharyngeal angiofibroma: adolescent males, posterolateral wall, androgen-dependent, prone to massive bleeding.
- Schneiderian inverted papilloma (HPV 6/11): recurs readily if incompletely excised; can undergo malignant change.
- Keratoconus: main pathology = thinning of the corneal stroma; iris melanoma progresses slowly with a relatively good prognosis.
- Cyclosporine/Tacrolimus inhibit calcineurin→↓IL-2; Sirolimus inhibits mTOR, so it can be combined with CsA (not contraindicated).
- Characteristic adverse effects of cyclosporine: nephrotoxicity, gingival hyperplasia; tacrolimus: new-onset diabetes.
- The most common adverse effect of long-term glucocorticoids = osteoporosis; peptic ulcer is a contraindication; do not stop abruptly.
- Prednisolone acts on intracellular nuclear receptors, inducing lipocortin→inhibition of phospholipase A2.
- Methimazole is first choice for hyperthyroidism; use PTU in thyroid storm/the first trimester (PTU additionally inhibits peripheral T4→T3).
- Alendronate (a bisphosphonate) inhibits osteoclasts; Teriparatide is a bone-forming (anabolic) agent (abaloparatide and romosozumab are also anabolic).
- Raloxifene/Clomiphene/Tamoxifen are all SERMs — with different tissue selectivity; tamoxifen increases the risk of endometrial cancer.
- Diabetes: oral hypoglycemic agents cannot be used in T1DM; SU/meglitinides cause hypoglycemia; Repaglinide can be used in renal insufficiency (biliary excretion); Metformin + alcohol → lactic acidosis.
- The GLP-1 agonist liraglutide must be injected (oral semaglutide is now available).
- Laron syndrome is treated with mecasermin (IGF-1), not GH; GH is contraindicated in acromegaly; use octreotide.
- GH acts via JAK/STAT (not a GPCR); Octreotide worsens constipation.
- EPO signals via JAK2/STAT5 (not ERK) and is contraindicated in poorly controlled hypertension; Romiplostim/Eltrombopag act on the TPO receptor (not the G-CSF receptor).
- Desmopressin promotes hemostasis by releasing Factor VIII + vWF.
- Misoprostol = PGE1 analog (not PGF2α); Mifepristone + Misoprostol terminate early pregnancy.
- Tolvaptan = V2 antagonist for hyponatremia (SIADH); Vitamin D3 is contraindicated in hypercalcemia; Danazol does not improve osteoporosis.
- Cinacalcet = calcimimetic that sensitizes the CaSR → ↓PTH, ↓serum Ca; treats secondary hyperparathyroidism/hypercalcemia of parathyroid carcinoma (effect opposite to PTH).
- SGLT2i (empagliflozin) are now standard therapy for heart failure and chronic kidney disease (not limited to diabetic patients); stop before surgery to prevent euglycemic DKA.
- IFN-γ → chronic granulomatous disease; IFN-β → multiple sclerosis (do not mix them up).
- Bromocriptine: D2 agonist→↓prolactin→treats prolactinoma.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Most effective protection against aerosol transmission | Surgical mask (relative to blood/vector/food routes; airborne diseases such as TB and measles require an N95 respirator) | Using masks against blood-borne/vector-borne/food- and water-borne transmission |
| Surveillance pyramid: order by number of people | Infected > symptomatic > seeking care > confirmed | Ranking it in reverse |
| Definition of incubation period | Infection → onset of symptoms | Confusing it with the serial interval or latent period |
| Herd immunity threshold | 1 − 1/R₀ | Misremembering it as 1/R₀ |
| R₀ vs Rₑ | R₀ is the intrinsic transmissibility with no immunity/no intervention | Confusing it with the effective reproduction number Rₑ |
| Case count for a food-poisoning outbreak in Taiwan | ≥2 people | Writing 3 or more |
| HIV elimination target | 95-95-95 | Writing 90-90-90 |
| Giardia control | Chlorine-resistant; filtration is required | Thinking chlorination is enough |
| Main dengue vector | Aedes aegypti, prefers indoors | Thinking it prefers outdoors |
| Universal vaccination | Benefit and risk must be assessed disease by disease | Thinking every vaccine is given to the whole population |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Level of social cognitive theory | Interpersonal level | Placing it at the individual level |
| Best intervention in precontemplation | Consciousness raising | Teaching quit-smoking skills straight away |
| Contemplation vs preparation | In preparation there is already concrete action | Confusing the two |
| Spirit of the TTM | Use different strategies for different stages | Thinking one approach fits all |
| Essence of a Healthy City | A process | Treating it as a static outcome |
| Scope of injury prevention | Covers both unintentional and intentional injury | Narrowing it to intentional injury only |
| Handling illicit drug use | First offenders can receive observation and rehabilitation treatment | Thinking it is "always prosecuted" |
| Cultivation theory | Long-term media exposure shapes perceptions of reality | Confusing it with agenda-setting theory |
| Most important SCT construct | Self-efficacy | Answering perceived susceptibility (that is the HBM) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Prospectively following disease-free people to calculate incidence | Cohort study | Misjudging it as case-control |
| Genotype that changes drug effect | Effect modifier | Treating it as a confounder |
| Purpose of matching | Controlling confounding | Thinking it increases heterogeneity/generalizability |
| Main bias in case-control studies | Recall bias | Answering loss-to-follow-up bias |
| Inferring individual causation from county-level correlations | Ecological fallacy | Taking it directly as individual causation |
| Nested case-control | Bidirectional design | Treating it as purely retrospective |
| Body fat↑, breast cancer↑ | Dose–response (Hill) | Treating it as temporality |
| Greatest strength of cohort studies | Can establish temporality | Answering saves time and money (that is case-control) |
| Measure calculated in case-control studies | OR | Thinking incidence/RR can be calculated directly |
| When the OR approximates the RR | When the rare-disease assumption holds | Still taking OR≈RR when the disease is common |
| Design with the highest level of evidence | RCT (randomization balances confounders) | Answering cohort study |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Organic mercury poisoning | Minamata disease (ataxia, intention tremor) | Confusing it with lead poisoning |
| Characteristic injury from hexavalent chromium | Nasal septal perforation | Attributing it to other metals |
| Not a high-risk group for pneumoconiosis | Newspaper print workers (paper-dust fibers) | Choosing sandblasters/shipbuilders by mistake |
| Denominator of the TWA | Sum of the individual time periods | Always dividing by 8 hours |
| Not a greenhouse gas | NH₃ (ammonia) | Thinking ammonia is a greenhouse gas |
| HACCP: "chicken must be thoroughly cooked" | CCP (critical control point) | Mistaking it for hazard analysis or record-keeping |
| Formation of acrylamide | Maillard reaction of starchy foods at high temperature | Thinking it comes from fermentation or oxidation |
| Pneumoconiosis in sandblasters | Silicosis (SiO₂) | Misjudging it as asbestosis |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Comparing means of a continuous variable across three groups | One-way ANOVA | Using a Z test or multiple t tests by mistake |
| 1:1 matched case-control, binary variable | McNemar chi-square | Using an independent chi-square by mistake |
| 2×2 table with expected count < 5 | Fisher's exact test | Still forcing a chi-square / Yates |
| 95% CI (0.028, 0.202) includes 0.15 | Not statistically significant | Misjudging it as significant |
| Null value for a ratio CI | 1 (RR/OR/HR) | Using 0 by mistake |
| Type I error (α) | Rejecting H₀ when it is true (false positive) | Swapping it with type II error |
| Power | 1 − β; increasing sample size raises it most | Thinking it equals 1−α |
| Consequence of too small a sample | Insufficient power, prone to type II error | Misjudging it as type I error |
| Inconsistent deflation speed | Random error | Misjudging it as systematic error/bias |
| Central tendency for skewed data | Median | Using the mean by mistake |
| Describing the spread of data | Standard deviation (SD) | Using the standard error (SE) by mistake |
| Pooling different age groups into one overall rate | Introduces confounding bias; do not pool directly | Adding them up directly as the "population probability of disease" |
| AD: both of two children affected | 1/4 | Calculating 1/2 |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Proportion of test-positives who truly have the disease | PPV (positive predictive value) | Answering sensitivity (Sn) |
| NPV = 80%; proportion of test-negatives who have the disease | 1−NPV = 20% | Calling this 20% the FPR |
| Which are unaffected by prevalence | Sn, Sp, LR+, LR− | Thinking Sn or LR changes with prevalence |
| LR+ formula | Sn / (1−Sp) | Swapping it with the LR− formula |
| Main reason for low PPV / high FDR | Low prevalence | Blaming a worse test |
| Raising the cutoff | Sp↑, FPR↓; Sn↓ | Thinking Sn rises too |
| Parallel testing | Sn↑, Sp↓ | Mixing it up with serial testing |
| Serial testing | Sp↑, Sn↓ | Thinking it raises Sn |
| Which stage of prevention screening belongs to | Second stage (level 3: early diagnosis and prompt treatment) | Answering the first stage |
| Chest X-ray in asymptomatic people | Secondary prevention | Treating it as primary prevention (health promotion) |
| ROC axes | Sn vs 1−Sp (FPR) | Labeling the x-axis as specificity |
| Earlier diagnosis falsely prolonging survival | Lead-time bias | Misjudging it as length bias |
| What shows that screening works | Disease-specific mortality↓ | Looking only at improved survival |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Nature of Taiwan's National Health Insurance (NHI) | Compulsory enrollment, publicly run single payer | Answering voluntary enrollment / multiple insurers |
| Largest unit of payment, most cost-saving | Capitation | Choosing DRG or fee-for-service by mistake |
| Payment method most prone to overtreatment | Fee-for-service (FFS) | Choosing capitation by mistake |
| Physicians inducing excess utilization | Supplier-induced demand (SID) | Answering moral hazard (a patient-side phenomenon) |
| The O in SWOT | Opportunities (external) | Misremembering it as Objective |
| BSC lagging indicator | Financial perspective | Thinking learning and growth is lagging |
| BSC leading indicators | Learning and growth, internal processes | Thinking financial is leading |
| WHO Healthy Cities indicators | The health-category indicators do not include the abortion rate (it is listed among the socioeconomic indicators) | Thinking it is included |
| Functions of the WHO | Include technical cooperation | Being misled by "does not include" |
| "Drugs" under the Pharmaceutical Affairs Act | Include medicines + medical devices | Thinking medical devices are excluded |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Limits of compulsory public-health policies | Must satisfy the principle of proportionality; exceptions still exist | Thinking compulsion can apply without any exception |
| Is smoking purely a matter of personal autonomy? | No; secondhand smoke harms others → a public-health ethics issue | Misjudging it as purely autonomous, with no state intervention allowed |
| Known surgical complication | Medical injury not caused by negligence | Misjudging it as medical negligence |
| Dementia threshold under the Patient Right to Autonomy Act | Extremely severe dementia | Thinking every severity qualifies |
| Conditions covered by the Patient Right to Autonomy Act | Terminal illness, irreversible coma, permanent vegetative state, extremely severe dementia, officially announced diseases | Omitting or overextending categories |
| Purpose and controls of Phase II | Preliminary efficacy + dosing; a control group is added in the later part | Thinking it tests only safety and not efficacy |
| Purpose of Phase I | Safety / dosing | Thinking it tests efficacy |
| Phase III | Large-scale RCT to confirm efficacy, compared with standard treatment | Confusing it with Phase II |
| Four principles of ethics | Autonomy, nonmaleficence, beneficence, justice | Leaving out justice |
| When placebo use is appropriate | Ethical only when no effective therapy exists or no serious harm will result | Thinking placebo is always acceptable |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Goal of hospice and palliative care | Improve quality of life/death, relieve symptoms | Choosing "prolong life" by mistake |
| First choice for end-of-life dyspnea | Low-dose morphine (±O₂, bronchodilators) | Choosing sedatives as first line |
| Limitation of morphine for dyspnea | Reversible causes must be ruled out first | Treating it as "universal, fine for any cause" |
| First choice for terminal delirium | Haloperidol | Choosing BZD / hypnotics by mistake |
| Artificial nutrition for dying cancer patients | Discuss benefits and harms with the family; do not force tube placement | Choosing "routine NG/PEG placement" |
| Surrogate order for DNR | Appointed health care agent > spouse > children > parents | Placing parents before the spouse |
| Home hospice | Symptom control is less convenient than in hospital | Choosing "symptom control is more convenient at home" |
| Patient Right to Autonomy Act vs Hospice Palliative Care Act | The Patient Right to Autonomy Act requires ACP + AD and covers 5 categories | Treating the two acts as one and the same |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Measure most affected by prevalence | PPV (and NPV) | Choosing sensitivity/specificity by mistake |
| Most clinically meaningful measures | PPV/NPV | Choosing Se/Sp by mistake |
| Tool for mass screening at low prevalence | High specificity (few FPs) | Choosing "prioritize high sensitivity" |
| Ruling out / ruling in disease | SnNout / SpPin | Reversing the direction |
| Evidence level of a meta-analysis | Level I / Grade A | Labeling it IIa by mistake |
| The I in PICO | The intervention (glucosamine) being studied | Misassigning P/C/O |
| First step in a community needs assessment | Collect secondary official data | Jumping straight to a large primary survey |
| Proportion of primary care physicians vs spending | Proportion↑ → spending as % of GDP↓ (UK < Canada < US) | Reversing the direction |
| Declaration of Lisbon | Declaration on the Rights of the Patient | Mistaking it for a research-ethics guideline |
| Evaluating screening effectiveness | Use mortality; beware lead-time/length bias | Looking at survival directly (inflated by bias) |
| How to calculate NNT | 1 / ARR; the smaller the better | Calculating it from RRR or RR |
| Which measure exaggerates the most | RRR (relative risk reduction) | Thinking a high RRR means a large clinical benefit |
| LR+ threshold for strongly ruling in | LR+ > 10; LR− < 0.1 rules out | Confusing the direction with Sn/Sp |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Mechanism of referred pain | Convergence at the same spinal segment | Thinking pressing on the body surface can provoke/localize visceral pain |
| Features of migraine | Unilateral, pulsating + nausea, photophobia | Confusing it with tension-type headache (bilateral, pressing) |
| Most common primary headache | Tension-type headache | Choosing brain tumor/migraine by mistake |
| New-onset thunderclap headache | Rule out SAH first (CT) | Giving analgesics only |
| Emollients in lymphedema | Not contraindicated; they protect the skin | Thinking they "increase infection" |
| Timing of casualties in typhoons | Recovery phase > acute phase | Choosing the acute phase as having more |
| Timing of casualties in earthquakes | Concentrated in the first few hours after the quake | Mixing it up with typhoons |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Which core attribute referral belongs to | Coordination | Choosing comprehensiveness/continuity by mistake |
| Handling several problems in one visit | Comprehensiveness | Confusing it with coordination |
| Multisystem problems + psychosocial stress | biopsychosocial model | Picking only a single-organ diagnosis |
| Exercise time in chronic disease | Can be accumulated in bouts; need not be continuous | Thinking it must be done in one continuous session |
| Target heart rate at age 70 | (220−70)×60–70% ≈ 90–105 | Applying 150/min directly |
| Causes of altered consciousness in older adults | Hypoglycemia/stroke/hypotension/infection | Treating low blood lipids as a cause |
| High-risk groups for malnutrition | Critically ill/older adults/alcohol misuse/cancer | Treating drinking soda as a risk factor |
| Treatment of depression | Medication + non-drug therapy such as CBT | Thinking it relies on medication alone |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Most important predisposing factor for delirium | Dementia | Choosing infection (that is a precipitating factor) |
| Incidence of delirium in hospitalized older adults | High (about 14–56%) | Thinking it is 1–5% |
| Measures that worsen delirium | Restraints, BZD, anticholinergics, opioids | Thinking they prevent/treat delirium |
| Parameter that does "not decrease" with aging | Blood insulin | Going along and choosing "decreases" |
| What the MMSE assesses | Cognitive function | Mistaking it for IQ/communication ability |
| Managing one's own medications belongs to | IADL | Classifying it as a basic ADL |
| What the TUG assesses | Gait and fall risk | Mistaking it for sciatic nerve function |
| Fried's five criteria | Weight loss, exhaustion, grip strength↓, slow walking, low activity | Squeezing cognitive function into the five |
| High-risk groups for hypothermia | Extremes of age/hypothyroidism/shock/malnutrition | Treating healthy adults aged 30–50 as high risk |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| The biological dimension includes | Organ function + environmental factors | Leaving out the environment, or putting emotion in the biological dimension |
| Emotion/will/personality belong to | The psychological dimension | Placing them in the social dimension |
| Theoretical basis of the Family APGAR | Systems theory | Choosing the biopsychosocial model by mistake |
| Comatose patient with an advance appointment of an agent | The designated health care agent decides (including DNR) | Choosing the closest relative/physician by mistake |
| CPR for a DOA patient | Clinical judgment of the emergency physician | Thinking it is always done/never done |
| Informed consent for human research | Must disclose alternative treatments and the right to withdraw at any time | Omitting alternative treatments |
| Nature of criminal liability for obstructing medical practice | Not a complaint-required offense (publicly prosecuted); prosecutors can investigate on their own initiative | Thinking it is complaint-required and needs the victim to file charges |
| Share of nonverbal communication | About 60–80% | Misremembering it as one-tenth |
| Meaning of crossed arms | Defensive/closed | Mistaking it for relaxed |
| Hall's intimate space | 0–45 cm (physical examination enters this zone) | Treating personal space (45–120) as intimate |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Core disease criterion for screening | The disease must be treatable | Ignoring "if it cannot be treated, do not screen" |
| Folic acid recommendation | Women planning pregnancy: 0.4–0.8 mg/day (Grade A) | Misremembering the dose or grade |
| Intensity of STI prevention counseling | Intensive counseling (per the 2014 version tested in 2020; USPSTF 2020 now says behavioral counseling, Grade B) | Thinking brief counseling is enough |
| Vaccines for a 15-year-old girl | Zoster vaccine not needed (for age ≥50) | Choosing the herpes zoster vaccine as indicated |
| First step of COPC | Define the community | Thinking first of "identify the problem/plan" |
| Purpose of community health promotion | Public good | Slipping in commercial promotion for the clinic |
| Location of "decontamination" in a chemical disaster | Warm zone | Placing it in the cold or hot zone |
| Work in the hot zone of a chemical disaster | Search, rescue, and removal only | Doing decontamination/triage in the hot zone |
| Meaning of USPSTF Grade A | High certainty, substantial net benefit | Confusing it with D (recommend against) or I (insufficient evidence) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Priority order for DNR decisions | Patient's own wishes → advance directive/appointed health care agent → family consent | Jumping straight to asking the family |
| Order of relatives signing DNR as surrogates | Spouse → children/grandchildren → parents → siblings → grandparents | Placing parents before adult children |
| Eligible patients: Hospice Palliative Care Act vs Patient Right to Autonomy Act | The Patient Right to Autonomy Act covers five categories and allows refusal of artificial nutrition; the Hospice Palliative Care Act covers terminal illness only | Thinking both apply to the same patients |
| WMA 2019 position | Opposes euthanasia/PAS, but respects informed refusal of life-sustaining treatment | Thinking the WMA has switched to supporting euthanasia |
| Withdrawing life support vs euthanasia | Withdrawal = allowing natural death (legal); euthanasia = actively causing death (illegal) | Treating ventilator withdrawal as euthanasia |
| Non-aggressive treatment for trisomy 18 | Palliative care should be provided | Misjudging it as abandoning treatment/violating nonmaleficence |
| "Letter of intent" vs "consent form" | Signed by the patient = letter of intent; signed by relatives on the patient's behalf = consent form | Swapping the terms |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Research vs societal benefit: which comes first | The welfare of the research participant comes first | Thinking scientific progress can override the individual |
| Informed consent within a dependent relationship | Obtained by an independent, qualified person | Thinking an impartial witness is enough |
| Vulnerable populations | Children, pregnant women, embryos, prisoners, the terminally ill, the cognitively impaired | Treating "older adults as such" as a core vulnerable group |
| Are embryos a vulnerable group? | Yes; they have moral status and need protection | Answering "no" |
| Eligibility for corresponding author | The person who actually supervised the work and is responsible for its content | Listing authors by position/power |
| Retention of clinical trial medical records | Permanent retention | Applying the general 7-year rule |
| Three Belmont principles | Respect for persons, beneficence, justice | Leaving out "justice (fair selection of subjects)" |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Ranking of the four principles | Equal, with no fixed order (prima facie) | Thinking autonomy always ranks highest |
| Family asks to conceal the diagnosis | Decline tactfully out of respect for autonomy | Answering "beneficence" or "nonmaleficence" |
| Required elements of informed consent | Include alternative treatment options and the consequences of no treatment | Omitting alternatives |
| Which element coercion violates | Voluntariness | Confusing it with "inadequate information" |
| Patient vs family | Patient autonomy takes priority; the family cannot substitute for it | Overriding patient autonomy on cultural grounds |
| Patient voluntarily waives being informed | This is an exercise of autonomy; the family may be informed as the patient authorizes | Thinking the patient must be told regardless |
| Surrogate order when decision-making capacity is lost | Advance decision → appointed agent → family, all based on the patient's wishes/best interests | Letting the family decide with full authority |
| nonmaleficence vs beneficence | Nonmaleficence = "do no harm"; beneficence = "actively do good" | Swapping the two |
| Justice among the four principles | Emphasizes fairness of resources/treatment (distributive justice) | Omitting it or mistaking it for "legality" |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Adult sexual assault — mandatory reporting | Must still be reported to the competent authority (legal duty) | Thinking adult cases are never reported |
| Adult sexual assault — police report/evidence collection | Respect the victim's wishes (evidence collection requires consent) | Confusing "police report/evidence collection" with "mandatory reporting" |
| Reporting child abuse/domestic violence | Mandatory report to the competent authority within 24 h at the latest; takes precedence over privacy | Not reporting because the family objects |
| Confidentiality vs medical record documentation | Confidential to outsiders, but the record must be documented truthfully | Omitting/altering records for the patient |
| Custody/ownership of medical records | Belong to the hospital; the patient has the right to copies and to their personal data | Thinking paper records belong to the patient |
| Retention period for medical records | Generally at least 7 years (minors: until 7 years after reaching adulthood; human research: permanent) | Remembering it as 5 years or no limit |
| Teaching/observation by trainees | Requires prior notice and consent | Thinking teaching hospitals need not inform patients |
| Reading unrelated records without authorization | Violates confidentiality/personal data protection, even if nothing is disclosed | Thinking there is no liability if nothing leaked |
| Nature of confidentiality | A default principle, with statutory exceptions | Thinking confidentiality is absolute, with no exceptions |
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- Asbestos-related = fibrous plaques + mesothelioma + lung carcinoma; pulmonary lymphoma is the exception.
- Adenocarcinoma = the histologic type with the most frequent EGFR mutations (candidates for targeted therapy).
- Smooth muscle hypertrophy in asthma, not atrophy.
- Emphysema = neutrophil/macrophage elastase destroys elastic fibers; α1-AT deficiency → panacinar.
- DIP / RB-ILD are strongly associated with smoking; sarcoidosis is unrelated to smoking.
- Round cavity + yellow pus + fibrous wall = lung abscess.
Common traps
- Mistaking "most common" for "most specific": asbestos bodies are not necessarily present in mesothelioma tissue.
- Remembering the smooth-muscle change in asthma as atrophy (it is actually hypertrophy).
- Misremembering the source of proteases in emphysema as lymphocytes/eosinophils.
- Seeing "smoking-related interstitial lung disease" and counting sarcoidosis in too (it is unrelated to smoking).
- Choosing lung cancer whenever there is a cavity, ignoring that "yellow pus + regular thick wall" points to lung abscess and caseation points to tuberculosis.
- Myasthenia gravis + CO₂↑ = type II ventilatory (pump) failure, not hypoxemic failure.
- NIPPV contraindications = coma / shock / copious secretions; a high PaCO₂ is not a contraindication (it is actually an indication).
- ARDS: permeability↑, PAWP ≤ 18 (1994 AECC criterion; the 2012 Berlin definition dropped PAWP); the Berlin definition uses the P/F ratio (severe ≤ 100). ARDS treatment = low tidal volume, 6 mL/kg.
- Hypoxemia with a normal CXR = PE, right-to-left shunt, hepatopulmonary syndrome, asthma (not pulmonary edema).
Common traps
- Treating hypercapnia as a contraindication to NIPPV (exactly the opposite).
- Reversing the PAWP values of ARDS and cardiogenic pulmonary edema (ARDS ≤18, cardiogenic >18).
- Looking for a parenchymal lesion whenever there is hypoxemia, ignoring vascular causes in which the CXR can be normal (PE, shunt).
- Treating ARDS as hydrostatic edema and giving diuretics, ignoring that its core problem is increased permeability.
- COPD diagnosis = post-BD FEV₁/FVC < 0.70; FEV₁ sets GOLD 1–4 severity, but initial drug therapy follows the ABE group (symptoms + exacerbation history), not FEV₁; group E (frequent exacerbations) starts with LABA+LAMA.
- COPD inflammation includes CD8⁺ T lymphocytes and (in some patients) eosinophils, not just neutrophils + macrophages.
- Eosinophils ≥ 3% (≥300/μL) → good response to ICS.
- Pulmonary rehabilitation has strong evidence; IV theophylline lacks evidence and is not used routinely.
- AECOPD: inhaled bronchodilators + systemic corticosteroids + antibiotics (when needed) + NIPPV; oxygen target SpO₂ 88–92%.
- HRCT can diagnose bronchiectasis (signet ring sign).
Common traps
- Using CT or symptoms as the basis for diagnosing COPD (spirometry is required).
- Thinking COPD inflammation involves "only" neutrophils + macrophages.
- Describing pulmonary rehabilitation as ineffective, or treating IV theophylline as standard therapy.
- Giving high-flow pure oxygen in AECOPD (use controlled oxygen at 88–92% to avoid worsening CO₂ retention).
- Taking "CT cannot diagnose bronchiectasis" as the correct answer (exactly the opposite).
- Reversibility criterion: FEV1 ↑≥12% and ≥200 mL — both conditions are required; this is the most frequently tested number.
- Choosing the test: wheeze heard/obstruction already present → BD reversibility; normal lung function with atypical symptoms → methacholine challenge.
- The step-up answer is almost always "add a regular LABA"; adding a SABA or an anticholinergic is a common wrong choice.
- Stepping down requires stability for ≥3 months (the distractor "2 months" is a trap).
- For mechanism questions, memorize the chain: virus/allergen → TSLP/IL-25/IL-33 → ILC2 → IL-5 → eosinophil; do not write Th2 as Th1.
Common traps
- Treating SABA as a controller: SABA only relieves symptoms; increasing use signals "worsening control," not "stepping up treatment."
- Treating FeNO or allergen testing as diagnostic: they are adjuncts; the diagnosis rests on reversibility on lung function testing.
- Reflexively listing a pile of contraindications whenever "asthma" appears (anesthesia, ICS in pregnancy, steroids for ABPA); most of these are not contraindications.
- Confusing the "most common trigger" with the "typical trigger": postprandial cough should suggest GERD first, not allergic asthma.
- AHI thresholds: ≥5 with symptoms, ≥15 without symptoms — "OSA always requires >15" is wrong.
- Severity indices = AHI / oxygen saturation / sleepiness; BMI is a risk factor, not a severity index (a frequent wrong choice).
- In OSA respiratory effort is present (chest and abdomen move but there is no airflow); in CSA even the effort is absent → this is the key distinction between them.
- OHS definition: obesity + awake PaCO2 ≥45 + other causes excluded; treatment is NIV/CPAP + weight loss.
- CPAP is first choice for moderate-to-severe OSA; OSA should be listed among the treatable causes of secondary/resistant hypertension.
Common traps
- Treating BMI as a severity measure — BMI is only a risk factor.
- Jumping to COPD whenever there is hypercapnia/respiratory acidosis, ignoring OHS and not confirming with lung function tests.
- Lumping OSA and CSA together: the difference is "whether respiratory effort (central drive) is present."
- Thinking PSG looks only at AHI — the degree of desaturation and daytime sleepiness also count; the three together determine management.
- Physical-exam triad: fremitus↓ + dullness = effusion; fremitus↓ + hyperresonance = pneumothorax; fremitus↑ + dullness = consolidation.
- Light's criteria: any one positive = exudate (protein ratio >0.5 / LDH ratio >0.6 / LDH >2/3 of the upper limit of normal).
- Indications for draining an empyema (pH discriminates best): glucose <40 (current cutoff: below 60 mg/dL) or pH <7.2.
- Chylothorax = TG >110 (not cholesterol); the most common cause = thoracic duct trauma; it is an exudate.
- Hemothorax = effusion Hct > 50% of blood Hct; tuberculous effusion = lymphocyte-predominant + elevated ADA.
- Primary spontaneous pneumothorax = tall, thin young male smoker; tension pneumothorax needs immediate needle decompression without waiting for imaging.
- Thoracic ultrasound cannot detect mediastinal/hilar lymph nodes (the item with the least diagnostic value; frequently tested).
Common traps
- Reversing the percussion notes of pneumothorax and effusion: pneumothorax is hyperresonant, effusion is dull.
- Misremembering the definition of chylothorax as cholesterol, or writing the criterion as Hgb >10 (the correct criterion for hemothorax is an Hct ratio >50%).
- Thinking a pH of 7.3 means drainage is needed — it has not reached the <7.2 threshold.
- Thinking ultrasound can see everything — mediastinal/hilar lymph nodes cannot be seen.
- Describing mesothelioma as "mostly peritoneal, diagnosable by cytology, with a fair prognosis" — all three points are wrong.
- Three-step approach: FEV1/FVC identifies obstruction → TLC confirms restriction → DLCO localizes. Only TLC↓ confirms restriction.
- Obstruction + DLCO↓ = emphysema; obstruction + normal DLCO = asthma.
- Restriction + DLCO markedly↓ = pulmonary fibrosis; restriction + normal DLCO + MIP↓ = neuromuscular disease.
- Positive BD = FEV1 or FVC ↑ by ≥200 mL and ≥12% (two conditions; the most frequently tested number).
- COPD assessment requires full pulmonary function testing including lung volumes; screening spirometry is not enough (exam answer; GOLD 2025 needs only post-bronchodilator spirometry, FEV1/FVC below 0.7, to diagnose COPD).
Common traps
- Calling it restrictive whenever FVC↓ — look at TLC; in obstruction FVC can also fall because of air trapping.
- Forgetting DLCO: if a restrictive pattern has a normal DLCO, it is not pulmonary fibrosis; think chest wall/neuromuscular.
- Remembering only "≥12%" for a positive BD and missing "and ≥200 mL".
- Confusing the diffusing capacity in asthma (usually normal) with that in emphysema (DLCO↓).
- Thinking COPD is always BD-negative — a minority respond; COPD cannot be excluded on reversibility alone.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Most common cause of death in massive PE | Right ventricular failure → cardiogenic shock (exam wording; classified as obstructive shock) | Answering "hypoxemic respiratory failure" |
| Role of D-dimer | Ruling out in low-probability patients (high sensitivity, low specificity) | Using it as a diagnostic tool |
| Gold standard for diagnosing PE | CTPA | Taking D-dimer as the gold standard |
| Items in Wells' criteria | HR >100, immobilization/surgery, history of DVT/PE, hemoptysis, malignancy, signs of DVT, PE most likely | Counting "chest pain" as a scoring item |
| Typical signs of DVT → PE | Unilateral leg swelling + dyspnea + chest pain | Bilateral leg swelling (suggests heart failure) |
| Unprovoked PE | Recurrence risk is highest → long-term anticoagulation | Thinking "no risk factors" means safer |
| Provoked PE | Low recurrence risk once the factor is removed → about 3 months | Always giving long-term anticoagulation |
| High-risk (hypotensive) PE | Thrombolysis (tPA) | Giving anticoagulation only and delaying treatment |
| Anaphylactic shock after a drug infusion | IM epinephrine first | Giving steroids/antihistamines/large-volume fluids/intubation first |
| Palpitations + very high D-dimer + NT-proBNP↑ + HR 141 | High suspicion of PE | Misjudging it as a simple arrhythmia/anxiety |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Head-of-bed angle for VAP prevention | 30–45 degrees | "60 degrees" is an incorrect statement |
| Bronchial breath sounds heard in the peripheral lung fields | Consolidation | Misjudging it as effusion/pneumothorax |
| Physical-exam triad of consolidation | Bronchial breath sounds, increased vocal fremitus, egophony | Confusing it with effusion (all decreased) |
| Segments favored by aspiration lung abscess when supine | Posterior segment of the RUL + superior segment of the lower lobe | Choosing the right middle lobe/lingula by mistake |
| Risk factors for aspiration pneumonia | Systemic sclerosis (esophageal dysmotility), Parkinson disease | Choosing pulmonary fibrosis or asplenia by mistake |
| Imaging of bronchiectasis | Tram-track sign, favoring both lower lobes | Confusing it with emphysema/fibrosis |
| Least appropriate cause of diffuse bronchiectasis | Pulmonary sequestration (causes focal bronchiectasis) | Thinking it is a cause of diffuse disease |
| Focal bronchiectasis with recurrent, hard-to-control infection | Surgical resection can be considered | Thinking bronchiectasis can only be managed medically |
| Most common complication of rib fractures in older adults | Pneumonia (sputum retention); prevented with analgesia | Overlooking the "afraid to cough" chain |
| Infection risk in asplenia | Encapsulated organisms (e.g., Streptococcus pneumoniae) | Thinking it increases aspiration pneumonia |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| X-ray view for evaluating apical lesions | Lordotic view | Choosing PA / lateral / decubitus by mistake |
| Lung adenocarcinoma subtype with the best prognosis | Lepidic pattern | Confusing it with micropapillary/solid (the worst) |
| Cause of Horner's syndrome | Invasion of the cervical sympathetic chain | Answering the phrenic nerve |
| Absolute contraindication to curative resection | SVCS (T4) | Treating N1, FEV1 >1 L, or stable angina as absolute contraindications |
| Monophonic wheeze | Obstruction of a single airway, most commonly lung cancer | Confusing it with the polyphonic wheeze of asthma |
| Clubbing + HOA | Most commonly bronchogenic carcinoma | Choosing DM, hemochromatosis, or acromegaly by mistake |
| First choice for extensive-stage SCLC | Systemic chemotherapy (etoposide + platinum; current regimens add atezolizumab or durvalumab) | Giving emergency radiotherapy for mild SVC compression |
| Paraneoplastic features of squamous cell carcinoma | PTHrP → hypercalcemia, cavitation, central location | Confusing it with adenocarcinoma (peripheral, HOA) |
| Most common type in nonsmokers/women | Adenocarcinoma (EGFR/ALK) | Thinking it is squamous cell carcinoma |
| Chronic cough + mass on imaging at age 50 | Rule out lung cancer first | Misjudging it as simple pleural effusion/PE |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Definition of MDR-TB | Resistance to both INH + RIF | Counting resistance to INH/streptomycin alone |
| Diagnostic tools for LTBI | TST or IGRA (measure cell-mediated immunity) | Thinking they can distinguish latent from active disease |
| Infectivity and progression rate of LTBI | Not infectious; about 10% progress over a lifetime | Writing 30%; requiring a mask |
| Mechanism of tuberculous pleural effusion | Delayed-type (type IV) hypersensitivity, not direct primary infection | Answering that primary infection causes it directly |
| Pleural fluid features | Lymphocytes >50%, mesothelial cells <5%, ADA ≥40 | Thinking it is neutrophil-predominant |
| Not routinely monitored during anti-TB therapy | CK | Mistaking liver function/blood counts as unnecessary (both need regular monitoring) |
| rpoB mutation | Rifampin resistance | Confusing it with katG/inhA (INH) |
| Asymptomatic liver enzymes <3× during treatment | Continue + monitor closely | Always stopping the drugs |
| Usefulness of BCG for health care workers | Does not effectively prevent adult-type TB | Thinking it can replace N95/isolation |
| Upper-lobe cavity (nonsmoker) | Consider pulmonary TB first | Misjudging it as bacterial pneumonia/lung cancer |
| Prevention of INH peripheral neuropathy | Co-administer vitamin B6 | Omitting B6 |
| Specific toxicity of ethambutol | Optic neuritis (color vision/visual acuity) | Confusing it with INH neuropathy |
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- Restrictive formula: FEV1/FVC normal or ↑ + TLC/FVC↓ + DLco↓ → ILD. Chest wall deformity has a normal DLco and can thus be excluded.
- Three essentials of sarcoidosis: noncaseating granulomas, CD4/CD8 ↑, corticosteroid therapy; hypercalcemia comes from macrophage 1α-hydroxylase (not ACE).
- IPF = UIP (honeycomb lung) = steroids ineffective; NSIP responds to steroids — the two have opposite prognoses and treatments.
- Eosinophils >25% + NSAID + bilateral infiltrates → confirmed by BAL.
- Occupational lung disease: ≥10% of asthma is work-related; the most effective prevention = engineering controls, not personal protective equipment.
Common traps
- Misjudging ILD as obstructive — remember that FEV1/FVC is normal or elevated in ILD.
- Writing the CD4/CD8 ratio in sarcoidosis as "decreased" (it is actually increased).
- Treating IPF as "steroid-responsive" (it is not; antifibrotic drugs are needed).
- Attributing hypercalcemia to ACE (it is actually vitamin D activation by activated macrophages).
- Mixing up the antigens of hypersensitivity pneumonitis (organic) ↔ pneumoconiosis (inorganic).
- Steeple sign = croup (subglottic, inspiratory stridor); thumb sign = epiglottitis (Hib, airway emergency) — the contrasting images are a must-know.
- Localization: stridor (inspiratory, upper airway) vs wheezing (expiratory, lower airway).
- Asthma under 5 years is diagnosed by history (lung function testing is not feasible); a response to SABA is an important clue.
- Most effective controller for asthma = ICS; LTRA is an add-on and less effective than ICS; step down after ≥3 months of control.
- Most common cause of a widened mediastinum at age 2 = normal thymus.
Common traps
- Swapping the thumb and steeple signs.
- Letting a child with croup cry (this worsens the obstruction) — the child should be soothed and kept calm.
- Treating LTRA as the "most effective" controller (it is actually ICS).
- Insisting on lung function testing, or relying on IgE, to diagnose asthma in children under 5.
- Still recommending probiotics or delayed complementary foods to prevent allergy (current evidence says the opposite).
- Spastic = bilateral UMN; flaccid = LMN; ataxic = cerebellum (scanning speech) — matching lesion site to type is a must-know.
- Total glossectomy (oral phase) → chin-up (head tilted back to use gravity); chin-tuck is for preventing aspiration; patients without a tongue cannot use the Masako maneuver.
- Cardiac rehabilitation: absolute contraindications = acute pericarditis/myocarditis, unstable angina, uncontrolled arrhythmia.
- MVO₂ ≈ double product = heart rate × systolic blood pressure.
- Positioning in pulmonary rehabilitation: affected side up to promote drainage; expectorants should be used actively; exertional dyspnea is an indication.
Common traps
- Mistaking dysarthria (articulation) for aphasia (language).
- For total glossectomy, choosing the Masako maneuver, which needs a tongue, or chin-tuck, which is for aspiration prevention (it should be chin-up).
- Misjudging the "stable phase" after acute MI as a contraindication (once stable, it is an indication).
- Positioning with the "good lung up" (wrong; the affected side should be up).
- Thinking exertional dyspnea is a contraindication to pulmonary rehabilitation (it is actually an indication).
- RQ: carbohydrate = 1 (highest) > protein 0.8 > fat 0.7.
- CO / O₂ in pulmonary edema = diffusion-limited; N₂O / normal CO₂ and O₂ = perfusion-limited.
- Anemia: PaO₂ and SaO₂ normal, Hb↓, O₂ content↓; CO poisoning: PaO₂ normal but SaO₂↓.
- Chloride shift: HCO₃⁻ out, Cl⁻ in, via AE1 (an exchanger, not a cotransporter).
- Surfactant comes from type II alveolar cells; glucocorticoids accelerate fetal lung maturation; the most sensitive site for the cough reflex = carina.
Common traps
- Thinking PaO₂/SaO₂ fall in anemia (they are actually normal; only O₂ content↓).
- Thinking PaO₂ is low in CO poisoning (it is normal; the abnormality lies in SaO₂/carboxyhemoglobin).
- Calling AE1 a cotransporter (it is actually an anion exchanger).
- Misattributing the source of surfactant to the respiratory bronchioles (it should be type II alveolar cells).
- Overlooking that intrapleural pressure "can become positive" during forced expiration, causing dynamic airway compression.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Sleep stage in which OSA occurs | Both NREM and REM (worse in REM) | Thinking "REM only" |
| Gold standard for diagnosing OSA | PSG; severity is graded by the AHI | Using home screening as the diagnostic standard |
| Risk factors for OSA | Obesity, tonsillar hypertrophy, male sex, alcohol/sedatives, micrognathia | Mandibular prognathism (which actually widens the airway) |
| Relationship between hypertension and OSA | Mostly a comorbidity/consequence | Treating it as a "risk factor" |
| First-line treatment for OSA | CPAP | Choosing weight loss as "most effective" |
| Distinguishing OSA vs CSA | Whether respiratory effort is present | Confusing the two |
| Timing of light exposure in DSPS | Early-morning light (phase advance) | Evening light (delays the phase; wrong) |
| Timing of melatonin in DSPS | Give in the early evening (advance) | Getting the direction backwards relative to light therapy |
| Typical populations for DSPS / ASPS | DSPS = adolescents; ASPS = older adults | Swapping the two |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Appendiceal mucosal epithelium | Simple columnar (with goblet cells) | Answering stratified squamous |
| Esophageal epithelium | Stratified squamous (nonkeratinized) | Answering simple columnar |
| Epithelium of the alveolar gas-exchange surface | Simple squamous (type I) | Answering pseudostratified columnar (that is the trachea) |
| Mechanism of acid secretion by parietal cells | H⁺/K⁺-ATPase pumps H⁺; HCl forms in the lumen of the intracellular canaliculi | "HCl is synthesized in the cytoplasm" |
| Type of the brachial artery | Muscular artery | Treating it as an elastic artery |
| Representative elastic arteries | Aorta, pulmonary trunk, common carotid, subclavian | Wrongly including the brachial/radial arteries |
| Hepatic zone that necroses first with ischemia | Zone 3 (around the central vein) | Choosing Zone 1 by mistake |
| Hepatic zone that regenerates first after injury | Zone 1 | Confusing it with the order of necrosis |
| Nature of Purkinje fibers | Specialized cardiac muscle cells | Answering collagen/nerve |
| Source of albumin | Liver (hepatocytes) | Answering kidney/plasma cells |
| Mitochondrial membrane | Double membrane | Answering single membrane |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Management of Stanford A | Emergency surgery | Thinking medical observation can come first |
| Management of Stanford B | Mainly medical therapy | Thinking it always requires surgery |
| Extent of DeBakey II | Ascending aorta only | Writing that it includes the aortic arch |
| Drug sequence in acute dissection | β-blocker first, then vasodilator | Giving nitroprusside first (reflex tachycardia, worsening) |
| First-choice imaging to confirm dissection | CT angiography | Treating a chest X-ray as confirmatory |
| Features of IMH | Crescentic hyperdensity in the aortic wall, no false-lumen flow | Confusing it with dissection (intimal flap present) |
| Prognosis of Stanford A + malperfusion | Markedly worse; different from cases without malperfusion | Writing "same prognosis" → wrong |
| Surgical threshold for AAA | ≥ 5.5 cm, or rapid enlargement/symptoms | Treating 3 cm as an indication for immediate surgery |
| Mechanism of Marfan syndrome | FBN1 → abnormal fibrillin-1 (dominant) | Answering collagen/recessive inheritance |
| Pathogen of mycotic aneurysm | Bacteria (e.g., Salmonella) | Thinking it is fungal |
| Position of the IABP balloon | Descending aorta, distal to the left subclavian artery | Placing it in the ascending aorta or at the renal arteries |
| CSF drainage | Provides spinal cord protection in both open repair and TEVAR | Thinking it works only in open surgery |
| Global share/outcomes of OPCAB | Not the majority, not clearly superior | Thinking it has become mainstream and better |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Screening tool for PAD | ABI < 0.9 | ABI >1.3 misread as normal (it actually indicates calcification) |
| Fontaine III | Ischemic rest pain | Confusing it with IV (tissue loss) |
| 6 Ps of ALI | Pain/Pallor/Pulselessness/Paresthesia/Paralysis/Poikilothermia | Missing critical signs such as paralysis |
| Most common cause of ALI | Cardioembolism (atrial fibrillation) (exam answer; ESVS 2020 notes that in situ thrombosis now accounts for a markedly larger share) | Choosing in situ thrombosis as the leading cause |
| What does "not" occur in reperfusion injury | Hypercalcemia | Choosing hyperkalemia (which does occur) |
| Preferred conduit for below-knee bypass | Autologous great saphenous vein | PTFE prosthetic graft (wrong) |
| Typical population for TOS | Young women | Answering middle-aged men |
| Provocative tests for TOS | Adson / Halsted / Wright | Breath test (not a valid test) |
| Site of stenosis at the carotid bifurcation | Origin of the internal carotid artery | Misdiagnosing the external carotid artery |
| Traumatic CCF | High-flow; first choice is endovascular embolization | Thinking it is low-flow or needs open surgery |
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- Triad of mechanical complications: free-wall rupture, VSD, papillary muscle rupture; acute AR is not among them.
- IABP mechanism: diastolic inflation ↑coronary perfusion, systolic deflation ↓afterload; contraindications = aortic regurgitation, aortic dissection.
- IABP-SHOCK II: no survival benefit in cardiogenic shock, but IABP is still needed as a bridge for mechanical complications.
- CABG in shock: on-pump is favored; off-pump is not "mandatory."
Common traps
- Confusing IABP's "no survival advantage (shock)" with "necessary as a bridge in VSD" — read the scenario carefully.
- Misremembering AR as a complication of AMI, or placing an IABP in a patient with AR (AR is a contraindication).
- Thinking surgery cannot proceed without family present — emergency life-saving treatment falls under the implied-consent exception.
- Squamous cell carcinoma: central, cavitating, high yield on sputum cytology, strongly associated with smoking.
- Adenocarcinoma: peripheral, high rate of brain metastasis (> squamous), EGFR/ALK.
- SCLC: early widespread metastasis, not suitable for surgery, chemotherapy-based treatment, paraneoplastic syndromes.
- Preoperative lung function: FEV1/DLCO > 80% = low risk; ppo-FEV1 > 40% (< 30% = high risk), DLCO < 50% → add VO₂max testing; right middle lobectomy has the least impact (these are older cutoffs; ACCP 2013: ppoFEV1 and ppoDLCO both above 60% = low risk, either below 30% → formal cardiopulmonary exercise testing).
- LDCT (NLST) reduces mortality; PET-CT is a staging tool.
Common traps
- Swapping the location/metastatic tendencies of squamous cell carcinoma and adenocarcinoma.
- Misremembering FEV1/FVC in COPD as "increased" (it should be decreased).
- Using PET-CT as a screening tool (it is for staging).
- Misremembering the preoperative thresholds (only DLCO < 50% triggers VO₂max testing; only ppo-FEV1 < 30% is high risk).
- Tension pneumothorax: absent breath sounds on the affected side, trachea deviated to the opposite side → immediate needle decompression, without waiting for an X-ray.
- Cardiac tamponade: Beck's triad, symmetric breath sounds; distinguished from tension pneumothorax by "whether breath sounds are symmetric."
- Indications for thoracotomy: > 1,500 mL or > 200 mL/hr × 3–4 hr or persistent instability; stable after 500 mL → thoracotomy not needed.
- Subcutaneous/mediastinal emphysema → examine the esophagus and trachea.
- Chylothorax: TG > 110, lymphocyte-predominant, ligation via a right-sided approach.
Common traps
- Using "JVD + hypotension" to distinguish tension pneumothorax from tamponade (both have them, so they cannot discriminate) — look at whether breath sounds are symmetric.
- Ordering an X-ray first despite hemodynamic instability, delaying life-saving treatment.
- Remembering chylothorax as eosinophil-predominant, or operating via a left-sided approach.
- First-choice diagnostic tool for DVT = compression/Doppler ultrasound (sensitivity/specificity >95%); D-dimer can only rule out.
- D-dimer NPV >95% (up to 99%) — a question stating "<90%" is wrong. Remember: "a negative result rules out; a positive result does not confirm."
- May-Thurner = a cause of DVT (left iliac vein compressed by the right iliac artery), not a complication → typically left iliofemoral DVT.
- DVT → PE is a cause→complication relationship; proximal DVT carries the highest risk.
- IVC filter indications = contraindication to or failure of anticoagulation; a filter is useless when the IVC is chronically, completely occluded.
- The standard treatment for DVT is anticoagulation, not emergency surgery.
Common traps
- Mistaking a "highly sensitive screening/rule-out tool (D-dimer)" for the "diagnostic gold standard."
- Misremembering an anatomic cause (May-Thurner) as a complication of DVT.
- Diagnosing DVT directly from a positive D-dimer (ignoring that it rises with inflammation, surgery, pregnancy, and cancer).
- Thinking of surgery whenever DVT appears; forgetting that anticoagulation is first line.
- Boerhaave: chest pain after vomiting + subcutaneous/mediastinal emphysema; surgery is necessary (exam answer; contained, stable perforations may now be managed nonoperatively or with endoscopic stenting); with delay, mortality is 50–70%, often with empyema + acute mediastinitis.
- Most common EA/TEF = Gross type C (about 85%); in newborns, frothy saliva + upper abdominal distension is typical; management is first stabilization + VACTERL workup, then elective repair, not immediate surgery.
- Anterior mediastinum: the 4 Ts; thymoma is treated mainly by surgical resection, staged by Masaoka, and often associated with MG.
- Seminoma does not secrete AFP; β-hCG is mildly elevated in only a minority (about 10–20%); it is sensitive to radiotherapy and chemotherapy; AFP↑ → NSGCT.
- Barrett = intestinal metaplasia → adenocarcinoma (not squamous cell carcinoma), with a 30–125-fold risk.
- Nissen = 360° total wrap; Toupet/Dor are partial.
Common traps
- Treating esophageal rupture as manageable conservatively (most still need surgery; only contained, stable cases can be managed conservatively).
- Thinking "operate immediately" on seeing EA/TEF, overlooking prior evaluation of the heart and other VACTERL anomalies.
- Misremembering seminoma as secreting AFP.
- Misremembering malignant transformation of Barrett esophagus as squamous cell carcinoma.
- Misremembering Nissen as a partial wrap.
- Venous cannulas go in the SVC/IVC and the arterial cannula in the ascending aorta; no drainage cannula is placed in the pulmonary artery (the pulmonary circulation is idle during CPB).
- Hypothermia → lower perfusion flow; 2.4 L/min/m² at 20°C is too high (that is the normothermic value); the actual figure is about 1.0–1.5.
- CPB inevitably triggers SIRS (complement + coagulation + leukocyte activation); "does not trigger SIRS" is an incorrect statement.
- CPB duration is limited: the longer it runs → the more coagulopathy, platelet destruction, embolism, and organ injury (ideally <6 hours).
- Full heparinization (ACT >400–480 seconds) throughout, neutralized with protamine at the end.
Common traps
- Applying the normothermic flow standard (2.2–2.4 L/min/m²) to deep hypothermia.
- Thinking CPB can be used indefinitely, or that it does not trigger an inflammatory response.
- Treating the pulmonary artery as a routine drainage vessel.
- The costal margin is formed by ribs (cartilages) 7–10; true ribs 1–7, false ribs 8–10, floating ribs 11–12.
- The intercostal VAN runs in the costal groove along the inferior border of the rib; needle insertion goes along the superior border of the rib; the brachiocephalic trunk gives off no intercostal arteries; the lateral cutaneous branch emerges at the midaxillary line.
- Left hilum: pulmonary artery highest; right hilum: main bronchus highest.
- Anterior to the transverse pericardial sinus = ascending aorta + pulmonary trunk.
- The only direct branches of the ascending aorta = the coronary arteries.
- The right phrenic nerve runs between the SVC and the mediastinal pleura; the right recurrent laryngeal nerve loops around the right subclavian artery, the left around the aortic arch.
- Pulmonary valve auscultation = left 2nd intercostal space (not the 3rd); but its anatomic projection is at the level of the left 3rd costal cartilage — distinguish the "auscultation area" from the "anatomic projection."
Common traps
- Remembering the pulmonary valve auscultation site as the left 3rd intercostal space (the correct auscultation site is the 2nd; the 3rd costal cartilage is the "anatomic projection," not the auscultation area).
- Mixing up the arrangement of the left and right hila (left = PA highest, right = bronchus highest).
- Misremembering the right recurrent laryngeal nerve as looping around the brachiocephalic vein, or the left as looping around the subclavian artery.
- Puncturing along the inferior border of the rib and injuring the neurovascular bundle.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Branch of the posterior cord supplying latissimus dorsi | Thoracodorsal nerve | Choosing the subscapular nerve or long thoracic nerve by mistake |
| Muscles inserting on the radial tuberosity / ulnar tuberosity | Biceps brachii / brachialis | Reversing the two, or wrongly adding a pronator |
| Vessel accompanying the radial nerve below teres major | Deep brachial artery | Choosing the axillary artery or the main brachial artery by mistake |
| Dermatome supplying sensation to the thumb | C6 | Choosing C5 or C7 by mistake |
| Most common cause of winged scapula | Long thoracic nerve injury (serratus anterior palsy) | Choosing the accessory nerve (affects trapezius) by mistake |
| Terminal continuation of the musculocutaneous nerve | Lateral cutaneous nerve of the forearm | Misremembering it as the medial cutaneous nerve of the forearm |
| Most often injured in a fracture of the surgical neck of the humerus | Axillary nerve (deltoid paralysis + loss of sensation over the lateral arm) | Choosing the radial nerve by mistake |
| Midshaft humeral fracture | Radial nerve → wrist drop | Choosing the median nerve by mistake |
| Prime mover of elbow flexion | Brachialis | Remembering only biceps brachii and missing brachialis |
| Which injury causes the "waiter's tip" hand | Erb palsy (upper trunk, C5–C6) | Swapping it with Klumpke (lower trunk, claw hand) |
| Characteristic nerve deficit in supracondylar fracture | AIN injury: cannot make the "OK" sign | Misremembering it as ape hand from injury at the wrist |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Two muscles attaching distally to the ITB | Tensor fasciae latae + gluteus maximus | Choosing vastus lateralis by mistake |
| Injury associated with an MCL tear | Medial meniscus (plus ACL = unhappy triad) | Answering lateral meniscus |
| Insertion of the patellar ligament | Tibial tuberosity | Writing medial tibial condyle |
| Main sources of the deep plantar arch | Deep branch of the dorsalis pedis artery / lateral plantar artery | Answering the main trunk of the anterior tibial artery |
| Pressure point for bleeding from the lateral plantar artery | Posterior tibial artery at the tarsal tunnel | Compressing the dorsalis pedis artery by mistake |
| Vein accompanying the sural nerve | Small saphenous vein; supplies the posterolateral leg + little toe | Confusing it with the saphenous nerve (great saphenous vein, medial side) |
| Access route for cardiac catheterization | Femoral artery (anatomy answer; radial access is now the usual first choice clinically) | Choosing the popliteal artery by mistake |
| Nerve/action of the anterior compartment of the leg | Deep fibular nerve / dorsiflexion (foot drop) | Confusing it with eversion by the lateral compartment |
| Most frequently injured nerve in the lower limb / foot drop | Common fibular nerve (at the fibular neck) | Answering the tibial nerve |
| Nerve involved in the Trendelenburg sign | Superior gluteal nerve (gluteus medius) | Answering the femoral nerve |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Age for stacking 2 blocks | 15–18 months | Treating it as achieved by 12 months |
| Earliest gross motor milestone | Rolling over (about 4 months) | Choosing independent sitting/pulling to stand by mistake |
| Fine motor skill at 12 months | Mature pincer grasp | Confusing it with block stacking |
| Basis for medical decisions | The patient's best interest | Choosing NHI/hospital interests by mistake |
| Discovering domestic violence | Mandatory immediate reporting | Thinking there is no need to report if the patient refuses |
| WHO "aged society" | Age 65↑ make up 14% | Confusing it with 7% (aging) and 20% (super-aged) |
| Direction of paralysis in GBS | Ascending, distal→proximal | Writing "from the trunk downward" |
| Atypical feature of CMT | Pain (and Type I affects myelin) | Treating pain as a feature of CMT |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Best at restricting cervical lateral bending/rotation | Halo vest (strongest in all directions) | Choosing SOMI by mistake (SOMI is strong in flexion, not in lateral bending/rotation) |
| Main motion restricted by SOMI | Flexion (especially of the upper cervical spine, C1–C3); poor control of extension | Thinking it controls lateral bending/rotation best |
| Axillary positioning after burns | Abduction (airplane splint) | Writing adduction |
| Timing of prosthetic fitting after amputation | Can begin early, before healing is complete | "Must wait until fully healed" |
| Weight-bearing areas in a PTB socket | Patellar ligament, medial femoral condyle (exam answer; the primary weight-bearing areas are the patellar tendon and the medial tibial flare) | Treating the tibial crest/fibular head as weight-bearing areas |
| Effect of an AFO on the subtalar joint | Cannot completely eliminate its motion | Writing "can eliminate it completely" |
| Wheelchair camber | Lateral stability/hand protection are advantages | Treating uneven tire wear as an advantage |
| Nerve stimulated by FES for foot drop | Deep fibular nerve (dorsiflexors) | Choosing the tibial nerve (plantar flexion) by mistake |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Claw hand after a traffic accident | Ulnar nerve | Answering the median or radial nerve |
| Fingers most affected in claw hand | Ring and little fingers | Thinking the whole hand is equally affected |
| Red flags in low back pain requiring referral | Persistent pain worsening at night (tumor/infection), cauda equina signs | Treating simple mechanical pain as a red flag |
| Site of Osgood-Schlatter disease | Tibial tuberosity apophysis | Answering patella or femur |
| Joints typically involved in rheumatoid arthritis | Small joints such as the PIP, MCP, and wrist | The lumbar spine is not typically involved (often chosen by mistake) |
| First-choice electrodiagnostic test for NMJ disorders | Repetitive nerve stimulation (RNS) | Choosing plain NCS or EMG by mistake |
| Most common adverse effect of heat therapy | Contact burns (especially with sensory deficits) | Overlooking sensory deficits as a high-risk factor |
| Contraindications to ultrasound/electrical stimulation | Growth plates, pregnancy, pacemakers, malignancy | Missing pacemakers |
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Answering-strategy reminder: When options differ by only one directional word (medial/lateral, ascending/descending, proximal/distal), go back to the mechanism first; for clinical questions, first pick out age, disease course, trauma history, and imaging — usually one of these is the key to the question. For giveaway/disputed questions, go by the core concept in the explanation rather than memorizing the disputed option.
- VSD + AR → subarterial (type I); highest spontaneous closure rates → muscular / perimembranous.
- ASD: primum→MR, sinus venosus→PAPVR, secundum most common; ASD causes right heart enlargement, not LV enlargement.
- TAPVC repair requires ligation of the vertical vein; leaving it is wrong (exam answer; some centers leave it open temporarily as a pop-off in obstructed cases with a small left heart).
- Infant AS: urgent intervention is balloon dilation or the Ross procedure; a mechanical valve is the least suitable.
- Surgical threshold for VSD: Qp:Qs > 2:1.
Common traps
- Mistaking "the most common VSD type (perimembranous)" for "the type most likely to be associated with AR" — AR belongs to the subarterial type.
- Misremembering the "right heart enlargement" of ASD as LV enlargement (the shunt is at the atrial level, so the LV is not volume-loaded).
- Choosing "valve replacement" for severe AS in an infant, ignoring that the prosthesis cannot grow with the infant's annulus → a mechanical valve is the worst option.
- Forcing adult thresholds for thoracic/abdominal aortic aneurysms or valve surgery (cm, anticoagulation strategies) onto infant congenital heart disease scenarios.
- Hallmark of ASD = fixed split S2; ASD causes right heart enlargement; there is no "loud split S1."
- Pediatric SVT that is unstable → synchronized cardioversion; only stable cases get vagal maneuvers/adenosine.
- Reverse differential cyanosis (upper limbs bluer) = d-TGA + PDA + pulmonary hypertension (high PVR); an isolated PDA is not enough to cause it.
- Pediatric IE is caused mainly by viridans strep / S. aureus; pneumococcus is uncommon.
- Highest IE risk (four AHA categories): prosthetic valves/prosthetic material, prior IE, specific congenital heart disease (unrepaired cyanotic disease, prosthetic shunts, within 6 months of repair or with residual defects), valvulopathy after heart transplantation; rheumatic heart disease and mitral valve prolapse have been removed from the high-risk list and need no prophylaxis, and age <1 year is not a classification criterion.
- Perimembranous VSD closes spontaneously in about 30–40%; the type most associated with AR is the subarterial type.
- Indications for VSD surgery: Qp:Qs > 2:1, refractory heart failure, pulmonary hypertension, failure to thrive.
Common traps
- Confusing "fixed split S2" with "loud split S1" — the latter is not a feature of ASD.
- Choosing adenosine or defibrillation for unstable SVT; the correct answer is synchronized cardioversion.
- Reversing the direction of ordinary differential cyanosis (lower limbs blue) and reverse differential cyanosis (upper limbs blue).
- Thinking "age < 1 year" is a highest-risk group for IE.
- Remembering that "perimembranous VSD does not close spontaneously" — the actual closure rate is 30–40%.
- Descending thoracic aortic aneurysm of 4 cm → annual CT follow-up; surgery only at ≥6 cm or growth >1 cm/year (exam answer; 2022 ACC/AHA: TEVAR at ≥5.5 cm when anatomy is suitable, open repair at ≥6 cm otherwise); follow up with CT, not TTE.
- AAA lies below the renal arteries; those with a diameter >4 cm are mostly due to atherosclerosis; surgery at 5.0 cm in women / 5.5 cm in men.
- AAS risk factors: hypertension, connective tissue disease, bicuspid valve, pregnancy; sick sinus syndrome is the least related.
- Dissection: Stanford A → surgery; B → medical therapy first (β-blocker); the first-choice diagnostic test is CTA.
Common traps
- Applying the AAA thresholds (4.5–5.5 cm) to the thoracic aorta (the threshold for the descending thoracic aorta is higher: traditionally about 6 cm, 5.5 cm for TEVAR candidates under the 2022 ACC/AHA guideline).
- Using echocardiography to follow a descending aortic aneurysm (it cannot see the distal portion; use CT).
- Remembering the AAA location as "above the renal arteries," or remembering it as "common only when <4 cm."
- In AAS risk-factor questions, choosing an option related to heart rhythm but unrelated to the vessel wall (such as sick sinus syndrome).
- Lowering blood pressure in dissection with a vasodilator alone, overlooking that a β-blocker should come first to reduce dP/dt.
- CoA: male > female, associated with Turner / bicuspid valve, notching of the inferior rib margins (not superior), upper-limb hypertension.
- TOF tetrad (PS, RVH, overriding aorta, VSD): cyanosis from birth (exam answer; timing depends on PS severity, and a pink tet may not turn blue for months), right→left shunt, boot-shaped heart, relieved by squatting.
- PDA: continuous machinery murmur; CT shows a tubular channel between the main pulmonary artery and the descending aorta.
- PGE₁ keeps the ductus open; NSAIDs (indomethacin) close it — do not get the direction backwards.
Common traps
- Remembering rib notching as the "superior rib margin" (the correct answer is inferior).
- Remembering the CoA sex ratio as "female more than male" (correct: male > female, though Turner females are an associated scenario).
- Reversing "PGE opens / NSAID closes" — giving an NSAID in duct-dependent congenital heart disease can be fatal.
- Misjudging the tubular channel of a PDA as an aortic aneurysm (focal dilation) or CoA (luminal narrowing).
| Exam point | Correct answer | Common trap |
|---|---|---|
| First step in stable SVT | vagal → adenosine | Cardioverting directly despite a normal blood pressure |
| Unstable arrhythmia | Immediate synchronized cardioversion | Still slowly trying drugs |
| First line for TdP | Magnesium sulfate | Using amiodarone (prolongs the QT further) |
| Refractory TdP | Isoproterenol/overdrive pacing to raise the rate to 100–120 | Pacing at a slow rate of 70 bpm |
| Cause of TdP | Diuretic-induced hypokalemia, QT prolongation | Thinking it is hyperkalemia |
| Does not cause AV block | Hyperthyroidism (causes sinus tachycardia/AF instead) | Choosing it as a cause of block |
| Rate-control drugs for AF | β-blocker/CCB/digoxin suppress the AV node | Thinking an α-blocker also slows the rate |
| Bradycardia after heart transplantation | Atropine is ineffective; use catecholamines/pacing | Still giving atropine |
| CHA₂DS₂-VASc (76-year-old woman + HTN + DM) | 5 points (the 2024 ESC guideline uses the sex-free CHA₂DS₂-VA: 4 points here) | Missing the point for female sex or the 2 points for age ≥75 |
| Useless test in syncope evaluation | Pulmonary function testing | Choosing it as helpful for diagnosis |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Pitch of a pericardial friction rub | High-pitched; clearest leaning forward at end-expiration; disappears as the effusion grows | Answering low-pitched |
| Beck's triad | Hypotension + JVD + muffled heart sounds | Mixing in Kussmaul's sign or a friction rub |
| Catheterization features of constrictive pericarditis | square root sign, RV systolic pressure <50 | Confusing it with pulmonary hypertension |
| HOCM on standing/Valsalva | Murmur gets louder (smaller ventricle) | Thinking it gets softer |
| Contraindicated treatments in HOCM | High-dose diuretics, nitrates, digoxin | Thinking diuretics should be added |
| Maneuvers that accentuate the HOCM murmur | Standing, Valsalva | Choosing squatting/handgrip by mistake |
| Rate of HCM progressing to DCM | <10% (2–5%) | Overestimating the rate |
| Sex ratio of myxoma | Female > male (about 2:1) | Answering male-predominant |
| Typical location of myxoma | Left atrium, interatrial septum | Answering left ventricle |
| When LVH appears | Becomes gradually evident in adolescence | Thinking it is present at birth |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Dyspnea only with moderate activity, asymptomatic at rest | NYHA Class II | Misjudging it as III |
| Drugs contraindicated in HFrEF | verapamil/diltiazem (negative inotropes) | Thinking they can be used for rate control |
| β-blockers that improve survival in HFrEF | carvedilol / bisoprolol / metoprolol succinate | Choosing propranolol by mistake |
| Role of hydralazine + nitrate | Alternative when ACEi/ARB are not tolerated, not first line | Treating it as a preferred drug |
| BNP in obese patients | Falsely low | Thinking it is always elevated |
| Effect of ARNI on BNP | BNP↑ (unreliable), NT-proBNP↓ | Thinking both fall |
| Marker for monitoring ARNI efficacy | NT-proBNP | Still following BNP |
| Least helpful physical sign in this scenario | Right ventricular heave | Choosing it as a key diagnostic sign |
| IABP inflation timing | Inflates in diastole (↑coronary perfusion) | Writing inflation in systole |
| IABP deflation timing | Deflates just before systole (↓afterload) | Writing deflation in mid-to-late diastole |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Pathologic features of HCM | Asymmetric septal hypertrophy + myofiber disarray (septum ≫ free wall) | Reversing it so the free wall is thicker |
| Dynamic behavior of the HCM murmur | Louder with Valsalva/standing (preload↓ → obstruction↑) | Misremembering it as softer (that is AS/MR) |
| Causes of DCM | Alcohol, doxorubicin, TTN mutations, viruses (all cause systolic dysfunction) | Classifying amyloidosis as DCM (it is RCM/diastolic dysfunction) |
| Ultrastructure of cardiac amyloid | Nonbranching fibrillar deposits; the most common type in older men is ATTR | Confusing it with endocardial fibroelastosis (diffuse fibrosis) |
| When an MI is most likely to rupture | Days 3–5 (macrophages/neutrophils clear the necrotic tissue; the structure is weakest) | Thinking it is the same day or weeks later |
| Mitral annular calcification in older adults | Deposits in the annulus, usually without functional effect; not at the commissures | Confusing it with rheumatic "commissural fusion" |
| Most common finding in SCD | Coronary atherosclerosis | Choosing myocarditis/valvular disease by mistake |
| Not a cause of pulmonary hypertension | Tricuspid stenosis (located upstream of the pulmonary circulation, so it does not raise pulmonary artery pressure) | Treating TS as a cause of pulmonary hypertension |
| Most common group of pulmonary hypertension | Group 2: left heart disease | Remembering only PAH (Group 1) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Effect of hyperthyroidism on the QT | QT shortened (fast heart rate, rapid repolarization) | Thinking it is prolonged |
| Features of complete AV block | Complete P–QRS dissociation + bradycardia; needs a pacemaker | Misjudging it as LVH/QTc prolongation |
| Mobitz II vs I | II tends to progress and often needs a pacemaker; I is mostly benign | Confusing the management of the two |
| Osborn J wave | Hypothermia <32°C | Mistaking it for hyperkalemia/ischemia |
| Electrical alternans | Cardiac tamponade/large effusion | Mistaking it for bundle branch block |
| Delta wave | WPW pre-excitation | Mistaking it for premature ventricular contractions |
| Most dangerous consequence of QT prolongation | Torsades; treat with Mg | Giving more antiarrhythmics by mistake |
| Which current more readily causes VF | Alternating current (AC) > direct current (DC) | Reversing them |
| Mechanism of Tl-201 uptake | Active transport by the Na-K pump (K⁺ analog) | Thinking it is passive diffusion |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| First-choice management of shock in RV MI | Rapid fluid loading to restore preload | Giving IABP/inotropes first by mistake |
| Drugs contraindicated in RV MI | nitroglycerin/nitrates (reduce preload) | Giving nitrates as in left heart failure |
| Aggregation mechanism of GP IIb/IIIa | Requires fibrinogen bridging, not direct linkage | Thinking the receptors bind each other directly |
| STEMI in the ED | Activate PCI as soon as the ECG confirms it; do not wait for cardiac enzymes | Waiting for enzymes / routinely giving oxygen and nitrates |
| First choice for STEMI when a cath lab is available | Primary PCI is superior to thrombolysis | Always giving thrombolysis |
| Timing of invasive strategy in NSTEMI | Based on risk stratification (very high risk <2 h, GRACE >140 <24 h) | Thinking all need PCI within 12 hours |
| PCI in stable CAD | Improves symptoms, does not reduce MI/death | Claiming it reduces mortality (confusing it with ACS) |
| Bradycardia + hypotension on sheath removal | Vasovagal; give atropine + fluids | Misjudging it as hemorrhagic shock |
| Contraindications to stress testing | Unstable angina/severe symptomatic AS, etc. are absolute contraindications; asymptomatic AS is not an absolute contraindication | Listing asymptomatic AS as an absolute contraindication |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Most dangerous valvular disease in pregnancy | Mitral stenosis (MS) (blood volume↑, heart rate↑ → pulmonary edema) | Choosing AS/MR by mistake |
| Early compensation in AS | Concentric LV hypertrophy (not dilation) | Thinking it dilates early |
| Pulse pressure in AS | Narrow pulse pressure + pulsus parvus et tardus | Misremembering it as a wide pulse pressure |
| Differential diagnosis of wide pulse pressure | AR, PDA, hyperthyroidism, fever (not AS) | Including AS among causes of wide pulse pressure |
| Paradoxical S2 split | Delayed A2 (aortic valve), seen in severe AS/LBBB | Thinking the mitral valve is delayed |
| Fixed split | ASD | Confusing it with wide split (PS/RBBB) |
| Auscultating the MS murmur | Left lateral decubitus, apex, bell; low-pitched mid-diastolic rumble | Using the diaphragm/right upper sternal border by mistake |
| Thrill at the left 2nd intercostal space + wide split | Pulmonary valve stenosis (PS) | Misjudging it as PDA (continuous machinery murmur) |
| Austin Flint murmur | Severe AR causing relative mitral stenosis; a diastolic rumble, not a blowing murmur | Taking it as the murmur of the AR regurgitant jet itself |
| Dynamic behavior of the TR murmur | Louder on inspiration (Carvallo sign) | Misremembering it as louder on expiration |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Diagnostic threshold for hypertension | ACC/AHA ≥130/80; ESC ≥140/90 | Mixing the two systems; forgetting that repeated readings on separate days are needed |
| Clues to secondary hypertension | Hypokalemia, paroxysmal headache and palpitations, snoring and sleepiness, upper-limb > lower-limb pressure | Hyperlipidemia is not a clue to secondary hypertension |
| Electrolyte adverse effect of ACEi | Hyperkalemia | Thinking hypokalemia is a contraindication |
| First choice / contraindicated drugs for hypertension in pregnancy | First choice labetalol/nifedipine/methyldopa; ACEi/ARB contraindicated | Prescribing an ACEi for a pregnant woman |
| Key initial test for aortic dissection | CTA to define type and extent | Giving analgesia first and overlooking imaging |
| Drug sequence in dissection | β-blocker first, then vasodilator; no heparin | Using a vasodilator alone or anticoagulation |
| Renal artery stenosis + ACEi | Cr rises, GFR↓ | Assuming it protects the kidneys and overlooking deterioration |
| Criteria for orthostatic hypotension | SBP↓ ≥20 or DBP↓ ≥10 (within 3 minutes) | Writing DBP as ≥20 |
| Cuff too small | Overestimates blood pressure | Answering underestimates |
| Factors affecting measurement | Posture, cuff, device | Choosing "sex" by mistake |
| Hypertensive emergency vs urgency | Depends on acute organ damage; emergencies are treated with IV drugs | Lowering BP aggressively even when asymptomatic, causing ischemia |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Effect of doubling the radius on flow | ×16 (r⁴) | Calculating with the diameter or only squaring |
| Relationship of MAP and pulse pressure | MAP = CO×TPR; MAP ≈ DBP + ⅓PP | Taking MAP as (SBP+DBP)/2 |
| Main compensation in AR | Blood volume↑ (RAAS) → Frank-Starling | Choosing natriuresis/ANP by mistake (these reduce blood volume) |
| Structural basis of atrioventricular valve regurgitation | Failure of closure of the papillary muscles/chordae tendineae | Confusing it with semilunar valve stenosis |
| Center of the baroreceptor reflex | NTS of the medulla | Answering the thalamus |
| Increased receptor firing indicates | Rising blood pressure → reflex lowering of blood pressure | Getting the direction backwards |
| Afferent nerve of the carotid sinus | CN IX (glossopharyngeal); aortic arch: CN X | Swapping them |
| Phase of coronary perfusion | Greatest in diastole | Answering systole |
| Tachycardia causing ischemia | Shortened diastole → coronary perfusion↓ | Thinking only of O₂ demand↑ |
| ↑Oxygen-carrying capacity with endurance training | RBC↑ (EPO) | Choosing methemoglobin by mistake |
| Source of vWF | Endothelial cells + megakaryocytes | Answering smooth muscle |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Origin of the left aortic arch | Left 4th arch | Confusing it with the 6th arch (ductus arteriosus) |
| Origin of the ductus arteriosus / its ligament | Left 6th arch → ligamentum arteriosum | Right 6th arch (regresses) |
| Location of the ligamentum arteriosum | Between the aortic arch ↔ pulmonary trunk | Confusing it with the medial umbilical ligament (umbilical artery) |
| Origin of the ascending aorta/pulmonary trunk | bulbus cordis / truncus | Answering the pharyngeal arch arteries |
| Fetal vessel with the highest O₂ content | Umbilical vein | Answering the aorta/umbilical artery |
| Umbilical vein → after birth | Ligamentum teres hepatis | Confusing it with ductus venosus → ligamentum venosum |
| Direction of shunting across the foramen ovale | Right→left (higher right atrial pressure) | Writing left→right |
| Structures carried in the pleuropericardial folds | Phrenic nerve + common cardinal vein | Forgetting the phrenic nerve |
| What the pleuropericardial membranes form | Fibrous pericardium | Answering the visceral layer of serous pericardium |
| Origin of Purkinje fibers | Specialized cardiac muscle cells | Answering nerve/fibroblasts |
| Management of PDA in preterm infants | indomethacin | Using it the wrong way round with PGE₁ (keeps the duct open) |
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- Fondaparinux: inhibits Xa indirectly and selectively via ATIII; it does not directly inhibit thrombin (the most common correct answer).
- "-xabans" directly inhibit Xa; dabigatran directly inhibits IIa; heparin/fondaparinux act indirectly via ATIII.
- Abciximab = GP IIb/IIIa antagonist (final common pathway); prasugrel = P2Y12; dipyridamole/cilostazol = PDE.
- Nesiritide (recombinant BNP, activates the receptor) and Sacubitril (inhibits neprilysin) are not positive inotropes; the inotropes are dobutamine/milrinone.
- NO donors (molsidomine, nitroglycerin) → ↑cGMP (not cAMP).
- COX inhibitors (ibuprofen) close the PDA in preterm infants; PGE₁ keeps the ductus open.
- Felodipine = DHP CCB that blocks L-type Ca²⁺ channels.
Common traps
- Reversing "direct vs indirect" inhibition (fondaparinux/heparin are indirect).
- Mistaking natriuretic peptide–related drugs (nesiritide, sacubitril) for inotropes.
- Writing the cGMP of the NO pathway as cAMP (cAMP is the pathway of β-agonists and PDE3 inhibitors).
- Reversing which drugs are used to "close" vs "open" the PDA.
- Mechanism of Eisenmenger syndrome: persistent large left→right shunt → pulmonary arteriolar sclerosis → irreversible PVR↑ → shunt reverses to right→left → cyanosis.
- Lesions that can lead to Eisenmenger: VSD, PDA, truncus arteriosus, large ASD/AVSD (all left→right shunts).
- Once Eisenmenger is established → simple defect closure is prohibited; the ultimate option is heart-lung transplantation; pulmonary vasodilators only relieve symptoms.
- Valved homograft (RV-PA conduit) is used for truncus arteriosus and PA atresia + VSD.
- PA banding is a staged palliative operation that reduces pulmonary blood flow (for infants with a large left→right shunt and heart failure).
- d-TGA: keep the PDA open with continuous PGE₁; the ASO must be done within 2 weeks.
- Pulmonary artery sling = acyanotic (a vascular ring, no intracardiac shunt).
- A BDG must not be combined with a retained systemic-to-pulmonary shunt (single-ventricle volume overload → lower survival).
Common traps
- Reversing the direction of PA banding (reduces flow) and a BT shunt (increases flow).
- Choosing "close the VSD" in a patient with Eisenmenger syndrome (it is too late and actually fatal).
- Stopping PGE₁ or delaying surgery in d-TGA.
- Misjudging pulmonary artery sling as cyanotic heart disease.
- Patency ranking: IMA (>90%) > radial artery > great saphenous vein (~60%); left IMA→LAD is the gold-standard combination.
- The femoral artery is not suitable as a CABG conduit.
- BIMA contraindicated/used with caution in poorly controlled diabetes, obesity, advanced age (risk of sternal wound infection); COPD is not a contraindication (though severe COPD still raises the risk of sternal wound infection).
- Off-pump long-term patency and survival are not superior to on-pump (ROOBY/CORONARY).
- Cardiogenic shock + left main disease → operate as soon as possible without waiting for the antiplatelet effect to wear off.
- Digoxin improves symptoms but does not reduce mortality.
Common traps
- Reversing the patency ranking (thinking vein or radial artery grafts are superior to the IMA).
- Believing off-pump is always better (the evidence does not support a long-term advantage).
- Delaying life-saving surgery in cardiogenic shock because of bleeding concerns.
- Treating digoxin as a drug that lowers mortality.
- MR = holosystolic murmur (not diastolic); AI/MS = diastolic; AS = systolic ejection murmur.
- Surgical thresholds in severe AR: symptoms / low EF (older guidelines <50%, 2020 guideline ≤55%) / LVESD >50 mm (an LVESD of 30 mm does not qualify).
- MS + AF + embolism → anticoagulation is mandatory (warfarin, Class I) + a Maze procedure can be added.
- The Ross procedure suits young patients/children/women of childbearing age, not older adults.
- Apex of Koch's triangle (coronary sinus ostium, septal leaflet margin, tendon of Todaro) = AV node; sutures placed too deep in tricuspid surgery → complete AV block.
- Valve choice: mechanical valve (durable + lifelong anticoagulation; favored at <50 years) vs bioprosthetic valve (no long-term anticoagulation + prone to degeneration; favored at >65–70 years); mechanical valves allow only warfarin; DOACs are contraindicated.
- Symptomatic severe AS (angina/syncope/heart failure) → valve replacement (SAVR or TAVR); drugs cannot change the course; TAVR indications now extend to intermediate/low surgical risk.
Common traps
- Writing the MR murmur as diastolic.
- Calling it a surgical indication based on an LVESD below the threshold (e.g., 30 mm), or overlooking that "symptoms/EF <50%" also qualify.
- Not anticoagulating MS + AF after an embolic event.
- Using the Ross procedure in older adults.
- Thinking the conduction system is not a concern in the tricuspid operative field.
- Only giving drugs and observing in symptomatic severe AS, delaying valve replacement; or replacing warfarin with a DOAC in a patient with a mechanical valve.
- Contraindications to heart transplantation: complex congenital heart disease correctable by conventional surgery, irreversible pulmonary hypertension (fixed PVR > 5 WU / TPG > 15 mmHg), active infection/malignancy, inability to comply with immunosuppression.
- Alternatives in end-stage heart failure: LVAD (bridge to transplant or destination therapy), combined heart-lung transplantation (for irreversible pulmonary hypertension); IABP/ECMO as a bridge in the acute phase.
- STITCH: CABG + SVR (surgical ventricular reconstruction) did not improve survival (it only reduced ventricular size/improved some symptoms).
- About 75% of primary cardiac tumors are benign, the most common being myxoma; > 75% arise from the fossa ovalis of the interatrial septum in the left atrium.
- For myxoma, echocardiography is the first-choice diagnostic test; with embolism → surgical excision.
- Adult myxoma vs pediatric rhabdomyoma (associated with tuberous sclerosis).
Common traps
- Choosing heart transplantation for a patient "still correctable by conventional surgery" (violates the last-resort principle).
- Thinking CABG plus left ventricular reconstruction prolongs survival (refuted by STITCH).
- Misjudging cardiac tumors as mostly malignant.
- Giving only anticoagulation without surgery for a myxoma with embolism, or thinking CT is the first-choice diagnostic tool.
- Use class I×8 / class II×4 to work out endogenous vs exogenous antigens and CD8 vs CD4; class I peptides are short (8-10), class II peptides long (13-17) — don't get the direction backwards.
- MHC class II is found only on professional APCs (DC, Mφ, B); neutrophils are not major APCs and do not express class II.
- CD3 = ITAM (activation); ITIM = inhibition (KIR/PD-1; CTLA-4 lacks a classic ITIM and acts mainly by competing for and removing B7).
- The three CTL weapons: perforin + granzyme + FasL; IFN-γ does not kill directly, and ADCC is mediated by NK/Fc (not CD8).
- Central tolerance relies on negative selection/clonal deletion in the thymus + AIRE; class I/II defects correspond to reduced CD8/CD4, respectively.
- Common traps: (1) treating MHC class III (complement/TNF) as antigen-presenting molecules; (2) misremembering "no signal 2 → anergy" as activation; (3) swapping the roles of Th1 (IFN-γ, intracellular bacteria) and Th17 (IL-17, extracellular bacteria/fungi).
- RLRs (RIG-I/MDA5) recognize RNA; cGAS-STING recognizes DNA; NLRP3 inflammasome → IL-1β.
- IFN-α is a cytokine of innate immunity, secreted by infected cells/pDCs (not a chemokine, not adaptive, not from T cells).
- The complement pathways converge at C3; C3b = opsonin (CR1/CR3), C5a = chemotaxis + anaphylatoxin; complement is made by the liver and waits as zymogens.
- Matching deficiencies: C1/C2/C4 → SLE-like; C5-9 → recurrent Neisseria; C1-INH → HAE; CD55/CD59 → PNH (CD59 blocks C9/MAC).
- NK = missing-self: MHC I↓ → killing; balance of activating/inhibitory receptors; can mediate ADCC (CD16).
- Leukocyte recruitment relies on selectin→integrin/ICAM→chemokine gradient; LAD-1 = CD18 defect (no pus, delayed umbilical cord separation).
- Common traps: (1) treating TLRs as homing receptors (those are actually chemokine receptors); (2) treating M cells as bactericidal/antibody-producing cells (they only sample and transport); (3) swapping the sites of action of DAF and CD59.
- Localizing by infection fingerprint: antibody deficiency → encapsulated bacteria/enteroviruses (after 6 months); T-cell deficiency → viruses/fungi (early onset, avoid live vaccines); phagocyte deficiency → catalase-positive organisms + abscesses; C5-9 → Neisseria.
- Gene matching: XLA=BTK, Hyper-IgM=CD40L/AID, WAS=WASp (not NF-κB), NEMO=NF-κB, AT=ATM, DiGeorge=22q11, Hyper-IgE/Job=STAT3 (Th17↓→cold abscesses), CGD=NADPH oxidase, MSMD=IFN-γR.
- Positive-selection defects compared: class II deficiency → CD4↓ (not normal); class I/TAP deficiency → CD8↓.
- AT: ATM → defective V(D)J/DNA repair → B/T↓ + ataxia + telangiectasia + AFP↑ + radiosensitivity.
- Chronic HIV infection: CTLs and antibodies are produced but become dysfunctional/the virus escapes (trap options often say "not produced").
- Common traps: (1) matching WAS with NF-κB; (2) giving live vaccines in SCID (fatal; absolutely contraindicated); (3) overlooking transfusion anaphylaxis in selective IgA deficiency; (4) explaining CGD with ordinary bacteria (it should be catalase-positive organisms).
- Timeline: V(D)J (bone marrow, RAG + TdT, no antigen needed) → SHM/CSR (germinal center, AID, requires antigen + T cells).
- Diversity is determined mainly by V(D)J; class switching does not increase diversity (it only changes the Fc/function).
- Division of labor among enzymes: TdT adds N-nucleotides (junctional diversity; it does not mark break points); AID handles SHM + CSR and does not touch V(D)J; SHM alters only the variable region.
- pre-BCR (μ heavy chain + surrogate light chain + Igα/β) → survival/proliferation + allelic exclusion; BTK deficiency → XLA.
- Ig shorthand: IgM: pentamer, primary response, strongest complement activation; IgG: crosses the placenta, mainstay of the secondary response; sIgA: dimer + J chain (plasma cell) + secretory component (epithelium); IgE: allergy/parasites; IgD: surface BCR.
- IgA class switching depends on IL-10/TGF-β; the IgG subclasses have different affinities for Fc receptors.
- Common traps: (1) thinking isotype switching increases diversity; (2) saying SHM also changes the constant region; (3) attributing the secretory component to plasma cells (it comes from epithelial cells); (4) treating TdT as "marking DNA break points."
- Polysaccharide = TI, conjugate = TD: conjugate vaccines activate B cells in a thymus-dependent manner, generating memory and IgG; saying "conjugate vaccines activate B cells in a TI manner" is wrong (that is a property of pure polysaccharide PPSV).
- Why infants get conjugate rather than pure polysaccharide vaccines: infants have no memory response to pure polysaccharides, so PCV, Hib, and MCV are used at <2 years.
- Humans are the only host of poliovirus; it does not infect cattle.
- Pertussis vaccines now use aP (acellular); LPS is an outer-membrane component of G(−) bacteria, and capsular polysaccharides are used in pneumococcal/meningococcal vaccines — do not confuse them.
- HPV-16/18 ≈ 70% of cervical cancer; the HPV vaccine prevents virus-associated cancers.
- Mucosal protection requires oral/mucosal routes to induce sIgA; IM injection alone cannot produce adequate mucosal immunity.
Common traps:
- Misunderstanding "herd immunity" as "individual natural immunity" — it is indirect protection at the population level.
- Thinking DTP can cross-protect against measles (it cannot); antibiotics are ineffective against viruses (measles).
- Assuming any "polysaccharide vaccine" can be used in infants (pure polysaccharide vaccines are effective only at ≥2 years).
- Hyperacute rejection (minutes) = preformed antibodies + complement; acute = T cells; chronic = vasculopathy. Work backward from timing to mechanism.
- Reducing GVHD: depleting donor T cells (anti-CD52), HLA matching, ATG; MLR does not help (it actually activates T cells).
- The three phases of immunoediting = elimination/equilibrium/escape; it "sculpts" rather than "shrinks."
- NK missing-self: tumors downregulate MHC I → NK cells are activated and kill (complementing CTLs).
- CTLA-4 is on T cells; PD-L1 is on tumor cells.
- Trastuzumab → HER-2/neu; its mechanism includes signal inhibition + ADCC.
- tyrosinase = melanoma TAA; it can induce tumor-specific CTLs.
Common traps:
- Placing CTLA-4 on tumor cells.
- Thinking immunoediting shrinks tumors.
- Reversing the direction of GVHD (donor attacks recipient) and host rejection (recipient attacks donor).
- HLA-G has little polymorphism and a weak association with rejection (once appeared as a giveaway question).
- Central tolerance = negative selection in the thymus/bone marrow; peripheral tolerance (including at inflamed sites) = Treg/anergy. Tolerance at inflamed sites = Treg.
- Treg = CD4⁺CD25⁺, FoxP3⁺; suppress via IL-10/TGF-β, CTLA-4, and IL-2 consumption, not cytotoxic killing.
- FoxP3 defect → IPEX; IL-10 defect → IBD; CTLA-4/FasL defect → autoimmunity.
- Oral tolerance: high dose → anergy, low dose → Treg/TGF-β.
- SLE: anti-dsDNA via TLR-9 (endosomal) → IFN-α.
- T1DM is cell-mediated; IgG crossing the placenta does not transmit the disease (in contrast to antibody-mediated autoimmune diseases that are transmitted across the placenta).
Common traps:
- Describing Treg action as "cytotoxic killing" (wrong; that is CTLs).
- Attributing tolerance at inflamed sites to "central/negative selection" (wrong; it is peripheral Treg).
- Thinking oral tolerance is due to "molecules being too small" or "thymic presentation" (wrong).
- Treating CD23 as a key autoimmunity molecule (wrong; it is the low-affinity IgE receptor).
- Matching the four types to mechanisms: I = IgE, II = IgG/IgM against cells, III = IC, IV = delayed T-cell (48-72h).
- Type I sequence: IgE cross-linking on mast cells → degranulation → histamine + leukotrienes.
- Allergy = Th2 dominance: IL-4↑ (IgE), IL-5↑ (eosinophils), IgE↑; IFN-γ belongs to Th1.
- Hygiene hypothesis: excessive cleanliness/antibiotics → Th2 skewing → allergy↑ (the rising prevalence in developed countries fits this).
- House dust mites: breed in warm, humid conditions; their excreta are the allergen; visible under a light microscope.
- Viral clearance/tuberculin = Type IV; antibody-mediated reactions to viruses lean toward types II/III instead.
Common traps:
- Accepting "antibiotics reduce asthma" as correct (contrary to the hygiene hypothesis; wrong).
- Treating IFN-γ or IgA as features of allergic disease (wrong; IFN-γ is Th1).
- Saying dust mites "breed in dry environments" or "can only be seen with an electron microscope" (both wrong).
- Misjudging contact dermatitis and serum sickness as IgE-mediated (contact dermatitis = type IV; serum sickness = type III).
| Exam point | Correct answer | Common trap |
|---|---|---|
| First line for anaphylaxis | Epinephrine 0.3–0.5 mg IM (thigh) | Choosing antihistamines/steroids/IV epinephrine by mistake |
| First line for chronic urticaria | Second-generation antihistamines (desloratadine, etc.) | Choosing first-generation (sedating) agents or systemic steroids by mistake |
| Examples of delayed-type (Type IV) reactions | Tuberculin test, contact dermatitis | Classifying them as antibody-mediated |
| Causative organism of ARF | Group A streptococcus (GAS) | Choosing Group B by mistake |
| Interval between GAS infection and ARF | 2–4 weeks | Choosing 3 months by mistake |
| Frequency of erythema marginatum | < 5% (rare but specific) | Thinking it is a common manifestation |
| Most serious manifestation of ARF | Carditis (leaves valvular sequelae) | Choosing arthritis by mistake |
| Non-itchy angioedema unresponsive to antihistamines | Bradykinin-mediated (C1-INH deficiency) | Treating it as ordinary urticaria with antihistamines |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Most common type of urinary incontinence in women | Stress urinary incontinence (SUI) | Choosing urge incontinence by mistake |
| Management of ASB in pregnancy | Must be treated (≥10⁵ cfu/mL) | Applying the no-treatment rule for nonpregnant women |
| Definitive diagnosis of endometriosis | Laparoscopy + histopathology (exam answer; ESHRE 2022 accepts positive ultrasound/MRI and reserves laparoscopy for imaging-negative cases) | Using ultrasound/CA-125 to confirm the diagnosis |
| Suture anchoring in the Burch procedure | Cooper's ligament | Mistaking it for the uterosacral ligament |
| POPQ Point Aa | Corresponds to the bladder neck; normal is -3 cm | Reversing the value/location |
| Treatment of BV vs trichomoniasis | Both metronidazole; only trichomoniasis requires partner treatment | Managing BV as an STI |
| Characteristic physical signs of PID | Cervical motion tenderness + adnexal tenderness | Missing Fitz-Hugh-Curtis |
| Pulmonary complication of postoperative sepsis | ARDS (PaO₂/FiO₂ <300 + bilateral infiltrates) | Misjudging it as cardiogenic pulmonary edema |
| Leakage stops when ring forceps support the fornices | Lateral defect | Misjudging it as a midline defect |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Deadliest malaria species / irregular fever | P. falciparum (cytoadherence) | Thinking it has a regular cycle |
| Has hypnozoites, requires primaquine | P. vivax, P. ovale | Adding primaquine for falciparum/malariae |
| First-choice drug for severe/cerebral malaria | IV artesunate | Choosing chloroquine by mistake (falciparum is largely resistant) |
| Complication of quartan malaria | Immune-complex glomerulonephritis | Confusing it with the mechanism of blackwater fever |
| Mechanism of blackwater fever | Massive intravascular hemolysis → hemoglobinuria | Mistaking it for a prerenal process |
| Entamoeba coli cysts | 8 nuclei, the largest | Reversing it with histolytica (4 nuclei) |
| Pathogenic intestinal amoeba | E. histolytica (4 nuclei) | Thinking Entamoeba coli is pathogenic |
| Contact lenses + double-walled angular cysts | Acanthamoeba keratitis | Mistaking it for bacterial keratitis |
| Cryptosporidium | Severe watery diarrhea in AIDS, no specific therapy (nitazoxanide is approved for immunocompetent patients; ART-driven immune recovery is key in AIDS), round oocysts | Misremembering the oocysts as spindle-shaped (that is Cystoisospora belli) |
| Causative agent of kala-azar | L. donovani (involves liver, spleen, bone marrow) | Confusing it with cutaneous leishmaniasis |
| Role of thrombospondin | Endothelial receptor exploited to promote adhesion | Thinking it is "inhibited" |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Fluke without a metacercarial stage | Schistosomes (cercariae penetrate the skin directly) | Thinking all flukes have metacercariae |
| Feature common to all flukes | The first intermediate host is always a snail | Thinking schistosomes need a second intermediate host |
| Highest egg output | S. japonicum (>3000/day) | Reversing it with mansoni |
| Most severe Katayama fever | S. japonicum | Attributing it to haematobium |
| Squamous cell carcinoma of the bladder | S. haematobium (vesical venous plexus) | Mistaking it for adenocarcinoma or another schistosome |
| Associated with cholangiocarcinoma | Liver fluke (Clonorchis, raw freshwater fish) | Confusing it with the lung fluke |
| Halzoun syndrome | Adult Fasciola hepatica attached to the pharynx | Mistaking it for allergy/foreign body |
| Least likely to enter the brain | Fasciolopsis buski (stays only in the small intestine) | Choosing the lung fluke/japonicum by mistake |
| Transmitted via aquatic plants | Fasciola, Fasciolopsis buski | Confusing it with eating raw fish/crabs |
| Treatment of Fasciola | triclabendazole | Using praziquantel by mistake |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Neurocysticercosis | Ingesting pork tapeworm eggs (or egg-laden gravid proglottids, or autoinfection; not raw pork) | Thinking eating raw pork causes cerebral cysticercosis |
| Echinococcus infection | Accidental ingestion of eggs; humans are intermediate hosts | Thinking it comes from eating meat containing cysts |
| Tapeworm causing B12 deficiency | Diphyllobothrium latum | Filling in the beef/pork tapeworm |
| Does not need an intermediate host | H. nana (develops within the villi + autoinfection) | Thinking every tapeworm needs an intermediate host |
| Transmission of Dipylidium caninum | Accidental ingestion of fleas carrying cysticercoids | Overlooking the flea as intermediate host |
| Tapeworm nutrition | Absorption through the tegument (no digestive tract) | Thinking they have a gut |
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Answering strategy: First ask "did the human ingest eggs or larvae (meat)?" — when eggs are ingested, humans are mostly intermediate hosts (tissue lesions); when larvae are ingested, humans are definitive hosts (adult worms in the gut). The pork tapeworm can do both and is the most frequently tested exception.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Disseminated strongyloidiasis | Occurs mainly in the immunocompromised; eosinophils may not be elevated | Ruling out parasites because "eosinophils are not high" |
| Hosts of Angiostrongylus cantonensis | Humans are accidental hosts (definitive host = rat) | Thinking humans are definitive hosts |
| Cause of eosinophilic meningitis | Angiostrongylus cantonensis | Forgetting that "raw vegetables can also transmit it" |
| Diagnosis of trichinellosis | Muscle biopsy (stool examination is useless) | Looking for eggs in stool |
| Manifestations of onchocerciasis | River blindness + subcutaneous nodules; no pulmonary nodules | Counting pulmonary nodules in |
| Capillaria philippinensis | Eating raw fish containing larvae; intestinal autoinfection | Mistaking it for "fish contaminated with eggs" |
| Diagnosis of pinworm | Early-morning tape test for perianal eggs | Using routine stool microscopy (low yield) |
| Common feature of hookworm and Ascaris | Larvae of both migrate through the lungs; hookworm penetrates the skin, Ascaris is acquired by ingesting eggs | Swapping their routes of infection |
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Answering strategy: "Eosinophilic meningitis" → think Angiostrongylus cantonensis; "muscle cysts + eyelid edema" → think Trichinella; "immunocompromised + multiorgan involvement + gram-negative sepsis" → think disseminated Strongyloides.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Vector of Chagas disease | Triatomine bug (fecal contamination) | Filling in the tsetse fly |
| Vector of African sleeping sickness | Tsetse fly | Filling in the sand fly/triatomine bug |
| Black fever (kala-azar) | Sand fly | Confusing it with blackwater fever (a complication of falciparum malaria) or the Black Death (rat flea) |
| Vector + stage for scrub typhus | Larval stage of the trombiculid mite (chigger) | Mistaking it for adult/nymphal mites |
| Vector of babesiosis | Hard tick Ixodes (also transmits Lyme disease/anaplasmosis) | Filling in mosquito/flea |
| Vector of river blindness | Blackfly (Simulium) | Filling in mosquito |
| Vector of relapsing fever | Soft ticks or body lice | Missing that the pathogen is a spirochete |
| Vector of malaria | Anopheles mosquito | Filling in Aedes/Culex |
| Vector of dengue/yellow fever | Aedes mosquito (daytime biter) | Filling in Anopheles |
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Answering strategy: First sort vectors into three groups — "flying insects / ticks and mites / lice and fleas" — and then match the pathogens. The traps most often designed are name confusions between tsetse fly ↔ triatomine bug and black fever (kala-azar) ↔ blackwater fever ↔ Black Death; tell them apart word by word.
- Blood changes in SLE are always "decreases": hemolytic anemia, leukopenia, thrombocytopenia. A question stating "increased WBC/platelets" or "leukocytosis is a diagnostic criterion" → wrong.
- anti-dsDNA: highly specific and most closely related to disease activity and lupus nephritis (useful for monitoring); anti-Sm is the most specific but does not change with disease activity; ANA is a sensitive screening tool, not a specific diagnostic test.
- In active SLE, C3/C4 fall (complement is consumed); they do not rise.
- JIA oligoarthritis = ≤4 joints in the first 6 months (do not misremember it as 6 weeks); oligoarthritis (ANA+) is linked to chronic "asymptomatic" anterior uveitis and needs regular slit-lamp follow-up; by contrast, enthesitis-related JIA (HLA-B27) causes acute "symptomatic" anterior uveitis — do not mix them up.
- Systemic JIA (Still disease) = daily spiking fever + salmon-colored rash; can be complicated by MAS; treated with anti-IL-6 (tocilizumab)/anti-IL-1.
- Omalizumab (anti-IgE) is never used in JIA; it is a classic distractor.
- Rheumatic fever = large-joint, migratory arthritis; the antecedent is GAS pharyngitis (ASO↑); in carditis, mitral valve involvement is the most common and the most serious.
Common traps
- Mistaking "most common" for "most specific": ANA is the most sensitive (screening) ≠ most specific; anti-Sm is the most specific ≠ best for tracking disease activity (that is anti-dsDNA).
- Getting the direction backwards: in SLE, blood cells and complement fall; they do not rise.
- Swapping 6 weeks (the overall arthritis-duration threshold for JIA) and 6 months (the window for counting joints for subtyping).
- Choosing any biologic that appears without checking whether the mechanism fits (anti-IgE and anti-IgE receptor agents are unrelated to JIA).
- Mistaking the sequela of skin GAS infection (glomerulonephritis) for the antecedent of rheumatic fever (rheumatic fever follows pharyngitis).
- Rash appearing as the fever breaks + Nagayama spots = HHV-6 roseola; Koplik spots = measles.
- Ampicillin in EBV IM → rash (not an allergy); EBV infects B cells (not T cells).
- About 90% of congenital CMV is asymptomatic — a question saying "90% are symptomatic" is an incorrect statement.
- Desquamation in Kawasaki disease occurs in the convalescent phase at 2–3 weeks; treatment is IVIG + Aspirin to prevent coronary aneurysms.
- Rotavirus vaccine is oral; BCG is intradermal; live attenuated vaccines are contraindicated in pregnancy/immunodeficiency; two injectable live vaccines not given on the same day require an interval of ≥4 weeks.
- Hand-foot-and-mouth ulcers are on the posterior pharyngeal wall; HSV gingivostomatitis affects the anterior oral cavity.
- Most common complication/cause of death in measles = pneumonia; late fatal complication = SSPE; the real threat of rubella is congenital rubella syndrome after infection in pregnancy.
Common traps
- Mistaking "most common" for "most specific": the most specific sign of measles is Koplik spots, not fever.
- Overlooking the route of administration: BCG is intradermal, not subcutaneous/intramuscular.
- Be alert to absolute words such as "90%" or "all," especially the direction of the symptomatic/asymptomatic ratio in congenital CMV.
- The at-risk groups for parvovirus B19 (fetal hydrops in pregnancy, aplastic crisis in patients with hemolytic anemia) are easily overlooked.
- Healthy people are often ANA-positive (about 20–30% at 1:40, about 5% at 1:160); its specificity is not 90% (a numerical trap).
- Anti-dsDNA and anti-Sm are the most specific for SLE; ANA is only for screening.
- Graves = stimulating TRAb, causing both goiter + exophthalmos; Hashimoto = anti-TPO, hypothyroidism.
- In Behçet disease, panuveitis is the most common form of uveitis (about 60%; hypopyon anterior uveitis is the classic sign); the three cardinal features are oral/genital/ocular.
- Anti-SSA (Ro) crosses the placenta → neonatal lupus / congenital heart block.
- Anti-histone antibodies → drug-induced lupus (hydralazine, procainamide, INH, etc.); it usually resolves after stopping the drug, and renal/CNS involvement is rare.
Common traps
- Using a highly sensitive screening test (ANA) as a highly specific diagnostic tool.
- Mistaking the "most severe" form in Behçet disease (posterior uveitis) for the "most common."
- Confusing Graves (stimulating antibodies, hyperthyroidism, exophthalmos) with Hashimoto (destruction, hypothyroidism).
- To distinguish Graves from Hashimoto, look at the whole picture: exophthalmos + hyperthyroidism + TRAb → Graves; lymphoplasmacytic thyroid infiltration + germinal centers + Hürthle cells + hypothyroidism + anti-TPO → Hashimoto. Any single item alone can be misleading.
- Three major exceptions: Parvo = ssDNA; Poxvirus = cytoplasmic replication; HBV = reverse transcription.
- Nonenveloped DNA viruses = Parvo, Papilloma, Polyoma, Adeno ("PPPA are naked").
- HPV E6→p53, E7→pRb; SV40 large T → p53 + pRb, small t → PP2A.
- Adenovirus: nonenveloped, infects epithelium, intranuclear inclusions.
- HHV-8 → Kaposi sarcoma; JC → PML (infects oligodendrocytes).
- Among the five hepatitis viruses, only hepatitis B is a DNA virus, and it uses reverse transcription.
Common traps
- Misremembering HPV E6/E7 as adenovirus proteins (adenovirus uses E1A/E1B).
- Reversing the targets of small t and large T (small t → PP2A; large T → p53/pRb).
- Writing parvovirus as double-stranded DNA (it is single-stranded).
- Thinking all DNA viruses replicate in the nucleus, forgetting that poxviruses replicate in the cytoplasm.
- Forgetting that HBV, although a DNA virus, can be treated with reverse transcriptase inhibitors.
- HDV replication requires the HBsAg envelope supplied by HBV (a defective virus); HBV vaccination also protects against HDV.
- HCV is the most likely to become chronic (~80%); HEV has a high fatality rate in pregnant women; HAV/HEV spread fecal-orally and usually do not become chronic (HEV can become chronic in immunocompromised hosts such as transplant recipients).
- Enfuvirtide = peptide fusion inhibitor (binds gp41, given by subcutaneous injection), not a nucleoside analog.
- Oseltamivir inhibits NA (neuraminidase), preventing release of new virions; HA mediates attachment and entry.
- The nasal-spray live attenuated vaccine (LAIV) is for healthy people aged 2–49; it is not for those ≥50 years/pregnant women/the immunocompromised/children under 2.
- Rabies → Negri bodies (cytoplasmic eosinophilic inclusions, hippocampus/cerebellum).
- Rubella is diagnosed by serology/PCR, not by routine throat swab culture.
- The main cause of death in EV71 infection is brainstem encephalitis, not intestinal electrolyte loss, and it does not establish latent infection; ADE belongs to dengue, not EV71.
Common traps
- Assuming an "enterovirus" kills via the gut: the lethal mechanism of EV71 lies in the CNS.
- Confusing fusion inhibitors (peptide, enfuvirtide) with nucleoside RT inhibitors (lamivudine).
- Swapping the functions of influenza HA and NA: HA = attachment/entry, NA = release.
- Giving nasal-spray LAIV to adults ≥50 (wrong; it is not for anyone over 49 — use an inactivated vaccine instead).
- Thinking HDV can infect on its own (wrong; HBV is required).
- Reversing "antigenic shift (reassortment → pandemic)" and "drift (point mutations → seasonal epidemics)."
| Exam point | Correct answer | Common trap |
|---|---|---|
| Causative organism of gas gangrene | C. perfringens (α-toxin = lecithinase) | Answering S. pyogenes (that is necrotizing fasciitis) |
| Causative organism of necrotizing fasciitis | S. pyogenes | Swapping it with gas gangrene |
| C. difficile: precipitants vs treatment | Precipitants = clind/ceph/FQ; treatment = oral vancomycin / fidaxomicin | Treating clindamycin/ampicillin as the treatment |
| Why anaerobes cannot tolerate oxygen | They lack catalase / SOD | Answering "lack of ribosomes" |
| Anaerobes and aminoglycosides | Ineffective (they lack the oxygen-dependent active transport needed for uptake) | Thinking anaerobes are susceptible |
| Antigens used in IGRA | ESAT-6, CFP-10 (RD1) | Thinking BCG interferes with the result |
| Limitation of IGRA/TST | Cannot distinguish latent vs active infection | Thinking it can confirm active TB |
| Drawback of DNA testing (NAAT) | Cannot fully determine drug resistance | Treating it as an advantage |
| Type of immunity against TB | Th1 (IFN-γ, TNF-α) | Answering Th2 |
| Drug of choice for tick-borne intracellular bacteria | doxycycline | Choosing penicillin / a macrolide by mistake |
| Ehrlichia vs Anaplasma | Ehrlichia infects monocytes; Anaplasma infects neutrophils | Swapping the two |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Class B β-lactamase | Metalloenzyme (Zn²⁺); can hydrolyze carbapenems | Writing "cannot hydrolyze carbapenems" |
| MRSA resistance mechanism | Altered target: PBP2a | Thinking it is β-lactamase → adding an inhibitor will work |
| VRE resistance mechanism | D-Ala-D-Lac; dalbavancin/vanco are both ineffective | Thinking dalbavancin can treat VRE |
| FQ resistance target | GyrA / ParC mutations | Answering ribosomes |
| Target of sulfonamides | Folate synthesis (unrelated to PBPs) | Forcing PBP mutations onto sulfonamides |
| Site of action of linezolid | 50S ribosome (blocks the initiation complex) | Answering cell wall |
| β-lactamase inhibitors on their own | Almost no bactericidal activity; they only protect the β-lactam (exception: sulbactam binds PBPs and is active on its own against Acinetobacter) | Thinking they kill bacteria themselves / act on the cell wall |
| Resistance mechanisms of G(-) bacteria | Do not rely on endospores (endospores = a G+ feature) | Choosing "forms endospores to shut down metabolism" by mistake |
| First-line TB therapy | HRZE | Leaving out ethambutol |
| Ethambutol toxicity | Optic neuritis / red-green color blindness | Confusing it with INH peripheral neuropathy |
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- Conjugation transfers resistance genes via plasmids horizontally; plasmids are circular dsDNA, replicate independently, and occur in both G(+) and G(−) bacteria.
- Three modes of horizontal transfer: transformation = uptake of free DNA; transduction = carried by a bacteriophage; conjugation = plasmid transfer through a pilus.
- Nonsense mutation = creates a stop codon → truncated protein; silent does not change the amino acid; missense changes the amino acid.
- The lac operon is under catabolite repression (glucose/cAMP-CAP) + lactose induction (dual regulation), unrelated to quorum sensing.
- The A subunit of diphtheria toxin ADP-ribosylates and inactivates EF-2, blocking protein synthesis.
- M. tuberculosis evades immunity by preventing phagosome-lysosome fusion; cell-wall mycolic acid → acid-fast positive; high GC content; membrane contains no sterols.
- Prions contain no nucleic acid → UV is the least effective; highly resistant to routine disinfection.
Common traps
- Describing plasmids as "linear RNA," "present only in G(−)," or "unable to replicate independently" — all wrong.
- Treating lac operon regulation as quorum sensing (density sensing).
- Thinking diphtheria toxin acts on the ribosome itself or on EF-3 (EF-3 is not a human factor).
- Remembering the GC content of mycobacteria as "low" (it is actually high); attributing acid-fastness to sterols (the membrane contains no sterols; it is due to mycolic acid).
- Thinking UV or standard autoclaving can eliminate prion infectivity (ineffective, because there is no nucleic acid).
- Mixing up silent and missense: silent does not change the amino acid; only missense changes it.
- O antigen = outer polysaccharide chain of LPS (serotyping); H antigen = flagellar flagellin; K antigen = capsule.
- Lipid A = the active core of endotoxin (fever, hypotension, DIC).
- Porins are located in the outer membrane, transporting small hydrophilic molecules and some antibiotics; they are not in the inner membrane and are distinct from endotoxin/fimbriae.
- Basic features of G− bacteria: thin peptidoglycan, stain red, binary fission, no spores.
- Salmonella Typhi spreads fecal-orally, person to person, not directly from poultry or livestock; delayed diarrhea after eggs/salad, without bloody stool → non-typhoidal Salmonella.
- Kanagawa test (+) = Vibrio parahaemolyticus producing TDH, indicating virulence.
- Legionella is cleared by cell-mediated immunity (macrophages), not by anticapsular antibodies; it is a facultative intracellular bacterium.
- Plague is transmitted by "regurgitation" from infected rat fleas; a statement saying "vomiting" is wrong.
Common traps
- Thinking G− bacteria have "no peptidoglycan" — it is actually a thin layer; they stain red, not purple.
- Mistaking O antigen for porins/flagellin/peptidoglycan; treating H antigen as the capsule.
- Placing porins in the inner membrane, or equating their function with endotoxin.
- Treating typhoid as "transmitted directly from poultry/livestock" (it is person to person, fecal-oral).
- Remembering the defense against Legionella as "anticapsular antibodies" (it should be cell-mediated immunity).
- Remembering the basis of the Kanagawa test as capsular polysaccharide / LT enterotoxin / LPS (it should be TDH).
- Writing rat-flea transmission as "vomiting" (the correct term is regurgitation).
| Exam point | Correct answer | Common trap |
|---|---|---|
| Host of Corynebacterium diphtheriae | Humans are the only host | Thinking there is an animal host |
| Location of the diphtheria toxin gene | Bacteriophage β | Thinking it is on a plasmid |
| Can catalase distinguish S. aureus from S. epidermidis? | No (both are +) | Using catalase to tell them apart → wrong |
| Coagulase vs staphylokinase | coagulase forms clots; staphylokinase dissolves clots to aid spread | Thinking staphylokinase forms clots |
| Clinical forms of anthrax | Three forms: cutaneous/inhalational/gastrointestinal (CDC now also lists injection anthrax, seen in people who inject drugs) | Also selecting a "myonecrotic form" in a multiple-answer item |
| Organism producing edema factor | B. anthracis | Attributing it to S. aureus |
| Organism producing STa/STb | ETEC (E. coli) | Attributing it to S. pyogenes |
| Pneumococcal vaccine components | Capsular polysaccharide (± carrier protein conjugate) | Thinking "surface proteins" |
| Listeria growth temperature | Still grows at 4°C refrigeration; motile at 25°C | Thinking refrigeration inhibits it |
| Intracellular nature of Listeria | Facultative intracellular (not obligate) | Thinking it is obligate intracellular |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Culturing Malassezia | Requires added olive oil (lipid-dependent) | Overlooking its lipid requirement |
| Morphology of C. glabrata | Does not form hyphae (yeast only) | Thinking it forms pseudohyphae |
| Tissue form of Coccidioides | Spherule (containing endospores) | Answering "yeast" |
| Mechanism of polyenes | Bind ergosterol directly | Thinking they "inhibit its synthesis" |
| Epidermophyton spores | No microconidia (macroconidia only) | Reversing it with Trichophyton |
| Basic hyphal forms | Septate hyphae + coenocytic hyphae | Treating germ tubes/pseudohyphae as basic forms |
| C. gattii: host and symptoms | Immunocompetent hosts; severe neurologic symptoms | Thinking symptoms are mild |
| Cryptococcus culture feature | Brown colonies on birdseed agar | Not knowing the phenol oxidase mechanism |
| Mucor vs Aspergillus | Nonseptate, right-angle vs septate, acute-angle | Reversing the branching angles |
| Mechanism of fluconazole | Inhibits ergosterol synthesis | Confusing it with the polyene mechanism |
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- CD4<200 → PJP; <50 → CMV/MAC: link the number straight to the pathogen — the most-tested reflex in this section.
- Hodgkin lymphoma is not AIDS-defining; NHL (including Burkitt and primary CNS lymphoma), Kaposi sarcoma, and invasive cervical cancer are.
- Positive screening test (EIA) → always confirm first (traditionally Western blot; now an HIV-1/2 antibody differentiation assay ± NAT); do not report or treat directly.
- HIV-positive pregnant women on cART with undetectable viral load → mother-to-child transmission <1%; untreated 25–30%.
- Treat TB first, add ART afterwards; CD4<50 → start early, within 2 weeks; CD4 ≥50 (e.g., 70) → start within 2–8 weeks, to avoid IRIS (WHO 2021: within 2 weeks regardless of CD4); TB meningitis is the exception: delay to 4–8 weeks.
- Patients on PIs must not take rifampin concomitantly (CYP3A4 induction); switch to rifabutin or 9 months of INH.
- MSM + oral candidiasis + non-typhoidal Salmonella bacteremia + weight loss → think HIV/AIDS first.
Common traps
- Treating "most common" as "most specific"; treating a screening tool as the diagnostic gold standard (EIA ≠ confirmation).
- Seeing HIV + TB and immediately co-starting ART, ignoring IRIS and the timing of initiation.
- Overlooking the rifampin–PI interaction and choosing rifampin by mistake.
- Wrongly listing Hodgkin lymphoma as AIDS-defining.
- Mechanistic chain: endothelial injury → sterile vegetation (NBTE) → colonization during bacteremia; vegetations have no blood supply, hence 4–6 weeks of IV antibiotics.
- Organism matching: after dental work = viridans strep; IVDU tricuspid = S. aureus; early prosthetic valve = S. epidermidis; S. gallolyticus (bovis) → look for colorectal cancer; culture-negative → think HACEK / Q fever / Bartonella.
- Duke has only two major criteria (modified Duke; the 2023 Duke-ISCVID adds intraoperative findings): typical organism on blood culture + echocardiography/new regurgitation. Fever, Janeway, and Osler are all minor!
- Osler painful (immunologic), Janeway painless (embolic); for imaging, TTE first, TEE more sensitive (TEE is first choice for prosthetic valves).
- Three major surgical indications: heart failure (most important), uncontrolled infection (persistent bacteremia ≥7–10 days/abscess), prevention of embolism (large vegetation + embolism). Fever persisting after just 3 days of treatment is not by itself an indication for surgery.
- Antibiotic prophylaxis only for the highest-risk patients (prosthetic valve, prior IE, cyanotic congenital heart disease) + dental procedures that breach the mucosa; after complete repair it can stop after 6 months; MVP/ASD/GI or GU procedures do not get routine prophylaxis.
- Common traps: confusing the "most common organism" with the "most specific sign"; treating immunologic signs as embolic; treating early fever as a surgical emergency; treating minor as major criteria.
- Extension: the most common organisms in prosthetic joint infection (PJI) are staphylococci (S. epidermidis + S. aureus together about half), and the key virulence factor is biofilm, so the prosthesis often has to be removed.
- Immune strength determines the pathology: strong Th1 → granulomas, few bacilli (tuberculoid leprosy); weak → foamy macrophages, many bacilli (lepromatous leprosy, Virchow cells). Do not mistake foamy, bacilli-laden cells for the tuberculoid type.
- IGRA: stimulation with ESAT-6/CFP-10 antigens → sensitized T cells release IFN-γ; not affected by BCG, single blood draw; but neither IGRA nor TST can distinguish latent from active TB.
- TB pathology: caseating granuloma + Langhans giant cells, a type IV hypersensitivity; primary infection forms the Ghon complex, reactivation occurs at the lung apex.
- Syphilis matching: primary chancre; secondary palmoplantar rash + condylomata lata; tertiary gumma/aortitis/tabes dorsalis; congenital Hutchinson triad; screen with RPR/VDRL, confirm with TPHA.
- CMV mononucleosis-like illness is heterophile antibody negative; true EBV mono is positive, and giving amoxicillin causes a rash.
- Necrotizing enteritis/gas gangrene = Clostridium (C. perfringens), not streptococci → eliminate any option pairing streptococci with necrotizing enteritis.
- Common traps: treating a screening serologic test (VDRL) as confirmatory; confusing condylomata lata (syphilis) with condylomata acuminata (HPV); assigning minor immune manifestations to the wrong stage.
- Sepsis-3: sepsis = infection + organ dysfunction; septic shock = vasopressors needed to keep MAP≥65 + lactate>2.
- The main players in the cytokine storm are TNF-α / IL-1 / IL-6; IL-5 belongs to allergy/eosinophils and is not closely linked to sepsis.
- 1-hour bundle: lactate, blood cultures (before antibiotics), antibiotics within 1 h, crystalloid 30 mL/kg, vasopressors.
- First-choice vasopressor: norepinephrine; bicarbonate is not a primary goal.
- Community-acquired pneumonia with G(+) diplococci = S. pneumoniae.
- The most common pathogens in SBP are G(-) enteric bacteria (not G(+)); diagnosed by ascitic PMN≥250.
- The positive yield of biopsy culture in cellulitis is only about 20–30%; diagnosis is mainly clinical.
Common traps
- Writing the first step in sepsis treatment as "give sodium bicarbonate" rather than fluids + antibiotics.
- Saying SBP pathogens are mainly G(+).
- Exaggerating the positive yield of biopsy culture in cellulitis as 70%.
- Treating IL-5 as a major sepsis cytokine.
- Southeast Asia + diabetes + pulmonary infiltrates + splenic abscess + safety-pin G(-) bacilli → melioidosis (B. pseudomallei); intensive phase ceftazidime, eradication phase TMP-SMX.
- Pneumonia after a cruise + diarrhea + altered mental status + hyponatremia → Legionella (Legionnaires' disease).
- Leptospirosis = transmitted by contact (animal urine/contaminated water), not mosquito-borne; fever, myalgia, conjunctival suffusion.
- Traveler's diarrhea: bismuth is contraindicated in children (Reye syndrome); in Southeast Asia the first choice is azithromycin (usable in pregnancy).
- Pregnant women with suspected influenza should receive oseltamivir without delay.
- Most common cause of the common cold = rhinovirus.
- After treatment of secondary syphilis, the J-H reaction has its highest incidence (about 50–90%); it is self-limited and the drug need not be stopped.
Common traps
- Mistaking leptospirosis for a mosquito-borne infection.
- Choosing ciprofloxacin (Campylobacter resistance) rather than azithromycin for traveler's diarrhea in Southeast Asia.
- Thinking pregnant women cannot take anti-influenza drugs.
- Remembering the incidence of the J-H reaction as <15%, or thinking the drug must be stopped.
- Choosing an antibiotic other than ceftazidime/meropenem for the intensive phase of melioidosis.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Definition of FUO | > 38.3°C, ≥ 3 weeks, no cause found | Treating acute fever as FUO |
| EBV triad | Fever + pharyngitis + lymphadenopathy | Missing the warning sign of splenomegaly |
| EBV given ampicillin | Triggers a widespread rash | Mistaking it for a drug allergy |
| EBV incubation period | 30–50 days | Misremembering it as 5–10 days |
| Ludwig's angina | Secure the airway + IV antibiotics + drainage | Only observing, without protecting the airway |
| Rhinocerebral fungal infection (DKA) | Black necrosis + orbital invasion; Mucor nonseptate, right-angle / Aspergillus septate, acute-angle | Reversing the hyphal features |
| Imaging for osteomyelitis | X-ray first → MRI (most sensitive) | Thinking early X-rays are always abnormal |
| Confirming osteomyelitis | Bone biopsy culture | Treating a leukocyte scintigraphy scan as the mandatory first choice |
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Closing reminder: when you see "least appropriate/except," answer in reverse; distinguish the "most common pathogen" from the "first test to do" — the two are often conflated.
| Exam point | Correct answer | Common trap |
|---|---|---|
| CSF differentiation | Low glucose → bacterial/TB/fungal; normal glucose → viral | Looking only at protein (elevated in every type) |
| Listeria morphology | Gram-positive rod | Mistaking it for a coccus/gram-negative |
| Listeria treatment | ampicillin (cephalosporins ineffective) | Choosing vanco/cipro |
| Empiric therapy in high-risk groups | Standard regimen + ampicillin | Missing Listeria coverage |
| Adjunct in bacterial meningitis | Dexamethasone before the first antibiotic dose | Forgetting the steroid |
| Cryptococcal treatment course | > 12 weeks in three phases (induction + consolidation + maintenance) | Misremembering it as 4 weeks |
| Diagnosis of TB meningitis | Culture is the gold standard; PCR is supportive | Thinking PCR has replaced culture |
| Gram stain positivity rate | About 60–90% (S. pneumoniae ~80%) | Misremembering it as only 20% |
| Brudzinski | Passive neck flexion → hip and knee flexion | Confusing it with Kernig |
| HSV encephalitis | Give acyclovir as soon as it is suspected; PCR remains positive for several days into treatment | Waiting for results before treating / wrongly believing PCR turns negative within 3 days |
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| Exam point | Key point to remember |
|---|---|
| Gastric protectant that does not increase VAP risk | Sucralfate (does not raise gastric pH) |
| First choice for febrile neutropenia | Antipseudomonal monotherapy: cefepime / pip-tazo / carbapenem |
| Timing of HIV PEP after a needlestick | The sooner the better: <2 hours is optimal, 72 hours is the upper limit → go to the ED that same night |
| Antibiotics that need no renal dose adjustment | Metronidazole, ceftriaxone, azithromycin, linezolid |
| When alcohol hand rub does not work | Visibly soiled hands, after caring for C. difficile → use soap and running water |
| Antibiotics that chelate metals | Tetracycline, fluoroquinolone → space them apart from calcium/iron/antacids |
| First choice for MRSA | Vancomycin (do not use daptomycin for pneumonia) |
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Common traps
- Treating "purulent secretions" as proof of bacterial infection and overprescribing (viral URIs can be purulent too).
- Seeing renal failure and "reducing every antibiotic," forgetting the metronidazole / ceftriaxone exceptions.
- Starting vancomycin first-line in febrile neutropenia (an antipseudomonal β-lactam should come first; add vanco only for specific indications).
- Thinking alcohol hand rub works for everything, overlooking that C. difficile spores and visible soiling require soap and running water.
- Using daptomycin for MRSA pneumonia (it is inactivated by alveolar surfactant and is ineffective).
| Exam point | Key point to remember |
|---|---|
| Upper vs lower UTI | Fever = upper urinary tract/pyelonephritis; simple cystitis has no fever |
| Bladder after cervical spinal cord injury | Spastic (UMN), not flaccid |
| Lesion level for a flaccid bladder | S2-S4 or lower (LMN) |
| First-choice imaging for recurrent UTI in infants | US first, then VCUG to exclude VUR |
| Surgery for UPJ obstruction | Pyeloplasty (not reimplantation) |
| Urinalysis in IC | Normal / no pyuria, sterile (distinguishes it from infection) |
| Main cause of unresolved bacteriuria | Bacterial resistance |
| Most common cause of hematuria in children | Glomerulonephritis (APSGN, IgA; but UTI is the most common cause of gross hematuria overall) |
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Common traps
- Misjudging a cervical spinal cord injury as causing a flaccid bladder (it is actually UMN spastic).
- Assuming an anatomic abnormality whenever a girl has recurrent UTIs, when in fact most have no anatomic abnormality, and recurrences are often linked to holding urine, low fluid intake, constipation and other behavioral factors.
- Treating the bladder pain of interstitial cystitis as infection and giving antibiotics (sterile urine without pyuria is the key).
- Ordering CT/IVP straight away for recurrent UTI in infants instead of US + VCUG first.
- Choosing ureteral reimplantation for UPJ obstruction by mistake (that is for VUR).
| Exam point | Correct answer | Common trap |
|---|---|---|
| Absolute contraindications | Active infection (open pulmonary TB), active malignancy | Treating age >70, stable HIV, or cured cancer as absolute contraindications |
| Not an immunologic risk factor | Eosinophilia | Thinking it is a sensitizing factor |
| Three major sensitizing events | Blood transfusion, pregnancy, previous transplant → PRA↑ | Leaving out a history of pregnancy |
| Positive cross-match | Transplant contraindicated (hyperacute rejection) | Thinking induction therapy can overcome it |
| ABO incompatibility | Requires desensitization (not an absolute contraindication) | Treating it as an absolute contraindication |
| Native nephrectomy required | Polycystic kidneys (symptomatic), recurrent pyelonephritis, renal cancer | Including "controllable hypertension" |
| Native nephrectomy not required | Hypertension controllable with medication | Thinking all native kidneys must be removed |
| Optimal timing | Preemptive transplant before dialysis | Thinking a period of dialysis is required first |
| SLE after transplant | Recurs in a minority | Remembering it as "never recurs" |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Hypersensitivity type of asthma | Type I (IgE) | Answering type II |
| Mechanism of anaphylaxis | Type I; mast cells release vasoactive mediators | Thinking complement acts directly |
| Drug of choice for anaphylaxis | Epinephrine | Choosing antihistamines/steroids as first line |
| Vascular lesion in SLE | fibrinoid necrosis | Overlooking this classic finding |
| Libman-Sacks | SLE; verrucous vegetations on both surfaces of the valve | Mistaking it for infective endocarditis |
| Deposits in lupus nephritis | Immune complexes | Mistaking them for anti-GBM |
| wire-loop | Diffuse proliferative (class IV) | Assigning it to membranous (class V) |
| Complement in DDD | C3↓, factor B↓, C1 normal | Thinking C1 is also ↓ |
| Action of C3NeF | Stabilizes C3 convertase → persistent alternative-pathway activation | Remembering it as inhibiting complement |
| ITP mechanism / marrow | Anti-GPIIb/IIIa; megakaryocytes↑ | Thinking megakaryocytes are ↓ |
| Least likely finding in IgG4-RD | Neutrophilic infiltration | Missing the reverse "least likely" wording |
| Thymus in MG | Follicular hyperplasia most common; 15% thymoma | Thinking they are all thymomas |
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| Exam point | Key point to remember |
|---|---|
| Cause of erythrasma | Corynebacterium minutissimum (a bacterium), coral-red fluorescence, coproporphyrin III |
| Fluorescence: tinea versicolor vs erythrasma | Tinea versicolor yellow-green/golden; erythrasma coral red |
| Confirming scabies | Microscopy showing any one of mites/eggs/feces is sufficient |
| Scabies: drug of choice / contraindicated drug | First choice permethrin; lindane is neurotoxic, contraindicated in pregnant women and children |
| Herpes zoster | VZV reactivation, unilateral dermatomal vesicles, antivirals within 72h |
| Cause of warts | HPV (not S. aureus) |
| Most common fungus in immunocompromised hosts | Candida |
| Priority test for white/hypopigmented patches in children | KOH microscopy |
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Common traps
- Mistaking erythrasma for a fungal infection (it is actually bacterial and KOH negative; first-line treatment is an antibiotic such as erythromycin/clindamycin and no steroid is needed, though topical azoles also work thanks to their activity against gram-positive bacteria).
- Diagnosing scabies when itching starts the day after contact (a first infestation has an incubation period of 4–6 weeks).
- Thinking lindane is safe for pregnant women and children (it is neurotoxic and contraindicated).
- Confusing herpes zoster with herpes simplex — the key is whether it follows a unilateral dermatome and does not cross the midline.
- Thinking warts are a bacterial (S. aureus) infection, when they are actually caused by HPV.
| Exam point | Key point to remember |
|---|---|
| Most specific antibody in Sjögren | anti-SSB/La (SSA/Ro is also seen in SLE) |
| Hallmark antibody of DILE | anti-histone(+); dsDNA(−), normal complement, nephritis rare |
| Common drugs causing DILE | Hydralazine, procainamide, isoniazid |
| Rate of progression from DLE → SLE | About 5% |
| SLE cutaneous ACR criteria | Malar rash, photosensitivity, discoid rash, oral ulcers; urticaria does not count |
| Heliotrope sign | A feature of dermatomyositis, not scleroderma |
| Treatment of skin sclerosis in scleroderma | UVA1 phototherapy (mainly for localized scleroderma/morphea; for systemic sclerosis skin, MTX or MMF first) |
| Most common sign of scleroderma | Raynaud phenomenon (>90%) |
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Common traps
- Treating anti-SSA/Ro as the "most specific" antibody for Sjögren (anti-SSB/La is actually the most specific; SSA is also seen in SLE).
- Thinking complement falls and severe nephritis develops in DILE (in fact complement is normal, nephritis is rare, and it resolves once the drug is stopped).
- Attributing heliotrope sign / Gottron papules to scleroderma (they belong to dermatomyositis).
- Including urticaria among the SLE cutaneous diagnostic criteria.
- Giving topical steroids for digital ulcers in scleroderma (vasodilators should be given).
- DIF is the key to separating the two major groups: intercellular, net-like IgG = pemphigus; linear IgG/C3 along the basement membrane = pemphigoid/EBA. When you see "linear deposition at the DEJ," do not choose pemphigus.
- Positive Nikolsky sign = intraepidermal split (pemphigus); negative in pemphigoid, whose bullae are tense and do not rupture easily.
- PV: oral mucosa involved first + suprabasal split + tombstone arrangement; PF: the most superficial split, no mucosal involvement.
- BP and EBA cannot be distinguished on H&E; rely on salt-split skin: BP antibodies on the roof, EBA on the floor.
- Gottron sign is the most diagnostic feature of dermatomyositis; heliotrope is highly suggestive but not pathognomonic.
Common traps
- Treating heliotrope rash as pathognomonic — the pathognomonic one is Gottron.
- Misremembering that "dermatomyositis does not itch" — in fact it often itches markedly.
- Describing pemphigus DIF as "deposited at the DEJ" — that is pemphigoid/EBA; pemphigus is intercellular.
- Remembering the "most superficial split" as PV — the most superficial is PF (subcorneal).
- Low CSF glucose = bacterial or TB/fungal; normal glucose + lymphocytes = viral. First calculate the CSF/blood glucose ratio (normal ≥0.6).
- Suspected bacterial meningitis: draw blood cultures, then give antibiotics immediately — never wait for the Gram stain/culture; if CT is needed, give the drugs first, then go to CT.
- Dexamethasone must be given before/with the first dose of antibiotics. Adult empiric therapy is ceftriaxone + vancomycin; for age >50/immunocompromised add ampicillin (Listeria).
- HSV encephalitis = hemorrhagic necrosis of the anterior temporal lobe; give acyclovir as soon as it is suspected.
- Neurosyphilis = serum treponemal test(+) + CSF VDRL(+); treat with IV penicillin.
- Add steroids for TB meningitis (not contraindicated).
- vCJD affects young people, is linked to beef, and presents with psychiatric symptoms first; prions have no nucleic acid and resist high-temperature disinfection.
- Sorting periodic EEG patterns: HSV encephalitis = PLED (temporal, unilateral); CJD = PSWC (generalized ~1 Hz triphasic waves) — do not mix them up.
Common traps
- Delaying antibiotics to "wait for test results" — wrong; give them immediately.
- Remembering the Cushing reflex as "tachycardia" — it should be bradycardia.
- Thinking the full triad is required to diagnose meningitis — fewer than 50% have all three.
- Confusing the two "periodic" EEG patterns: PLED (periodic lateralized epileptiform discharges, temporal) = HSV encephalitis; PSWC (generalized periodic sharp-wave complexes, ~1 Hz) = CJD — neither is a feature of neurosyphilis.
- Believing steroids are "contraindicated" in TB meningitis — on the contrary, they should be used.
- NMOSD antibody = anti-AQP4; it attacks astrocytes rather than the myelin itself; spinal cord lesions span ≥3 segments (LETM). MOGAD is anti-MOG.
- MS incidence rises with latitude (vitamin D hypothesis); MS and NMOSD both predominantly affect women (NMOSD F:M about 9:1). "More men than women" and "lower at higher latitudes" are both wrong options.
- MS CSF: protein <100 mg/dL + oligoclonal bands positive; saying protein >100 is wrong.
- GBS: postinfectious autoimmunity, ascending symmetric weakness + areflexia, CSF albuminocytologic dissociation; treatment is IVIG/plasma exchange; steroids are ineffective.
- Hyponatremia correction rate ≤ 8–10 mEq/L/24h; too fast → CPM, with symptoms appearing after a delay of 1–5 days.
- B12 deficiency SCD: dorsal columns + lateral columns + peripheral nerves; "knee reflex↑, ankle reflex↓, pain and temperature sensation normal" is the key to recognizing it.
Common traps
- Treating GBS as an "infectious" disease (it is autoimmunity arising "after" infection, not the infection itself).
- Prescribing steroids for GBS (ineffective); steroids are used for acute MS relapses and NMOSD.
- Counting thymoma as an NMOSD comorbidity (it belongs with MG).
- Reversing the sex ratio of NMOSD/MS, or reversing the MS latitude trend.
- Thinking CPM appears "at the moment of correction" or "2 weeks later"; the correct answer is 1–5 days after correction.
- Calcium oxalate stones: "do not restrict dietary calcium": calcium restriction → free oxalate in the gut↑ → urinary oxalate↑ → risk actually rises. Excess vitamin C also increases oxalate.
- Only uric acid + cystine stones can be dissolved by alkalinizing the urine; calcium oxalate does not need pH adjustment.
- Uric acid stones are radiolucent (invisible on X-ray), with acidic urine; treatment = urinary alkalinization + allopurinol; avoid probenecid/benzbromarone (promoting excretion increases stones).
- The most common cause of UTI is *E. coli* (~75–85%); *Proteus* produces urease → alkaline urine + struvite staghorn calculi.
- Treat ASB only in pregnant women and before urologic surgery; others (elderly, catheterized, diabetic) are not treated.
- Stone obstruction + fever = infected obstructive uropathy = surgical emergency; urgent drainage (double-J / PCN) is required — never antibiotics alone.
- URS is first choice for ureteral stones (stone-free rate better than ESWL); stones <5–6 mm can be observed conservatively.
- Reflux nephropathy = asymmetric atrophy + irregular contour; saying "symmetric" is wrong.
Common traps
- Treating "calcium restriction" as prevention of calcium oxalate stones (it works in the opposite direction).
- Prescribing uricosuric drugs for uric acid stones (should inhibit production + alkalinize).
- Giving only antibiotics/analgesics for obstructive pyelonephritis and forgetting urgent drainage.
- Treating ESWL as first line for ureteral stones (URS takes priority).
- Overusing antibiotics for asymptomatic bacteriuria in non-pregnant patients.
- Omalizumab = anti-IgE monoclonal antibody; it binds the Fcε region of free IgE, preventing it from attaching to FcεRI; used for allergic asthma, chronic spontaneous urticaria, and peanut allergy.
- Abatacept = CTLA-4-Ig; it occupies B7 (CD80/86) on APCs → blocks the CD28 second (costimulatory) signal → inhibits T cells; it is not a TNF-α antagonist (the most common trap).
- Etanercept = TNF receptor fusion protein (decoy receptor); Infliximab/Adalimumab = anti-TNF monoclonal antibodies — know the finer mechanistic distinctions.
- -mab/-cept are injected; -tinib (JAK inhibitors) are oral; the first-choice conventional DMARD for RA is still Methotrexate.
- Before any TNF-α inhibitor/biologic, always screen for latent tuberculosis (LTBI) and hepatitis B (HBV), because both can reactivate (a high-frequency clinical safety point); TNF inhibitors can also induce demyelination and drug-induced lupus.
- Cyclosporine (cyclophilin) and Tacrolimus (FKBP) both inhibit calcineurin → lower IL-2; Sirolimus acts via mTOR and is the least nephrotoxic.
- Echinacea (purple coneflower) is an immunostimulant (activates macrophages/NK/T cells, promotes IFN), used as adjunctive treatment for upper respiratory infections — do not confuse it with "immunosuppression."
- Common trap: picking a TNF inhibitor as soon as you see "treat RA," ignoring that the stem asks about Abatacept's "costimulation blockade" mechanism; or mistaking anti-IgE for an antihistamine.
- Classify antibiotics by target first: cell wall (β-lactam/vanco), 30S (aminoglycoside/tetra), 50S (macrolide), DNA gyrase (quinolone), RNA pol (rifampin), folate (sulfonamides), cell membrane (daptomycin).
- Imipenem must be combined with cilastatin: renal DHP-I hydrolyzes imipenem and generates nephrotoxic metabolites; cilastatin is a DHP-I inhibitor.
- Cefepime (cell wall) + amikacin (aminoglycoside) are synergistic: breaching the wall helps the drug penetrate (this pair is used for Pseudomonas and other gram-negatives); enterococci are intrinsically resistant to cephalosporins, so enterococcal synergy requires ampicillin or vancomycin + gentamicin (or ampicillin + ceftriaxone).
- Aminoglycosides are concentration-dependent (once-daily high dose); β-lactams are time-dependent (time the concentration stays > MIC) — different dosing strategies.
- Amoxicillin resistance is mainly due to β-lactamase (hydrolyzes the β-lactam ring), not PBP mutation (PBP mutation = MRSA).
- Selectivity of sulfonamides: because humans do not synthesize folate but obtain it from the diet, while bacteria must synthesize their own → inhibiting dihydropteroate synthase harms only the bacteria.
- Acyclovir is a prodrug that must first be phosphorylated by viral TK to become active; latent virus does not express TK → ineffective against latent infection.
- No significant long-term resistance to tenofovir has been seen; it is superior to adefovir/lamivudine, but less effective in adefovir-resistant patients.
- Neuraminidase inhibitors (influenza drugs) are not used for HIV; the six classic HIV classes are NRTI/NNRTI/PI/INSTI/fusion inhibitors/CCR5 antagonists (now also attachment/post-attachment inhibitors and the capsid inhibitor lenacapavir).
- Amphotericin B (polyene) binds ergosterol directly and forms pores; azoles inhibit its synthesis (the distinguishing point).
- Common traps: aminoglycosides are ineffective against anaerobes (oxygen is needed for uptake); choosing a familiar drug name while ignoring that the stem asks about "mechanism, cause of resistance, or contraindication."
- Most common malignant pleural effusion in women = breast cancer; overall most common = lung adenocarcinoma; melanoma is occasionally seen but not common.
- Draining a malignant effusion relieves symptoms but does not prolong survival; for recurrent effusions the first choice is talc pleurodesis (the most effective sclerosant; an indwelling pleural catheter is an equally acceptable first-line option when the lung is expandable).
- Meeting any one of Light's criteria = exudate; malignant and infectious effusions are both exudates.
- Lung abscess can arise by hematogenous spread from S. aureus bacteremia; "unrelated to staphylococcal bacteremia" is a false statement.
- Aspergilloma with hemoptysis → surgical resection is first choice; antifungals penetrate poorly and have limited effect.
- Complicated parapneumonic effusion/empyema (pH < 7.2, glucose↓, pus/culture positive) → requires chest tube drainage; antibiotics alone are insufficient.
- Bronchogenic cysts should be resected even if asymptomatic; CPAM has potential for malignant transformation (→ pleuropulmonary blastoma).
- Sarcoidosis = noncaseating granulomas, >90% involve the lungs; TB is the caseating one.
- Pancoast → Horner, superior mediastinum → SVC syndrome; pseudopolycythemia is due to dehydration and unrelated to the chest.
Common traps
- Treating talc pleurodesis as "least effective" (it is actually the most effective).
- Thinking aspergilloma should be treated with long-term antifungals (it should be surgery).
- Thinking asymptomatic congenital lung cysts can be left alone, or that CPAM carries no malignant risk.
- Treating pseudopolycythemia as a manifestation of chest disease.
- Remembering the granulomas of sarcoidosis as "caseating" (that is TB).
- The most common malignant bone lesion in adults is metastatic cancer (breast/lung/thyroid/kidney/prostate), not a primary bone tumor; prostate cancer is osteoblastic (blastic). A new bone lesion at age >40 → think metastasis and multiple myeloma first.
- Osteosarcoma: adolescents, metaphysis around the knee, night pain, sunburst/Codman triangle; about 15–20% already have lung metastases at diagnosis, ALP↑.
- Osteoid osteoma: night pain, dramatically relieved by NSAIDs, favors the diaphysis; osteoblastoma responds poorly to NSAIDs and requires surgery.
- Osteochondromas in flat bones (pelvis/scapula) carry a higher risk of malignant transformation; MHE is autosomal dominant with high penetrance.
- Grading chondrosarcoma requires clinical + radiologic + pathologic findings together.
- Diabetic foot osteomyelitis: X-ray changes lag behind the clinical picture by 2–3 weeks (not 1 week); MRI is most sensitive.
- Paget's: bone resorption and formation both ↑, mosaic/cement lines, ALP↑, urinary pyridinoline↑, treat with bisphosphonates.
- Fibrous dysplasia: blood tests are normal (calcium, phosphate, ALP mostly normal), ground-glass appearance.
- Low back pain + abnormal bone scan after pelvic radiotherapy = insufficiency fracture, not metastasis/recurrence.
Common traps
- Remembering the X-ray delay in diabetic foot osteomyelitis as "1 week" (correct: 2–3 weeks), or ruling out osteomyelitis on a normal early X-ray.
- Misjudging sacral pain after radiotherapy as bone metastasis or tumor recurrence.
- Thinking fibrous dysplasia causes abnormal serum calcium/ALP (usually normal).
- Prescribing PTH for Paget's (should be bisphosphonates); thinking only bone resorption is increased.
- Overlooking how the "location (flat bones)" of an osteochondroma affects malignant risk.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Initial evaluation of a thyroid nodule | TSH → ultrasound → (risk-based) FNA | Treating PET as an initial test |
| Nodule with low TSH | First do a radionuclide scan to look for a hot nodule | Going straight to FNA |
| Complications of total thyroidectomy | Risk of hypoparathyroidism and recurrent laryngeal nerve injury "increases" | Writing "reduces the risk" |
| Contraindication in thyroid storm | amiodarone (iodine-containing) is contraindicated | Mistaking it for a treatment |
| Drug sequence in thyroid storm | thioamide first, then iodine | Giving iodine first, which fuels hormone synthesis |
| Imaging for a breast mass in a young woman | Ultrasound | Going straight to mammography or surgery |
| "No skin dimpling" | Does not exclude breast cancer (high PPV ≠ high sensitivity) | Thinking it rules cancer out |
| Factors in breast cancer chemotherapy decisions | Size, lymph nodes, ER/PR/HER2 | Mistaking "tumor location" for a factor |
| Numbness of the medial upper arm after axillary dissection | intercostobrachial n. | Choosing long thoracic by mistake |
| Visual field defect in pituitary apoplexy | Bitemporal hemianopia + severe headache | Mistaking it for homonymous hemianopia |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Classification of BPD/DS | Mixed restrictive + malabsorptive | Treating it as purely restrictive |
| Most common bariatric procedure | Sleeve gastrectomy | Answering RYGB |
| Obesity + T2DM + severe GERD | RYGB | Choosing sleeve (worsens reflux) |
| Target population for metabolic surgery | Type 2 diabetes | Mistaking it for type 1 |
| Preoperative evaluation | Psychiatric evaluation is mandatory | "No psychiatric evaluation needed," "decided at a family meeting" |
| BMI threshold for surgery | ≥40, or ≥35 + comorbidity (current ASMBS/IFSO 2022: recommended at ≥35, considered at 30–34.9 with metabolic disease, lower cutoffs for Asians) | Remembering a single number |
| Most serious early complication | Gastrointestinal leak (usually needs surgery) | Treating it as suitable for conservative observation |
| Nutritional deficiency | Most severe after malabsorptive procedures | Thinking restrictive procedures cause more deficiency |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Adenoma → carcinoma timeline | About 5–10 years (10–15 years) | Writing 1–2 years |
| Obesity / sedentary lifestyle | Increases colorectal cancer risk | Writing "decreases" |
| Adjuvant therapy for stage III colon cancer | FOLFOX/CAPOX chemotherapy | Adding a targeted agent |
| Stage for which targeted agents are used | Stage IV metastatic disease | Using them after surgery for stage III |
| TME and the pelvic nerves | Preserves the autonomic nerves; does not increase sexual dysfunction | Saying TME increases sexual dysfunction |
| Laparoscopic vs open | Oncologically equivalent; faster recovery | Saying laparoscopy lowers resection mortality |
| Peutz-Jeghers | STK11; hamartomas + mucocutaneous pigmented macules | Confusing it with FAP (APC, adenomas) |
| Locally advanced rectal cancer | Neoadjuvant chemoradiation + TME | Operating directly without chemoradiation |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Components of the levator ani | puborectalis + pubococcygeus + iliococcygeus | Including the piriformis or gluteus maximus |
| Sensory nerve of the anal canal (below the dentate line) | pudendal nerve (S2–S4) | Choosing obturator/femoral/sciatic by mistake |
| Origin of the middle rectal artery | Internal iliac artery | Attributing it to the IMA |
| Branches of the IMA | left colic, sigmoid, superior rectal | Including the middle rectal |
| Hemorrhoids above the dentate line | Internal hemorrhoids (painless), portal venous drainage | Confusing them with external hemorrhoids/pudendal innervation |
| Lymphatic drainage relative to the dentate line | Above → internal iliac; below → inguinal | Reversing above and below |
| Why the sigmoid colon perforates easily | Diverticula + high intraluminal pressure (Laplace) | Thinking "the bowel wall is thinner" |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Double-bubble sign | Duodenal atresia (often with Down syndrome) | Answering pyloric stenosis (that is a single bubble) |
| Bilious vs nonbilious vomiting | Bilious = obstruction distal to the ampulla; pyloric stenosis is nonbilious | Treating pyloric stenosis as bilious vomiting |
| Electrolytes in pyloric stenosis | Hypochloremic, hypokalemic metabolic alkalosis | Misremembering it as acidosis |
| Associated anomalies: gastroschisis vs omphalocele | Omphalocele ~50% associated; gastroschisis rarely | Swapping the two |
| Covering membrane: gastroschisis vs omphalocele | Omphalocele has a membrane; gastroschisis has none | Reversing them |
| Surgical indication in NEC | Pneumoperitoneum (perforation) | Thinking every case needs surgery |
| NEC imaging | Pneumatosis intestinalis / portal venous gas | Confusing it with ordinary bowel obstruction |
| Supraclavicular lymph node | Highly suspicious for malignancy → biopsy | Observing it as benign |
| Most common site of neonatal teratoma | Sacrococcygeal (40–70%) | Answering neck/gonads |
| Prognosis of sacrococcygeal teratoma | Good with early diagnosis/early surgery; the later, the more malignant | Taking "the later the diagnosis, the better" as correct |
| Sistrunk procedure | Used for thyroglossal duct cyst (removes the middle portion of the hyoid) | Pairing it with branchial cleft remnants by mistake |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Measuring intra-abdominal pressure in ACS | Bladder pressure (Foley) | Answering nasogastric tube |
| CVP in ACS | Falsely elevated (↑) | Remembering it as decreased |
| Respiratory effect of ACS | Significant (restricts ventilation) | Thinking "the effect is minor" |
| Extent of LGIB (traditional definition; current ACG terminology calls ampulla-to-ileocecal-valve bleeding small-bowel bleeding and limits LGIB to the colon and rectum) | Includes the jejunum (distal to the ligament of Treitz) | Thinking it is limited to the colon |
| Natural history of acute GI bleeding | About 80% stop spontaneously | Thinking all need intervention |
| Hinchey III | Generalized purulent peritonitis | Confusing it with stage IV (fecal) |
| Emergency surgery for diverticulitis | Free perforation with peritonitis | Treating anemia/a small abscess as surgical indications |
| colovesical fistula | Elective surgery | Managing it conservatively |
| Fistulas: UC vs Crohn's | Crohn's is prone to fistulas/perianal disease | Reversing them |
| Smoking and IBD | Worsens Crohn's | Applying it to UC |
| PSC | More common with UC | Attributing it to Crohn's |
| Free air under the diaphragm | Perforated peptic ulcer | Answering cholecystitis/pneumothorax/liver abscess |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Laser for fine wrinkles after a facelift | Fractional CO2 (ablative) | Choosing Nd:YAG/PDL/ruby by mistake |
| 60° Z-plasty | Lengthens the central axis by 75% | Remembering it as 50% or 100% |
| Z-plasty angle formula | 30/45/60/75° → 25/50/75/100% | Mismatching the pairs |
| RSTLs vs muscle fiber direction | Perpendicular | Thinking they run at 45° |
| RSTLs vs dynamic wrinkles | Parallel | Remembering them as perpendicular |
| RSTLs of the lip | Perpendicular to the vermilion border | Remembering them as parallel |
| Usual maximum dose of lidocaine | 4–5 mg/kg (7 with epinephrine) | Confusing it with tumescent dosing |
| Tumescent lidocaine | Up to 35 mg/kg | Applying the usual 4–5 mg/kg |
| First facial allotransplant | 2005, France | Answering USA/UK/Russia |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Warm ischemia tolerance of muscle | 1-2 hours | Choosing 4-6 hours by mistake (that is skin/fat) |
| Typical site of glomus tumor | Subungual (under the fingernail) | Hip/elbow/head and neck |
| Gastrocnemius / soleus classification | Gastrocnemius type I, soleus type II | Swapping the two |
| Latissimus dorsi classification | Type V | Choosing type I by mistake |
| Vascular pedicle of pectoralis major | Thoracoacromial artery | Choosing the internal mammary artery by mistake |
| Fasciocutaneous classification of the radial forearm flap | Type B (single perforator) | Type A/C |
| Type IV muscle (sartorius) | Unsuitable for free transfer | Treating it as transferable as a free flap |
| Reconstruction of a stage IV pressure ulcer | Debridement + local musculocutaneous flap | Direct skin grafting/free flap |
| Perforator flap | Advantage = preserves donor-site muscle function | Treating the advantage as a disadvantage |
| Wound with exposed bare bone/tendon | Requires a flap (not a skin graft) | Choosing a skin graft by mistake |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Dermal thickness and contraction | The thicker the graft, the less the contraction (FTSG contracts least) | Reversing cause and effect: thicker grafts contract more |
| Indications for microsurgery | Large defects, distant tissue transfer, vessel/nerve repair | Choosing "small defects" by mistake |
| Muscle flap that cannot be transferred free | Type IV (sartorius) | Treating it as transferable free |
| Most common syndactyly | Middle-ring finger | Thumb-index |
| Relative contraindication to replantation | A single non-thumb finger amputated at multiple levels | Treating the thumb/young children as contraindications |
| Strong indications for replantation | Thumb, young children | Misjudging them as contraindications |
| 60° Z-plasty lengthening | 75% | 50% / 100% |
| 90° Z-plasty lengthening | 120% | — |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Bowel obstruction in an elderly patient + groin mass | Incarcerated hernia | Intussusception/adhesions/rectal cancer |
| TEP vs TAPP working space | TAPP larger, TEP smaller | Saying TAPP space is limited |
| Nerve in preperitoneal repair | Protect the lateral femoral cutaneous nerve; do not ligate it | Ligating it → meralgia paresthetica |
| Timing of elective hernia surgery after MI | Delay ≥6 months (current ACC/AHA: ≥60 days) | Operating immediately |
| Most common short-term complication after hernia repair | Pain | Infection/recurrence/urinary retention |
| Umbilical fascial closure in SILS | Absorbable suture | Nonabsorbable suture |
| Patient requests treatment without an indication | Discuss, then decline on professional grounds | Simply giving it / flatly refusing |
| Mechanism of LSG / VBG | Purely restrictive | Labeling them malabsorptive |
| Mechanism of RYGB / BPD | Combined / strongly malabsorptive | Swapping them |
| Direct vs indirect hernia (relative to the inferior epigastric artery) | Direct medial, indirect lateral | Swapping medial and lateral |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Epidemiology of IBD | Asia < Northern Europe/North America | Saying Asia is higher |
| Mainstay of Crohn treatment | Primarily medical; surgery is not curative | Thinking surgery can cure it |
| 5-ASA in Crohn's | Limited efficacy; not a standard induction/maintenance drug (used mainly for UC) | Treating it as first choice for Crohn's |
| Long-term risk in UC | High colorectal cancer risk; colonoscopic surveillance needed | Omitting cancer surveillance |
| Surgical indications in Crohn | Stricture/fistula/abscess/perforation/bleeding | Treating surgery as first choice |
| Can UC be cured? | Total proctocolectomy is curative | Confusing it with Crohn |
| Depth: Crohn vs UC | CD transmural, UC mucosal | Swapping them |
| Granulomas | Present in CD, absent in UC | Thinking UC has granulomas |
| Dietary fat in short bowel syndrome | MCT preferred | Choosing short-chain fats by mistake |
| Absorption of MCT | No bile salts needed; absorbed directly via the portal vein | Thinking bile salts are required |
| Terminal ileal resection | Vitamin B12 must be supplemented | Omitting B12 |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Bence Jones protein belongs to | Multiple myeloma (light chains) | Pairing it with "lymphoma" by mistake |
| Cause of Kaposi sarcoma | HHV-8 | Pairing it with "adenovirus" by mistake |
| Treatment of DFSP | Wide excision / Mohs; no lymph node dissection needed | Adding "lymph node dissection" |
| Does MFH (UPS) metastasize? | Yes, distant metastasis (high grade) | Misjudging it as "does not metastasize" |
| Grade of angiosarcoma | High grade | Misjudging it as "low grade" |
| Giant CMN (over 40 cm) is associated with | Leptomeningeal melanocytosis, diagnosable by MRI | Missing possible CNS involvement |
| Timing of malignant change in small CMN | Mostly after puberty | Thinking it always turns malignant in early childhood |
| Size definition of large CMN | over 20 to 40 cm | Confusing it with giant (over 40 cm) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Typical site of choroid plexus papilloma in adults | Fourth ventricle | Choosing the lateral ventricle by mistake (that is in infants) |
| Mechanism of ventricular enlargement from choroid plexus tumors | Mass effect / CSF overproduction / absorption↓ | Choosing "compression of the posterior choroidal artery" by mistake |
| Cell of origin of meningioma | Arachnoid cap cells | Answering "dura mater" |
| Rapid deterioration of a brain abscess | Rupture into the ventricles/subarachnoid space | Missing the rupture mechanism |
| Most common cause of brain abscess | Direct spread from a contiguous focus | Answering purely hematogenous infection |
| NPH triad | Gait instability, dementia, urinary incontinence | Wrongly including tremor |
| Offending vessel in trigeminal neuralgia | Superior cerebellar artery (SCA) | Answering posterior inferior cerebellar artery |
| Procedure of choice for refractory temporal lobe epilepsy | anterior temporal lobectomy | Choosing VNS / callosotomy by mistake |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Bowel wall: UC vs Crohn | Thinner in UC, thickened in Crohn | Reversing it to "UC thickened" |
| Terminal branch of the IMA | superior rectal artery | Choosing internal pudendal / gluteal (internal iliac branches) by mistake |
| Left lower abdominal pain + bloody stool 3 days after AAA repair | Ischemic colitis (IMA compromised) | Misdiagnosing infectious enteritis |
| Typical sites of ischemic colitis | Splenic flexure, rectosigmoid junction (watershed areas) | Ignoring the watershed concept |
| Most common cause of small bowel bleeding | angiodysplasia | Answering diverticula |
| Population at risk for NEC | Mainly preterm infants; term infants can also be affected | Answering "occurs only in preterm infants" |
| Typical site of NEC | Ileocecal region | — |
| Hematologic abnormality in NEC | Thrombocytopenia | Thinking platelets rise |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Indication for rubber band ligation | Internal hemorrhoids grade I–III (above the dentate line, painless) | Using it for external/thrombosed hemorrhoids |
| Treatment of a thrombosed external hemorrhoid | <72h: excision; otherwise conservative sitz baths | Ligating an external hemorrhoid |
| Goodsall: posterior-half fistula (standard) | Curves to the posterior midline (6 o'clock) | Note: the question bank's official answer may be marked "straight," the opposite direction |
| Goodsall: anterior-half fistula (standard) | Straight (radial) into the same clock position | Confusing it with the posterior half |
| Parks type 2 | transsphincteric | Reversing it with intersphincteric |
| Treatment of anal fissure | 80–90% can be managed conservatively | Answering "80–90% need surgery" |
| Typical site of anal fissure | Posterior midline | Thinking anterior |
| Classic signs of anal fissure | Posterior tear + sentinel skin tag | Missing the sentinel skin tag |
| Procedure for chronic refractory anal fissure | lateral internal sphincterotomy | — |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Most typical paraneoplastic syndromes of HCC | Hypoglycemia, erythrocytosis | Taking hypercalcemia as the most common |
| Imaging features diagnostic of HCC | Arterial-phase wash-in + delayed-phase wash-out | Thinking a biopsy is always required |
| Child-Pugh score of 6 | Child A (A = 5–6) | Miscalculating it as Child B |
| Insulinoma: benign or malignant | About 90% benign | Answering "mostly malignant" |
| Calcium change in acute pancreatitis | Hypocalcemia (fat saponification) | Answering hypercalcemia |
| Boundaries of Calot triangle | Cystic duct, common hepatic duct, inferior edge of the liver | Filling in the right portal vein |
| Surgery for calculous cholecystitis | Early laparoscopic cholecystectomy (not contraindicated) | Thinking laparoscopy is not allowed in the acute phase |
| Source of bacterial liver abscess | Biliary infection (most common today in Western series; in Taiwan most cases are cryptogenic K. pneumoniae) | Still answering appendicitis |
| Most valuable preoperative test for biliary atresia (confirmatory gold standard: intraoperative cholangiography) | Liver biopsy | Treating ultrasound/HIDA as confirmatory |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Carcinogen classification of H. pylori | IARC Group 1 (1994) | Misremembering it as Group 2/possibly carcinogenic |
| Gastric polyps that must be removed | Adenomatous polyps | Treating hyperplastic polyps as mandatory removal too |
| Tool for confirming gastric cancer | Endoscopy + biopsy | Treating CT as the initial diagnostic tool |
| Definition of EGC | Confined to the mucosa or submucosa, regardless of lymph node status | Thinking submucosal invasion no longer counts as EGC |
| Surgical indications for peptic ulcer | Perforation, bleeding, obstruction, failure of medical therapy | Treating H. pylori infection as a reason to operate |
| Parietal cells are rich in mitochondria | Acid secretion consumes ATP (proton pump) | Confusing them with chief cell function |
| Surgery for advanced gastric cancer | Adequate margins + D2 lymphadenectomy | Resecting only the tumor without lymphadenectomy |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Most common cause of bowel obstruction in adults | Postoperative adhesions | Answering tumor/hernia |
| Most common electrolyte abnormality in paralytic ileus | Hypokalemia | Answering hyperkalemia/hypocalcemia |
| First-line management of pediatric intussusception | Enema reduction (nonoperative) | Thinking all cases need surgery |
| The Ladd procedure includes | Detorsion + division of bands + widening the mesentery + appendectomy | Omitting the appendectomy |
| Anomaly associated with gastroschisis | Intestinal atresia | Reversing it with omphalocele (cardiac/chromosomal) |
| Most common primary malignant tumor of the small bowel | Adenocarcinoma, most often in the duodenum (official board-exam answer; current SEER data show NETs now slightly outnumber adenocarcinoma) | Answering GIST (most common "stromal tumor" ≠ most common malignant tumor); misremembering "most often in the ileum" |
| Most critical factors in short bowel syndrome | Length of ileum resected, ileocecal valve | Thinking a 200 cm jejunal resection is the most dangerous |
| Crohn's and smoking | Smoking is a risk factor | Confusing it with UC (smoking is protective) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Operative view: pneumoperitoneum vs abdominal wall lift | Pneumoperitoneum is better (standard) | Thinking the lift (gasless) method is better |
| Physiologic effects of pneumoperitoneum | Airway pressure↑, venous return↓, CO2↑ with acidosis | Ignoring the cardiopulmonary effects |
| Principle of trocar placement | Avoid crossing the hands; work in parallel | Thinking crossing is fine |
| Splenectomy with portal hypertension | Requires caution; high bleeding risk | Answering "portal hypertension need not be considered" |
| Skills simulation training can build | Depth perception, hand-eye coordination | Thinking these cannot be trained |
| Not a basic general surgery procedure | Laparoscopic hysterectomy (gynecology) | Treating it as a basic general surgery procedure |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Closure of class IV (dirty) wounds | Delayed primary closure / healing by secondary intention | Choosing immediate primary closure by mistake |
| SSI rate for clean wounds | 1–5% | Choosing 0.1–0.3% by mistake |
| Timing of prophylactic antibiotics | Within 60 minutes before incision | Choosing to give them only after surgery |
| What antibiotics cannot prevent | CRBSI, UTI (rely on aseptic technique) | Thinking antibiotics can prevent everything |
| Palpitations, sweating, diarrhea 15–30 min after eating post-Billroth II | early dumping syndrome | Choosing late dumping/hypoglycemia by mistake |
| Earliest ECG sign of hyperkalemia | tall peaked T wave | Choosing U wave (hypokalemia) by mistake |
| First step in emergency treatment of hyperkalemia | IV calcium to stabilize the membrane | Choosing Kayexalate (the slowest) by mistake |
| Warfarin before surgery | Stop 5 days before; INR <1.5 | Misremembering it as stopping 1–2 days before |
| Source of fibroblasts in the proliferative phase | Migration from local tissue | Choosing delivery via the circulation by mistake |
| Patient with NRS ≥5 | Preoperative nutritional intervention | Choosing to proceed with surgery as usual |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| A patient with decision-making capacity refuses treatment | Respect autonomy; treatment cannot be forced | Applying paternalism |
| Conflict between the surrogate and the family | The legal surrogate takes precedence (may be a non-relative) | Thinking only relatives can serve |
| Emergency, no surrogate, life-threatening | Implied emergency consent: save the life first | Waiting for family and causing delay |
| HIV positive | Report to the health authority | Informing the spouse directly (without consent) |
| Scope of the duty to warn | Inform the specific potential victim/authorities | Choosing to inform relatives and friends broadly |
| Internal factor affecting autonomy | Pain caused by the illness | Choosing the physician's explanation/attitudes of relatives and friends (external) by mistake |
| Classification of a surgical error | commission | Calling it omission |
| Should medical errors be disclosed? | They should be disclosed honestly | Thinking non-negligent errors can be concealed |
| When an AD applies | The five qualifying conditions, such as terminal/irreversible illness | Applying it to coma from acute trauma |
| Distractor option in organ allocation | National Health Insurance (NHI) reimbursement is unrelated to ethics | Choosing it as an ethical issue |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Time limit for reporting domestic violence | No later than 24 hours | Misremembering 48/72 hours |
| Who is responsible for reporting domestic violence | A statutory duty of medical personnel | Thinking it is solely the police's job |
| Informing the partner of an HIV-positive patient | Requires the patient's consent; otherwise report to the health authority first | Choosing to inform the partner directly despite refusal |
| Concealing HIV status and infecting others | Carries criminal liability | Thinking there is no criminal liability |
| Distractor option in conflict-of-interest items | Patient privacy is irrelevant | Choosing privacy as the ethical issue |
| Academic content required under the industry code of conduct | ≥ 2/3 of the time | Misremembering it as 1/2 |
| Can gift vouchers be accepted? | No (equivalent to cash) | Thinking gift vouchers are acceptable |
| When payment may be accepted | Speaker fees for lecturers | Thinking ordinary attendees may accept payment |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| A competent patient refuses life-sustaining treatment | Respect autonomy; treatment cannot be forcibly continued | Applying paternalism to continue treatment |
| A competent adult patient does not want their parents informed | Respect this; simply document it in the medical record | Thinking disclosure is mandatory |
| Sudden coma after previously refusing elective surgery | Treat it as an emergency; resuscitation may proceed (not an advance refusal) | Invoking the earlier refusal and withholding treatment |
| Handling a refusal of admission | Process an AMA discharge and have a refusal statement signed | Choosing to detain the patient or simply let them leave |
| Resuscitation duration for an unidentified comatose patient | 30 minutes to 1 hour | Misremembering it as too short/too long |
| Emergency with no surrogate | implied consent: save the life first | Waiting for family and causing delay |
| Selectively emphasizing risks + family pressure | manipulation (improper) | Considering it legitimate persuasion |
| Conflict between autonomy and paternalism | autonomy takes precedence | Thinking the physician can decide on the patient's behalf |
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- The duty to explain rests only with the "physician" (Medical Care Act, Article 63) — this is the favorite reverse trap.
- Adult children have equal priority as surrogates: no priority for the eldest son, no majority vote, and paying the bills confers no priority → reach a consensus.
- Allocation of scarce resources = principle of utility = based on prognosis.
- Addenda to medical records made after a dispute must be dated; otherwise they may be invalid.
Common traps
- Stretching "flexibility in who receives the explanation" into "a nurse may also give the explanation" — wrong; only a physician may explain.
- Choosing "youngest first" or "first come, first served" for resource allocation — the standard answer is utility/prognosis.
- Thinking "record addenda are always invalid" or "always valid" — the key is whether they are dated.
- Treating surrogate decision-making as a "family majority vote" — the law contains no majority-vote rule.
- Classic migratory pain (periumbilical → RLQ) + McBurney point tenderness = acute appendicitis.
- US: noncompressible tubular structure >6mm / target sign; CT has the highest specificity in adults.
- Most common postoperative complication = SSI (10–20% if perforated).
- About 25–40% of uncomplicated appendicitis treated with antibiotics still needs surgery within a year (not curative).
- A periappendiceal abscess can be drained; "drainage is not recommended" is a false statement.
- In older patients with appendicitis, think of a tumor.
Common traps
- Extending the "cosmetic advantage" of single-incision laparoscopy to "better clinical outcomes" — outcomes are not necessarily better.
- Laparoscopic complications in older patients: note that noninfectious complications are higher; do not choose "infectious complications are necessarily higher."
- Jumping to appendicitis for any RLQ pain and ignoring the gynecologic differential in young women (ovarian torsion, ectopic pregnancy).
- Treating an abdominal X-ray as a confirmatory tool — it shows only indirect signs.
- Level IA = both anterior bellies of the digastric + hyoid (spanning the midline), enclosing the submental triangle.
- Adenoid cystic carcinoma: tubular has the best prognosis, solid the worst (cribriform is intermediate and most common).
- OSCC, AJCC 8th: DOI >10mm = T3 (equivalent to tumor >4cm).
- Goal of orthognathic surgery = Angle class I normal occlusion.
Common traps
- Mixing up the boundaries of level IA (submental) and IB (submandibular, containing the gland).
- Misremembering the tubular pattern as having a "poor prognosis" — exactly the opposite: tubular is best.
- Ignoring DOI in AJCC 8th: looking only at tumor size and missing that "DOI >10mm upstages to T3."
- Treating Angle class II/III as the surgical goal — the goal is always class I.
- Blunt trauma most often injures the spleen; gunshot wounds most often injure the small bowel, stab wounds the liver.
- CT = highest specificity in blunt trauma (gold standard); FAST is highly specific but only moderately sensitive, so a negative result cannot exclude injury.
- Neck zone II (cricoid → angle of the mandible) is the most surgically accessible; zone I lies below the cricoid, zone III above the angle of the mandible.
- Unstable + intra-abdominal hemorrhage → immediate exploratory laparotomy; do not wait for CT.
- L1 Chance fracture → duodenal injury.
- Pregnant patient → left lateral decubitus position; vaginal fluid pH ≥6.5 = rupture of membranes.
- AAST liver injury has six grades.
- Mafenide: penetrates well but causes metabolic acidosis; SSD penetrates poorly.
Common traps
- Misremembering blunt trauma as "most often injuring the liver" — the liver is second, the spleen first.
- Treating FAST's "high sensitivity" as able to exclude bleeding — its sensitivity is actually only moderate (retroperitoneal and solid-organ injuries are easily missed), and a negative result cannot exclude it.
- Swapping the boundaries of zone I and zone III.
- Still waiting for CT in an unstable patient — go straight to laparotomy.
- Misremembering AAST liver injury as five grades (it is actually six).
- Misremembering early burn wound infections as gram-negative (early ones are gram-positive).
| Exam point | Correct answer | Common trap |
|---|---|---|
| Type of jaundice in Alagille syndrome | Direct hyperbilirubinemia (bile duct paucity, JAG1) | Mistaking it for indirect/hemolytic |
| Congenital chloride diarrhea | Secretory, persists with fasting, with alkalosis | Thinking fasting improves it / misjudging it as acidosis |
| Hypokalemia + alkalosis + hypocalciuria + hypomagnesemia | Gitelman (NCC, thiazide-like) | Reversing it with Bartter (hypercalciuria) |
| Tubulopathy with hypercalciuria | Bartter (NKCC2, loop-like) | — |
| Infant UTI with mild-to-moderate VUR | Conservative first + prophylactic antibiotics; assess with DMSA | Answering "immediate surgical correction" |
| Main cause of gallbladder hydrops | Kawasaki disease | Taking CF as the typical cause |
| Bloody stool in an exclusively breastfed infant | Allergy to cow's milk protein from the mother's diet passed through breast milk | Mistaking it for bacterial enteritis / dust mite allergy / UC |
| Red flags in childhood constipation | Stool in the rectum is not a red flag | Treating a functional finding as organic disease |
| Pain in intussusception | Paroxysmal colicky abdominal pain | Thinking it radiates to the back |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Resuscitation sequence for massive bleeding with shock | Fluid resuscitation + endotracheal intubation to protect the airway | Doing colonoscopy first to find the lesion |
| Drugs for acute esophageal variceal bleeding | octreotide/somatostatin or terlipressin + IV antibiotics, then EVL | Giving a β-blocker in the acute phase (propranolol is for prevention, not acute hemostasis) |
| Normal Hb early in acute blood loss | Does not exclude severe bleeding (hemodilution has not yet occurred) | Judging the bleed as not severe because Hb is normal |
| Lowest rebleeding risk on the Forrest classification | Forrest III (clean base) | Reversing it with high-risk Ia/IIa |
| Vasoconstrictors in mesenteric ischemia | Contraindicated; give fluids | Using pressors/vasoconstrictors by mistake |
| Treatment priority in acute mesenteric ischemia | Revascularization (surgical/endovascular) | Choosing "mainly conservative medical therapy" |
| Key clue to mesenteric ischemia | AF / after cardiac catheterization + severe pain with a soft abdomen | Missing "pain out of proportion" |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Sex distribution of moderate-to-severe IBS | About 80% women | Thinking men and women are equally affected |
| Mechanism of IBS | Brain-gut axis dysfunction + visceral hypersensitivity | Treating it as a structural lesion |
| Fecal calprotectin | A marker of IBD; not elevated in IBS | Using it as a basis for diagnosing IBS |
| Fecal occult blood / leukocytes in IBS | Should be negative; if positive, exclude IBD/cancer | Thinking IBS can have occult blood |
| Tenesmus | Not a definitive indicator of a rectal tumor | Concluding directly that it is a rectal tumor |
| Diarrhea with chronic alcohol use | Secretory diarrhea | Misjudging it as osmotic |
| Bowel sounds in mechanical obstruction | Hyperactive (high-pitched) first, then absent | Remembering it as "slow first, then fast" |
| Manifestations of B12 deficiency | Neuropathy + macrocytic anemia | Pairing it with "tetany" by mistake |
| Imaging of intussusception | target sign | — |
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- Most common cause of SBO = adhesions; of LBO = colorectal cancer (volvulus is second). For "most common cause" questions, be sure to memorize the ranking.
- Mechanical SBO does not raise amylase; amylase >3× → think pancreatitis.
- Simple SBO is managed conservatively first (NPO + NG decompression + fluids); operate only for signs of strangulation.
- The sigmoid colon is the most common site of volvulus, in older adults; CT shows the bird-beak sign; first choice is endoscopic decompression.
- Rovsing's sign = pressing the LLQ elicits RLQ pain (referred pain), not McBurney's direct tenderness.
- Appendicitis pain starts periumbilically, then shifts to the RLQ — "migratory pain" is a high-yield keyword.
Common traps
- Confusing the "most common cause" with the "most specific sign" (e.g., volvulus is not the most common cause of LBO).
- Jumping to pancreatitis on seeing abdominal pain + high amylase, ignoring that strangulated bowel obstruction is also possible.
- Ignoring danger signs of strangulation/peritonitis and persisting with conservative care, delaying surgery.
- Reversing the maneuvers for the appendicitis signs (Rovsing's, psoas, obturator).
- DU: pain when fasting, relieved by eating; GU: pain after eating; biopsy required to exclude gastric cancer.
- H. pylori testing: stop PPIs ≥ 2 weeks before UBT; retest to confirm ≥ 4 weeks after eradication.
- GERD has no causal link to H. pylori; H. pylori-related = ulcers, gastric adenocarcinoma, MALT lymphoma.
- Hiatal hernia: sliding (~95%) is most common; paraesophageal is rare but carries a risk of strangulation.
- Billroth II + postprandial bilious vomiting that brings relief + macrocytic anemia (MCV↑) → afferent loop syndrome.
- Most common trigger of dumping = excess carbohydrate; late dumping = reactive hypoglycemia.
- Chronic gastritis type A = body = autoimmune (B12 deficiency); type B = antrum = H. pylori.
- Parietal cells are rich in mitochondria (high energy demand); after resection of early gastric cancer, eradication reduces metachronous gastric cancer.
Common traps
- Swapping the "site × cause" pairing of chronic gastritis type A/B.
- Thinking H. pylori causes GERD (no causal link); or thinking fundic gland polyps are H. pylori-related (they are actually related to long-term PPI use).
- Performing a UBT during PPI therapy or right after eradication, causing false negatives.
- Treating paraesophageal as the most common hiatal hernia.
- Saying parietal cells have few mitochondria (exactly the opposite).
- PBC = women, AMA(+), granulomatous destruction of small intrahepatic bile ducts, UDCA; PSC = men, onion-skin fibrosis, beaded bile ducts, associated with IBD.
- MCN = ovarian-type stroma; IPMN communicates with the pancreatic duct; SCN/SPN/MCN are more common in women, IPMN leans male.
- FAP = APC mutation; polyps do not appear until adolescence, with nearly 100% progressing to cancer.
- AAC risk factors = trauma/surgery/fasting/burns/TPN (sepsis and shock are risk factors too; alcohol is not).
- Pseudomembranous colitis is diagnosed by toxin testing, not culture.
- Intestinal-type gastric cancer ↔ H. pylori (Correa cascade); diffuse type ↔ CDH1/E-cadherin, signet-ring cells.
- Fundic gland polyps ↔ long-term PPI use (not H. pylori).
Common traps
- Sex, site of involvement, and pathologic features of PBC/PSC tested in reverse (onion skin = PSC, AMA = PBC).
- Saying SPN mainly affects men; mixing up MCN and IPMN regarding "communication with the pancreatic duct."
- Saying FAP polyps are "present at birth."
- Listing alcohol as a risk factor for AAC, or leaving out sepsis.
- Swapping the causal factors of intestinal/diffuse gastric cancer (H. pylori vs CDH1).
- Attributing fundic gland polyps to H. pylori (actually long-term PPI use).
| Exam point | Correct answer | Common trap |
|---|---|---|
| Skip lesions | Characteristic of CD | Mistaking them for UC |
| Continuous, extending proximally from the rectum | Characteristic of UC | Mistaking it for CD |
| Prone to fistulas and strictures | CD (transmural) | Mistaking it for UC |
| Smoking | Worsens CD, protects against UC | Reversing the direction |
| Appendectomy / oral contraceptives | Appendectomy protects against UC; oral contraceptives increase CD | Reversing which disease each affects |
| Corticosteroids | Effective for induction, not for maintenance | Using them for maintenance |
| 5-ASA | Mainstay of UC maintenance | Using it for CD maintenance |
| Bowel rest + TPN | Induction in CD ≈ corticosteroids (older data; current: bowel rest is unnecessary, exclusive enteral nutrition is first-line in children, and TPN is only for those who cannot be fed enterally) | Thinking it is ineffective |
| anti-TNF (infliximab) | Promotes fistula healing, reduces surgery, spares steroids | Writing "poor efficacy" |
| Next step when drugs fail in CD | Step up to biologics | Going straight to surgery |
| Toxic megacolon | Transverse colon > 6 cm + systemic toxicity | Writing "left colon" or misremembering the value |
| Autoantibodies | CD → ASCA, UC → p-ANCA | Swapping the two |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Hepatitis most likely to become chronic | HCV (75–85%) | Choosing HBV by mistake |
| Neonatal HBV | Chronicity >90% (the younger the age at infection, the more likely) | Thinking adults are more prone |
| Acute hepatitis B in adults progressing to chronic | <5% (about 95% recover) | Overestimating chronicity |
| Factors in progression of chronic hepatitis C | Male sex, heavy drinking, infection at age >30, HIV/HBV coinfection | Writing "female sex" |
| Severity of the HBV disease course | Determined by host immunity/age at infection | Attributing it to viral genotype |
| Treatment of acute hepatitis B | Supportive care; nucleos(t)ide analogues do not shorten the course | Routine antiviral therapy |
| Primary prophylaxis of varices | Nonselective β-blocker | Using a selective β₁ blocker |
| Hepatic encephalopathy | lactulose + rifaximin | Protein restriction as the only measure |
| Imaging of fatty liver | Bright liver on ultrasound; on CT, liver density < spleen | Reversing the density relationship |
| Liver tests in pregnancy | ALP↑, AST/ALT normal | Writing that AST/ALT rise |
| Cholangiocarcinoma risk | PSC | Mistaking it for PBC |
| AMA positive | PBC | Mistaking it for PSC |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Diagnostic criteria | 2 of 3; lipase/amylase > 3× | Looking at a single criterion only |
| Most common causes | Gallstones, alcohol | Missing hypertriglyceridemia |
| First-choice imaging for acute pancreatitis | Abdominal CT | Barium esophagography (entirely inappropriate); note: current guidelines start with abdominal ultrasound for gallstones and reserve CT for an unclear diagnosis or no improvement at 48–72 h |
| Most important initial treatment | Aggressive IV fluids (current: early, moderate goal-directed fluids — WATERFALL 2022) | Antibiotics/ERCP as the first choice |
| Antibiotics | Not routine without infection | Giving them to everyone |
| Timing of ERCP | Urgent only with concomitant cholangitis/obstruction | Making it the first priority |
| The P in BISAP | pleural effusion | Writing ascites |
| Marker of severe dehydration/severe disease | Admission Hct > 44% (hemoconcentration) | Writing a low value |
| Imaging in chronic pancreatitis | Pancreatic duct calcifications in the central upper abdomen | Mistaking them for gallstones |
| Pancreatogenic diabetes | High risk of hypoglycemia; DKA uncommon | Thinking DKA is common |
| Resectability rate of pancreatic cancer | About 15–20% | Overestimating it as 60% |
| Proportion of R1 resections | About 30% | Misremembering it |
| Adjuvant chemotherapy after pancreatic cancer surgery | Standard of care (FOLFIRINOX/gemcitabine) | Writing "no benefit" |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Definition of T2 | Invades the muscularis propria | Remembering it as the submucosa |
| Definition of N2 | ≥ 4 lymph nodes | Remembering it as 2 nodes |
| T2N2M0 | Stage III | Mistaking it for stage II |
| Stage II/III rectal cancer | Preoperative CCRT to downstage and reduce local recurrence | Operating directly |
| Requirement for cetuximab | Effective only in RAS wild-type tumors | Giving it to K-ras-mutant patients |
| bevacizumab | For metastatic disease; not standard adjuvant therapy | Using it as adjuvant therapy |
| Most common pattern of CRC recurrence | Distant metastasis (liver, lung) | Anastomotic |
| Age at diagnosis in Lynch syndrome | Younger (~45 years) | Writing "older" |
| Location of adenomas in Lynch syndrome | Proximal (right) colon | Left side |
| Peutz-Jeghers polyps | Hamartomas | Mistaking them for adenomas |
| Extraintestinal features of Turcot/Gardner | Brain tumors / osteomas | Swapping them |
| Invasiveness of polyps | sessile > pedunculated | The reverse |
| Intestinal-type gastric cancer | Favors the antrum/body | Writing cardia (note: cardia cancers are in fact mostly intestinal-type too; the classic exam answer is the antrum) |
| Diffuse-type gastric cancer | Can arise anywhere in the stomach (no specific site), linitis plastica | Confusing it with the intestinal type |
| Least associated with esophageal adenocarcinoma | H. pylori (possibly even protective) | Mistaking it for a risk factor |
| Curative treatment of early HCC | Surgical resection or RFA | Going straight to TACE |
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- Morphine is contraindicated in biliary pain/sphincter of Oddi spasm — it contracts the sphincter of Oddi; choose meperidine or an NSAID. The most classic giveaway trap (the exam answer; current evidence shows morphine is no worse, meperidine is now avoided because of its neurotoxic metabolite, and NSAIDs are first-line for biliary colic).
- Charcot triad (pain, fever, jaundice) = cholangitis; add shock + altered mental status = Reynolds pentad → urgent ERCP. Do not squeeze "gallbladder enlargement" into the triad.
- Acalculous cholecystitis typically occurs in ICU/critically ill/TPN patients; "cholecystitis always involves stones" is a false statement.
- UDCA dissolves only small, radiolucent cholesterol stones, and is used in patients at high surgical risk.
- PSC is the strongest risk factor for cholangiocarcinoma; "PSC does not increase cholangiocarcinoma risk" is always wrong.
- Imaging giveaways: Rokitansky-Aschoff sinuses + comet-tail artifact = adenomyomatosis; echogenic foci in the bile ducts + reverberation artifact = pneumobilia.
Common traps
- Treating "most common" as "most specific": calculous cholecystitis is the most common, but the HIDA scan is the most specific confirmatory test.
- Misjudging biliary colic (<6h, no fever) as cholecystitis (>6h, fever, Murphy(+)); cholangitis must have jaundice + fever.
- Choosing cholecystitis whenever you see "jaundice" — cholecystitis is usually not accompanied by jaundice (unless complicated by Mirizzi syndrome or CBD stones).
- Delaying ERCP when treating cholangitis: in shock/altered mental status antibiotics fail; decompression and drainage are the lifesaving step.
- Muscle lacks glucose-6-phosphatase → cannot release glucose into the blood (only liver/kidney/intestine can). Gluconeogenesis takes place "mainly in the liver."
- Ethanol ≠ gluconeogenic substrate (acetyl-CoA cannot provide net OAA); in addition, alcohol metabolism generates NADH → hypoglycemia + lactic acidosis.
- F-2,6-BP = master switch between glycolysis and gluconeogenesis: up → glycolysis, down → gluconeogenesis; regulated by glucagon/insulin via PKA.
- Anaerobic glycolysis → 2 ATP + lactate; the purpose is to regenerate NAD⁺.
- Rate-limiting enzyme of the PPP = G6PD (not 6-phosphogluconolactonase).
- The three ketone bodies: acetoacetate, β-OH-butyrate, acetone; α-KG does not count.
- Oxidation at C-1 → gluconic acid.
Common traps
- Remembering the "rate-limiting enzyme" as the first enzyme of the pathway: the first step of the PPP is G6PD (which happens to be rate-limiting as well), but do not take hexokinase as the rate-limiting enzyme of glycolysis (it is PFK-1).
- Mixing up directions: PFK-1 belongs to glycolysis, F-1,6-BPase to gluconeogenesis; F-2,6-BP switches one on and the other off at the same time.
- Treating ethanol/fatty acids as gluconeogenic substrates; only glycerol, lactate, glucogenic amino acids, and propionyl-CoA from odd-chain fatty acids qualify.
- Treating the ethanol of anaerobic fermentation (yeast) as a human product — in humans, anaerobic metabolism stops at lactate.
- Saliva: sympathetic and parasympathetic input both stimulate secretion (parasympathetic: large volume, watery; sympathetic: small volume, viscous); this is an exception, opposite to the rest of the gut.
- Fat entering the duodenum = the strongest signal inhibiting gastric emptying (CCK + enterogastric reflex).
- ~90% of serotonin comes from intestinal EC cells; the vomiting center is in the medulla, the CTZ in the area postrema.
- Gastrin = strongest trophic effect (stimulates gastric mucosal growth); CCK mainly stimulates pancreatic enzymes/gallbladder contraction.
- Hormone pairing: acid → secretin (HCO₃⁻ output); fat/amino acids → CCK; glucose → GIP (incretin).
- Fatty acids <12C travel via the portal vein; long-chain ones via lacteals/lymph.
- ENS = myenteric plexus + submucosal plexus + ICC; the nodose ganglion is a vagal sensory ganglion, not part of the ENS.
- Intrinsic factor is secreted by parietal cells; B12 is absorbed in the terminal ileum; pernicious anemia/gastrectomy/ileal disease → B12 deficiency.
- Somatostatin (D cell) = the universal inhibitor; low gastric pH inhibits gastrin via somatostatin negative feedback.
Common traps
- Treating "gastric distension" as the main inhibitor of gastric emptying — gastric distension actually promotes emptying; the strongest inhibitor is duodenal fat.
- Remembering the source of serotonin as "the brain" — most of it is in the gut.
- Swapping the functions of gastrin and CCK: gastrin governs gastric acid + mucosal growth; CCK governs pancreatic enzymes + the gallbladder.
- Thinking secretin stimulates gastric acid — it inhibits gastric acid and stimulates bicarbonate.
- Thinking long-chain fats travel via the portal vein — they go via lymph (chylomicrons).
- The spleen derives from mesenchyme (dorsal mesogastrium), not foregut endoderm; it is the gallbladder that arises from the foregut (hepatic diverticulum).
- Sertoli → MIS → Müllerian regression; Leydig → testosterone → Wolffian differentiation. Remember "S = duct regression, L = duct development."
- Ureter/renal pelvis/collecting ducts = ureteric bud; nephrons = metanephric mesoderm. Bladder trigone = mesonephric duct origin (not metanephric).
- Umbilical vein → ligamentum teres hepatis; ductus venosus → ligamentum venosum.
- Prostate ↔ Skene glands; Bartholin ↔ Cowper glands.
- Completion of meiosis I → secondary spermatocyte (n, 2C).
Common traps
- Classifying the spleen as a foregut endoderm organ (it merely lies in the foregut region and shares its blood supply).
- Swapping the cells of origin of MIS and testosterone (MIS = Sertoli, testosterone = Leydig).
- Remembering the bladder trigone as metanephric/urogenital sinus in origin — it comes from the mesonephric duct.
- Pairing the prostate's homolog with Bartholin glands (it is actually Skene glands).
- Remembering the DNA content of a secondary spermatocyte as 1C — it should be 2C (meiosis II not yet complete).
- Veins of the pancreatic head → SMV (not the splenic vein); SMV + splenic vein → portal vein; IMV → splenic vein.
- The lateral end of the inguinal ligament attaches to the ASIS (the AIIS is for rectus femoris); conjoint tendon = internal oblique + transversus abdominis.
- Indirect hernias pass lateral to the inferior epigastric artery, direct hernias medial (Hesselbach triangle).
- The boundary of the pelvic inlet includes the pecten pubis (a common fracture site); the ischial spine belongs to the pelvic outlet.
- During defecation the levator ani relaxes (it does not contract) → opening the anorectal angle.
- Perineal membrane = upper boundary of the superficial perineal pouch.
- Cisterna chyli = convergence of the intestinal lymphatic trunk + left/right lumbar lymphatic trunks, draining via the thoracic duct into the left venous angle.
- Division above/below the dentate line: above (portal, painless, internal iliac nodes, internal hemorrhoids) vs below (systemic, painful, inguinal nodes, external hemorrhoids).
- Four portosystemic anastomoses: lower esophagus, rectum, periumbilical (caput medusae), retroperitoneum.
Common traps
- Writing the venous drainage of the pancreatic head as the splenic vein (it is actually the SMV).
- Remembering the attachment of the inguinal ligament as the AIIS, or including the "external oblique" in the conjoint tendon (it is actually internal oblique + transversus).
- Treating the ischial spine as a landmark of the pelvic inlet (it is a landmark of the outlet).
- Writing that the pelvic diaphragm "contracts" during defecation — it must relax to allow evacuation.
- Leaving out one of the three trunks draining into the cisterna chyli (intestinal trunk + both lumbar trunks — none can be omitted).
| Exam point | Correct answer | Common trap |
|---|---|---|
| Chargaff calculation (T=31%) | C=G=19% | Miscalculating C=31% |
| B-DNA parameters | Right-handed, 10 bp/turn, 3.4 Å | 3.6 Å or left-handed (that is Z-DNA) |
| Nature of the replication primer | RNA (synthesized by primase) | Answering a DNA primer |
| AZT mechanism and target | Lacks a 3'-OH → chain termination; target = reverse transcriptase | Pointing to protease/RNase H/host pol by mistake |
| Proofreading activity | 3'→5' exonuclease (Pol III) | Confusing it with 5'→3' (primer removal) |
| Sealing nicks between DNA fragments | DNA ligase | Answering polymerase or helicase |
| Discontinuous fragments of the lagging strand | Okazaki fragments (primers removed and gaps filled by Pol I) | Thinking both strands are synthesized continuously |
| Repair of UV pyrimidine dimers | NER; defect = XP | Answering BER |
| Postreplication mismatch repair | MMR (MutS/L/H); defect = Lynch | Answering NER |
| DNA glycosylase belongs to | BER | Listing it as an MMR component by mistake |
| What is cleaved in the SOS response | LexA repressor (autocleavage) | Answering that UvrA or RecA is degraded |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Why PCR uses Taq | Denaturation at 95°C → requires a heat-stable enzyme; E. coli Pol would be inactivated | Treating "Taq lacks proofreading" as the main reason it could not be used |
| How many regions one primer pair amplifies | Only one specific segment; multiple loci require multiplex PCR | Thinking one primer set can amplify several sites at once |
| What is needed to build a genomic library | Restriction enzyme + ligase (no reverse transcriptase needed) | Adding reverse transcriptase by mistake |
| Reverse transcriptase is used for | cDNA library (mRNA→cDNA) | Using it for a genomic library |
| Uses of RFLP | Paternity testing, linkage analysis, DNA fingerprinting | Using it to build a cDNA library by mistake |
| Largest cloning vector | YAC (contains telomeres/centromere/ori) | Choosing plasmid or cosmid by mistake |
| Recognition site of type II restriction enzymes | Palindromic sequences | Taking asymmetric sequences as the target |
| Standard method of plasmid transformation | CaCl₂ + 42°C heat shock | Writing "low-voltage electrophoresis" by mistake |
| Does site-directed mutagenesis need reverse transcriptase? | No (uses mutagenic primers + polymerase) | Adding reverse transcriptase by mistake |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| lac gene pairing | Z = β-gal, Y = permease, A = transacetylase | Swapping Z/Y |
| Conditions for full lac operon expression | No glucose + lactose present (CAP-cAMP↑) | Thinking lactose alone turns it fully on |
| Direction of trp attenuation | Trp high → termination; Trp low → continuation | Reversing the direction |
| Main reason expression levels differ among housekeeping genes | Promoter affinity for RNA pol | Answering degradation rate or inducers |
| What binds directly to an enhancer | activator | Answering coactivator/TBP |
| Hotspot for DNA methylation | CpG dinucleotides | Answering TATA/CAAT box, telomeres |
| Effect of HDAC | Deacetylation → condensation → transcriptional repression | Reversing it with HAT-mediated activation |
| Motif mediating dimerization | Leucine zipper | Answering zinc finger/β-barrel |
| Role of homeotic genes | Expressed late; determine segmental structures | Treating them as genes for specific organs/traits (eye color/wings) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Type of recombination in V(D)J recombination | Site-specific recombination (RAG1/2 recognize RSS; no homologous sequence required) | Answering homologous recombination |
| Feature of an integrated retrovirus | LTRs repeated at both ends | Thinking gag/pol/env are repeated |
| Molecular defect in sickle cell disease | β-globin Glu→Val point mutation | Confusing it with β-thalassemia (reduced/absent chains, γ compensation) |
| Phase in which terminally differentiated cells arrest | G0 phase | Answering G1 or still cycling |
| Why histones bind DNA | Rich in Lys/Arg → positively charged, electrostatically holding negatively charged DNA | Thinking covalent bonds or hydrophobic interactions |
| Structure of the telomeric single strand | Four-stranded G-quadruplex | Answering three- or five-stranded |
| Proportion of the human genome that codes for protein | About 1.5–2% | Answering >40% |
| Level at which antibody light-chain V–J and J–C joining occur | V–J at the DNA level, J–C by RNA splicing | Thinking J–C is also DNA recombination |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Disease and mechanism of HGPRT deficiency | Lesch-Nyhan: salvage blocked, uric acid↑, self-mutilation | Thinking de novo synthesis is also broken |
| Which base cannot be salvaged | Xanthine (no corresponding enzyme) | Thinking all bases can be recycled |
| Treatment of orotic aciduria | Give uridine to bypass the defect | Choosing thymine/adenosine/allopurinol by mistake |
| End products of purine vs pyrimidine catabolism | Purines → uric acid; pyrimidines → β-alanine / β-aminoisobutyric acid | Swapping the end products |
| Enzyme and cofactor for dUMP→dTMP | thymidylate synthase + 5,10-methylene-THF | Overlooking folate's role as the donor |
| Difference between thymine and uracil | Thymine has an extra 5-methyl group | Answering a difference in the sugar or amino group |
| Deamination of 5-methylcytosine | Produces thymine → mutation hotspot | Answering uracil |
| Overactive PRPP synthetase | de novo synthesis↑ → uric acid↑ → gout | Confusing it with APRT deficiency (2,8-DHA stones) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Composition of the PDH complex | 3 enzymes, 5 coenzymes (TPP/lipoic acid/CoA/FAD/NAD⁺) | Taking biotin or CoQ as a coenzyme |
| CO₂/FADH₂ produced per turn of the TCA cycle | 2 CO₂, 1 FADH₂, 3 NADH, 1 GTP | Miscounting CO₂ or FADH₂ |
| Net consumption of OAA in the TCA cycle | 0 (regenerated; acts in catalytic amounts) | Thinking OAA is consumed |
| Where substrate-level phosphorylation occurs | Both cytoplasm and mitochondria | Thinking only in the cytoplasm |
| Location of oxidative phosphorylation | Inner mitochondrial membrane only | Confusing it with substrate-level phosphorylation |
| Direction of H⁺ pumping | Matrix → intermembrane space (Complex I/III/IV) | Writing the direction in reverse |
| What passes electrons directly to O₂ | Complex IV (cytochrome c oxidase) | Choosing Cyt c or CoQ by mistake |
| Enzyme that removes H₂O₂ | glutathione peroxidase | Choosing SOD (handles only superoxide) by mistake |
| Bond in acetyl-CoA | Thioester bond (high-energy) | Answering ester or amide bond |
| Rate-limiting enzyme of the TCA cycle | isocitrate dehydrogenase | Answering citrate synthase |
| ATP yield per NADH/FADH₂ | 2.5 / 1.5 (current values) | Still writing the old values 3/2 |
| Site of action in cyanide (CN⁻) poisoning | Complex IV | Answering Complex I |
| Action of 2,4-DNP | Uncoupling (O₂ consumption↑, heat↑, ATP↓) | Thinking it inhibits the ETC and lowers O₂ consumption |
| Site of action of oligomycin | ATP synthase (Complex V) | Answering Complex IV |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Metabolic outcome of a low-carbohydrate, high-protein diet | β-oxidation↑ → ketone bodies↑ → metabolic acidosis, urea↑ | Answering alkalosis, decreased urea, fat accumulation |
| Effect of HIF-1 activation on ROS | Decreased (PDK1↑ inhibits PDH → oxidative phosphorylation↓) | Thinking ROS are unaffected or increased |
| Metabolic effects of HIF-1 | Shift toward glycolysis (Warburg); pyruvate does not enter the TCA cycle | Overlooking PDK1 as the mediator |
| Attachment site of N-glycosylation | Asn (amide nitrogen), initiated with GlcNAc | Answering Ser/Thr |
| Attachment site of O-glycosylation | Ser or Thr (hydroxyl group) | Answering cysteine or Asn |
| Dominant hormone in the fed vs fasting state | Fed: insulin; fasting: glucagon | Reversing them |
| Ketone bodies | acetoacetate, β-hydroxybutyrate, acetone | Mistaking lactate for a ketone body |
| Most abundant ketone body / dipstick blind spot | β-hydroxybutyrate is the most abundant; nitroprusside dipsticks do not detect β-OHB | Thinking a negative urine ketone test rules out DKA |
| The liver and ketone bodies | The liver produces them but cannot use them (lacks SCOT) | Thinking the liver also burns ketones |
| N-glycosylation consensus sequence | Asn-X-Ser/Thr (X≠Pro) | Omitting X≠Pro |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Site of the first activation step of vitamin D | Liver (25-hydroxylase, CYP2R1) | Answering kidney (that is the second step) |
| Starting material of vitamin D | Cholesterol | Overlooking this precursor relationship |
| Vitamin source of CoA | Pantothenic acid (B5) | Answering folate |
| Metal in the structure of B12 | Cobalt (Co) | Answering iron or magnesium |
| Coordinating amino acids of zinc fingers | cysteine / histidine | Applying leucine (that is the leucine zipper) |
| Why raw egg white causes biotin deficiency | Avidin binds biotin and blocks its absorption | Thinking it relates to B12 |
| What is lacking in pernicious anemia | B12 + intrinsic factor (IF) | Confusing it with folate deficiency |
| Distinguishing B12 vs folate deficiency | B12 deficiency has neurologic symptoms; folate deficiency does not | Confusing them because both anemias are macrocytic |
| Action of the active form of vitamin A | Retinoic acid regulates transcription via RAR/RXR | Thinking it relates only to vision |
| Antioxidant vitamins | E (membrane lipids), C (aqueous phase) | Answering K |
| Laboratory distinction of B12 vs folate deficiency | B12 deficiency: MMA↑ + Hcy↑; folate deficiency: only Hcy↑ | Thinking MMA rises in both |
| Why folate must not be given alone | It masks the anemia of B12 deficiency while the neuropathy worsens | Simply giving folate and leaving it at that |
| Enzymatic roles of vitamin C | Cofactor for prolyl/lysyl hydroxylase; reduces Fe³⁺→Fe²⁺ | Remembering only its antioxidant role |
| Secondary causes of niacin deficiency/pellagra | Hartnup, carcinoid, INH (depletes B6) | Thinking only of dietary deficiency |
| B6 and sideroblastic anemia | PLP is the coenzyme of ALA synthase; INH causes deficiency | Missing the drug association |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Final products of the urea cycle | urea + fumarate | Answering oxaloacetate |
| Fate of fumarate | Enters the TCA cycle | Thinking it becomes glucose directly |
| The two nitrogen sources of the urea cycle | Free NH₄⁺ + aspartate | Omitting aspartate |
| Rate-limiting enzyme | CPS-I (requires NAG activation) | Answering arginase |
| Location | First 2 steps in the mitochondria, last 3 in the cytoplasm | Placing all of it in the cytoplasm |
| Most common urea cycle defect | OTC deficiency (X-linked) → hyperammonemia + orotic aciduria | Overlooking the mode of inheritance |
| Pathway from amino acids to glucose | Via TCA intermediates → gluconeogenesis | Thinking they convert directly |
| Amino acid most likely to form a cis peptide bond | proline | Answering glycine |
| Composition of GSH | γ-Glu–Cys–Gly | Writing an α-linkage or the wrong order |
| Three precursors of creatine | glycine, arginine, methionine | Omitting methionine (SAM) |
| Defective protein in OI | Type I collagen | Answering fibronectin/keratin |
| Main cause of the methyl trap | B12 deficiency | Thinking it is folate deficiency itself |
| Main transport forms of ammonia in blood | glutamine (whole body/brain), alanine (muscle, Cahill cycle) | Thinking free NH₃ is transported directly |
| Main enzyme for ammonia detoxification in the brain | glutamine synthetase | Answering glutaminase |
| Defective enzyme in PKU | phenylalanine hydroxylase (or BH4) | Answering tyrosinase (that is albinism) |
| Why Tyr becomes essential in PKU | The Phe→Tyr step is blocked | Overlooking this cause and effect |
| Lens in homocystinuria | Downward dislocation; CBS (B6-dependent) deficiency | Confusing it with Marfan (upward) |
| Defect in maple syrup urine disease | Branched-chain α-keto acid DH (requires B1) | Missing the B1 link |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Rate-determining step of fatty acid synthesis | ACC (→ malonyl-CoA), requires biotin | Answering the FAS condensation step |
| Rate-determining enzyme of cholesterol synthesis | HMG-CoA reductase | Confusing it with fatty acid synthesis |
| Site of fatty acid synthesis vs oxidation | Synthesis in the cytoplasm / oxidation in the mitochondria | Reversing the two |
| Fate of the end product of odd-chain β-oxidation | propionyl-CoA → succinyl-CoA (requires B12) → TCA | Missing the B12 link |
| Substrate of COX | arachidonate (C20:4) | Answering saturated fatty acids/acetyl-CoA |
| Mechanism of aspirin | Irreversibly acetylates COX, reducing TXA₂/PG | Thinking it "reduces cholesterol synthesis" |
| Distribution of cardiolipin | Inner mitochondrial membrane | Thinking it is in the plasma membrane |
| Extraction of integral membrane proteins | Requires a detergent | Using high salt/chelators (those are for peripheral proteins) |
| Structure of PAF | C1 alkyl-ether + C2 acetate + C3 phosphocholine | Confusing it with plasmalogen (vinyl-ether) |
| Function of HDL | Reverse cholesterol transport, esterification by LCAT | Thinking it carries exogenous TG |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Where Hsp90 binds nuclear receptors | Ligand-binding domain (dissociates as soon as ligand arrives) | Answering the DNA-binding domain |
| Role of cyclins | Regulatory subunit; no kinase activity of their own | Thinking cyclins directly catalyze phosphorylation |
| Mechanism of cholera toxin | ADP-ribosylates Gsα, inhibiting its GTPase → cAMP↑ | Writing that it modifies Gi, or confusing it with pertussis toxin |
| Mechanism of pertussis toxin | ADP-ribosylates Giα, locking it in the off state | Reversing the direction with cholera toxin |
| Type of ANP receptor | Membrane-bound guanylyl cyclase (→cGMP) | Treating it as a GPCR or cAMP pathway |
| Downstream of epinephrine β receptors | Gs→AC→cAMP→PKA | Writing "directly activates Ras" |
| Order of insulin MAPK signaling | IRS-1→Grb2-Sos→Ras→Raf→MEK→ERK | Reversing MEK/ERK |
| RTK structure | Extracellular ligand binding, intracellular catalytic domain | Placing the catalytic/substrate-binding domain outside the cell |
| Interleukin/cytokine receptors | JAK-STAT pathway | Treating them as the cAMP second-messenger pathway |
| Receptor location: lipid-soluble vs water-soluble hormones | Lipid-soluble: intracellular/nuclear; water-soluble: on the membrane | Placing the thyroid hormone receptor on the membrane |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Pairing partner of the Shine-Dalgarno sequence | 3′ end of 16S rRNA (prokaryotic 30S) | Treating it as the eukaryotic cap mechanism |
| Mechanism of ampicillin | Inhibits the cell wall (transpeptidase) | Treating it as inhibiting ribosomes/protein synthesis |
| Codon-anticodon bonding | Hydrogen bonds (complementary pairing) | Answering covalent bonds |
| Structural tendency of Gly-Pro sequences | β-turn | Answering α-helix |
| How iron deficiency inhibits translation | HRI → phosphorylates eIF2α | Overlooking that "phosphorylation actually inhibits initiation" |
| Molecular weight of the protein encoded by 900 bp | ≈ 33,000 Da (299 aa×110≈32,900) | Forgetting to subtract the stop codon/using the wrong average mass |
| Order of eukaryotic initiation | The small subunit binds the mRNA first, the large subunit joins last | Thinking the complete ribosome assembles first |
| Initiator tRNA | Prokaryotes fMet; eukaryotes Met (not formylated) | Assigning 80S to prokaryotes |
| Catalyst of peptide bond formation | 23S rRNA (ribozyme) | Thinking it is a protein enzyme |
| Direction of synthesis/reading | Polypeptide N→C; mRNA 5′→3′ | Writing the directions in reverse |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Polymerase that synthesizes mRNA | Pol II | Choosing Pol IV by mistake (it exists only in plants, not in humans) |
| Most sensitive to α-amanitin | Pol II (Pol I is insensitive) | Reversing the order |
| Synthesis of tRNA / 5S rRNA | Pol III | Confusing it with the large rRNAs made by Pol I |
| Processing of the mRNA 3′ end | polyadenylation (adding the poly(A) tail) | Answering "phosphorylation" |
| poly(A) signal sequence | AAUAAA | Writing a promoter sequence such as TATA/CAAT |
| Where 5′ capping occurs | In the nucleus, cotranscriptionally | Answering ER or Golgi |
| Nucleophile in group I introns | Free guanosine | Choosing snRNA/ligase (spliceosome components) by mistake |
| Nucleophile in spliceosome/group II introns | 2′-OH of an internal A (lariat) | Confusing it with the external G of group I |
| Common 3′-end sequence of tRNA | -CCA-OH | Thinking it differs among tRNAs |
| Number of prokaryotic RNA polymerases | Only one (relies on σ factors) | Applying the eukaryotic three-polymerase division of labor |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Rate constant when [S]≪Km | kcat/Km (second-order rate constant; Vmax/Km = kcat/Km × [E]t) | Answering kcat or 1/Km |
| Index of catalytic efficiency | kcat/Km | Looking only at kcat or only at Km |
| Effect of competitive inhibition on Km/Vmax | Km↑, Vmax unchanged | Confusing it with noncompetitive inhibition |
| Uncompetitive inhibition | Km↓, Vmax↓ (parallel LB lines) | Thinking Vmax is unchanged |
| Source of A280 absorbance | Trp>Tyr>Phe | Counting residues without aromatic rings, such as Asn |
| The only covalent bond in tertiary structure | Disulfide bond (S-S) | Treating it as a force maintaining secondary structure |
| Force maintaining the α-helix | Backbone hydrogen bonds (i ↔ i+4) | Answering disulfide bonds/hydrophobic interactions |
| Measuring protein molecular weight | SDS-PAGE or gel filtration | Using IEF (that measures pI) |
| Action of SDS | Confers a uniform negative charge, destroys activity | Thinking SDS-PAGE preserves activity |
| Elution order in gel filtration | Large molecules elute first | Remembering small molecules eluting first |
| Can gel filtration identify a protein? | No; it separates by size only | Thinking it can establish identity |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| First step in azoospermia | Repeat the semen analysis to confirm | Proceeding to invasive procedures or drawing conclusions after one abnormal result |
| When clomiphene is ineffective | Hypothalamic-pituitary failure | Thinking clomiphene works for everything |
| Next step for clomiphene resistance | metformin / letrozole / gonadotropin | Choosing a dopamine antagonist by mistake |
| Indication for dopamine agonists | Anovulation due to hyperprolactinemia | Using them for ovulatory disorders in general |
| Most important imaging in infertility | HSG (tubal patency/uterine cavity) | Choosing pelvic MRI by mistake |
| Infertility and fibroids | Most fibroids are not the main cause (only submucosal ones matter) | Treating any fibroid as the main cause |
| ART that does not require oocyte retrieval | IUI | Choosing IVF/ICSI by mistake |
| When the oocyte completes meiosis II | After fertilization | Answering at ovulation or at the LH surge |
| Threshold that triggers the LH surge | E2 ≥200 pg/mL sustained >50 hours | Misremembering it as a progesterone value |
| Contraindications to COCs | Smoking at age >35, VTE, migraine with aura | Treating contraindications as indications |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Core mechanism of preeclampsia | Placental ischemia → endothelial injury | Thinking it is essential hypertension |
| Classic triad | Hypertension + proteinuria + edema (current: edema is no longer a criterion; since ACOG 2013, severe features without proteinuria also qualify) | Including elevated blood glucose |
| Severe features | BP ≥160/110, PLT <100,000, liver/kidney/lung/neurologic involvement | Treating the amount of proteinuria as a severe feature |
| Urine protein 100 mg | Does not even reach the diagnostic threshold (300 mg) | Misjudging it as severe |
| Main purpose of MgSO₄ | Seizure prophylaxis | Mistaking it for an antihypertensive/tocolytic |
| Antidote for MgSO₄ toxicity | calcium gluconate | Forgetting to give calcium |
| Drug contraindicated in preeclampsia | methylergonovine (vasoconstrictor) | Using it for postpartum hemorrhage |
| First choice for postpartum hemorrhage | oxytocin | Using Methergine by mistake |
| Management of severe preeclampsia | Immediate admission + evaluation for delivery | Outpatient follow-up only |
| Highest risk in obese pregnant women | Gestational diabetes (3-7×) | Choosing preeclampsia by mistake |
| Risk factors for pulmonary edema | Preeclampsia/sepsis/tocolytics | Treating GDM as a risk factor |
| Drug of choice for GDM during pregnancy | insulin | Forgetting that dietary control is still required |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Schiller-Duval body | yolk sac tumor (AFP) | Confusing it with other bodies |
| Call-Exner body | granulosa cell tumor | Mismatching |
| Abundant psammoma bodies | Serous, well differentiated, relatively better prognosis | Thinking the prognosis is very poor |
| Pathology of dysgerminoma | Large cells, pale-staining cytoplasm, prominent nucleoli | Confusing it with yolk sac/granulosa cell tumor |
| Invasion of the lower 1/3 of the vagina | Cervical cancer IIIa | Misjudging it as stage II because there is no parametrial invasion |
| Parametrial invasion | IIb | Confusing it with IIIb (pelvic wall) |
| Lymph node metastasis (added in FIGO 2018) | IIIc (c1 pelvic / c2 para-aortic) | Not knowing about the nodal staging added in 2018 |
| CIN2 (age 40) | conization/LEEP | Follow-up only / going straight to hysterectomy / relying on vaccination as treatment |
| First step for postmenopausal bleeding | History/pelvic exam/ultrasound → endometrial sampling | Going straight to hysterectomy or giving estrogen |
| T2-hyperintense mass within the uterine cavity | Endometrial cancer | Misjudging it as ovarian/cervical cancer |
| Marker of brain metastasis in choriocarcinoma | CSF/serum hCG ≥ 1:60 | Misjudging 1:100 as indicating brain metastasis |
| Chemotherapy for high-risk GTN | EMA-CO multiagent regimen | Using single-agent MTX by mistake |
| Instrument for dividing the IP ligament | Avoid monopolar electrocautery (ureteral injury) | Choosing monopolar cautery for coagulation |
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- Nullipara = para 0: abortions (<20 weeks) do not count toward para. Gravida counts the number of pregnancies.
- The fundus reaches the umbilicus at 20 weeks; after 20 weeks, fundal height (cm) ≈ gestational age in weeks.
- Amniotic fluid pH 7.0–7.5 (alkaline); Nitrazine turning blue + ferning = rupture of membranes; vaginal secretions pH 4.5–5.5 (acidic).
- Third-degree perineal laceration = involves the anal sphincter (memorize the degrees cumulatively).
- Oxytocin = milk ejection/uterine contraction; prolactin = milk production (the most frequently tested swap trap).
- Four prerequisites for operative vaginal delivery: full dilation, ruptured membranes, cephalic presentation, adequate station.
- Third stage >30 minutes without delivery of the placenta = retained placenta.
Common traps
- Swapping the functions of prolactin and oxytocin (milk production vs milk ejection).
- Thinking labor analgesia is contraindicated in VBAC (the statement is "false"; an epidural is not contraindicated).
- Counting para as the "number of pregnancies" (it is the number of deliveries reaching 20 weeks); twins add only +1 to para.
- Using fundal pressure for shoulder dystocia (wrong — see the obstetric emergencies section; it worsens impaction).
- Nitrazine false positives: blood/semen/BV are also alkaline.
- Dysgerminoma peaks from adolescence to ~30 years (not <10 years); the most common malignant ovarian germ cell tumor, radiosensitive, marker LDH.
- Yolk sac tumor = children + AFP + Schiller-Duval body.
- Complete mole 46,XX, very high hCG, malignant transformation 15–20%; partial mole triploid, malignant transformation 1–5%.
- 95% of ectopic pregnancies are tubal (ampulla most common).
- Paget disease of the nipple ≈ virtually always has underlying breast cancer; vulvar Paget mostly has no underlying invasive carcinoma.
- BPH = transition zone, combined epithelial + stromal hyperplasia (prostate cancer is in the peripheral zone).
- Undescended testes most often lodge in the inguinal canal, raising seminoma risk.
- Adult granulosa cell tumor = low-grade malignant, can recur late, secretes estrogen, Call-Exner bodies.
Common traps
- Labeling dysgerminoma as a childhood tumor (confusing it with yolk sac tumor).
- Treating adult granulosa cell tumor as "benign" (it is actually low-grade malignant).
- Assuming vulvar Paget, like nipple Paget, "always has invasive cancer."
- Answering "testis" as the starting site of tuberculous orchitis (it should be the epididymis).
- Answering "pure epithelial hyperplasia" for BPH (it should be epithelial + stromal).
- First-trimester screening = PAPP-A↓ + free β-hCG↑ + NT↑; uE3, AFP, and inhibin A belong to the second-trimester quad screen.
- Reactive NST = ≥2 accelerations within 20 min, each ≥15 bpm × ≥15 seconds; a nonreactive NST requires further evaluation.
- Late decelerations belong to the CST (placental insufficiency), not the NST.
- BPP fetal breathing movements ≥30 seconds within 30 min = 2 points (there is no 1 point); a total ≤4 requires intervention.
- The most severe umbilical artery Doppler finding = REDV (reversed end-diastolic velocity), often requiring urgent delivery.
- TTTS: donor small/oligohydramnios/anemic; recipient large/polyhydramnios/polycythemic.
- Folic acid started 4 weeks before conception reduces NTDs by ~70%; elevated AFP = open NTD.
- Kleihauer-Betke = quantifies fetomaternal hemorrhage, determining the anti-D dose.
Common traps
- Treating uE3/AFP/inhibin A as first-trimester markers (they are second-trimester).
- Applying late/early decelerations to NST interpretation (they belong to the CST).
- Scoring a BPP item as "1 point" or "3 points" (each item scores only 0 or 2).
- Writing that the donor has polyhydramnios (the donor has oligohydramnios).
- Treating AEDV as the most severe finding (REDV is the most severe).
- Missed period + lower abdominal pain + bleeding → first do a pregnancy test to exclude a ruptured ectopic pregnancy.
- Incomplete abortion = open cervical os + retained tissue → D&C; in threatened abortion the os is closed.
- Repeat ectopic risk is similar after MTX and salpingostomy (not higher with MTX).
- Painless bright red bleeding = placenta previa (ultrasound; no digital exam); pain + rigid uterus = placental abruption (watch for DIC).
- Shoulder dystocia: McRoberts + suprapubic pressure are effective; fundal pressure is absolutely contraindicated.
- Most common cause of PPH = uterine atony (the Tone of the 4 Ts), and its most common cause = uterine overdistension (multiple gestation); first line is oxytocin.
- Ergots are contraindicated in preeclampsia/hypertension; PGF2α is contraindicated in asthma.
- Active management of the third stage = oxytocin + controlled cord traction + uterine massage (since WHO 2012, sustained massage is no longer routine after prophylactic oxytocin; uterine tone is assessed instead) (does not include manual/instrumental forced removal of the placenta).
- Chorioamnionitis → antibiotics + delivery; tocolytics contraindicated.
Common traps
- Using fundal pressure for shoulder dystocia (worsens impaction; contraindicated).
- Using ergots for PPH in preeclampsia (raises BP; contraindicated); using carboprost in asthma.
- Taking "hypotension" as the earliest sign of hemorrhage (wrong; it is tachycardia).
- Attributing uterine atony to placenta previa/abruption (the main cause of atony is overdistension).
- Still giving tocolytics once infection is confirmed (contraindicated).
| Exam point | Correct answer | Common trap |
|---|---|---|
| Signs of neonatal meningitis | Bulging fontanelle is reliable; neck stiffness is least common/unreliable | Judging by neck stiffness as in adults |
| Physiologic weight loss | ≤ 10%; more than that is abnormal | Treating 11% as normal |
| NRP: HR < 100 and not breathing | First give positive-pressure ventilation (PPV) | Going straight to chest compressions / giving drugs first |
| When to add chest compressions in NRP | After 30 seconds of PPV, HR still < 60 | Starting compressions without having given PPV |
| Infant of a diabetic mother | Hypoglycemia within 24 hours; hypocalcemia | Misremembering "hypercalcemia" |
| Acrocyanosis | A normal physiologic finding | Treating it as heart disease |
| Route of GBS sepsis | Ascending infection from the maternal birth canal; G(+) | Remembering it as gram-negative |
| Breast milk jaundice | Indirect → phototherapy only if bilirubin exceeds the phototherapy threshold (breastfeeding can usually continue); MRCP not needed | Ordering MRCP |
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Answering strategy: for neonatal questions asking "least likely/least appropriate," first ask "is the direction right for a newborn, is the timeline right, is the sign reliable?" — neck stiffness is unreliable, hypoglycemia occurs within 24h, resuscitation starts with ventilation: these are the three reflex answers.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Epididymal epithelium | Pseudostratified columnar + stereocilia | Confusing it with the cilia of the fallopian tube |
| Epithelium of the ectocervix | Nonkeratinized stratified squamous | Remembering it as columnar |
| Spermiogenesis | Spermatids transform into sperm, without dividing | Thinking it includes meiosis |
| When the zona pellucida appears | Only from the primary follicle onward | Thinking it is already present in the primordial follicle |
| Sources of semen components | Seminal vesicles (fructose) + prostate (PSA); the corpora cavernosa contribute nothing | Treating the corpora cavernosa as a secretory source |
| Skin of the penile shaft | No subcutaneous fat | Thinking there is a fat layer |
| Leydig vs myoid cells | Leydig cells secrete testosterone, in the interstitium outside the tubules | Thinking myoid cells secrete androgens |
| Thickest layer of the myometrium | Middle layer (oblique) | Remembering it as the outer layer |
| Changes in the pregnant uterus | Hypertrophy + hyperplasia | Remembering only one of them |
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Answering strategy: for histology questions on "epithelium/cell type," work backward from the "organ–epithelium table"; for "at which stage does it appear," memorize "time points of appearance" such as "zona pellucida = from the primary follicle, blood vessels = from tertiary villi."
| Exam point | Correct answer | Common trap |
|---|---|---|
| Source of hCG | syncytiotrophoblast | Misremembering corpus luteum/pituitary/decidua |
| Action of hCG | Maintains the corpus luteum → continued progesterone secretion | Thinking hCG itself directly sustains the pregnancy |
| Hallmark of tertiary villi | Appearance of fetal capillaries (vascularization) | Thinking secondary villi already have vessels |
| Outermost layer of the villi | Always the syncytiotrophoblast | Remembering it as the cytotrophoblast |
| Primary vs secondary villi | Primary: two trophoblast layers; secondary: plus connective tissue (still no vessels) | Mistaking connective tissue for vessels |
| Origin of the decidua | Maternal endometrium | Treating it as fetal tissue/an hCG source |
| Changes in the placental barrier | Thins in late pregnancy (cytotrophoblast regresses) | Thinking it gets thicker |
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Answering strategy: for embryology questions asking "at which stage a structure appears," remember two time points — hCG is secreted by the syncytiotrophoblast from implantation, and capillaries appear only in tertiary villi; for "origin" questions, first separate "fetal side (trophoblast) vs maternal side (decidua)" to eliminate options quickly.
| Exam point | Correct answer | Common trap |
|---|---|---|
| ATPase that maintains the largest ion concentration gradient in the body | H⁺-K⁺ ATPase (acid secretion by gastric parietal cells) | Choosing Na⁺-K⁺ ATPase by mistake |
| Properties of facilitated diffusion | Down the gradient, requires a membrane protein, no ATP used, saturable | Writing against the gradient or ATP-requiring |
| Primary vs secondary active transport | Primary consumes ATP directly; secondary uses the gradient of Na⁺ or other ions | Treating SGLT as directly consuming ATP |
| Options describing "from high to low concentration" | Na⁺ entering via SGLT, K⁺ leaving via leak channels (the ion moving down its gradient) | Counting uphill Ca²⁺ ATPase reuptake as downhill |
| Which equilibrium potential the resting membrane potential is closest to | E_K (≈ -90 mV), because K⁺ permeability is highest | Thinking it is close to E_Na |
| Direction of Vm when Na⁺ channels open | Toward E_Na (+60 mV) → depolarization | Writing the direction in reverse |
| Definition of a hypertonic solution | Osmolar concentration > 300 mOsm/L → cells shrink (counting only non-penetrating solutes, i.e., effective osmolality; a urea solution above 300 mOsm/L is still hypotonic) | Misjudging hypertonic as causing cells to swell |
| Isotonic solution | 0.9% NaCl (≈300 mOsm); cell volume unchanged | Choosing 5% dextrose (long-term effect) by mistake |
| True energy source of secondary active transport | The Na⁺ gradient established by Na⁺-K⁺ ATPase | Thinking the cotransporter consumes ATP itself |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Thermoregulatory center | hypothalamus | Choosing brainstem/thalamus by mistake |
| Heat-loss center vs heat-production center | Anterior/preoptic area: heat loss; posterior: heat production | Reversing their locations |
| Set point in fever vs heatstroke | Fever: set point raised; heatstroke: set point normal | Thinking antipyretics also work for heatstroke |
| Antipyretics in heatstroke | Ineffective; physical cooling is required | Giving NSAIDs to bring down "heatstroke" |
| ATP source in the first few seconds of exercise | creatine phosphate | Choosing aerobic metabolism or anaerobic glycolysis by mistake |
| Main energy supply during prolonged exercise | Aerobic metabolism | Confusing it with the first few seconds |
| Substance deficient in pernicious anemia | Vitamin B12 (due to lack of intrinsic factor) | Choosing iron or folate by mistake |
| Problem with giving folate in pernicious anemia | Improves the blood picture but masks and worsens the neuropathy | Thinking folate can replace B12 |
| Underlying mechanism of pernicious anemia | Lack of intrinsic factor | Thinking it is simply inadequate dietary intake |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Innervation of the adrenal medulla | Preganglionic sympathetic fibers, ACh | Choosing postganglionic/NE by mistake |
| Cortisol and RBCs | Stimulates (↑) | Answering ↓ by applying "suppresses white cells" |
| Cortisol and bone | Bone mass ↓ (osteoporosis) | Choosing increased bone mass by mistake |
| Glucose sensor of β cells | GLUT2 (high Km, not saturated) | Choosing GLUT4 by mistake |
| Acute actions of insulin within seconds | GLUT4 translocation, K⁺/amino acid uptake, Na⁺/K⁺-ATPase | Treating protein synthesis as an acute action |
| Solubility/receptors of corticosteroids | Steroid, lipid-soluble, intracellular receptors | Treating them as acting on membrane receptors |
| Mechanism in emergency treatment of hyperkalemia | Insulin drives K⁺ into cells | Thinking it excretes potassium |
| When the cumulus oophorus appears | Mature (Graafian) follicle | Choosing the primary follicle by mistake |
| Lifespan of the corpus luteum without pregnancy | About 14 days | Confusing it with the length of the whole luteal phase |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| PaO₂/SaO₂ in anemia | Both normal; only O₂ content↓ | Thinking PaO₂ is ↓ |
| Blood oxygen in CO poisoning | PaO₂ normal, SaO₂ ↓ | Misjudging because the pulse oximeter reads falsely normal |
| Hypoxemia with a normal A–a gradient | Hypoventilation / high altitude | Thinking it is always shunt |
| Hypoxemia not corrected by 100% O₂ | Right-to-left shunt | Choosing V/Q mismatch by mistake |
| Gas exchange pattern of CO | Diffusion-limited | Choosing perfusion-limited by mistake |
| O₂/CO₂ under normal conditions, N₂O | Perfusion-limited | Treating O₂ as always diffusion-limited |
| Main transport form of CO₂ | HCO₃⁻ (about 70%) | Choosing dissolved or carbamino as the main form |
| Chloride shift at the tissues | HCO₃⁻ moves out of RBCs, Cl⁻ moves in (AE1) | Reversing the direction / mistaking it for a cotransporter |
| Nutrient with the highest RQ | Carbohydrate = 1.0 | Choosing fat by mistake |
| Source of surfactant | Type II alveolar cells | Choosing type I/bronchiolar cells by mistake |
| Most sensitive site for the cough reflex | Carina | Choosing the larynx/lower trachea by mistake |
| Intrapleural pressure during forced expiration | Can become positive → dynamic compression | Thinking it is always negative |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Effect of doubling the radius on blood flow | Flow ×16 (r⁴) | Miscalculating ×2 or ×4 |
| Main compensation in AR | Volume expansion + Frank-Starling (preload↑) | Choosing ANP↑/renal sodium excretion↑ (the opposite direction) by mistake |
| Function of papillary muscles/chordae tendineae | During systole, prevent the leaflets from everting into the atrium | Thinking they "open the valve" |
| Relay station of the baroreceptor reflex | Medulla (NTS) | Choosing the thalamus by mistake |
| Result of increased baroreceptor firing | Vasodilation, HR↓ (BP falls) | Inferring sympathetic activation |
| Phase of coronary filling | Diastole | Choosing systole by mistake |
| Mechanism by which tachycardia causes ischemia | Diastole↓ → coronary perfusion↓ | Remembering only the fast rate and missing perfusion |
| Main reason oxygen-carrying capacity rises with endurance training | RBC↑ (EPO) | Choosing vital capacity/2,3-DPG as the main reason |
| Source of vWF | Endothelial cells, megakaryocytes | Choosing smooth muscle by mistake |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Site of convergence in referred pain | Spinal cord (second-order neurons) | Choosing medulla/thalamus by mistake |
| Referred pain of cholecystitis | Right shoulder (phrenic nerve C3–C5) | Choosing the left shoulder (that is the heart) |
| What directly releases Ca²⁺ in skeletal muscle | RyR1 (mechanically activated by DHPR) | Thinking DHPR releases calcium directly |
| Key enzyme for smooth muscle relaxation | MLCP (dephosphorylates MLC) | Confusing it with MLCK, which acts in the opposite direction |
| Motor planning/programming | Basal ganglia + cerebellum | Thinking the cortex does it alone |
| Taste nerves | CN VII / IX / X | Treating CN V (trigeminal) as a taste nerve |
| Location of auditory receptors | Inner ear (organ of Corti) | Choosing the middle ear/vestibule by mistake |
| Temporal retinal fibers | Do not cross at the chiasm → ipsilateral LGN | Thinking all fibers cross |
| Visual field defect from chiasmal compression | Bitemporal hemianopia | Choosing homonymous hemianopia by mistake |
| Receptor at the NM junction | nicotinic (end plate) | Choosing muscarinic by mistake |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Largest ion gradient in the body | H⁺-K⁺ ATPase (gastric acid, ~10⁶-fold) | Choosing Na⁺-K⁺ ATPase by mistake |
| Direction of Na⁺ movement in SGLT | Down its gradient (driving glucose against its gradient) | Thinking Na⁺ also moves against its gradient |
| Energy source of secondary active transport | Uses the Na⁺ electrochemical gradient (relies on ATP indirectly) | Thinking it hydrolyzes ATP directly |
| Action of facilitated diffusion | Lowers activation energy, speeding movement down the gradient | Thinking it can move substances against the gradient / change the gradient |
| Direction of membrane potential after a channel opens | Moves toward that ion's equilibrium potential | Reversing the direction |
| When E_K < Vm < E_Cl | Opening Cl⁻ channels depolarizes, opening K⁺ channels hyperpolarizes | Mixing up the two directions / reversing the inequality |
| RBCs in a hypertonic solution | Crenate (lose water) | Thinking they swell |
| Definition of hypertonic (by effective osmolality — non-penetrating solutes only) | osmolarity > ~300 mOsm/L | Reversing the water-content relationship |
| Mechanism of Ca²⁺ release from the ER | IP₃ + IP₃R open the channel | Choosing Ca²⁺ ATPase (that is reuptake) by mistake |
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- Saliva: sympathetic + parasympathetic input both stimulate secretion (parasympathetic: large volume, watery; sympathetic: small volume, viscous).
- Fat entering the duodenum = the strongest inhibitor of gastric emptying (via CCK + the enterogastric reflex); gastric distension promotes emptying.
- About 90% of 5-HT comes from intestinal EC cells; the vomiting center is in the medulla (brainstem).
- Long-chain fats → lymph (chylomicrons); short- and medium-chain → portal vein.
- Gastrin has the strongest trophic effect (stimulates gastric mucosal growth); do not confuse it with CCK (stimulates pancreatic enzymes).
- The nodose ganglion is a vagal sensory ganglion, not part of the ENS; ENS = myenteric + submucosal plexus + ICC.
Common traps
- Swapping the functions of CCK and gastrin (bile/pancreatic enzymes vs acid/mucosal growth).
- Thinking sympathetic input "inhibits" salivary secretion.
- Writing the absorption route of short-chain fatty acids as lymphatics (it should be the portal vein).
| Exam point | Correct answer | Common trap |
|---|---|---|
| Bowman's capsule hydrostatic pressure↑ | Opposes filtration → GFR ↓ | Thinking it triggers reflex regulation or raises GFR |
| Whose function is ultrafiltration? | Glomerular capillaries | Thinking it is a tubular function |
| Site of glucose reabsorption | Proximal tubule (PCT) only | Adding the distal tubule is wrong |
| Basolateral pump of the PCT | Na⁺-K⁺ ATPase | Filling in NKCC by mistake (that is on the apical membrane of the TAL) |
| Low-protein diet and urine concentration | Reduced (urea↓ → weaker gradient) | Thinking it is enhanced |
| AQP2 translocation | Regulated by ADH (V2→cAMP→PKA) | Mistaking it for AQP1 / active transport |
| Aldosterone escape | Urinary sodium recovers within 1–2 weeks; it then lasts as long as the aldosterone excess continues (K⁺ loss does not escape) — it is not true that it cannot persist >2 weeks | Thinking K⁺ excretion escapes too, or that escape lasts only 2 weeks |
| Urinary HCO₃⁻ in DKA | Not increased (almost all reabsorbed) | Thinking large amounts are excreted |
| Site of action of furosemide | NKCC2 in the TAL | Confusing it with thiazides (NCC in the DCT) |
| Diuretics and serum calcium | Loops excrete calcium (low Ca), thiazides retain calcium (high Ca) | Reversing the two |
| Autoregulation of GFR | Myogenic + tubuloglomerular feedback (macula densa → adenosine) | Thinking it relies solely on nerves/hormones |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Thermoregulatory center | Hypothalamus | Choosing premotor cortex / cerebellum / amygdala by mistake |
| Mechanism of fever | PGE₂ → set point shifted upward | Confusing it with heat stroke (failure of regulation) |
| ATP source in the first few seconds of exercise | Creatine phosphate (CP) | Choosing glycolysis / aerobic metabolism by mistake |
| Enzyme by which CP replenishes ATP | creatine kinase | — |
| Cause of pernicious anemia | Intrinsic factor deficiency (autoimmune) → B₁₂ ↓ | Mistaking it for iron / folate deficiency |
| Treatment of pernicious anemia | Replace B₁₂ (by injection) | Giving folate → masks the neurologic damage |
| B₁₂ vs folate deficiency | B₁₂ deficiency has neurologic symptoms, MMA↑ | Assuming both have the same neurologic picture |
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- Atopic dermatitis is Th2-dominant, with raised blood eosinophils (not neutrophils) and raised IgE; favors flexural surfaces; associated with the barrier gene filaggrin.
- Psoriasis: thick silvery-white scaly plaques on extensor surfaces + scalp, Auspitz sign, Koebner phenomenon, familial inheritance, may be accompanied by psoriatic arthritis; avoid systemic corticosteroids (rebound pustular psoriasis on withdrawal).
- Winter xerotic eczema: moisturizing is king; avoid excessive bathing/hot water/soap (the "least appropriate" answer is usually over-cleansing or soaking in hot baths).
- Lower-leg pigmentary change + varicose veins = stasis dermatitis (venous), not peripheral arterial occlusion.
- Pityriasis alba: hypopigmented, finely scaly patches on the face of atopic children; benign and improves with age.
⚠️ Common traps
- Reversing the extensor/flexor distribution of eczema and psoriasis; describing psoriatic scale as "weeping/exudate".
- Questions on "chronic-phase atopic dermatitis" ask about the cytokine shift, but the core thing to remember is still Th2; don't be misled by a lone "Th1" option (the chronic phase is mixed, not pure Th1).
- For "least appropriate / which is incorrect" questions, circle the negative word first; the wrong option in xerotic eczema questions is often "take more hot baths / use soap frequently".
- Absolute contraindication to oral isotretinoin = pregnancy (potent teratogen); side effects to remember: mucosal dryness, triglycerides↑, liver enzymes↑; do not combine with tetracyclines (pseudotumor cerebri).
- Androgenetic alopecia = DHT-induced follicular miniaturization, progressive, non-scarring, not acute massive hair shedding; treatment: minoxidil + finasteride.
- Hidradenitis suppurativa: women > men, favors the axillae/groin, fundamentally follicular occlusion (not a bacterial infection); immunosuppressants can be used; adalimumab (anti-TNF-α) was the first approved drug (the anti-IL-17 agents secukinumab and bimekizumab have since been approved).
- Hirsutism (androgen-related, androgen-dependent sites in women) ≠ Hypertrichosis (androgen-independent, not site-restricted).
⚠️ Common traps
- "Which is incorrect / least appropriate" questions: describing androgenetic alopecia as "acute massive hair loss" or hidradenitis suppurativa as "a simple bacterial infection requiring long-term antibiotics" are both incorrect statements — circle the negative word first.
- Do not treat acne with oral antibiotics alone (resistance develops easily); combine with benzoyl peroxide / a retinoid.
- Swapping the definitions of hirsutism and hypertrichosis is a common trap; the key is "androgen-dependent site or not / androgen-related or not".
- For disputed questions or ones credited to all examinees, decide based on the core mechanism (e.g., hidradenitis is a follicular-occlusion inflammation) rather than rote-memorizing the disputed option.
- BCC is the most common skin cancer; it very rarely metastasizes to internal organs and has a good prognosis; recurrence is associated with perineural invasion, the morpheaform subtype, the facial H-zone, etc.
- Actinic keratosis progresses to SCC (squamous cell carcinoma), not melanoma — this direction is often swapped to set a trap.
- Most common melanoma in Taiwanese/Asian people = acral lentiginous melanoma; in Western populations superficial spreading melanoma is most common.
- The port-wine stain of Sturge-Weber is a benign vascular malformation, not a malignant tumor.
- NF-1 café-au-lait cutoff: 15mm (postpubertal) / 5mm (prepubertal); trap options often say 30mm.
- Keratoacanthoma = rapidly growing, crater-shaped keratotic nodule on the face; can regress spontaneously; histologically resembles SCC.
- For melanoma, the primary prognostic factor is Breslow thickness.
Common traps
- "Metastasis" direction questions: calling BCC "prone to metastasis" is wrong (BCC very rarely metastasizes); calling melanoma "good prognosis" is also wrong.
- AK→SCC vs AK→melanoma: the malignancy corresponding to a premalignant lesion is often swapped; always remember the cell of origin (keratinocyte).
- Listing Sturge-Weber / port-wine stain as malignant in a "tumor" question is an incorrect statement; it is fundamentally a vascular malformation.
- Definition of chronic urticaria: symptoms lasting ≥6 weeks (the trap says 4 weeks).
- First line for chronic urticaria = second-generation antihistamines; cyclosporine is a later-line option, not first choice.
- Long-term oral corticosteroids are not recommended for chronic urticaria (short courses for rescue only).
- Chronic urticaria can be an early manifestation of autoimmune thyroid disease.
- Penicillin allergy: even with no history of allergy, a first-ever fatal anaphylactic reaction can still occur on first use.
- First-line drug for anaphylaxis = IM adrenaline; antihistamines and corticosteroids are adjuncts.
- ACEI-induced and HAE angioedema are bradykinin-mediated, occur without urticaria, and do not respond to antihistamines.
- Wheals persisting >24 hours, painful, leaving marks on resolution → urticarial vasculitis (not simple urticaria; biopsy needed).
Common traps
- Stating first-line treatment as "cyclosporine" or "long-term oral corticosteroids" is wrong (the classic answer to "which is NOT a recommended therapy").
- Swapping the 4-week vs 6-week definition is a high-frequency trap.
- Believing "no allergy history means no severe penicillin allergy" is wrong.
- Treating all angioedema as antihistamine-responsive; the ACEI/HAE types do not respond to antihistamines, so identify the mechanism.
- BSA cutoffs: SJS <10%, overlap 10–30%, TEN >30% (allopurinol causing >30% detachment = TEN).
- carbamazepine + HLA-B*1502 → SJS/TEN; genetic screening before use in Asians (a must-know matching pair).
- Fixed drug eruption: recurs at the same site each time the same drug is taken; heals with residual hyperpigmentation.
- Pathology of erythema multiforme = interface dermatitis, not dermal fibrosis; target lesions; commonly associated with HSV.
- Three differentials for palmoplantar erythema: drug allergy / secondary syphilis / EM; palm and sole involvement should make you think of syphilis.
- sorafenib (multikinase inhibitor) → hand-foot skin reaction + alopecia.
- Onset speed: AGEP fastest, DRESS slowest; DRESS comes with eosinophilia + internal organ involvement + HHV-6.
- Elevated IgE ≠ atopic dermatitis (not a diagnostic criterion).
⚠️ Common traps
- Treating SJS/TEN as an "allergy" and flushing it out with high-dose steroids → the core of management is stopping the drug + supportive/burn-unit-style care; the evidence for steroids remains controversial.
- Misreading "persistent fever + rash + eosinophilia + abnormal liver function after starting a drug" as a simple drug rash → think DRESS (potentially fatal, long latency).
- For "least appropriate / incorrect" questions, circle the negative word first; erythema multiforme questions often use "dermal fibrosis" as the wrong option.
- Answering as if the IgE level were a diagnostic criterion for atopic dermatitis (it is not).
- Harlequin ichthyosis = ABCA12; thick, armor-like hyperkeratosis over the whole body from birth, ectropion/eclabium, barrier collapse; the most severe form.
- Darier disease worsens with heat/sweating/sun exposure (not in winter); the molecule is ATP2A2/SERCA2; pathology shows acantholysis + dyskeratosis (corps ronds, grains); V-shaped nail notching.
- EB is a genetic disorder, not autoimmune; treatment is mainly supportive.
- The three EB types are defined by the level of cleavage: EBS intraepidermal (K5/14), JEB junctional (laminin-332), DEB superficial dermis (collagen VII); DEB causes scarring, fusion of fingers/toes, esophageal stricture, and skin cancer risk.
- Ichthyosis vulgaris ↔ filaggrin ↔ coexisting atopic dermatitis; X-linked ↔ steroid sulfatase (males).
⚠️ Common traps
- Accepting "Darier worsens with dry winter weather" as correct → it actually worsens with summer/heat/sweat (direction-word trap).
- Treating EB as an autoimmune blistering disease (like pemphigus) → EB is a genetic defect of structural proteins; immunofluorescence is used for antigen mapping, not to detect autoantibody deposition.
- Confusing collodion baby (seen in lamellar ichthyosis/CIE) with Harlequin (thick armor plates) — the latter is more severe and is ABCA12.
- Assuming a genetic disease "must have a family history" → AR types often arise from carrier parents with no obvious family history; de novo mutations are also possible.
- In vitiligo lesions melanocytes are "absent", not dysfunctional; the cause is autoimmune destruction (loss, not reduced function).
- After UVB, vitiligo shows perifollicular (follicle-centered) repigmentation; the pigment comes from the melanoblast reservoir in the outer root sheath of the hair follicle.
- Chemical leukoderma: exposure to phenol / hydroquinone derivatives / monobenzone / 4-TBC, etc. can cause vitiligo-like depigmentation (occupational exposure history is the key clue).
- Melasma improves with topical hydroquinone (tyrosinase inhibitor); the cornerstone is sun protection; related to hormones/UV.
- Albinism: tyrosinase deficiency; normal cell numbers but unable to produce pigment; distinguish it from vitiligo (cells lost).
- Vitiligo is often associated with other autoimmune diseases (thyroid disease, T1DM, pernicious anemia).
⚠️ Common traps
- Accepting "reduced melanocyte function" as correct for vitiligo → it is "cells destroyed and lost" (direction/nature trap).
- Thinking melasma is "an increased number of melanocytes" → it is increased activity with normal numbers.
- Ignoring occupational exposure history and calling chemical depigmentation primary vitiligo (the key to treatment is removing the exposure).
- Thinking only of lasers for melasma → lasers easily cause rebound darkening and relapse; sun protection + topical tyrosinase inhibitors are the mainstay.
- Mistaking reversible tinea versicolor / pityriasis alba for permanent depigmentation.
- Most common cause of renewed blurred vision after surgery = posterior capsule opacification (PCO, "after-cataract"); treatment is Nd:YAG laser posterior capsulotomy.
- Cataract symptoms do not include "dry, gritty eyes" (nor should there be pain/red eye).
- Congenital cataract: unilateral is more likely than bilateral to cause amblyopia; operate early.
- Graves' disease is not associated with cataract; associated conditions are diabetes, myotonic dystrophy, and atopic dermatitis.
- Long-term corticosteroids → posterior subcapsular cataract, raised IOP, CSC; optic neuritis is not included.
- Marfan syndrome → lens dislocates superotemporally (up and out); homocystinuria → downward.
⚠️ Common traps
- "Which is NOT a symptom of cataract" → choose dry, gritty eyes (that is dry eye).
- "Which is NOT associated with cataract" → choose Graves' disease.
- "Which steroid side effect is incorrect" → the answer is optic neuritis (it is not part of the steroid cataract/glaucoma pathway).
- PCO is not "cataract recurrence" (the lens has already been replaced by an artificial one); it is opacification of the posterior capsule, so don't answer that a new cataract has formed.
- Don't reverse the direction of amblyopia risk for unilateral vs bilateral congenital cataract: unilateral carries the higher risk.
- Alkali burns are more severe than acid burns (saponification, deep penetration); the first step is always copious irrigation; the extent of limbal ischemia = the most important factor for visual prognosis.
- Blunt ocular trauma with hyphema → can raise IOP; avoid aspirin, elevate the head of the bed, prevent rebleeding.
- Orbital blowout fractures show indirect signs that are "visible" on plain X-ray (not undiagnosable); watch for inferior rectus entrapment.
- Most common benign orbital tumor in adults = cavernous hemangioma, which does not regress spontaneously (only childhood capillary hemangiomas regress).
- Direct CCF is treated with endovascular embolization, not radiotherapy.
- Bilateral retinal hemorrhages in an infant without trauma → suspect shaken baby syndrome; congenital nasolacrimal duct obstruction: conservative management before age 1, no rush to surgery.
⚠️ Common traps
- Saying acid is more dangerous than alkali — wrong; alkali is more dangerous.
- "Orbital blowout fractures cannot be diagnosed on X-ray" — wrong; indirect signs are visible.
- Saying adult cavernous hemangioma "regresses spontaneously" — wrong; that is childhood capillary hemangioma.
- Answering "radiotherapy" for CCF — wrong; it should be endovascular embolization.
- Answering "immediate surgery" for congenital nasolacrimal duct obstruction — wrong; conservative management first before age 1.
- Examining/taking a history first in a chemical burn — wrong; irrigate first.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Conjunctival sign of CCF | Corkscrew vessels | Mistaking it for simple conjunctivitis |
| Trachoma inclusion body location/staining | Intracytoplasmic, basophilic | Writing intranuclear, eosinophilic |
| Onset of neonatal gonococcal conjunctivitis | 2–5 days after birth | Writing weeks 3–4 by mistake |
| Condition with "normal" corneal curvature | Endothelial dystrophy (Fuchs) | Confusing it with keratoconus |
| Features of episcleritis | May accompany rheumatic disease but rarely progresses to true scleritis | Thinking it always progresses to scleritis |
| Least likely cause of hypopyon in a 4-year-old | HLA-B27 acute anterior uveitis (adult type) | Choosing infection as the "impossible" cause by mistake |
| Corneal infection not yet diagnosed | Steroids contraindicated | Thinking the inflammation can be suppressed first |
| Distinguishing the level of injection | Ciliary flush = cornea/uvea/glaucoma (pain + vision↓) | Treating every red eye as conjunctivitis |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Classic RP triad | Bone-spicule pigmentation + waxy pallor of the optic disc + arteriolar attenuation | Including macular edema in the triad by mistake |
| Earliest symptom of RP | Night blindness (rods fail first) | Answering loss of central vision first |
| Coloboma location | 6 o'clock (inferonasal embryonic fissure) | Writing superior/temporal |
| AMD risk by race | High risk in White people; Black people are not high risk | Treating Black race as a risk factor |
| High myopia + corneal refractive laser | Does not reduce retinal detachment risk | Thinking the laser protects the retina |
| NOT seen in high myopia | Angioid streaks | Listing it as a complication of myopia |
| Metastasis of choroidal melanoma | Most often to the liver (hematogenous) | Answering lymph nodes/lung |
| Timing of skin vitiligo in VKH | Appears only in the late stage | Thinking it is present early |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| "Least appropriate" statement on POAG treatment | Believing IOP ≤21 is automatically safe (an individualized target IOP is actually required) | Using 21 as a hard threshold |
| "Least appropriate" emergency management of AACG | Immediate laser trabeculoplasty (LTP) | Thinking any laser will do |
| Correct emergency management of AACG | Lower IOP medically → once the cornea clears, perform LPI | Forcing laser while the cornea is edematous |
| Triad of congenital glaucoma | Epiphora, photophobia, blepharospasm | — |
| "Less likely" finding in congenital glaucoma | Iris color change (color is usually normal) | Thinking the iris changes color |
| Mechanism of phacomorphic glaucoma | Swollen lens pushes forward → angle-closure | Calling it open-angle |
| Where aqueous humor drains | Venous system | Answering the lymphatic system |
| Gonioscopy in angle closure | Ciliary body band/trabecular meshwork not visible | Thinking they are still visible |
| Electrolyte side effects of CAIs | Hypokalemia + metabolic acidosis | Answering hyperkalemia |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Elderly fall, upper-limb weakness > lower-limb | Central cord syndrome | Misjudging it as complete transection |
| Ipsilateral motor loss + contralateral pain/temperature loss | Brown-Séquard | Reversing ipsilateral/contralateral |
| Motor + pain/temperature loss with proprioception preserved | Anterior cord (anterior spinal artery) | Forgetting that the dorsal columns are supplied by the posterior circulation |
| Quadriplegia + hypotension + bradycardia | Neurogenic shock; needs vasopressors | Treating it as hemorrhagic and pouring in fluids |
| double-lumen sign | Facet joint dislocation (C6–7) | Reading it as a fracture/normal |
| Hangman fracture | Bilateral C2 pedicle fractures + anterior slip | Confusing it with Jefferson (C1) or odontoid fractures |
| Imaging of choice for spinal cord injury | MRI (shows cord edema/hemorrhage) | Relying only on CT (shows bone only) |
| High-dose steroids in acute SCI | Not standard treatment (at most an option within 8h) | Treating it as a mandatory standard of care |
| Lesion above T6 + distended bladder + soaring BP | Autonomic dysreflexia; sit upright + catheterize first | Giving antihypertensives directly without removing the trigger |
| Marker of the end of spinal shock | Return of the bulbocavernosus reflex | Lumping it together with neurogenic shock |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Elderly hypertensive + deep (putaminal) hemorrhage | Hypertensive ICH | Suspecting trauma / aneurysm |
| Recurrent lobar hemorrhages, advanced age | Cerebral amyloid angiopathy (CAA) | Attributing all of them to hypertension |
| Steroids in ICH | Should not be given (ineffective and harmful) | "Give steroids to reduce the edema" |
| Acute BP in ICH | Moderate control, not leaving it untreated | Not lowering it at all / dropping it too low |
| Cerebellar hemorrhage >3 cm + drowsiness | Surgical decompression | Purely conservative observation |
| Site of moyamoya | Terminal ICA + proximal ACA/MCA (anterior circulation) | Choosing MCA + PCA by mistake |
| Treatment of moyamoya | STA–MCA bypass | Relying only on antiplatelet drugs |
| Typical patients with moyamoya | Asians, bilateral | Thinking it is a unilateral disease of Western populations |
| Worst headache of one's life | Aneurysmal SAH | Misjudging it as simple migraine |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Grade I and II astrocytomas | Low grade, better prognosis | Treating all of them as malignant |
| Grade of GBM | Highest grade (Grade 4) | Calling both III (anaplastic) and IV "GBM" |
| Treatment of low-grade tumors | Surgical resection is the mainstay | Only observing without treatment |
| Bilateral acoustic neuromas | NF2 | Thinking they are simply sporadic |
| Origin of acoustic neuroma | Vestibular nerve (vestibular division of VIII) | Thinking it is the cochlear nerve |
| Surgical complication of acoustic neuroma | Facial nerve (VII) palsy | Answering abducens nerve (VI) |
| Treatment of a small acoustic neuroma | Radiosurgery can be first line | "Surgery is the only option" |
| Malignant posterior fossa tumor in children | Medulloblastoma | Applying adult GBM |
| Most common brain tumor in adults | Metastases (multiple) | Thinking only of primary GBM |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Non-fluent, poor repetition, good comprehension | Broca aphasia | Swapping it with Wernicke |
| Fluent but poor comprehension | Wernicke aphasia | Choosing it whenever you see "non-fluent" |
| Item NOT included in the Barthel index | Taking medication (and IADLs) | Thinking it includes medication/managing finances |
| Least-involved site in post-stroke CRPS I | Elbow | Thinking the whole upper limb is involved uniformly |
| Stroke + acute lower-limb DVT | Anticoagulation + early mobilization | "Bed rest for at least one week" |
| Frequency of cognitive impairment in MS | Quite common (40–65%) | "Very rare" |
| CP type with hearing abnormality | Athetoid type (kernicterus) | Attributing it to the diplegic type |
| Most common association of myelomeningocele | Hydrocephalus (Chiari II) | Overlooking the posterior fossa anomaly |
| Rehabilitation goal in children with rare diseases | Maintain function / quality of life | "Restore normal physiologic function" |
| Management of shoulder subluxation | Positioning and support; don't pull on the affected limb | Forceful passive stretching |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Timing of AD (autonomic dysreflexia) | Chronic phase, lesion above T6 | Thinking it occurs acutely within the first month |
| Most common trigger / first action in AD | Bladder distension; sit up + catheterize first | Thinking only of giving antihypertensives immediately |
| Vital signs in neurogenic shock | Hypotension + bradycardia | Applying the tachycardia of hemorrhagic shock |
| Voluntary anal contraction present, most muscle grades < 3 | ASIA C | Misclassifying it as complete injury (A) |
| Brown-Séquard | Ipsilateral motor/proprioception, contralateral pain/temperature | Recording pain/temperature loss as ipsilateral |
| Timing of surgery for heterotopic ossification | Wait until the ossification matures (ALP normal) before excision | Excising early |
| Nerve for reflex erection | S2-4 parasympathetic pelvic nerve | Recording it as sympathetic |
| Most common urologic complication of SCI | Urinary tract infection (UTI) | Confusing it with stones/renal failure |
| Sleep-disordered breathing in cervical cord injury | Predominantly obstructive | Answering central |
| Return of the bulbocavernosus reflex | Marker that spinal shock has ended | Ignoring its clinical significance |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Ca²⁺-release channel in skeletal muscle | RyR1 (mechanically activated by DHPR) | Treating DHPR as the Ca²⁺-release channel |
| Ca²⁺-binding protein in skeletal muscle | Troponin-C | Answering calmodulin |
| Key enzymes switching smooth muscle on/off | MLCK turns it on, MLCP turns it off | Getting the direction backwards |
| Site of convergence in referred pain | The same second-order neuron in the spinal cord | Writing medulla |
| Referred pain of cholecystitis | Right shoulder (phrenic nerve C3-5) | Confusing it with the left arm (heart) |
| Planning of voluntary movement | Basal ganglia + cerebellum | Thinking the motor cortex does it alone |
| Location of auditory receptors | Organ of Corti in the inner ear | Answering the middle ear |
| Cranial nerves for taste | CN 7, 9, 10 | Counting the trigeminal nerve as a taste nerve |
| Projection of the temporal retina | Ipsilateral LGN (does not cross) | Thinking it crosses |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Young + pain on eye movement + vision↓ | Optic neuritis (can be the first presentation of MS) | Choosing vascular occlusion/GCA by mistake |
| Treatment of optic neuritis | IV methylprednisolone | Standard-dose oral prednisone alone (increases recurrence) |
| Pain on eye movement or not | Optic neuritis is painful, CRAO/CRVO are painless | Reversing them |
| Eye moving up and out | Lateral rectus + superior rectus | Matching the wrong muscles |
| Classification of accommodative convergence | Accommodation-linked (a type distinct from proximal convergence), not tonic | Classifying it as tonic |
| First choice for accommodative esotropia | Glasses with full hyperopic correction | Going straight to surgery/prisms |
| Refractive error predisposing to amblyopia | Hyperopia > myopia of equal degree | Attributing it to "weak accommodation in children" |
| CN VI palsy in children | Actively search for the cause (rule out tumor/raised ICP) | Observing for 3 months as in older adults |
| Unilateral ptosis and MG | Cannot exclude MG on this basis | Thinking unilateral means it is not MG |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Post-infectious ascending symmetric weakness + areflexia | GBS | Misjudging it as stroke (focal)/CMT (chronic) |
| Least necessary test in GBS | Bone scan | Missing vital capacity monitoring |
| Treatment of GBS | IVIG / plasma exchange | Giving steroids alone by mistake |
| Drug to avoid in MG | aminoglycoside | Overlooking that it worsens neuromuscular transmission |
| Response to exertion: MG vs LEMS | MG gets weaker with use, LEMS gets stronger with use | Reversing them |
| Associated tumor / antibody in LEMS | SCLC / anti-P/Q-type Ca²⁺ channel | Confusing it with AChR antibodies |
| Inheritance of DMD | X-linked recessive | Answering autosomal recessive |
| Hallmark of DMD | Calf pseudohypertrophy | — |
| Main site of weakness in DM1 | Distal, with facial involvement | Recording it as mainly proximal, with frequent diplopia |
| Inheritance/presentation of CMT | Autosomal dominant, pes cavus, distal atrophy | Answering autosomal recessive / purely sensory type |
| Cauda equina/conus medullaris | LMN, absent BCR, surgical emergency | Misjudging it as UMN |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Sudden confusion in an older adult | Think delirium first (find the trigger; reversible) | Labeling it "dementia" straight away |
| MCI vs dementia | The only dividing line = whether ADLs are impaired | Distinguishing them by language/executive function |
| CSF in AD | Aβ42↓, p-tau↑ | Writing "Aβ42 elevated" |
| Order of the NPH triad | Gait deteriorates first and improves most readily with the tap test | Saying incontinence comes first, or that drainage cannot improve gait |
| Confirmatory test for NPH | High-volume lumbar drainage (tap test) | Choosing levodopa / FDG-PET / genetic testing |
| Medications in DLB | Avoid dopamine agonists and antipsychotics | "Dopamine agonists should be used as much as possible" |
| CJD | Rapid dementia + myoclonus + cerebellar ataxia, fatal within months | Prions can be destroyed by boiling; course >10 years |
| TGA | Sudden onset, self-limited, personal identity preserved (time orientation usually impaired) | Managing it aggressively as stroke or epilepsy |
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Answering strategy: the distractors here are mostly "direction reversed" (AD Aβ42), "order wrong" (NPH gait), and "says use when it should be avoided" (DLB dopamine agonists). First separate acute vs chronic, then classify the type, and finally check the direction.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Myoclonic seizure | Brief, rapid jerks with consciousness preserved | Treating it as loss of consciousness |
| Origin of TLE | Mesial temporal lobe (hippocampus + amygdala) | Writing "lateral temporal lobe" |
| Bilateral hippocampal sclerosis | Bilateral temporal lobectomy is contraindicated (severe amnesia) | Recommending bilateral resection |
| Cushing reflex | Hypertension + bradycardia | "Hypotension + tachycardia" |
| Mortality of pediatric status epilepticus | About 3–9% | ">50%" |
| Prodrome of sweating + fatigue | Think syncope first | Calling it a seizure |
| Sturge-Weber | port-wine stain + seizures + contralateral weakness | Missing the leptomeningeal angioma |
| Narcolepsy tetrad | EDS/cataplexy/sleep paralysis/hypnagogic hallucinations | Including "confusional arousals" |
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Answering strategy: for "direction" questions (Cushing reflex) and "numeric" questions (mortality), silently recite the correct direction/order of magnitude first; when differentiating impaired consciousness, first ask "was there an autonomic prodrome, and was recovery quick?" to separate syncope from seizure.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Hyperacute stroke | DWI is most sensitive (within minutes) | Thinking CT/FLAIR shows it first |
| Cortical/periventricular infarcts | FLAIR (CSF suppressed) | Choosing T1 |
| Detecting hemorrhagic transformation | MRI GRE/SWI > CT | Believing CT is more sensitive than MRI |
| Venous sinus thrombosis | empty delta sign | Mistaking it for an arterial infarct |
| Imaging in TSC | Calcified subependymal nodules + SEGA | Missing SEGA / misinterpreting it |
| Calcified brain tumor | oligodendroglioma (90% calcified) | Choosing meningioma as a parenchymal tumor |
| Posterior fossa lesion in adults | Metastasis is most common | Treating it as "least likely" |
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Answering strategy: first classify the lesion (ischemic/hemorrhagic/calcified/venous/tumor), then map it directly to "the most sensitive sequence or test". For timeline questions (DWI vs FLAIR), recite "minutes vs hours"; posterior fossa tumors in adults vs children point in opposite directions, so don't mix them up.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Aggregated protein in ALS | TDP-43 / SOD1 | Matching it to "tau" |
| AD pathology | Aβ (plaques) + tau (NFTs) | Saying plaques are made of tau |
| Hypertensive hemorrhage | Basal ganglia + Charcot-Bouchard | Matching it to berry aneurysm / amyloid |
| CAA | Aβ, lobar hemorrhage, ApoE-related | Saying it deposits "tau" |
| HSV encephalitis | Cowdry A, hemorrhagic necrosis of the temporal lobe | "Caseating granulomas" appearing |
| Medulloblastoma prognosis | WNT best, Group 3 worst | WNT worst |
| Craniopharyngioma | Adamantinomatous epithelium, Rathke pouch | Mistaking it for GBM/acoustic neuroma |
| Least common sequela of head trauma | Demyelinating lesions | Choosing epilepsy/hydrocephalus |
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Answering strategy: about 90% of this section is "matching" questions. Pick out the key clue (protein, morphology, location) and check it against the table; for reverse questions ("least related / least common"), find the option unrelated to the mechanism (e.g., trauma vs demyelination).
- Hyperdense (white) on CT = blood; diffuse white in the sulci/basal cisterns = SAH; epidural is biconvex (lentiform), subdural is crescentic.
- Thalamus = contralateral pure sensory; basilar artery/ventral pons = locked-in (only vertical eye movements remain).
- The five classic lacunar syndromes do not include aphasia/neglect/hemianopia (the latter require a cortical or optic radiation lesion).
- tPA ≤4.5 hours; thrombectomy up to 24 hours (with imaging selection); secondary prevention of cardioembolic stroke uses anticoagulation.
- Carotid dissection is common in FMD/Marfan/EDS-IV; Takayasu is least likely to dissect.
- Three DSA elements of an AVM: feeding arteries, nidus, early draining vein.
Common traps
- A normal CT in early infarction ≠ no stroke; don't let it delay reperfusion assessment.
- Treating "most common" as "most specific": for meningeal/vascular lesions, look at the imaging shape (biconvex vs crescent) rather than the history alone.
- Excessive BP lowering in acute ischemic stroke enlarges the infarct; BP<185/110 is required before tPA or thrombectomy.
- "Pure sensory/pure motor" should make you think lacunar; don't force-fit cortical signs.
- PD = degeneration of nigral dopaminergic neurons + Lewy bodies; dysmetria is cerebellar (not part of PD).
- Levodopa → dyskinesia (pulsatile stimulation); DA agonist → D3 reward → pathological gambling/impulse control disorders.
- CO poisoning → globus pallidus necrosis → delayed parkinsonism (idiopathic PD involves the substantia nigra).
- In late Huntington disease chorea decreases (shifting to dystonia/akinesia); it does not worsen.
- Valproate causes postural tremor; differentiate it from essential tremor.
- Young (<40) with parkinsonism/tremor + liver disease/psychiatric symptoms → think Wilson (K-F ring, ceruloplasmin↓, urinary copper↑).
- RLS: worse at rest, relieved by movement, occurs at night, high risk in pregnancy/iron deficiency; alcohol does not relieve it.
Common traps
- Forcing cerebellar signs (dysmetria, intention tremor) into PD.
- Confusing "resting tremor (PD)" with "postural/action tremor (ET, valproate)".
- Blaming levodopa whenever you see "gambling/hallucinations" — DA agonists are actually more closely linked; dyskinesia is the levodopa hallmark.
- Treating RLS as insomnia or simple cramps, ignoring ferritin and the pregnant population.
- Cluster headache: severe unilateral retro-orbital pain, 15 min–3 hours, attacks clustering at night/by season, ipsilateral lacrimation and red eye, restless patient; oxygen + triptan for acute attacks, verapamil for prevention.
- Ergotamine = α-agonist + 5-HT agonist (not a β-agonist); contraindicated in peripheral vascular disease.
- Carbamazepine = first choice for trigeminal neuralgia; it does not prevent migraine; migraine prophylaxis is valproate/topiramate/propranolol.
- First-choice prophylaxis for chronic TTH is amitriptyline.
- Temporal arteritis is a large-vessel vasculitis (also involving medium branches such as the temporal artery); the temporal artery is palpable; ESR↑; give steroids immediately.
- Postural headache (worse on standing) + diffuse pachymeningeal enhancement = intracranial hypotension (CSF leak).
- Obese young woman + papilledema + normal imaging + LP opening pressure↑ = IIH (pseudotumor cerebri); acetazolamide; untreated, it can cause blindness.
- Migraine + analgesics on >10–15 days/month = superimposed MOH; the drug must be withdrawn.
Common traps
- Calling temporal arteritis a small-vessel vasculitis, or "not palpable" — a swollen, tender artery can be felt, and it can cause blindness, so steroids are needed immediately.
- Treating ergotamine as a β-agonist; it is a vasoconstricting α/5-HT agonist.
- Assuming every "antiepileptic" can prevent migraine — carbamazepine cannot.
- Mistaking postural headache for SAH; SAH is thunderclap, not postural.
- Overlooking that long-term analgesic use itself "breeds" MOH.
- Meningioma = the most common primary intracranial tumor (not the second); extra-axial, dural tail, can enlarge in women.
- Low-grade gliomas cause seizures more often than high-grade ones; GBM presents mainly with focal deficits + raised ICP.
- Pituitary tumors are accompanied by "raised" prolactin (stalk effect / prolactinoma), not low; first choice for prolactinoma is a DA agonist.
- Most common sources of meningeal metastasis: breast cancer + leukemia/lymphoma (not lymphoma alone).
- About 75–90% of Sturge-Weber patients have epilepsy (high incidence).
- Pediatric brain tumors are mostly in the posterior fossa: most common = pilocytic astrocytoma (benign), most common malignant = medulloblastoma (prone to CSF seeding); overall, the most frequent intracranial tumors are metastases.
Common traps
- Confusing "most common" with "most malignant/second most common" (meningioma is the most common; GBM is the most common malignant).
- Reversing it to "high-grade tumors are more likely to cause seizures".
- Thinking pituitary tumors cause low prolactin; it is usually raised.
- Remembering only lymphoma as a source of meningeal metastasis and missing breast cancer (the most common).
- Underestimating the incidence of epilepsy in Sturge-Weber.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Myelination in the CNS | Oligodendrocyte (one cell wraps many axons) | Answering Schwann cell (that is the PNS) |
| Clearing myelin after CNS injury | Microglia (+ macrophages) | Answering oligodendrocyte (it is the one being destroyed) |
| Glial cell forming the BBB | Astrocyte end-feet | Thinking microglia or ependymal cells |
| Source of endoneurial collagen | Schwann cell | Answering fibroblasts |
| Organelle/structure without a membrane | Nucleolus | Treating endosomes/peroxisomes/ER as membraneless |
| Spaces that normally contain CSF | Subarachnoid space, ventricles, central canal | Thinking the subdural space contains CSF |
| Sites lacking a BBB | Circumventricular organs such as the area postrema and posterior pituitary | Thinking the entire CNS has a BBB |
| Most superficial layer reached by free nerve endings | Stratum granulosum | Thinking they reach the stratum corneum |
| Most common primary CNS tumor in adults | Astrocytoma (glioma) (i.e., the most common primary malignant/glial tumor; counting meningioma, the most common primary overall is meningioma) | Confusing it with "most common overall = metastasis" |
| Distribution of Nissl bodies | Cell body + dendrites; absent from the axon/axon hillock | Thinking they are found throughout the neuron |
| Cell body changes after axotomy | Central chromatolysis: Nissl dispersal, cell body swelling, eccentric nucleus | Thinking the cell body is unchanged or the nucleus stays central |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Brain vesicle giving rise to the cerebellum | Metencephalon (hindbrain/rhombencephalon) | Answering the forebrain (prosencephalon) |
| Origin of the cerebral aqueduct | Cavity of the midbrain (mesencephalon) vesicle | Not knowing that its obstruction → non-communicating hydrocephalus |
| Origin of the red nucleus | Basal plate (motor) | Answering the alar plate |
| Alar vs basal plate | Alar plate = sensory; basal plate = motor | Assigning motor nuclei to the alar plate |
| Timing of neuropore closure | Cranial (~day 25) closes 2–3 days before caudal (~day 27–28) | Reversing the direction |
| Failure of cranial vs caudal closure | Cranial → anencephaly; caudal → spina bifida | Swapping the defect sites |
| Extent of optic nerve myelination | Only up to the optic disc | Thinking it extends into the retina |
| Origin of the central retinal vessels | Proximal part of the hyaloid vessels | Answering the distal part (which regresses) |
| Germ layer of the retina/optic nerve | Neuroectoderm (not neural crest) | Answering neural crest |
| Origin of the posterior vs anterior pituitary | Posterior lobe = diencephalic neuroectoderm; anterior lobe = Rathke's pouch | Swapping their origins |
| Failure of forebrain cleavage | Holoprosencephaly (trisomy 13, maternal diabetes, SHH) | Confusing it with hindbrain malformations |
| Hindbrain malformation accompanying myelomeningocele | Chiari II (cerebellar vermis + medulla herniate through the foramen magnum) | Confusing it with Dandy-Walker (vermian hypoplasia + cystic fourth ventricle) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Mechanism of topiramate | Blocks Na⁺ + ↑GABA + antagonizes AMPA/kainate | Answering "blocks the glutamate transporter" |
| Receptor profile of nalbuphine | κ agonist / μ partial antagonist | Treating it as a pure antagonist or a pure μ agonist |
| Pure opioid antagonists | Naloxone/Naltrexone (no analgesia) | Confusing them with nalbuphine |
| Why olanzapine causes little EPS | Low D2 affinity + strong 5-HT2A antagonism | Thinking it does not block D2 at all |
| Main adverse effect of atypical antipsychotics | Metabolic syndrome | Remembering only EPS |
| Mechanism of the first-line ADHD drug | Methylphenidate → inhibits DA/NE reuptake | Mixing it up with amphetamine's "promotes release" |
| Newer drug for narcolepsy | Pitolisant = H3 inverse agonist | Thinking it acts on H1/H2 |
| Antiemetic (chemotherapy/postoperative) | Ondansetron (5-HT3 antagonist) | Confusing it with 5-HT2 drugs |
| Antipyretic for viral infections in children | Acetaminophen; aspirin contraindicated | Overlooking Reye syndrome |
| Baclofen | GABA-B agonist, treats spasticity | Treating it as GABA-A |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Second messenger of isoproterenol | cAMP↑ (β receptors) | Answering cGMP |
| Mainstay drug for overactive bladder | Oxybutynin (M3 antagonist) | Mixing up the detrusor/sphincter directions |
| Effect of α1 activation on the bladder | Sphincter contraction (urine storage) | Thinking the detrusor contracts |
| Receptor for detrusor contraction | M3 | Answering α1 |
| Greatest IOP lowering in glaucoma | Bimatoprost (PGF2α analog) | Confusing its mechanism with β-blockers |
| Cycloplegia | Anticholinergics (atropine/tropicamide) | Thinking sympathomimetics |
| Mechanism/timing of cromolyn | Mast cell stabilizer; for prevention (not rescue) | Treating it as an acute asthma rescue drug |
| Acute asthma rescue | Albuterol (SABA) | Mixing it up with LAMA/LABA/steroids |
| Features of tiotropium | LAMA, t½ ~25h, quaternary ammonium so it does not cross the BBB, used in COPD | Treating it as short-acting or systemic |
| Systemic availability of albuterol | When inhaled it acts mainly in the lung; low systemic availability | Thinking it has large systemic side effects |
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- NE → locus coeruleus, 5-HT → raphe nuclei, DA → substantia nigra, ACh → nucleus basalis of Meynert: these four sources are must-know free points.
- Corpus striatum = caudate + putamen + globus pallidus (the striatum proper = caudate + putamen); the substantia nigra is always the "does not belong" option.
- MGB → hearing, LGB → vision; the MGB is part of the thalamus, not the midbrain.
- Conjugate gaze: destructive cortical lesion → eyes look toward the lesion; destructive brainstem lesion → eyes look toward the healthy side.
- Corneal reflex = V afferent, VII efferent; the trochlear nerve exits dorsally.
Common traps
- Confusing "most common source" with "only source" (e.g., ACh is also found in spinal motor neurons, but "the main central cholinergic nucleus" refers to Meynert).
- Memorizing nucleus names but forgetting side and direction (destructive vs irritative lesions deviate the eyes in opposite directions).
- Misplacing midbrain structures (substantia nigra, red nucleus) in the striatum or thalamus; misplacing the dentate nucleus in the limbic system.
- Umbilicus = T10, nipple = T4, inguinal region = L1 (must-know axial dermatomes).
- A paracentral L5–S1 herniation compresses S1 (it hits the lower root, not the upper one).
- Dorsal rootlets are purely sensory, ventral rootlets purely motor; the rami are all mixed.
- The PLL lies within the vertebral canal and continues superiorly as the tectorial membrane; the ALL lies in front of the vertebral bodies.
- The suboccipital muscles (including rectus capitis posterior major) are the deepest layer of the back; serratus posterior superior/inferior attach to the ribs and mainly serve respiration.
- Atlanto-occipital joint = nodding; atlantoaxial joint = head rotation (shaking the head).
Common traps
- Thinking a disc herniation compresses "the same-numbered root" — a paracentral herniation actually compresses the traversing root of the next level down.
- Mistaking the dorsal ramus (mixed) for a dorsal rootlet (purely sensory).
- Placing the anterior longitudinal ligament inside the vertebral canal, or thinking the nucleus pulposus extends to the skull base.
- Recording the alar ligament attachments as "dens–atlas" (correct: dens–occipital condyles).
- CN VII exits the skull through the stylomastoid foramen; V2 passes through the foramen rotundum, V3 through the foramen ovale; the ophthalmic artery through the optic canal; VIII through the internal acoustic meatus.
- The trochlear nerve (IV) is the only cranial nerve that exits the dorsal brainstem and crosses.
- Tongue: the transverse muscle narrows it, the vertical muscle flattens it, genioglossus protrudes it; all tongue muscles are supplied by XII except palatoglossus (X).
- The ansa cervicalis supplies sternohyoid/sternothyroid/omohyoid; thyrohyoid and geniohyoid, carried by XII, are the exceptions.
- Nerve of the pterygoid canal = greater petrosal (VII parasympathetic) + deep petrosal (sympathetic); it does not include the lesser petrosal (IX).
- The dorsal scapular nerve arises from C5, pierces the middle scalene, and supplies the rhomboids and levator scapulae.
Common traps
- Counting the lesser petrosal nerve (IX → parotid) as part of the nerve of the pterygoid canal.
- Classifying thyrohyoid and geniohyoid as "ansa cervicalis branches" (they are actually C1 fibers hitchhiking on XII).
- Swapping the foramen rotundum/ovale for V2/V3; recording the internal acoustic meatus as the exit of VII (the internal acoustic meatus is where it "enters" the temporal bone; the stylomastoid foramen is where it "exits" the skull).
- Getting the direction of tongue deviation wrong in unilateral hypoglossal palsy (remember: "deviates toward the affected side").
| Exam point | Correct answer | Common trap |
|---|---|---|
| Age criterion for ADHD | Before age 12, requires ≥2 settings | "Before age 7", "one setting" |
| Medication for Tourette | D2 antagonists (haloperidol/risperidone) are effective | Choosing a dopamine agonist; thinking it always resolves on its own |
| Inheritance of Tourette | Highly heritable; traditional answer "autosomal dominant with incomplete penetrance" (modern view: polygenic) | Writing "recessive" |
| NE in normal aging | Decreases | Writing "increases" |
| Treatment of ASD | ABA/speech therapy is effective; sensory integration has no evidence for core symptoms | Treating sensory integration as an effective core therapy |
| Conduct disorder | Can be diagnosed at age 18 or older; only if ASPD criteria are not met (the two are not diagnosed together) | "Only <18 years"; "automatically becomes ASPD after 18" |
| Medication for late-life psychosis | Low-dose antipsychotics are usually effective | "Poor response" |
| Early FTD | Social cognition/behavior impaired early; memory relatively preserved | Saying social cognition is "relatively preserved" |
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Answering strategy: the distractors here are mostly "outdated criteria" (ADHD age 7) or "reversed statements" (NE increases with aging, social function preserved in FTD, Tourette recessive). For numeric/direction questions, recite the correct direction in your head before checking the options.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Bleuler 4A | Associations / Autism / Affect / Ambivalence | Missing items or getting them wrong |
| Autistic thinking | Emphasizes subjectivity | Writing "objectivity" |
| Most common hallucination | Auditory hallucinations (command type most typical) | Choosing olfactory hallucinations (actually a clue to organic disease/temporal lobe epilepsy) |
| Duration for diagnosis | ≥6 months | "1 year" |
| haloperidol | First generation | Mistaking it for second generation |
| Lifetime suicide mortality | Traditionally about 10%; revised by newer data to about 5% | 25–50% (grossly exaggerated) |
| Prevalence by sex | Similar (about 1%) | "Twice as common in women" |
| Negative symptoms | Long-term core feature, poor drug response, poor prognosis | Thinking hallucinations/delusions are the core |
| akathisia | Treat with propranolol | — |
| Involuntary admission | Must follow the procedures of the Mental Health Act | "One physician is enough" |
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Answering strategy: for statement questions, first apply the three tables "positive/negative", "first/second generation", and "good/poor prognosis"; for numeric questions, lock onto the three high-frequency numbers 6 months, 1%, 10–13%.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Monoamines in depression | NE/5-HT/DA are all involved | Remembering only one; mixing up their nuclei of origin |
| Mechanism of antidepressants | Inhibit monoamine reuptake | Writing "enhance reuptake" |
| PET in depression | Anterior (left) metabolism ↓ | Writing increased; or applying the direction seen in mania |
| REM latency | Shortened in depression | Writing "increased" |
| First episode of bipolar disorder | Can be a depressive episode | "Must be mania" |
| Teratogenicity of lithium | Ebstein anomaly | Recording it as neural tube defects |
| valproate/carbamazepine | Neural tube defects; valproate is the one most to avoid in pregnancy | Recording them as cardiac malformations |
| lamotrigine in pregnancy | Relatively the safest (the oral cleft signal carries a very small absolute risk) | Thinking it is more dangerous than valproate |
| PMS | Does not include hot flashes | Slipping in menopausal hot flashes |
| PMDD | Does not include delusions | Listing delusions as a symptom |
| Suicide | Psychosis is high risk | Treating it as a protective factor |
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Answering strategy: for mechanism questions, guard the "direction" (metabolism↓, shortened REM latency, reuptake inhibition); for drug questions, use the mnemonic "lithium → heart, valproate/carbamazepine → spine, lamotrigine → lip"; for diagnostic-boundary questions, rule out quickly with "luteal phase → no hot flashes; delusions belong to another diagnosis".
| Exam point | Correct answer | Common trap |
|---|---|---|
| Does ASD (acute stress disorder) include dissociative symptoms? | Yes (amnesia/derealization/depersonalization) | Any statement saying "no dissociation" is wrong |
| ASD vs PTSD cutoff | 1 month (under = ASD, beyond = PTSD) | Distinguishing them by symptom type instead of time |
| Duration for GAD | ≥6 months + ≥3 physical symptoms | Recording 1 month |
| Peak onset/course of GAD | Young (20s–30s), about 60% become chronic | Inferring "peak at 50–65 years" or "mild cases resolve quickly" |
| Anxiety disorder that most often brings patients to the ED | Panic disorder (acute physical symptoms + sense of impending death) | Choosing GAD by mistake |
| First-line drugs for anxiety disorders | SSRI/SNRI (+ CBT) | Choosing antipsychotics/long-term BZDs by mistake |
| Treatment of OCD | SSRI (high dose) + ERP; clomipramine can be added | Giving only BZDs |
| Drugs to avoid in PTSD | BZDs not recommended; prazosin for nightmares | Treating BZDs as the first choice for PTSD |
| Medical illness most often comorbid with anxiety | Functional GI disorders/IBS | Choosing peptic ulcer by mistake |
| Sex distribution of OCD | Similar in men and women; earlier onset in males | Recording "female > male" |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Timeline of alcohol withdrawal | Tremor (6–8h) → hallucinosis (12–24h) → seizures (24–48h) → delirium tremens, DT (48–72h) | Reversing the order; putting DT first |
| Drug of choice for alcohol withdrawal | BZD (lorazepam) | Choosing phenobarbital by mistake |
| Preventing Wernicke encephalopathy | Thiamine first, then glucose | Giving glucose first and precipitating encephalopathy |
| Alcoholic blackout | Anterograde amnesia; long-term memory preserved | Calling it retrograde/loss of long-term memory |
| Direction of stimulant effects | Intoxication = stimulation; withdrawal = fatigue and depression | Treating amphetamine as a sedative |
| Treatment of amphetamine psychosis | Stop the drug + haloperidol | Using carbamazepine by mistake |
| Mechanism of ketamine | NMDA antagonist | Answering agonist |
| Triad of opioid intoxication | Pinpoint pupils + respiratory depression + coma; reversed by naloxone | Confusing it with stimulants |
| Caffeine withdrawal | Starts at 12–24h; headache + fatigue | Recording "appears after one week" or "causes auditory hallucinations" |
| Medication for chronic insomnia | First choice is CBT-I; avoid short-acting potent BZDs | Prescribing triazolam straight away |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| First choice for treating delirium | Low-dose short-acting oral antipsychotic (haloperidol); find the cause first | Choosing a long-acting depot injection by mistake |
| Alcohol/BZD withdrawal delirium | BZD is the first choice | Using haloperidol by mistake |
| Least suitable IM drug for acute agitation | Diazepam IM (erratic absorption) | Thinking all BZDs can be given IM; haloperidol/lorazepam actually can |
| Drug requiring WBC monitoring | Clozapine (agranulocytosis) | Thinking blood levels must be monitored |
| Drugs requiring blood level monitoring | Lithium / VPA / carbamazepine | Including clozapine in level monitoring |
| SSRI side effects | Nausea, sexual dysfunction, insomnia, hyponatremia, etc.; not a rapid rise in blood glucose | Treating a glucose spike as an SSRI side effect |
| Indications for lithium | Acute mania + bipolar prophylaxis + anti-suicide effect | Using it for panic disorder/anorexia/alcoholism |
| Precipitants of lithium toxicity | Dehydration, NSAIDs, thiazides, ACEIs; dialysis if severe | Thinking diuretics are irrelevant |
| Rigidity + slow onset + CK↑ | NMS → dantrolene/bromocriptine | Confusing it with serotonin syndrome |
| Myoclonus + hyperreflexia + rapid onset | Serotonin syndrome → cyproheptadine | Mistaking it for NMS |
| Restless and unable to sit still — add more drug? | akathisia; reduce the dose/use a β-blocker | Mistaking it for agitation and adding more antipsychotic |
| Chronic involuntary movements of the mouth and tongue | Tardive dyskinesia; anticholinergics worsen it | Using anticholinergics (those treat acute dystonia) |
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- DSM-5 change for SSD: "medically unexplained" is no longer required; the focus is an excessive response to the symptoms; it can be diagnosed even when real organic disease is present.
- Two-axis approach: intentionally feigned? external gain? → not intentional = conversion disorder; intentional + no gain = factitious disorder; intentional + gain (avoiding military service/insurance fraud) = malingering (not a mental disorder).
- Most common symptom of conversion disorder = limb weakness/paralysis; pseudoseizures can coexist with true epilepsy.
- In conversion disorder, a response to suggestion/lorazepam supports the diagnosis and cannot be used to exclude it; la belle indifférence is nonspecific.
- Treatment of conversion disorder: build trust, CBT, rehabilitation; never tell the patient directly "you're imagining it".
- In BDD, cosmetic surgery/aesthetic procedures are ineffective or even harmful; treatment is SSRI + CBT.
- Confabulation = a memory disorder (Korsakoff / B1 deficiency), not dissociation or deception.
- DID is ≥2 personality states + amnesia; in depersonalization, reality testing remains intact.
- After organ transplantation, delusional disorder is least likely; high-risk conditions are PTSD / depression / adjustment disorder.
Common traps:
- Using "responds to medication/suggestion" as a reason to exclude conversion disorder (quite the opposite: it supports it).
- Treating "most common" as "most specific" (e.g., la belle indifférence is often mentioned but is nonspecific).
- Choosing malingering whenever you see "deliberately faking", ignoring whether there is external gain — no gain means factitious disorder.
- Recommending cosmetic surgery to a BDD patient, or directly denying the reality of a conversion patient's symptoms.
- For ethics questions, first identify the two principles in conflict; when the patient has decision-making capacity, autonomy usually takes priority.
- Full legal capacity + consistent refusal of treatment = must be respected, with no need for a court or legal representative to intervene.
- Three requirements for a valid autonomous decision: capacity + adequate disclosure + voluntariness; exceptions to informed consent: emergency, incapacity (surrogate decides), patient waiver, therapeutic privilege.
- Withdrawing and withholding life support are ethically equivalent; removing a ventilator at the wish of a patient with capacity is passive and lawful.
- Confidentiality is not absolute: serious, imminent harm to a third party (e.g., HIV not disclosed to a pregnant partner) → confidentiality may be breached to disclose; "only reminding the patient" is an insufficient response; disclosure must follow the principle of proportionality.
- Active euthanasia = actively administering a lethal means; passive = withdrawing life support; causing death through "assistive measures" counts as active.
- Double effect (morphine for pain relief, where hastened death is foreseeable but not intended) is ethically acceptable.
- Genetic testing is mostly risk assessment, not an accurate prediction of disease onset.
- Organ donation: respect the donor's wishes + disclose honestly; never deceive the family; donation by minors involves child protection.
Common traps:
- Forcing treatment on a patient with capacity in order to "save a life", or going around the patient to a court/surrogate.
- Treating confidentiality as an absolute duty and ignoring the exception to protect third parties; or, conversely, over-disclosing in violation of proportionality.
- Misclassifying "actively assisting death" as passive euthanasia.
- Securing organ donation by deceiving the family, or exaggerating genetic testing as "accurate prediction".
- AN = significantly low body weight, hypothermia/bradycardia/hypotension/amenorrhea/lanugo; vomiting/laxatives → hypokalemia; DSM-5 removed "amenorrhea" as a required criterion, and a patient at significantly low weight is still diagnosed with AN (binge-eating/purging type) even with bingeing/purging.
- Gender dysphoria in children also requires a duration of ≥6 months (not only in adults).
- AN admission criterion: below 70% of ideal body weight (current SAHM 2022: below 75% of median BMI); admit to psychiatry or internal medicine/pediatrics according to complications, not always pediatrics; beware of refeeding syndrome (hypophosphatemia).
- BN: binge eating + compensatory behavior + self-evaluation unduly influenced by weight (DSM-5); first choice fluoxetine; bupropion is contraindicated in both BN and AN.
- Weight regain after bariatric surgery is multifactorial; supplementing B12/iron cannot prevent it.
- First choice for BPD is DBT; psychotherapy + medication are additive; BZDs are ineffective in BPD and carry a risk of dependence.
- Defense mechanism definitions: be able to match fantasy/dissociation/isolation of affect/projection correctly.
- Kleptomania = impulsive, unplanned, not for the value of the item; planned theft is criminal behavior.
- For children, gender dysphoria criterion A1 = a strong desire to be of the other gender; intersex conditions need not be excluded; conversion therapy is opposed.
Common traps:
- Recording bulimia as "self-evaluation not influenced by weight" (contradicts DSM-5).
- Thinking vomiting causes hyperkalemia (it actually causes hypokalemia).
- Mistaking BPD for dependent personality disorder, or using BZDs as the mainstay.
- Describing kleptomania as "carefully planned", or recommending conversion therapy for gender dysphoria.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Junctions linked to intermediate filaments | Desmosome, hemidesmosome | Choosing adherens junctions (linked to actin) by mistake |
| Macula adherens = ? | Desmosome | Confusing it with the zonula adherens |
| Cytoskeleton linked to the zonula adherens | Actin microfilaments | Answering intermediate filaments |
| Location of Merkel cells | Stratum basale of the epidermis | Answering the stratum spinosum |
| Location/function of Langerhans cells | Stratum spinosum; antigen presentation | Answering the stratum basale, or treating them as sensory cells |
| Cell type absent from the olfactory region | Goblet cells | Thinking goblet cells are present throughout the airway |
| Goblet cells are | Unicellular (exocrine) glands that secrete mucus | Treating them as endocrine |
| Secretion mode of sebaceous glands | Holocrine | Answering merocrine |
| DNA features of apoptosis | Ladder pattern + cell shrinkage + apoptotic bodies + no inflammation | Swapping it with necrosis (swelling, inflammation) |
| Structure attacked in pemphigus | Desmosome (desmoglein) | Answering hemidesmosome (= pemphigoid) |
| Epithelioid tissue vs true epithelium | No free surface, no basement membrane | Thinking it has a free surface |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Structure present in fibrocartilage but absent in dense connective tissue | Lacuna | Answering collagen fibers (both have them) |
| Cartilage capable of appositional growth | Hyaline ①, elastic ② (fibrocartilage ③ cannot) | Including fibrocartilage as well |
| Why fibrocartilage cannot grow appositionally | No perichondrium | Thinking all cartilage has perichondrium |
| Exchange of materials between neighboring osteocytes relies on | Gap junctions (via canaliculi) | Answering desmosomes or lacunae |
| Lifespan of osteocytes vs osteoclasts | Osteocytes longest, osteoclasts shortest | Swapping them |
| Origin of osteoclasts | Hematopoietic lineage (monocyte/macrophage); multinucleated | Answering mesenchymal stem cells |
| Location of primary/secondary ossification centers | Primary = diaphysis, secondary = epiphysis | Swapping them |
| Can bone grow interstitially? | No (only peripheral/appositional bone formation) | Thinking bone can also grow interstitially |
| Mode of ossification of the skull bones and clavicle | Intramembranous ossification | Answering endochondral ossification |
| Key thermogenic protein of brown fat | UCP-1 (thermogenin) | Answering ATP synthase |
| Brown fat in newborns | Abundant and widely distributed; decreases with growth | Thinking adults have more |
| RANKL vs OPG | RANKL promotes osteoclasts, OPG inhibits osteoclasts | Swapping them; denosumab = anti-RANKL |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Number of nuclei in a smooth muscle cell | Single nucleus | Answering multinucleated (that is skeletal muscle) |
| Structure formed mainly by the skeletal muscle cell membrane | Sarcolemma; T-tubules are its invaginations; junctional folds are also formed by it | Answering sarcoplasmic reticulum (part of the endomembrane system) |
| What smooth muscle lacks, and what it uses to handle Ca²⁺ | Lacks T-tubules; relies on caveolae/vesicles | Thinking smooth muscle also has T-tubules |
| Bands that shorten during contraction | I band and H band shorten; A band unchanged | Answering that the A band shortens |
| Anchoring point of thin/intermediate filaments in smooth muscle | Dense body | Answering the Z line (that is striated muscle) |
| Outer covering of smooth muscle cells | External lamina | Answering perichondrium |
| Another name for a skeletal muscle cell | Muscle fiber | Confusing it with nerve fiber |
| Ca²⁺-sensing protein in striated vs smooth muscle | Striated muscle: troponin; smooth muscle: calmodulin-MLCK | Swapping them |
| Role of ATP in contraction | Detaches myosin from actin (hence no ATP → rigor mortis) | Thinking it only powers the power stroke |
| Intercalated discs of cardiac muscle contain | Desmosomes + gap junctions | Answering T-tubules |
| Myasthenia gravis vs Lambert-Eaton | MG weaker with use (anti-receptor); LE stronger with use (anti-Ca channel) | Swapping them |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Pars flaccida perforation + epithelial retraction | Primary acquired cholesteatoma | Misjudging it as a simple eardrum perforation |
| Hyperemic, bulging eardrum + fever and ear pain | Acute otitis media | Confusing it with otitis media with effusion (no bulging) |
| Normal tympanogram | Type A | Choosing type C by mistake |
| Tympanogram with effusion in acute otitis media | Type B (flat) | Choosing type C (C is negative pressure without effusion) |
| Procedure not part of cholesteatoma surgery | Stapedectomy | Thinking the ossicles must be removed |
| Prognosis of sudden hearing loss | Low-frequency loss has a better prognosis than high-frequency loss | Reversing the direction |
| Weber lateralizes to the affected ear | Conductive hearing loss | Reversing it with sensorineural loss (lateralizes to the healthy ear) |
| First-line treatment of SSNHL | Corticosteroids (systemic or intratympanic) | Choosing antibiotics by mistake |
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Answering tip: for "least appropriate" questions, circle the negative word first; for image questions, first identify bulging vs retraction and the perforation site; for tympanogram questions, first check whether there is a peak and which way it shifts.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Standard treatment of adult OSA | nasal CPAP | Choosing surgery for everyone by mistake |
| Diagnostic index for OSA | AHI (measured by PSG) | Relying only on questionnaires or oximetry |
| Most common cause of acquired laryngotracheal stenosis | Endotracheal intubation | Choosing congenital factors by mistake |
| Teacher with voice abuse, bilateral nodules | Speech (voice) therapy first | Choosing immediate surgery by mistake |
| Acid vs alkali corrosive injury: which is worse | Alkali (liquefactive necrosis, deep) | Reversing it so that acid is worse |
| Contraindications in managing corrosive injury | No acid–base neutralization, no induced vomiting | Choosing neutralization or induced vomiting by mistake |
| Opening of 3rd/4th branchial cleft fistulas | Piriform sinus | Recording it as the tonsillar fossa (that is the 2nd) |
| Pharyngolaryngeal infection with inhaled steroids + diabetes | Candidiasis | Choosing a bacterial infection by mistake |
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Answering tip: for OSA, stenosis, and nodule questions, first identify the population and the cause; for corrosive questions, first determine acid vs alkali and the contraindications; branchial cleft questions only test the opening site.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Source of the +80 mV endocochlear potential | Stria vascularis | Choosing the spiral ganglion or organ of Corti by mistake |
| Ionic composition of endolymph | High K⁺, low Na⁺ | Reversing it with perilymph |
| Nystagmus with cold water in caloric testing | Fast phase toward the opposite side (Cold-Opposite) | Reversing the direction |
| Nystagmus with warm water in caloric testing | Fast phase toward the same side (Warm-Same) | Reversing the direction |
| Features of vestibular neuritis | Continuous vertigo, no hearing loss; can be followed by BPPV | Thinking it comes with hearing loss |
| Vertigo disorder most often accompanied by hearing loss | Ménière disease | Choosing vestibular neuritis by mistake |
| Direction-changing / pure vertical nystagmus | Central lesion | Misjudging it as peripheral |
| HINTS: normal head impulse + direction-changing nystagmus + skew present | Suggests a central cause (stroke) | Thinking only an abnormal head impulse is dangerous |
| Tullio phenomenon | Loud sound pressure induces nystagmus (superior semicircular canal dehiscence) | Thinking it is unrelated to pressure |
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Answering tip: for vertigo questions, first use whether the nystagmus changes direction / is suppressed by fixation to separate central from peripheral; always apply COWS to caloric testing; when hearing loss is involved, think Ménière first.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Most common cause of acute facial nerve palsy | Bell palsy (idiopathic) | Choosing stroke/tumor by mistake |
| Peripheral vs central facial palsy | Peripheral: forehead wrinkles lost; central: forehead wrinkles preserved | Reversing the direction |
| Procedure for long-term airway bypass | Tracheostomy | Choosing cricothyrotomy by mistake |
| Emergency rescue airway | Cricothyrotomy (fast) | Choosing tracheostomy by mistake |
| Management of esophageal perforation | NPO + nasogastric drainage + antibiotics | Giving oral contrast / delaying treatment |
| Drooling + tripod position + thumb sign | Acute epiglottitis | Examining the pharynx with a tongue depressor (contraindicated) |
| Irrigating a foreign body in the ear canal | Use body-temperature water; cold water causes vertigo | Ignoring the contraindications of eardrum perforation/button batteries |
| Risk of vocal cord palsy with tonsillectomy | Lowest | Misjudging it as high risk |
| Placing a drain without informing the patient | Violates informed consent/autonomy | Misjudging it as a breach of confidentiality |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Tongue cancer >4 cm | T3 | Misstaging it as T2 |
| Single ipsilateral lymph node 4 cm, no ENE | N2a | Misstaging it as N1/N2b |
| Combined stage for the above | Stage IVA | Overlooking N2 → IVA |
| Older smoker/drinker/betel-nut chewer with unilateral ear pain and a normal ear | Tonsillar/oropharyngeal cancer (CN IX) | Thinking of otitis media |
| Treatment of early glottic cancer | Either surgery or radiotherapy | Believing only surgery is possible |
| Neck mass after nasopharyngeal carcinoma has been confirmed | No further biopsy needed | Doing an extra biopsy |
| salt and pepper (MRI) | Paraganglioma | Mistaking it for another tumor |
| Main treatment for nasopharyngeal carcinoma | Radiotherapy | Choosing surgery as first choice by mistake |
| Unilateral serous otitis media in an adult | Rule out nasopharyngeal carcinoma (Eustachian tube obstruction) | Treating it as simple otitis media |
| Most common presenting symptom of nasopharyngeal carcinoma | Painless neck mass | Thinking nasal obstruction/epistaxis comes first |
| HPV+ oropharyngeal cancer | Better prognosis | Thinking the prognosis is poor |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Most important basis for distinguishing viral from bacterial sinusitis | Course (>10 days / double sickening) | Judging by the color of the purulent discharge |
| Sinusitis with altered consciousness | Get a CT (X-ray is insufficient) | Thinking an X-ray is enough |
| Most common source of orbital cellulitis | Ethmoid sinus | Choosing the sphenoid sinus by mistake |
| Narrowest part of the nasal airway | Internal nasal valve | Choosing the external nasal valve by mistake |
| Black necrosis in the nasal cavity of a diabetic | Mucor | Choosing Aspergillus by mistake |
| Drawback of skin testing | Affected by antihistamines | Listing it as an advantage |
| Absolute indications for FESS | Polyps/fungus ball/complications, etc. | Treating "acute exacerbation" as an absolute indication |
| First-choice antibiotic for bacterial sinusitis | amoxicillin-clavulanate (IDSA first choice) | Jumping straight to a respiratory fluoroquinolone |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Derivatives of the 1st pharyngeal pouch | Middle ear + Eustachian tube (opening into the nasopharynx) | Matching it to the wrong number |
| Parathyroids from the 3rd / 4th pharyngeal pouches | 3rd → inferior, 4th → superior (the 3rd descends farther with the thymus) | Reversing superior/inferior |
| Nerve of each pharyngeal arch | 1→V, 2→VII, 3→IX, 4/6→X | Getting the numbers wrong |
| Origin of the respiratory primordium | Caudal foregut (at the level of the 4th pharyngeal pouch) | Choosing the 1st pouch by mistake |
| Pharyngeal cleft that persists | 1st → external acoustic meatus | Choosing the 2nd cleft by mistake |
| Function of the viscerocranium | Facial skeleton (does not protect the brain) | Thinking it protects the brain |
| Germ-layer composition of the tympanic membrane | All three layers (ectoderm + mesoderm + endoderm); no neuroectoderm | Thinking it contains neural ectoderm |
| Origin of the auditory ossicles | 1st and 2nd pharyngeal arches | Choosing a single arch |
| Congenital torticollis | Sternocleidomastoid abnormality | Attributing it to the cervical spine/nerves |
| Branchial cleft cyst | Remnant of the 2nd pharyngeal cleft/cervical sinus (lateral neck) | Mistaking it for a thyroglossal duct cyst (midline) |
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- Unstable BP + negative FAST → pelvic hemorrhage → angiography/embolization (the most frequently tested management question).
- Blood at the urethral meatus → retrograde urethrogram first; never catheterize directly (classic contraindication question).
- Retroperitoneal hemorrhage is most commonly venous (managed mainly by compression/packing); only arterial bleeding needs embolization.
- Lumbosacral plexus injury has a worse prognosis than peripheral nerve injury (because the lesion is proximal with a long regeneration distance, often with root avulsion).
- A pelvic binder is most effective for APC/open-book injuries; in LC-type injuries it may actually worsen the compression.
Common traps
- Recording "thigh compartment syndrome" as a complication of pelvic fracture — wrong; it should be retroperitoneal hemorrhage and nerve injury.
- Rushing to laparotomy at the sight of hypotension — you must first use FAST to distinguish intraperitoneal vs retroperitoneal bleeding.
- Mistaking "the most common bleeding source (venous)" for "requires angioembolization (arterial)".
- Differentiate by age: infant DDH → school-age Perthes → obese adolescent SCFE.
- SCFE is an orthopedic emergency; once diagnosed, urgent in situ pinning (no forceful reduction) to avoid avascular necrosis; it often presents as knee/thigh pain (referred pain).
- The Patrick (FABER) test is not a DDH screening tool (classic "least appropriate" trap).
- In Perthes, the younger the child, the better the prognosis; lateral pillar involvement and necrosis >50% carry a poor prognosis.
- Congenital torticollis = SCM fibrosis (not trapezius); the face turns to the opposite side.
- Skeletal changes in MPS are mainly valgus; coxa vara is the least common.
Common traps
- Recording torticollis as "trapezius fibrosis" — wrong; it is the sternocleidomastoid.
- Reversing the Perthes prognosis (thinking younger means worse) — younger children have more room to remodel, so their prognosis is actually better.
- Confusing Galeazzi/Ortolani/Barlow: Ortolani = reduction, Barlow = dislocation.
- Adductor pollicis is supplied by the ulnar nerve (the rest of the thenar muscles are mostly median) — adductor pollicis is the exception.
- Median nerve = LOAF (Lumbricals 1&2, Opponens pollicis, APB, superficial head of FPB).
- FDP is an extrinsic muscle, not an intrinsic muscle (classic "does not belong" trap).
- Strong indications for replantation: thumb, multiple digits, any digit in a child, amputation at the palm/wrist level.
- In adults, a single-digit amputation proximal to the FDS insertion = relative contraindication (poor functional recovery).
- Positive Froment sign → ulnar neuropathy (adductor pollicis weakness).
Common traps
- Assigning all thenar muscles to the median nerve — adductor pollicis is the ulnar exception.
- Treating FDP/FDS as intrinsic muscles — their muscle bellies are in the forearm, so they are extrinsic.
- Thinking "every amputated digit should be replanted" — in adults a single digit at a complex level actually gives poor function and is a relative contraindication.
- HIVD: 90% occur at L4-5 and L5-S1 (not L3-4); L5-S1 → loss of the ankle reflex.
- Cauda equina syndrome = emergency surgery (red flags: saddle anesthesia, bladder/bowel incontinence).
- Three compartments of spinal tumors: extradural = metastases; intradural extramedullary = meningioma/schwannoma/neurofibroma; intramedullary = ependymoma/astrocytoma.
- Metastases are most common in the thoracic spine (Batson venous plexus); intramedullary metastases are rare.
- Metastasis without neural compression → imaging + biopsy + radiotherapy first, not immediate surgery.
- AIS: thoracic curve convex to the right; the Risser sign assesses skeletal maturity.
- Chiari I = tonsillar descent >5 mm + syringomyelia, without spina bifida/hydrocephalus.
Common traps
- Listing L3-4 as a common HIVD level — wrong; it is L4-5/L5-S1.
- Accepting "the most common intramedullary tumor is metastasis" as correct — wrong; intramedullary tumors are mainly ependymomas, and metastases favor the extradural space.
- "Operate immediately" whenever you see a metastasis — without neural compression, establish the diagnosis + irradiate first.
- Classifying anaplastic astrocytoma as intradural extramedullary — it is intramedullary.
- Six dorsal wrist compartments mnemonic: 1-APL/EPB, 2-ECRL/ECRB, 3-EPL, 4-EDC/EIP, 5-EDM, 6-ECU; de Quervain involves the 1st compartment.
- ACL = non-contact twisting + immediate large hemarthrosis (rich blood supply); PCL = dashboard blow from the front + little swelling, weakness going downstairs.
- The most sensitive test for ACL is the Lachman test; MCL = valgus force, PCL = posterior impact.
- Carpal tunnel (median nerve): numbness of the thumb, index, and middle fingers, night pain, relieved by shaking the hand (Flick sign); cubital tunnel (ulnar nerve): NCV/EMG is the first choice, not MRI.
- PIN injury: can extend the wrist, cannot extend the fingers, no sensory deficit; ECRL is supplied by the main radial nerve trunk and is unaffected by PIN injury.
- The apprehension test for anterior instability uses external rotation (shoulder abducted 90° + external rotation); not internal rotation.
- Gout = negatively birefringent needle-shaped crystals; CPPD = positively birefringent rhomboid crystals + chondrocalcinosis; in acute gout serum urate can be normal, and allopurinol is not started during the acute phase (current ACR 2020: it may be started during a flare under anti-inflammatory cover).
- Femoral heads use cobalt-chrome/ceramic (hard, wear-resistant); femoral stems use titanium alloy; titanium alloy is not hard enough to serve as a bearing head.
- PMMA polymerization is exothermic; the monomer is kept away from light; shock during implantation = monomer/fat embolism (bone cement implantation syndrome).
- RA = symmetric small joints of both hands + marginal erosions, no osteophytes; OA = osteophytes + DIP (Heberden).
- Kienböck + negative ulnar variance → radial shortening osteotomy; radial lengthening is the least appropriate.
- Risk factors for AVN: alcohol abuse/corticosteroids; imaging: crescent sign, low-signal band on MRI T1.
- Prevention of prosthetic joint infection: cefazolin, 30–60 minutes before skin incision, stopped within 24 hours after surgery; choosing the right antibiotic is the most critical point.
- Proximal radius/radial neck fracture → most likely to injure the PIN (as it passes through the supinator arch); humeral shaft → radial nerve; supracondylar → median nerve/brachial artery.
- Posterior hip dislocation (dashboard) = shortening + flexion + adduction + internal rotation; an emergency requiring urgent reduction.
- The most common carpal fracture after FOOSH is the scaphoid; snuffbox tenderness + negative X-ray still requires immobilization (to prevent proximal avascular necrosis/nonunion).
- In a Bennett fracture the large fragment is displaced by the pull of APL (not EPL/ECRL).
- Radial head fracture with intra-articular loose bodies/mechanical block → surgery; conservative treatment is the least appropriate.
- Distal radius fracture with acute swelling: use a dorsal splint first, then change to a full cast once the swelling subsides (to avoid compartment syndrome).
- Calcaneal fractures: use the Harris axial view; the AP view is unsuitable; for the ankle, add a mortise view.
- After reduction of a mandibular dislocation, keep to a soft diet and avoid wide mouth opening for 1–2 weeks; anterior dislocation is the most common.
- Compartment syndrome 5 P's: Pain (earliest and most important), Paresthesia, Pressure, Paralysis, Pulselessness (late); painlessness is not a feature.
- Diagnosis: compartment pressure > 30 mmHg, or delta pressure (diastolic pressure − compartment pressure) < 30 mmHg (use diastolic, not systolic, pressure); once diagnosed, perform fasciotomy.
- Rhabdomyolysis → aggressive high-volume fluids + urine alkalinization; "fluid restriction" is the wrong management; markedly raised CK, myoglobinuria; electrolytes: hyperkalemia/hyperphosphatemia/hypocalcemia; do not routinely correct early hypocalcemia.
- Gustilo: I < 1 cm, II 1–10 cm, III > 10 cm or severe contamination/tissue loss/vascular injury; severe contamination is classified as III (not II).
- Multiple trauma: Life > Limb; vessels → bone → nerves (skeletal fixation precedes nerve repair).
- Volkmann contracture is ischemia of the extrinsic flexors; the intrinsic muscles may still be normal ("cannot be normal" is wrong).
- Least suitable for replantation: a single digit amputated at multiple levels; thumb/multiple digits/children/palm or wrist amputations are suitable for replantation.
- Core of OA = cartilage degeneration + abnormal chondrocyte repair + osteophytes; osteophytes are seen in OA and are uncommon in RA; RA = synovial pannus + erosions.
- OPG (secreted by osteoblasts) is a decoy receptor for RANKL → inhibits osteoclasts; RANKL/RANK promotes osteoclasts; Denosumab = anti-RANKL.
- Osteoclast activity: osteopetrosis (low), postmenopausal osteoporosis (high), Paget (abnormally excessive); senile osteoporosis (bone formation↓) and osteomalacia (defective mineralization) are not osteoclast-driven.
- FCD = small, eccentric, multilobulated lucent lesion of the distal femur in children (heals spontaneously); ABC = expansile, lytic, blood-filled cystic spaces + giant cells in adolescents; IBM = rimmed vacuoles on Gomori stain.
- The most common pathogen of septic arthritis in children under 2 is S. aureus (not Salmonella; Salmonella is seen in sickle cell anemia; current PCR-based studies: Kingella kingae often leads at 6 months–4 years).
| Exam point | Correct answer | Common trap |
|---|---|---|
| Most common congenital anomaly of the lower respiratory tract | Tracheoesophageal fistula (TEF) | Answering diaphragmatic hernia |
| What induces the cornea | Lens vesicle | Answering the retina (classic incorrect statement) |
| What induces the lens | Optic vesicle | Confusing it with the inducer of the cornea |
| Premature closure of the sagittal suture → head shape | Scaphocephaly (long front-to-back) | Answering brachycephaly |
| Period of greatest sensitivity to teratogens | Weeks 3–8 (organogenesis) | Thinking sensitivity is the same throughout pregnancy |
| When Klinefelter syndrome is detected | Often not until puberty (47,XXY) | Thinking it is obvious at birth |
| Nutrient linked to neural tube defects | Folate deficiency; AFP↑ | Answering iron or calcium |
| Congenital rubella triad | PDA, cataract, deafness | Confusing it with toxoplasmosis |
| Deformation vs malformation | Deformation = external mechanical compression; malformation = intrinsic developmental abnormality | Swapping them |
| Thalidomide malformation | Phocomelia | Answering neural tube defects |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Structure that appears latest in early development | Primitive streak, week 3 | Choosing earlier events such as the blastocyst by mistake (the notochord arises from the primitive node, after the streak) |
| Not derived from the inner cell mass | Trophoblast derivatives (syncytiotrophoblast/chorion) | Treating placental tissue as derived from the embryo proper |
| Origin of the trophoblast | Outer cell layer of the blastocyst (not the inner cell mass) | Recording it as the inner cell mass |
| Precursor of the intervertebral disc nucleus pulposus | Notochord remnant | Choosing the annulus fibrosus or somites by mistake |
| Component forming most of the early fetal diaphragm but only a small part in the newborn | Pleuroperitoneal membranes | Choosing the septum transversum by mistake (it becomes the central tendon; its share differs) |
| Components of the diaphragm | Septum transversum, pleuroperitoneal membranes, dorsal mesentery of the esophagus, body wall muscle | Including the pleuropericardial membranes by mistake |
| Position of the septum transversum in week 4 | At the level of the cervical somites (hence phrenic nerve C3–C5) | Thinking it starts at the thoracolumbar level |
| Final dorsal position of the diaphragm | About the L1 level | Confusing it with "originates at the cervical segments" and ignoring its descent |
| Site of fertilization | Ampulla of the uterine tube | Choosing the uterine cavity by mistake |
| Typical site of congenital diaphragmatic hernia | Left posterolateral (Bochdalek) | Recording it as anterior (Morgagni is less common) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Screening tools for Cushing syndrome | DST / 24h UFC / late-night salivary cortisol, not a random cortisol | Using a single random cortisol (it follows a diurnal rhythm, so it is meaningless) |
| Order of Cushing evaluation | Confirm excess → measure ACTH → localize | Going straight to imaging |
| Cushingoid appearance but ACTH↓ and cortisol↓ | Exogenous steroids | Misjudging it as an adrenal adenoma |
| Most common endocrine cause of secondary hypertension | Primary aldosteronism | Choosing pheochromocytoma (less common) by mistake |
| Tetrad of PA | Low renin, high aldo, hypokalemia, alkalosis; ARR↑ | Mixing in the high renin of "secondary" aldosteronism |
| Marker of 21-OHD | Elevated 17-OHP, androgens↑, salt wasting | Thinking cortisol rises |
| Effect of glucocorticoids on serum calcium | Hypocalcemia (inhibit intestinal absorption, promote renal excretion; clinically, serum calcium usually stays normal and overt hypocalcemia is rare) | Answering hypercalcemia |
| Confirmatory test for pheochromocytoma | Plasma/24h urine metanephrines | Measuring only catecholamines (large fluctuations) |
| Preoperative medication for pheochromocytoma | α first, then β (and expand volume first) | β first → crisis |
| Management of adrenal crisis | Immediate hydrocortisone + fluids | Waiting for ACTH/cortisol results first |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| When a 5-ARI (finasteride) is appropriate | Significant benefit only with larger glands (>40 mL); slow onset | Thinking it works regardless of gland size |
| Target receptor of α-blockers | Prostatic α1A (not α1D) | Treating α1D as the main target |
| PSA↑ + pyuria | Antibiotics first → repeat PSA | Going straight to biopsy (false positive) |
| PSA↑ + free PSA↓ + hypoechoic lesion | TRUS/MRI-guided biopsy to confirm | Just observing and following up |
| PSA for assessing nodal metastasis | Low sensitivity; imaging (CT/MRI) is better | Thinking PSA can stage accurately |
| Prostate size on DRE vs symptoms | No clear correlation | Thinking a bigger gland means worse symptoms |
| ED after radical prostatectomy | Cavernous nerve (NVB) injury | Answering sympathetic nerves/vessels |
| Least urgent test in the initial BPH evaluation | Serum creatinine / renal ultrasound | Treating them as mandatory first-line tests |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Treatment of early seminoma | Radiosensitive (mainly radiotherapy/surveillance) | Answering chemotherapy as first choice |
| AFP in pure seminoma | Not elevated; AFP↑ → nonseminoma | Thinking seminoma also raises AFP |
| Most common primary tumor metastasizing to the bladder (via distant, blood-borne spread; counting direct invasion, colorectal, prostate and cervical cancers are commoner) | Melanoma | Confusing it with primary bladder cancer (urothelial carcinoma) |
| Effect of orchidopexy on testicular cancer | Does not reduce incidence (only aids examination/fertility/prevents torsion; current evidence: prepubertal surgery does lower the risk, though not to baseline) | Thinking it lowers the rate of malignant change |
| Stauffer syndrome | Paraneoplastic syndrome of RCC: abnormal liver function without liver metastasis (IL-6/GM-CSF) | Misjudging it as true liver metastasis |
| Filling defect in the renal pelvis on IVU | Urothelial carcinoma of the renal pelvis | Answering RCC |
| Most common side effect of VEGF inhibitors | Hypertension (also hand-foot reaction, diarrhea) | Choosing hypothyroidism by mistake |
| Renal tumor with fat density | AML (angiomyolipoma; associated with tuberous sclerosis) | Misjudging it as malignant RCC |
| Most common type of bladder cancer | Urothelial carcinoma (TCC) | Answering adenocarcinoma |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Most common stone / most common cause | Calcium-containing stones; hypercalciuria | Treating uric acid stones as the most common |
| Stone inhibitors | Citrate, magnesium | Treating magnesium/citrate as promoters |
| Source of urinary oxalate | 85-90% endogenous; diet only 10-15% (newer studies put the dietary share at about 25–50%) | Thinking dietary restriction alone can greatly lower oxalate |
| Diagnostic test of choice | Non-contrast CT | Choosing IVP or contrast CT as first choice |
| Radiolucent stones | Uric acid, cystine | Thinking every stone is visible on KUB (also note: cystine is actually faintly radiopaque, not truly radiolucent) |
| Dissolved by urine alkalinization | Uric acid stones | Using it for calcium oxalate (ineffective) |
| Stone + sepsis | Urgent drainage first, then deal with the stone | Lithotripsy first → worsening bacteremia |
| Stone treatment in anticoagulated patients | Flexible URS | Choosing ESWL/PCNL (bleeding risk) |
| Contraindications to ESWL | Coagulopathy, aneurysm, skeletal deformity, pregnancy | Treating obesity as an absolute contraindication |
| struvite stones | Urease-producing bacteria, alkaline urine, staghorn shape | Confusing them with calcium oxalate |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| First thing to rule out in acute scrotum | Testicular torsion (emergency surgery) | Treating it as epididymitis with antibiotics and delaying |
| Prehn's sign (pain relieved by elevation) | Suggests epididymitis | Thinking it suggests torsion |
| Doppler in torsion | Flow↓/absent | Thinking flow is increased |
| Main cause of epididymitis in young men | STIs (Chlamydia/gonorrhea) | Answering diabetes |
| Source of testosterone | Leydig cells (driven by LH) | Reversing the pairing with Sertoli cells/FSH |
| Source of seminal fructose | Seminal vesicles | Answering the prostate |
| Cavernous venous leak | A vascular problem, not low testosterone | Attributing it to low testosterone |
| Target inhibited by sildenafil | PDE5 (PDE6 inhibition causes the visual side effects) | Saying it inhibits PDE6 |
| Absolute contraindication to PDE5i | Nitrates | Treating rifampin as a contraindication |
| Testis not found on palpation or ultrasound | Possible intra-abdominal cryptorchidism; laparoscopy needed | Concluding anorchia straight away |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Dominant nerve/receptor for voiding | Parasympathetic M3 (detrusor contraction) | Confusing it with sympathetic |
| Detrusor receptor subtypes | M2 (most numerous) + M3 (most important) | Answering that M1/M5 predominate |
| M3 signaling pathway | Gq → IP3/DAG → Ca²⁺ | Confusing it with M2 (inhibits cAMP) |
| Causes of detrusor underactivity | Stroke (acute phase; chronic stroke usually causes overactivity), radical hysterectomy, diabetes | Including urinary stones |
| Most typical feature of the diabetic bladder | Impaired bladder sensation + residual urine↑ | Answering detrusor overactivity/DSD |
| Bladder in spinal cord injury | Detrusor overactivity + DSD (high pressure) | Confusing it with the underactive bladder of diabetes |
| Danger threshold for the upper urinary tract in children | Storage pressure ≥40 cmH₂O | Recording it as a urine volume or another number |
| Management goal in neurogenic bladder | Lower the storage pressure (CIC + anticholinergics) | Thinking only of increasing voiding frequency |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| GFR formula | NFP = P_GC − P_BS − π_GC | Omitting Bowman's space pressure or reversing the direction |
| Bowman's space pressure↑ (obstruction) | GFR↓ (directly, not by gradual regulation) | Thinking it falls slowly by reflex |
| Ultrafiltration | A glomerular function | Attributing it to the tubules |
| Site of glucose reabsorption | Proximal tubule only | Writing "proximal + distal" |
| Basolateral Na transport in the PCT | Na⁺-K⁺-ATPase | Answering NKCC (that is in the TAL) |
| Effect of a low-protein diet on urine concentration | Concentrating ability↓ (urea↓ → gradient↓) | Thinking concentrating ability increases |
| Regulation of AQP2 translocation | ADH (cAMP→PKA); passive water movement | Calling it active transport or attributing it to AQP1 |
| Location of AQP1 | Proximal tubule + descending limb | Confusing it with AQP2 |
| Aldosterone escape | Na⁺ retention lasts only about 3–5 days before escape; urinary Na⁺ then rises to match intake; K⁺ stays low and BP stays high | Thinking it can persist for more than 2 weeks |
| Urinary HCO₃⁻ in DKA | Not increased (almost completely reabsorbed) | Thinking large amounts are excreted |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Embryonic origin of adrenal chromaffin cells | Neural crest (same origin as sympathetic postganglionic neurons) | Answering mesoderm/endoderm |
| Stimulus for adrenal medullary secretion | Direct stimulation by preganglionic sympathetic nerves (cholinergic, ACh) | Answering ACTH (that acts on the cortex) |
| Main secretory product of the medulla | Epinephrine (about 80%) | Answering that NE predominates |
| Tubular segment containing the macula densa (precisely: the end of the TAL, where it meets the DCT) | Distal tubule (DCT) | Answering the proximal straight tubule / proximal convoluted tubule |
| Function of the macula densa | Senses luminal NaCl and triggers TGF | Answering that it senses BP/secretes renin (renin is secreted by JG cells) |
| Histologic hallmark of the thyroid | Follicles + colloid (thyroglobulin) | Confusing it with pancreatic islets/adrenal zonation |
| Name of the endocrine pancreas | Islets of Langerhans | Treating acinar/centroacinar cells as endocrine |
| Does the pituitary have ducts? | No ducts (purely endocrine; sinusoidal capillaries) | Answering "has intercalated ducts" (those belong to salivary glands) |
| Layer of the eyeball to which the iris belongs | Vascular layer (uvea) | Answering the fibrous layer |
| Muscle type of the ciliary muscle | Smooth muscle (parasympathetic innervation; near focusing) | Answering skeletal muscle |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| KDIGO criterion for stage 3 AKI | Starting RRT = stage 3 (regardless of the current SCr) | Looking only at the creatinine multiple |
| Interpreting FeNa in AKI on CKD | FeNa > 1% does not exclude prerenal AKI (the tubules are already damaged) | Mechanically applying FeNa < 1% = prerenal |
| Conditions for postobstructive diuresis | After relief of bilateral complete obstruction or complete obstruction of a solitary functioning kidney | Thinking it also occurs with unilateral obstruction (normal contralateral kidney) |
| Colloid contraindicated for volume expansion in AKI | Hydroxyethyl starch (HES) | Thinking HES is safe |
| Protein strategy in critically ill patients with AKI | Give adequate protein (1.2–2.5 g/kg/d) | Using a low-protein diet to delay dialysis |
| Management of AKI with hyperkalemia + acidosis | Hemodialysis/CRRT | Choosing plasma exchange by mistake |
| Indications for plasma exchange | TTP, ANCA vasculitis, Goodpasture | Using it to clear small molecules such as K⁺/acid |
| Pattern of PPI-associated kidney injury | Acute interstitial nephritis (mild proteinuria) | Thinking it causes nephrotic-range proteinuria |
| Features of aristolochic acid nephropathy | Rapid renal failure, disproportionate anemia, urothelial cancer | Mistaking "protein-energy malnutrition" for a feature |
| Creatinine timeline in contrast nephropathy | Peaks at 3–5 days, recovers in 1–2 weeks | Recording a peak at 10–14 days |
| High-risk groups for CIN | Multiple myeloma, pre-existing kidney disease, DM | Overlooking myeloma paraproteins |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| CKD anemia with folate deficiency | Replace folate/B12 first; with normal ferritin, there is no rush to give iron/EPO | Giving EPO first |
| Effect of FGF-23 on PTH | Suppresses PTH secretion (via Klotho) | Answering "stimulates PTH" |
| Earliest mineral marker to rise in CKD | FGF-23 | Answering PTH/serum phosphate |
| Diet for stage 4 CKD with proteinuria | Low protein (0.6–0.8 g/kg/d) | Confusing it with the high protein needs in AKI |
| First-choice antihypertensive in CKD | ACEi/ARB (one alone, not combined) | Choosing a β-blocker or ACEi + ARB combination |
| Survival with renal replacement therapy | Transplant > PD ≈ HD; HD has the worst 5-year survival | Thinking HD is as good as transplantation |
| Management of fungal peritonitis | Remove the catheter immediately + antifungals | Giving drugs without removing the catheter |
| First-choice emergency treatment for uremic bleeding | DDAVP | Ignoring the value of keeping Hct > 30% |
| Side effects of androgens for uremic bleeding | Hepatotoxicity/virilization (not thrombosis) | Attributing thromboembolism to androgens |
| NSF and gadolinium | HD can remove gadolinium | "HD cannot remove it" = incorrect statement |
| Characteristic side effects of sirolimus | Hyperlipidemia, proteinuria | Answering hyperuricemia (that is cyclosporine) |
| New-onset diabetes after transplantation | Tacrolimus | Attributing it to sirolimus |
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- Complement-based classification: C3↓ → PSGN; C3↓ C4↓ full-house → lupus; normal complement + pauci-immune → ANCA; normal complement + linear → anti-GBM.
- Goodpasture = anti-α3-NC1 (not α5); α5 = Alport.
- MN = the highest thrombosis risk among causes of nephrotic syndrome (renal vein thrombosis 30–40%); adult nephrotic syndrome + anti-PLA2R = primary MN.
- C4d deposition = antibody-mediated rejection; treat with plasma exchange + IVIg + rituximab; do not use basiliximab (more precisely: not contraindicated, simply ineffective and not a treatment for AMR).
- Dipstick protein detects only albumin: if light-chain proteinuria is suspected, use serum immunoelectrophoresis.
- Common traps: mixing up the timelines of PSGN (1–3 weeks after infection) and IgA nephropathy (concurrent with infection); misapplying "most common secondary glomerular disease = diabetes" to the primary classification; ANCA vasculitis is pauci-immune, so don't expect immune complex deposits.
- Hyaline arteriolosclerosis = aging/hypertension/diabetes; pheochromocytoma → fibrinoid necrosis (hyaline thickening is the least likely).
- FMD can involve any layer of the arterial wall; the media is most common; "confined to the media" is an incorrect statement.
- The infiltrate in drug-induced acute interstitial nephritis is mainly T lymphocytes + macrophages (type IV hypersensitivity); eosinophils are not the main cells.
- XGP → Proteus is most common; foamy macrophages + stones.
- Kimmelstiel-Wilson nodules = diabetic nephropathy; idiopathic FSGS is not part of diabetic pathology.
- RCC spreads via veins (renal vein → IVC → right atrium); tumor is least likely to be found in the renal artery.
- Analgesic nephropathy → renal papillary necrosis; coexisting UTI in about 50% (not 90%).
- Common traps: attaching "FSGS, a podocytopathy" to diabetes; treating eosinophils as the "main" infiltrating cells in interstitial nephritis; recording RCC's venous invasion as arterial.
- Four steps: pH → primary disorder → Winter compensation (1.5×HCO3+8±2) → calculate the AG.
- AG = Na−(Cl+HCO3); >12 is a high AG; metformin accumulation → high-AG lactic acidosis.
- UAG distinguishes diarrhea (negative) vs RTA (positive); RTA Type 4 is the only one with hyperkalemia; Type 1: urine pH>5.5 + stones; Type 2: associated with Fanconi syndrome.
- Salicylate poisoning = respiratory alkalosis + high-AG metabolic acidosis (mixed disorder); ΔAG/ΔHCO3 is used to detect mixed disorders (<1: coexisting normal-AG acidosis; >2: coexisting metabolic alkalosis).
- Vomiting-induced alkalosis = chloride-responsive, urine Cl<20; treat with 0.9% NaCl + KCl; urine osmolality is high, and plasma osmolality is not low.
- Principal cells = target of K⁺-sparing diuretics/aldosterone antagonists; type A intercalated cells secrete H⁺.
- Common traps: acute diarrhea causes a normal AG acidosis (GI loss of HCO3⁻), so if the question gives a high AG, diarrhea is "least likely"; assigning K⁺-sparing diuretics to intercalated cells; forgetting that the AG must always be calculated in metabolic acidosis.
- ADH acts on the late DCT and the collecting duct (V2/AQP2); the proximal tubule and descending limb are not regulated by ADH.
- Three steps for hyponatremia: osmolality → volume status → urine osmolality; SIADH = euvolemic, urine osmolality >100, urine Na >20 (the 2014 European guideline uses 30); fluid restriction works.
- Hypervolemic hyponatremia in heart failure: urine Na⁺<20 (effective circulating volume↓ → Na retention).
- 3% hypertonic saline only for severe symptoms/extremely low Na; overly rapid correction → osmotic demyelination (ODS).
- Polyuria: urine osmolality >300 = solute diuresis (450 qualifies), not diabetes insipidus; urine osmolality rising >50% after DDAVP = central; no response = nephrogenic (lithium/hypercalcemia/hypokalemia).
- Supporting clues for SIADH: low BUN, low uric acid; refractory/severe cases can be treated with tolvaptan (a vaptan) or demeclocycline.
- Hypokalemic hypertension: renin↑ + aldosterone↓ is a contradictory combination and is the least likely.
- Common traps: accepting "fluid restriction does not help" in SIADH as correct; misreading a urine osmolality of 450 as diabetes insipidus; rushing to give hypertonic saline whenever Na<130.
- Triage of hypokalemia: normal urine K⁺ → intracellular shift (periodic paralysis); high urine K⁺ → renal loss (Bartter/Gitelman/diuretics).
- Bartter = TAL (like furosemide); Gitelman = DCT (like a thiazide; hypomagnesemia, hypocalciuria).
- TPP: urine Ca/P >1.6 supports the diagnosis (>, not <).
- Mild hypokalemia: replace K⁺ orally; use IV replacement only if severe/unable to take it orally.
- NSAIDs → hyporeninemic hypoaldosteronism → hyperkalemia; in an emergency, give calcium first to stabilize the membrane.
- Side effect of patiromer = hypomagnesemia (exchanges calcium for potassium).
- Hyperparathyroidism: secondary (CKD) → hypocalcemia, tertiary → hypercalcemia; primary = high Ca + low phosphate, secondary (CKD) = low/normal Ca + high phosphate; FGF23↑ is the earliest marker of mineral abnormality in CKD.
- ECG in hyperkalemia: peaked T waves → QRS widening → sine wave; in an emergency, give calcium first to stabilize the membrane.
- Chvostek/Trousseau = hypocalcemia (neuromuscular hyperexcitability).
- Common traps: recording hypermagnesemia as a patiromer side effect; thinking secondary hyperparathyroidism causes hypercalcemia; reversing the direction of the Ca/P ratio in TPP.
| Exam point | Correct answer | Common trap |
|---|---|---|
| Metabolized by XO; dose must be reduced with allopurinol | 6-MP | Choosing another antimetabolite by mistake |
| Cell-cycle phase of irinotecan | S phase (topo I) | Mixing it up with M-phase drugs |
| Cell-cycle phase of ixabepilone | M phase (stabilizes microtubules) | Thinking it acts in S phase |
| Prodrug requiring hepatic CYP450 activation | Cyclophosphamide | Overlooking the "prodrug" concept |
| Monoclonal antibody that inhibits VEGF | Bevacizumab | Confusing it with HER-2–targeted agents |
| Small molecule that inhibits HER-2 TK | Lapatinib | Confusing it with trastuzumab (an antibody) |
| Bispecific antibody (EpCAM + CD3) | Catumaxomab | Thinking it is an ordinary monoclonal antibody |
| Mechanism of anthracyclines (idarubicin) | Inhibit topo II → DNA strand breaks | Mixing it up with topo I (irinotecan) |
| Hallmark toxicity of anthracyclines | Cardiotoxicity (dexrazoxane can be used) | Answering pulmonary fibrosis (that is bleomycin) |
| Hallmark toxicity of cyclophosphamide | Hemorrhagic cystitis (prevented with MESNA) | Answering cardiotoxicity/pulmonary toxicity |
| CCS vs CCNS | Antimetabolites/spindle poisons/bleomycin (G2) = CCS; alkylating agents/platinum agents/anthracyclines = CCNS | Treating alkylating agents as cycle-specific; or treating bleomycin as CCNS |
| Bleomycin and the cell cycle | CCS; arrests cells in G2 | Treating it as nonspecific (CCNS) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Peptic ulcer drug that causes impotence | Cimetidine (antiandrogenic) | Choosing famotidine/a PPI by mistake |
| Why NaHCO₃ is given in poisoning with acidic drugs | Alkalinizing the urine ionizes the acidic drug and reduces its reabsorption → faster excretion | Answering "neutralizes acid in the blood" |
| Causes acetaldehyde accumulation when combined with alcohol | Disulfiram (also metronidazole, etc.) | Overlooking the underlying mechanism of ALDH inhibition |
| Antidote for arsenic poisoning | DMSA / DMPS (unithiol) / BAL | Choosing penicillamine (used for Wilson disease) by mistake |
| Test before starting abacavir | HLA-B*5701 | Choosing HLA-B*1502 (for carbamazepine) by mistake |
| Most potent acid-suppressing H2 blocker | Famotidine | Choosing cimetidine by mistake |
| Effect of enzyme inducers on oral contraceptives/warfarin | Loss of efficacy (levels↓) | Reversing the direction to "toxicity" |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Main purpose of biotransformation | To convert lipophilic drugs into water-soluble forms for excretion | Answering "always detoxifies/inactivates" |
| High blood/gas partition coefficient | Slow onset, slow recovery | Reversing it to "faster" |
| Two genes for warfarin dosing | CYP2C9 + VKORC1 | Choosing CYP3A4, CYP2D6 by mistake |
| Noncompetitive antagonism | Lowers maximal efficacy; adding more agonist cannot overcome it | Confusing it with competitive antagonism (surmountable) |
| Route with the highest bioavailability | IV = 100% | Choosing oral/IM by mistake |
| Weak acid with pKa 6 at pH 4 | [A⁻]:[HA]=1:100 | Miscalculating the direction as 100:1 |
| Chemical antagonism | Does not require receptor binding (binds the drug directly) | Thinking it must act on a receptor |
| Drugs with zero-order kinetics | ethanol, phenytoin (high dose), aspirin (high dose) | Thinking all drugs follow first-order kinetics |
| Half-life in zero-order vs first-order kinetics | Zero-order half-life lengthens with concentration; first-order half-life is constant | Treating zero-order as having a constant half-life too |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Most common leukemia in children | ALL | Answering AML (the most common acute leukemia in adults) |
| Most common leukemia in Down syndrome at age 1-3 | AML | Reflexively applying "children = ALL" |
| Tumor with peak incidence at <1 year of age | Neuroblastoma | Confusing it with Wilms tumor (2-5 years) |
| Platelets in HSP | Normal (WBC also normal) | Thinking there is consumptive thrombocytopenia |
| Platelets in hemophagocytic syndrome | Low | Writing "thrombocytosis" |
| First-line CNS prophylaxis in ALL | Intrathecal chemotherapy | Choosing cranial irradiation as first line |
| Transfusion goal in severe β-thalassemia | Maintain a higher Hb to suppress extramedullary hematopoiesis | Thinking you only transfuse until the patient is no longer breathless |
| Philadelphia chromosome (t9;22) in childhood ALL | Poor prognosis | Treating it as a good prognostic marker |
| Tumor marker for neuroblastoma | Urine VMA/HVA↑ | Answering AFP (that is hepatoblastoma/germ cell tumor) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Common precursor of platelets and red cells | MEP | Answering GMP or CLP |
| Red cell stage that can no longer divide but still has a nucleus | Orthochromatic normoblast | Thinking any nucleated cell can divide |
| Does the thymus have germinal centers? | No (primary lymphoid organ) | Applying "all lymphoid organs have germinal centers" |
| Composition of Peyer's patches | Aggregates of intestinal lymphocytes (GALT) | Answering capillaries/endocrine cells/nerves |
| Do platelets have organelles? | No nucleus, but they have microfilaments/mitochondria/granules (no typical Golgi apparatus) | Thinking no nucleus means nothing at all |
| Cell least likely to be seen in peripheral blood | Mast cell (resides in tissues) | Confusing it with the basophil (the least numerous WBC in blood) |
| Basement membrane of lymphatic capillaries | Discontinuous/absent | Thinking it is as complete as in blood capillaries |
| Nature of yellow marrow | Fatty (inactive) marrow | Answering fibrotic or actively hematopoietic marrow |
| Most numerous cell in blood | Red blood cells | Answering white blood cells |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| aPTT↑, normal PT | Intrinsic pathway problem (hemophilia/VWD/LA) | Thinking of factor VII deficiency (that prolongs the PT) |
| Mixing test does not correct | An inhibitor is present (acquired hemophilia, LA) | Misjudging it as a factor deficiency |
| Bleeding pattern in acquired hemophilia A | Skin bruising/soft-tissue hematomas | Applying the joint bleeding of the congenital form |
| Treatment of acquired hemophilia A | Immunosuppression to eradicate the antibody + bypassing agent | Thinking only of replacing VIII (often neutralized by the antibody) |
| Definition of severe hemophilia A | VIII < 1% | Getting the number wrong |
| Laboratory pattern in VWD | BT↑ + aPTT↑ + normal PT | Missing the prolonged aPTT (VIII falls along with VWF) |
| High INR on warfarin without bleeding | Hold/reduce the dose and observe | Reflexively giving IV vitamin K |
| Confirming pseudothrombocytopenia | Sodium citrate (EDTA-free) tube | Using a heparin tube by mistake |
| Management of acute arterial thrombosis | Catheter-directed thrombolysis/surgery | Choosing systemic thrombolysis by mistake |
| Lupus anticoagulant paradox | aPTT↑ in vitro, but prothrombotic in vivo | Thinking it causes bleeding |
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- Tumor marker matching: prostate cancer = PSA (not LDH); CEA to follow colorectal cancer, AFP for liver cancer, CA-125 for ovarian cancer.
- HPV(+) head and neck cancer has a better prognosis; ovarian cancer risk BRCA1 > BRCA2; progestin is a protective factor against endometrial cancer.
- Stage IV RCC does not respond to conventional chemotherapy — if you see "metastatic renal cancer + chemotherapy is effective", mark it wrong immediately.
- Postoperative trastuzumab improves survival in HER2(+) breast cancer; early laryngeal cancer can be treated with radiotherapy to preserve the organ.
- Memorize the "first move" in oncologic emergencies: spinal cord compression → steroids + MRI; hypercalcemia → fluids; TLS → hydration + urate lowering.
Common traps
- "Least appropriate/incorrect" questions often reverse the correct direction (e.g., "RCC responds to chemotherapy", "progestin causes cancer"); circle the negative word before answering.
- Using tumor markers as screening tools: most markers are only for follow-up and supporting evidence, not for screening or diagnosis on their own (diagnosis requires a biopsy).
- When several options are all "related", choose the one that explains all the clues in the stem, not one that fits only a single symptom.
- Standard treatment of DLBCL = R-CHOP (the B cells are CD20(+), hence the addition of rituximab).
- Reed-Sternberg cells of HL derive from B lymphocytes; CD15/CD30(+); spread is contiguous.
- For MM diagnosis, remember CRAB; skeletal assessment uses X-rays, not a bone scan (current IMWG 2019: whole-body low-dose CT first, or PET-CT/MRI) (lytic lesions give false-negative bone scans).
- High-dose IV chemotherapy is not the standard initial treatment for MM; initial therapy is targeted agents + immunomodulators + steroids, followed by autologous transplantation.
- Rituximab → JC virus → PML.
- Autologous HSCT has no GVHD; ABO incompatibility in allogeneic transplantation does not require additional immunosuppressants or splenectomy.
Common traps
- Answering bone scan for MM imaging (lytic lesions give false negatives) — the exam answer is X-ray (current first choice: whole-body low-dose CT).
- "Elderly + anemia + low back pain + poor renal function + vertebral collapse" should make you think of MM immediately, not simple osteoporosis.
- "Least appropriate/incorrect" questions often reverse the treatment direction (e.g., "initial high-dose chemotherapy for MM"); circle the negative word before answering.
- CML: diagnosed by BCR-ABL/Philadelphia chromosome t(9;22); LAP score is low; immunophenotyping is the least necessary test for diagnosis; imatinib is a TKI.
- Ionizing radiation is an established risk factor for CML (risk rises in atomic-bomb survivors and after radiotherapy, though most patients have no exposure).
- Ph(+) ALL is proportionally more common in adults > children; imatinib does not penetrate the CSF, so it cannot be used for CNS prophylaxis.
- APL (M3) = t(15;17), prone to DIC; treat with ATRA + ATO; ATRA alone is insufficient (remissions are not durable and relapse is common; differentiation syndrome occurs with both ATRA and ATO).
- CLL: anemia (advanced stage) means a poor prognosis; on FISH, del(13q) is the best and del(17p) the worst.
Common traps
- Mistaking "most common" for "most specific", or reversing the LAP score (in CML it is low).
- Memorizing disease names while ignoring the direction: Ph(+) adults > children; CLL anemia = advanced = poor; del(17p) = worst.
- Reflexively choosing imatinib whenever you see "translocation/targeted therapy", while missing that the question asks about "CNS prophylaxis" (imatinib does not penetrate the CSF) or "the least necessary test" (immunophenotyping).
| Exam point | Correct answer | Common trap |
|---|---|---|
| Chromosome/gene in CML | t(9;22) Philadelphia chromosome → BCR-ABL | Recording it as t(8;14) |
| First-line treatment of CML | TKI (imatinib) | Answering chemotherapy/transplantation as first choice |
| Immunophenotype of CLL | CD20+, CD5+, CD23+ | Confusing it with mantle cell lymphoma (CD23−) |
| Cell of origin of ALCL | Cytotoxic T cells (CD30+/ALK+) | Answering B cells |
| Markers of nasal NK/T-cell lymphoma | CD56+, EBV+, angioinvasion | Missing EBV or angioinvasion |
| Mechanism of PNH | PIGA mutation → loss of CD55/CD59 → intravascular hemolysis | Thinking it is extravascular hemolysis |
| Red cell morphology in iron-deficiency anemia | Microcytic hypochromic | Answering macrocytic |
| Cause of megaloblastic anemia | B12 / folate deficiency | Answering iron deficiency |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Use of the RPI | Distinguishes marrow compensation (>2–3) vs underproduction (<2) | Using the uncorrected retic% directly |
| Site of hemolysis in HS | Extravascular (spleen) | Answering intravascular |
| HS vs AIHA | HS is Coombs negative | Treating a familial hemolytic anemia as immune |
| Bone marrow in pernicious anemia | Erythroid precursors increased (ineffective erythropoiesis) | Answering "decreased" |
| Iron status in thalassemia | Normal or overloaded; iron deficiency is unlikely | Assuming coexisting iron deficiency |
| First-line treatment of aplastic anemia | ATG + cyclosporin / transplantation | Choosing steroids alone by mistake |
| Main hemoglobin at 10–11 weeks | HbF (α2γ2) | Answering Gower I/II |
| Macrocytosis + glossitis + anti-parietal cell antibodies | Pernicious anemia (B12 deficiency) | Misjudging it as simple iron deficiency |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Most specific antibody for SLE | anti-Sm | Picking ANA (only a sensitive screening test) |
| Antibody that tracks SLE activity | anti-dsDNA (associated with nephritis) | Choosing anti-Sm (does not change with activity) by mistake |
| Lupus-like symptoms after INH/hydralazine | DIL: anti-histone(+), dsDNA(−), normal complement → stop the drug | Adding dsDNA(+) by mistake, or treating it as primary SLE with long-term immunosuppression |
| Antibody corresponding to MCTD | anti-U1RNP | Matching it to anti-centromere (that is limited SSc) |
| Complement in active SLE | C3/C4 decreased (consumption) | Answering increased |
| Mechanism of rheumatic fever | Molecular mimicry | Answering that it is mainly immune complex deposition |
| Blood neutrophils in LAD | Elevated (cannot extravasate) | Answering decreased |
| Sex distribution of type 1 diabetes | Similar in males and females (not female > male) | Applying "autoimmune diseases mostly affect women" |
| Extraglandular manifestations/vasculitis in Sjögren | Steroids + immunosuppressants | Giving only artificial tears/local treatment |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Most diagnostic test in acute gout | Joint aspiration for MSU crystals (polarized light) | Choosing X-ray (often normal in the acute phase) or checking only serum urate |
| Features of gout crystals | Needle-shaped, strongly negatively birefringent, yellow when parallel | Swapping them with the rhomboid, positively birefringent crystals of CPPD |
| Typical site and X-ray finding of CPPD | Knee; chondrocalcinosis | Applying the big toe |
| Serum urate during an acute attack | Can be normal; cannot be used to exclude gout | Thinking a normal urate level rules out gout |
| Allopurinol/febuxostat in the acute phase | Not to be used (precipitates/worsens the attack); current ACR 2020 allows starting during a flare under anti-inflammatory cover | Using urate-lowering drugs as acute pain relief |
| Asymptomatic hyperuricemia | No routine urate-lowering therapy | Treating everyone with drugs |
| Effect of diuretics and low-dose aspirin on urate | Raise it (the least appropriate drugs in gout) | Choosing aspirin because it relieves pain |
| Gene for severe allopurinol reactions | HLA-B*58:01 (SJS/TEN, Han Chinese) | Confusing it with B*15:02 (carbamazepine) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| AS: sex/genetics | Male > female; HLA-B27 in about 90% | Writing that women outnumber men |
| Primary lesion site in SpA | Enthesis | Answering cartilage (OA) or synovium (RA) |
| First-line treatment of AS | NSAIDs + exercise | Choosing MTX/oral steroids as first choice |
| sulfasalazine in AS | Effective only for peripheral joints, not for axial disease | Thinking it treats the spine |
| Most common extra-articular manifestation of AS | Acute anterior uveitis (iritis) | Forgetting the eye |
| HLA associated with psoriasis | HLA-Cw6 | Confusing it with B27, DR4 |
| Triad of reactive arthritis | Arthritis + conjunctivitis + urethritis | Replacing conjunctivitis with iritis |
| Organisms that trigger reactive arthritis | Shigella/Yersinia/Campylobacter/Salmonella/Chlamydia (rare C. difficile cases have been reported) | Clostridium does not trigger it (trap) |
| Earliest imaging change in AS | Bone marrow edema of the sacroiliac joints on MRI | Remembering only bamboo spine (a late finding) |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Highest c-ANCA (anti-PR3) positivity | GPA (Wegener's) | Choosing EGPA/MPA by mistake |
| Most diagnostically meaningful test in EGPA | ANCA (p-ANCA/MPO) | Choosing total IgE or ANA by mistake (but ANCA is positive in only about 30–40%, so a negative result does not exclude EGPA; eosinophilia and biopsy matter more) |
| Three key features of EGPA | Asthma + eosinophils↑ + vasculitis | Missing the history of asthma |
| Classification of GPA | ANCA-associated vasculitis (autoimmune) | Classifying it as an autoinflammatory disease |
| Management of GCA | Give steroids first, then biopsy, to prevent blindness | Waiting for the biopsy before treating |
| Newer treatment for GCA | tocilizumab (IL-6 antagonist) | Thinking steroids are the only option |
| Sites of IgG4-RD | Periorbital region/lacrimal glands, pancreas, salivary glands; with eosinophils↑ | Confusing it with simple allergy |
| Tests for HAE | Low C4, C1-INH deficiency | Testing total IgE by mistake |
| Features of PAN | Medium vessels, associated with HBV, spares the lungs, ANCA usually negative, angiography shows beaded microaneurysms | Treating PAN as ANCA-associated |
| Kidney involvement in PAN vs AAV | PAN causes renovascular disease of the renal artery branches (infarcts, microaneurysms, renovascular hypertension) and typically does not cause glomerulonephritis; it is AAV (GPA/MPA) that causes necrotizing glomerulonephritis | Treating PAN as a glomerulonephritis |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| RA drugs that are safe in pregnancy | Hydroxychloroquine, Sulfasalazine | Continuing MTX/leflunomide by mistake |
| Most specific antibody | anti-CCP | Remembering only RF |
| Strongest genetic association of RA | HLA-DR4 (shared epitope) | Confusing it with B27, Cw6 |
| Significance of DIP involvement in RA | Coexisting osteoarthritis | Thinking RA alone often involves the DIP |
| Most common extra-articular manifestation | Osteoporosis | Choosing rheumatoid nodules (note: many textbooks list nodules as the most common; osteoporosis is the past exam key) |
| Onset pattern of RA | Mainly symmetric polyarticular; can be monoarticular at first | Excluding monoarticular onset |
| Biologics after MTX failure | tocilizumab (IL-6), etc. | Reversing the order (biologics first) |
| Three components of Felty syndrome | RA + splenomegaly + neutropenia | Missing the cytopenia |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Inflammatory markers in OA | CRP/ESR usually normal | Thinking they are raised |
| Mechanism of cartilage destruction in OA | MMPs degrade cartilage | Reversing/misstating the mechanism |
| Synovial fluid in OA | Viscous, WBC < 2000, mainly mononuclear cells | Treating it as inflammatory (high WBC) |
| Well-controlled RA + low-grade effusion in a single joint | Secondary OA is most likely | Misjudging it as an RA flare or infection |
| Joints typically affected by OA | DIP/PIP, knee, hip; spares the MCP/wrist (but the first CMC joint at the thumb base is a classic site) | Treating the MCP as a typical OA site |
| Risk factors for OA | Older age, obesity, female sex, trauma, genetics | Missing obesity/mechanical factors |
| NSAIDs in OA | Not uniformly the first choice (>90%); start with nonpharmacologic and topical therapy (topical NSAIDs preferred for the knee) | Thinking oral NSAIDs are always first line |
| Intra-articular hyaluronic acid | Weak evidence; ACR 2019 conditionally recommends against it for knee/hip OA | Thinking hyaluronic acid is standard therapy |
| Abnormal lunate on X-ray | Kienböck disease (avascular necrosis) | Misjudging it as degenerative arthritis |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| First step in multiple trauma | A: airway + cervical spine protection (apply a collar) | Starting an IV / getting X-rays first |
| Tension pneumothorax | Clinical diagnosis; immediate needle decompression | Waiting for chest X-ray confirmation before acting (a fatal delay) |
| Imaging for blunt abdominal trauma | FAST / abdominal CT | Choosing abdominal X-ray (least helpful for diagnosis) by mistake |
| Indication for intubation | GCS ≤ 8; intubate even if the patient is breathing spontaneously | "No need to intubate if breathing" |
| DNR + trauma | For an acute reversible event, intubation and life support should still be provided (a DNR applies only to terminal, dying patients; a competent patient's refusal at the time is respected) | Withholding all treatment on seeing a DNR order |
| Transfer to a trauma center | Based on ATLS physiologic/anatomic high-risk criteria | Treating a simple open fracture as a mandatory transfer |
| Highest triage priority | Respiratory distress (40 breaths/min) | Choosing the agitated patient who is "shouting abuse" |
| Next step when the patient deteriorates | Go back to ABC and repeat the primary survey | Rushing straight to CT / blood tests |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Blood loss in Class III | 30–40% (1500–2000 mL); systolic BP begins to fall, confusion | Matching urine output 5–15 and heart rate 120 to the wrong class |
| When systolic BP falls | Only from Class III; in Class II the pulse pressure narrows first | Thinking systolic BP is already low in Class II |
| Three components of the lethal triad | Hypothermia + acidosis + coagulopathy | Replacing coagulopathy with "hypotension" or "arrhythmia" |
| BP target with active bleeding | Permissive hypotension (80–90); stop the bleeding first | Forcing it up to 120 with vasopressors |
| Side effect of large-volume normal saline | Hyperchloremic metabolic acidosis | Misjudging it as alkalosis |
| Massive transfusion ratio | RBC:FFP:Plt ≈ 1:1:1 | Giving only crystalloids |
| Emergency transfusion when the blood type is unknown | Group O red cells | Choosing whole blood, plasma, or group AB red cells by mistake |
| Timing of antifibrinolytics | TXA within 3 hours | Missing the time window |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Parkland formula | 4 × kg × %TBSA (ATLS 10th ed. starts adults at 2 mL); give half in the first 8 hours | Wrong multiplier; spreading it evenly over 24 hours |
| Fluid timing starts | From the time of injury | From the time of arrival at hospital |
| Timing of albumin | Added only 8–24 hours after the burn if crystalloid is insufficient | Giving it immediately for low urine output at 2 hours |
| Resuscitation target | Urine output 0.5 mL/kg/hr | Looking only at blood pressure |
| Lime/cement | Strong alkali; for dry powder, brush off first, then irrigate | Treating it as an acid / irrigating immediately |
| HF burns | 2.5% calcium gluconate; watch for hypocalcemia | Only irrigating and ignoring serum calcium |
| Alkali vs acid necrosis | Alkali = liquefactive necrosis (deeper) | Thinking acid is more severe |
| Escharotomy vs Fasciotomy | Escharotomy does not cut the fascia; only fasciotomy cuts the fascia (compartment syndrome) | Using the two interchangeably |
| Confirming inhalation injury | Fiberoptic bronchoscopy | Choosing chest X-ray (often normal early) by mistake |
| Airway management | Progressive swelling → intubate early | Waiting for obstruction before intubating |
| SpO₂ in CO poisoning | Can be falsely normal; measure COHb, give 100% O₂ | Trusting the pulse oximeter reading |
| First-degree burns | Not counted in the TBSA | Including erythema in the area used for fluid calculation |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| CPP formula | CPP = MAP − ICP; MAP=(SBP+2DBP)/3 | Using systolic BP directly as the MAP |
| PaCO₂ target for hyperventilation | 30–35 mmHg, temporary use only | Lowering it to 20 mmHg → cerebral ischemia; prolonged use |
| GCS motor score | Use the best limb; localizing = M5 | Using the fractured limb / assigning a V score arbitrarily in intubated patients |
| Prophylactic steroids in head injury | Contraindicated (increase mortality) | Thinking they reduce cerebral edema |
| Head injury without seizures | No routine long-term antiepileptic drugs | A "start then stop" trial strategy |
| First line for status epilepticus | Benzodiazepine | Choosing propofol by mistake |
| EDH vs SDH | EDH = arterial (MMA), biconvex, lucid interval; SDH = venous (bridging veins), crescentic, elderly/anticoagulated | Mismatching the shape and bleeding source |
| Timing of vasospasm after SAH | Days 4–14 (peak day 7) | Answering days 1–5 |
| Nature of berry aneurysms | Acquired, at bifurcations of the circle of Willis | Thinking they are purely congenital |
| Rate of CSF production | About 0.35 mL/min (≈20 mL/hr) | Accepting 40 cc/hr |
| Signs of an ICP crisis | Cushing triad: BP↑, heart rate↓, irregular respiration | Thinking BP also falls |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Hemodynamics of distributive shock | CO normal/↑, SVR↓, warm extremities | Applying "all shock has cold extremities" |
| PCWP: cardiogenic vs hypovolemic | Cardiogenic PCWP↑; hypovolemic PCWP↓ | Treating both as ↓ |
| First-choice vasopressor in septic shock | Norepinephrine | Choosing dopamine/epinephrine as first choice |
| Early nutrition in sepsis | Stabilize hemodynamics first, then feed | "The earlier and more aggressive the nutrition, the better" |
| RSBI for ventilator weaning | >105 = not suitable for extubation | Treating >105 as ready for extubation |
| Pressure threshold for barotrauma | Plateau pressure >30 cmH₂O | Thinking 10 cmH₂O already causes barotrauma |
| Effect of positive-pressure ventilation on CO | Venous return↓ → CO↓ | Thinking the raised pressure improves CO |
| Stopping TPN/EN | Both require guarding against hypoglycemia and gradual tapering | Thinking stopping EN needs no precautions |
| Imaging to find the cause of SAH | CTA; lumbar puncture is for confirming SAH when CT is negative | Using LP to "find the cause" |
| Asymptomatic severe carotid stenosis | CEA/CAS can be considered | Always using medical therapy only |
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| Exam point | Correct answer | Common trap |
|---|---|---|
| Mechanism of LAs | Block voltage-gated Na⁺ channels | Answering calcium / potassium channels |
| Metabolism of amides | Hepatic P450 | Matching them to pseudocholinesterase (that is for esters) |
| Metabolism/allergy of esters | Plasma pseudocholinesterase; PABA causes sensitization | Thinking amides are the allergenic ones |
| Maximum dose of lidocaine with epinephrine | 7 mg/kg (4.5 without epinephrine) | Swapping the two numbers |
| Effect of adding epinephrine | Vasoconstriction, prolonging action and reducing toxicity | Answering vasodilation |
| Sequence of LAST | CNS first, heart later | Thinking the heart comes first |
| CNS symptoms of LAST | Do not include hallucinations | Listing hallucinations |
| Bupivacaine cardiotoxicity | Give intralipid; do not give more lidocaine | Using lidocaine to "control the rhythm" |
| Epidural LOR landmark | Sudden loss of resistance after passing through the ligamentum flavum | Thinking it marks puncture of the dura |
| Level of spinal block | Affected by baricity/dose/position/height/obesity | Thinking obesity has no effect |
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- First choice for neuropathic pain: gabapentinoid / TCA / SNRI; response to opioids and NSAIDs is poor.
- Pregabalin / gabapentin = bind the α2δ subunit of calcium channels (not sodium channels) → ↓glutamate, substance P.
- Local anesthetics = sodium channel blockade; don't confuse them with pregabalin.
- Opioid respiratory depression is mediated by μ receptors; no tolerance develops to miosis and constipation.
- Naloxone reverses opioids (short half-life, so repeat doses are needed); flumazenil is for BZDs; the two are not interchangeable.
- Gold standard for post-thoracotomy analgesia = epidural (current ERAS/PROSPECT: paravertebral block is as effective with fewer side effects); sciatic block is the least effective for TKA (the pain is anterior).
- Epidural analgesia suppresses (reduces) sympathetic outflow, ↓pulmonary/bowel complications and opioid use (writing "increases" is wrong).
- PCA is not limited to morphine; fentanyl, hydromorphone, ketorolac, etc. can be used.
- ERAS actively uses peripheral nerve blocks (rather than avoiding them) to reduce opioid use and speed recovery.
- Cervical epidural injections are indeed used clinically; they are just higher risk and need image guidance (writing "not used" is wrong).
Common traps: ① treating "the most common cause" as "the treatment of choice"; ② missing that the stem asks for the "least effective / incorrect statement / exception"; ③ memorizing drug names without the direction of the mechanism (α2δ vs sodium channel, sympathetic ↑ vs ↓).
- ASA class reflects the severity of systemic disease; adding E denotes an emergency; III = severe, IV = life-threatening.
- Difficult mask ventilation = MOANS; rheumatic heart disease does not increase airway risk (it affects the valves and has nothing to do with the upper airway).
- Mallampati IV = only the hard palate visible; class I shows the most, class IV is the hardest to intubate.
- NPO: clear fluids 2, milk 4/6, light meal 6, fatty meal 8 hours.
- A magnet on a pacemaker switches it to asynchronous mode, which only reduces, rather than completely prevents, electrocautery interference; use bipolar cautery.
- The lithotomy position injures the sciatic/common peroneal nerve (not the femoral nerve); femoral nerve injury comes from excessive hip flexion.
- High risk for PONV: female, nonsmoker, history of PONV/motion sickness, postoperative opioids; smoking is actually protective.
- The consent form protects autonomy; decision-making capacity depends on the ability to understand, reason, and express a choice, not on the diagnosis.
- Declaration of Helsinki: research must have therapeutic value and must not harm the patient's health (regulatory approval alone is not enough).
- Inappropriate doctor–patient relationship → end the professional relationship immediately.
Common traps: ① treating heart disease as an airway risk factor; ② confusing sciatic vs femoral nerve injury in the lithotomy position; ③ treating smoking as a PONV risk factor; ④ thinking a psychiatric diagnosis = no decision-making capacity.
- Pulmonary edema at extubation/emergence is negative-pressure pulmonary edema (forceful inspiration after laryngospasm), not positive-pressure.
- Neuraxial anesthesia also causes hypothermia (sympathetic blockade, vasodilation, suppressed shivering).
- Malignant hyperthermia: triggers = volatile anesthetics + succinylcholine; earliest sign = a rapid rise in ETCO₂; dantrolene is the antidote.
- First line for anaphylaxis = adrenaline; common culprits during anesthesia are neuromuscular blockers/latex.
- LAST (local anesthetic systemic toxicity) is treated with 20% lipid emulsion.
- Emergency management of CO₂ embolism = left lateral decubitus + head down (Durant maneuver); right lateral positioning is wrong.
- The surgical consent form protects patient autonomy.
- A patient with decision-making capacity who has signed a DNR and refuses intubation must be respected; consult other specialties to complete the determination of terminal illness.
Common traps: ① mistaking negative-pressure for positive-pressure pulmonary edema; ② thinking neuraxial anesthesia does not cause hypothermia; ③ positioning a CO₂ embolism patient on the right side; ④ ignoring an alert patient's autonomous right to refuse.
- MAC = the alveolar concentration at which 50% of patients do not move; it is a measure of potency (MAC↓ = more potent); older age, hypothermia, pregnancy, opioids → MAC↓.
- Rapidly increasing desflurane → heart rate↑, BP↑, bronchospasm (airway irritant, sympathetic activation), not a fall in heart rate.
- BZDs decrease (not increase) cerebral oxygen consumption; ketamine raises cerebral blood flow/ICP, so use it cautiously in intracranial hypertension.
- Opioid respiratory depression is via μ receptors (not κ); naloxone antagonizes opioids, flumazenil antagonizes BZDs/midazolam.
- Pulse oximetry = two wavelengths, 660/940 nm, used to calculate the oxygenation ratio; COHb causes falsely high readings; SpO₂>90% does not mean there is no hypoxia.
- Normal SvO₂ 60–80%; cardiac output↓, Hb↓, SaO₂↓, fever/pain (VO₂↑) all cause SvO₂↓.
- A rapid rise in ETCO₂ is the earliest sign of malignant hyperthermia; a sudden drop to 0 suggests tube dislodgement/esophageal intubation/cardiac arrest.
- TOF ratio > 0.9 = safe to extubate; TOF is the gold standard for monitoring recovery from nondepolarizing muscle relaxants.
- Two classes of muscle relaxants: depolarizing (succinylcholine: no reversal agent, broken down by pseudocholinesterase, can cause hyperkalemia and malignant hyperthermia) vs nondepolarizing (rocuronium, etc., reversed with neostigmine or sugammadex (encapsulates rocuronium/vecuronium)).
- Ketamine and barbiturates have different effects on the EEG (not similar).
Common traps: ① thinking that increasing desflurane lowers heart rate; ② writing that BZDs increase cerebral oxygen consumption; ③ attributing opioid respiratory depression to κ; ④ answering that SvO₂ rises with fever/pain; ⑤ thinking a normal tidal volume means muscle strength has recovered adequately.