Musculoskeletal

Bones, Joints, Nerves: The Body's Fragile Infrastructure

肌肉骨骼 · 5 chapters · 161 past questions · key points in ~27 min

English edition. Practice questions are the original Taiwan board questions (in Chinese, with explanations).

01

The Collapse of the Ring: Pelvis, Hip, Wrist, and the Acute Phase of Fracture

~6 min · 28 past questions · 🎬 Video

The scaphoid's blood supply runs retrograde, from distal to proximal; once a proximal fracture is missed, avascular necrosis and nonunion become a foregone conclusion.

Full text
Case

An SUV is struck from the side, and the driver arrives in the emergency department with his legs held in a strange posture. Examination shows his right leg is three centimeters shorter than his left, the knee slightly flexed in front of his body, the whole limb adducted and internally rotated — as though the impact with the dashboard had "frozen" him in that instant. Blood pressure 85/50, heart rate 130, pelvis loose and boggy to palpation. FAST ultrasound shows no intra-abdominal bleeding. The resident is about to wheel him into the operating room for a laparotomy when the attending stops him: "His bleeding isn't in his belly."

The pelvis, hip, and carpal bones — three seemingly unrelated fracture sites — share the same underlying principle: once a closed ring breaks at one point, it becomes unstable, and a second injury is almost guaranteed. The pelvis is a closed ring formed by the two hip bones and the sacrum, held together anteriorly by the pubic symphysis and posteriorly by the sacroiliac joints; once this ring fractures at one point, there is almost always a second break, and what actually kills the patient is never the bone itself — it is the "neighbors" packed inside: the retroperitoneal venous plexus, branches of the internal iliac artery, the lumbosacral plexus, and the urethra and bladder resting against the pelvic floor.

The Pelvic Ring: Why an Open-Book Fracture Kills

⟶ Mechanism

To understand why a pelvic fracture causes shock, remember a five-step causal chain: frontal impact → the pubic symphysis springs open like a book (open book) → pelvic volume suddenly expands by several liters → the retroperitoneal venous plexus and cancellous bone surfaces ooze continuously → blood pours into the enlarged space and produces hypovolemic shock. The bleeding comes mainly from the posterior venous plexus and cancellous bone surfaces — roughly 80–90% is venous, diffuse and slow but massive in volume; only a small fraction is arterial, from branches of the internal iliac artery such as the superior gluteal artery. So the first maneuver to control bleeding is neither surgery nor embolization — it is closing the book: a pelvic binder cinches the ring together and pushes the volume back down, compressing the veins inside until they stop bleeding.

⚠ Trap
✗🦦The patient is hypotensive and his pelvis feels boggy — quick, wheel him in for a laparotomy to find the bleeder!
✓🐻‍❄️Hold on — this question is exactly the trap of skipping FAST and charging straight to the OR. A negative FAST means no blood in the abdominal cavity, so the bleeding is retroperitoneal; opening the abdomen now would only expose a space that should be left undisturbed. Lock the sequence into memory: pelvic binder first to push the volume back down, then angiography/embolization or preperitoneal packing; laparotomy takes priority only when FAST is positive. And remember, the binder must sit at the level of the greater trochanters — placing it on the iliac crest accomplishes nothing.
★ Must-know
Pelvic Fracture
  • 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).
Full text · 1 table

Exactly where to place the binder is itself a test point. It must sit at the level of the greater trochanters, not the iliac crest — because the greater trochanters are the ring's true mechanical fulcrum, and only there does the binder gain the leverage to close the book. Placed too high, it is nothing more than a belt around the patient's waist, with no hemostatic effect at all.

PatternMechanismFeaturesBleeding risk
APC (anteroposterior compression)Frontal impactPubic symphysis diastasis, open bookHigh (volume↑, venous + arterial)
LC (lateral compression)Lateral impactPubic rami fracture, sacral compressionLower (volume↓)
VS (vertical shear)Fall from heightHemipelvis displaced cephalad, most unstableHigh, frequently combined with nerve injury

Swipe or scroll sideways to compare every column; keyboard: focus the table and use arrow keys.

For the patient who was just wheeled in, hemodynamic instability plus a negative FAST leaves only one possible source — bleeding in the retroperitoneal pelvic space. The management sequence follows logic, not a checklist: place a pelvic binder first to push the volume back down, then proceed to angiography with embolization (for arterial bleeding) or preperitoneal packing; if FAST is positive, the order reverses and laparotomy takes priority. This fork in the road is the examiner's favorite trap — rushing a hypotensive patient straight to the operating room is the most common form of self-sabotage.

A pelvic fracture carries two complications you must always ask about. First, the urinary tract: blood at the urethral meatus, perineal ecchymosis, or a high-riding prostate on rectal exam should immediately raise suspicion for posterior urethral injury (especially likely under pelvic shear forces in men). The most catastrophic error here is to pass a Foley catheter directly — what began as a partial tear can be converted into a complete transection by the catheter itself. The correct sequence is to perform a retrograde urethrogram first to confirm urethral integrity before deciding how to catheterize. Second, nerves: the lumbosacral plexus is injured far proximally, so axons must regrow a long way to reach their muscles, and root avulsions are common, so its capacity to regenerate falls far short of a peripheral nerve — this is exactly why the VS (vertical shear) pattern carries such a poor prognosis, since it is the type most often combined with lumbosacral plexus injury.

Hip Dislocation: The Posture the Dashboard Freezes You Into

⟶ Mechanism

The posture is not something to memorize by rote — it is a five-step mechanical chain: the dashboard strikes the flexed knee → force travels backward and upward along the femur → the femoral head is driven out through the posterior acetabular rim → the body instinctively flexes, adducts, and internally rotates the hip to accommodate the displaced joint surfaces → the femoral head compresses the sciatic nerve and cuts off the retrograde blood supply to the femoral head. Anterior dislocation follows the opposite mechanics: abduction plus external rotation plus flexion. Posterior dislocation is an orthopedic emergency because it simultaneously threatens the femoral head's blood supply (avascular necrosis, AVN) and the adjacent sciatic nerve, and demands urgent reduction.

Full text

Back to the driver from the crash. The instant his knee struck the dashboard, force traveled backward along the femur and drove the femoral head straight out through the posterior rim of the acetabulum — this is posterior hip dislocation, which accounts for roughly 90% of all hip dislocations. Its signature posture freezes that very instant: shortening + flexion + adduction + internal rotation, which you can remember as "flexed, adducted, internally rotated, and short" — exactly the posture the body assumes when the knee strikes the dashboard.

FOOSH: How a Fall Breaks the Wrist

⚠ Trap
✗🦦The patient with a proximal radius fracture has a drooping wrist and can't straighten his fingers — must be a transected main trunk of the radial nerve, right?
✓🐻‍❄️Look again — can he still extend his wrist? If yes, it isn't the main trunk, it's the PIN. A transected main trunk of the radial nerve produces a true wrist drop, taking out ECRL along with everything else; in a PIN injury, ECRL runs straight off the main trunk and never passes through the arcade of Frohse, so the wrist extends, the fingers don't, and there's no sensory deficit. Remember: the radial neck meets the arcade of Frohse, and the PIN is the first casualty.
Full text

Switch to another scenario — an elderly woman slips while walking and instinctively catches herself on an outstretched palm (FOOSH, fall on outstretched hand); her wrist swells immediately. Energy travels from her palm to the central load-bearing point of the carpus, and the scaphoid is the carpal bone that breaks most often, accounting for roughly 70% of carpal fractures. On examination she is tender over the anatomical snuffbox, but the X-ray is entirely normal at first — and that is exactly where the trap lies.

Precisely because of this blood-supply pattern, a normal X-ray at presentation does not mean the wrist is fine — snuffbox tenderness plus a consistent mechanism warrants immobilization in a thumb spica cast even with a negative X-ray, followed by repeat imaging or MRI in one to two weeks. The exam's favorite "least appropriate" answer is "X-ray normal, prescribe analgesics, and send home for observation."

The thumb harbors another exam favorite — Bennett fracture, defined as an intra-articular fracture of the first metacarpal base combined with dislocation of the carpometacarpal (CMC) joint. Its displacement mechanism reads like a poem in mechanics: a small fragment at the metacarpal base is held firmly in place by the volar oblique ligament, while the large metacarpal shaft is dragged radially, proximally, and dorsally by abductor pollicis longus (APL) — so the fracture is "a small fragment that stays, a large fragment that is pulled away," and the pulling force comes from APL, not EPL and not ECRL/ECRB.

Radial head fracture tests a different piece of logic: is there mechanical blockage? If there is no displacement and nothing is caught, conservative treatment with early mobilization to prevent stiffness is sufficient; but if a loose body sits within the joint space or a fragment blocks motion, continuing conservative management is the least appropriate choice — surgical removal of the loose body or open reduction and internal fixation is indicated.

Proximal radius and radial neck fractures carry another must-know complication — the posterior interosseous nerve (PIN). Why? Because after branching off the radial nerve, the PIN must pass through the arcade of Frohse, which lies immediately adjacent to the radial neck. Once a fracture occurs nearby, the PIN takes the first hit. The signature of PIN injury is not wrist drop but rather "the wrist can extend but the fingers cannot," together with no sensory deficit — because the PIN is a purely motor nerve, and extensor carpi radialis longus (ECRL) is innervated directly by the main trunk of the radial nerve, bypassing the PIN entirely, so the wrist can still extend radially.

Acute Immobilization: Let the Swelling Go Down First

★ Must-know
Hip Dislocation, Wrist Fractures, and Acute Fracture Care
  • 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).
Full text

The first rule of fracture immobilization is to leave room for swelling. Distal radius fractures swell the most in the acute phase, so a complete circumferential cast must never be applied outright — the rigid shell locks the whole circumference in place, swelling presses against the inside of the cast, blood flow is choked off, and that is exactly how compartment syndrome is bred. The correct approach is a dorsal slab (a half-circumference splint) first, switching to a complete cast only after the swelling has subsided in one to two weeks. The same logic applies elsewhere: an ankle-sprain splint should be immobilized in the neutral position (not 30° of plantarflexion), and cast material should be soaked in room-temperature water (not 60°C hot water, since the polymerization of materials like PMMA is already exothermic, and hot water only adds the risk of burns).

Ordering the right imaging for the right fracture is itself a test point. An ankle fracture requires an additional mortise view (15–20° internal rotation) to visualize talar shift clearly; for calcaneal fracture, the most commonly tested fact is that a plain AP view is inadequate — you need a lateral view (to assess Böhler's angle, normally 20–40°, with a reduced angle indicating joint depression) plus a Harris axial view, with CT for definitive diagnosis and classification. Anterior mandibular dislocation is the most common type; diagnosis rests on clinical findings (unable to close the mouth, jaw thrust forward), and after successful reduction the patient can close the mouth immediately and resume eating gradually — "prolonged fasting is required" is an incorrect statement.

♪ Memory hook

A ring broken in one place is never stable — a second injury always follows; think retroperitoneum first for the bleeding, and cinch the binder at the greater trochanters.

Read-aloud version (copy the whole thing into any TTS)

At two in the morning, a car-crash victim is wheeled into the emergency department, his legs shortened, drawn up in front of his body, the whole limb adducted and internally rotated; his blood pressure has dropped to eighty-five, his pelvis feels soft and boggy, and the abdominal ultrasound finds no blood. The resident wants to wheel him into the operating room for a laparotomy, but the attending stops him, because the bleeding isn't in his belly at all. The pelvis is a closed ring formed by the two hip bones and the sacrum, held together anteriorly by the pubic symphysis and posteriorly by the sacroiliac joints; the moment this ring breaks at one point, a second injury is almost guaranteed, and what actually kills the patient is never the bone — it is the neighbors packed inside: the retroperitoneal venous plexus, branches of the internal iliac artery, the lumbosacral plexus, and the urethra and bladder pressed against the pelvic floor.

To understand why a pelvic fracture bleeds so much, first picture the pelvis as a bag that can expand its own capacity. In the frontal, anteroposterior-compression pattern, the pubic symphysis springs open like a book, pelvic volume suddenly increases, and the retroperitoneum — normally a taut, confined space — abruptly gains several extra liters of capacity; blood simply pours in to fill it, and an adult pelvis can accumulate several liters of blood with no outward sign at all. Roughly 80 to 90 percent of the bleeding is venous — diffuse, slow, but massive — with only a small fraction coming from branches of the internal iliac artery such as the superior gluteal artery. So the first move to control bleeding is neither surgery nor embolization, but closing the book: a pelvic binder cinches the ring together, pushes the volume back down, and compresses the veins inside until they stop. Exactly where to place the binder is itself a test point — it must sit at the level of the greater trochanters, because that is the ring's true mechanical fulcrum; placed on the iliac crest, it is nothing more than a useless belt around the waist. So for the patient with a negative abdominal ultrasound and low blood pressure, the sequence is always pelvic binder first for temporary stabilization, then angiography with embolization or extraperitoneal packing; only a positive abdominal ultrasound reverses the order and makes laparotomy the priority. Rushing a hypotensive patient straight to the operating room is the most common form of self-sabotage on this question.

A pelvic fracture carries two other complications you must always ask about. The first is the urinary tract: blood at the urethral meatus, perineal ecchymosis, or a high-riding prostate on rectal exam should immediately raise suspicion for posterior urethral injury, which is especially likely in men under shear forces. The most catastrophic error here is to pass a catheter directly — what began as a partial tear can be converted into a complete transection by the catheter itself, so the correct sequence is to perform a retrograde urethrogram first to confirm integrity before deciding how to catheterize. The second is nerve injury: the lumbosacral plexus is injured far proximally, with a long regeneration distance and frequent root avulsion, so its recovery falls far short of a distal peripheral nerve — which is exactly why the vertical-shear pattern carries the worst prognosis, since it is the type most often combined with lumbosacral plexus injury.

Next, consider the driver struck by the dashboard. The instant his knee hit the dashboard, force traveled backward along the femur and drove the femoral head straight out through the posterior rim of the acetabulum — this is posterior hip dislocation, accounting for ninety percent of all hip dislocations. Its signature posture freezes that instant into flexion, adduction, internal rotation, and shortening, which you can remember as flexed, adducted, internally rotated, and short, exactly the posture the body assumes when the knee strikes the dashboard. Anterior dislocation follows the opposite mechanics: abduction, external rotation, and flexion. Posterior dislocation is an orthopedic emergency because it simultaneously threatens the femoral head's blood supply and the adjacent sciatic nerve, and it demands urgent reduction.

Now switch to an elderly woman who slips while walking; she instinctively catches herself on an outstretched palm, and her wrist swells immediately. Energy travels from her palm to the central load-bearing point of the carpus, and the scaphoid is the carpal bone that breaks most often, accounting for seventy percent of carpal fractures. On examination she is tender over the anatomical snuffbox, but the X-ray is entirely normal at first — and that is exactly where the trap lies. The scaphoid's blood supply runs retrograde from distal to proximal, so once a proximal fracture is missed, avascular necrosis and nonunion follow inevitably; therefore snuffbox tenderness plus a consistent mechanism warrants immobilization in a thumb spica cast even with a negative X-ray, followed by repeat imaging or MRI in one to two weeks. The exam's favorite least-appropriate answer is a normal X-ray followed by analgesics and discharge for observation. The thumb also carries Bennett fracture, an intra-articular fracture of the first metacarpal base combined with dislocation of the carpometacarpal joint; its displacement mechanism is a small fragment held in place by the volar oblique ligament while the large fragment is dragged radially, proximally, and dorsally by abductor pollicis longus — so the pulling force comes from abductor pollicis longus, not any other extensor. The fork in radial head fracture management depends on whether there is mechanical blockage: if nothing is caught, conservative treatment with early mobilization; if a loose body is caught, surgery is indicated, and continuing conservative treatment is the least appropriate choice. Proximal and neck fractures of the radius can also compress the posterior interosseous nerve, because after branching off the radial nerve, this nerve must pass through the arcade of Frohse, which lies immediately adjacent to the radial neck; the signature of posterior interosseous nerve injury is that the wrist can extend but the fingers cannot, with no sensory deficit, because extensor carpi radialis longus runs directly off the main trunk of the radial nerve without passing through the posterior interosseous nerve, and the posterior interosseous nerve itself is purely motor, carrying no sensory fibers.

The first rule of acute fracture immobilization is to leave room for swelling. Distal radius fractures swell the most in the acute phase, so a complete circumferential cast must never be applied outright; the rigid shell locks the whole circumference in place, swelling presses against the inside of the cast, blood flow is choked off, and that is exactly how compartment syndrome is bred — so a dorsal slab, this kind of half-circumference splint, comes first, with a complete cast only after the swelling subsides in one to two weeks. Under the same logic, an ankle-sprain splint should be immobilized in the neutral position, not thirty degrees of plantarflexion, and cast material should be soaked in room-temperature water, not sixty-degree hot water. Ordering the right imaging for the right fracture is itself a test point: an ankle fracture needs an additional mortise view to see talar shift, and the calcaneus cannot be assessed on a plain AP view alone — you need a lateral view for Böhler's angle plus a Harris axial view, with CT for classification; anterior mandibular dislocation is the most common type, and after reduction the patient can close the mouth immediately and resume eating gradually, so prolonged fasting is an incorrect statement. The whole chapter really comes down to a single chain: work out the direction of the mechanical force first, and the bleeding, the nerve, the posture, and the imaging all follow logically from there.

🧪 Practice on this topic: 28 questions Taiwan board past papers · in Chinese, with explanations
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🧪 Whole exam sections (question book, in Chinese)Pelvic Fractures 4Management of Fractures and Dislocations 24
★ High-yield points & traps from past exams (2 sections)
Pelvic Fractures 4 questions
  • 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)".
Management of Fractures and Dislocations 24 questions
  • 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.
02

Ischemia, Acid, and Leakage: The Emergency Chapter Where Time Is Tissue

~4 min · 9 past questions · 🎬 Video

Severe contamination is always Grade III, never Grade II — the degree of contamination alone is enough to upgrade the classification, regardless of wound length.

Full text
Case

A steel beam collapses at a construction site, pinning a worker beneath it for three hours before he is freed. He arrives with his forearm swollen so tight the skin looks glossy; passively extending his fingers makes him scream in pain, and the urine in his catheter bag is a thick, rusty brown, the color of cola. The intern hurries to elevate the limb, give analgesics, and restrict fluids, thinking this will spare the kidneys extra burden. The attending walks in, glances at the patient, and shakes his head: "All three moves are wrong."

Musculoskeletal emergencies are, at their core, three separate races against ischemia, acidosis, and leakage. Compartment syndrome is muscle trapped in a sealed space, slowly strangling itself; rhabdomyolysis is a mass of dying muscle dumping its own contents into the bloodstream and then into the renal tubules; open fracture is bone that has torn open a filthy channel to the outside world. Each of these three tracks follows its own timeline and treatment logic, but they share one core truth — time is tissue — and it is exactly the counterintuitive treatment principles where the exam loves to lay its ambush.

Compartment Syndrome: Don't Wait for the Pulse to Disappear Before Acting

⟶ Mechanism

Compartment syndrome is a self-amplifying five-step loop: trauma or crush injury → bleeding/edema within the compartment → compartment pressure ≥ 30 mmHg → inadequate capillary perfusion pressure, tissue ischemia → ischemia releases still more fluid, pressure climbs further → irreversible muscle and nerve necrosis within 6–8 hours. So the essence of this question is never to wait until every "textbook symptom" has appeared — you must suspect it the moment the earliest warning sign shows up.

⚠ Trap
✗🦦The patient's forearm is really swollen — should I elevate the limb and give analgesics first, just to make him comfortable?
✓🐻‍❄️That's exactly the trap in this question. Elevation actually lowers perfusion and makes the ischemia worse — the limb should be kept level with the heart, not raised. Analgesics can also mask the single most important P — severe pain — and make you miss the treatment window. Remember: Pain (severe pain on passive stretch) is earliest and most important, Pulselessness is latest — you cannot wait for the pulse to disappear before acting; diagnose with delta pressure < 30 mmHg (against diastolic pressure), and once diagnosed, go straight to fasciotomy.
Full text · 1 table

The 5 P's must be memorized in the order they appear, not as a rote string of letters. The earliest and most important is Pain, specifically pain out of proportion to passive stretch — for example, after a crush injury to the forearm, gently extending the patient's fingers makes him scream; that is the earliest signature of compartment syndrome. Next come Paresthesia and Pressure (a tense, swollen feeling), with Paralysis appearing only in the intermediate stage, while Pulselessness is a late finding — by the time it appears, it is already too late. So the biggest trap is using "the pulse is still present" as a criterion to rule the diagnosis out. Likewise, "Painless" is not one of the P's at all — the very core of compartment syndrome is severe pain.

PMeaningTiming
PainPain out of proportion to passive stretchEarliest, most important
ParesthesiaSensory disturbanceEarly
PressureSwelling/tense feelingEarly
ParalysisWeakness/paralysisMid-to-late
PulselessnessPulse disappearsLate (its appearance means it's already too late)

Swipe or scroll sideways to compare every column; keyboard: focus the table and use arrow keys.

The numeric threshold for diagnosis carries its own trap. Intracompartmental pressure > 30 mmHg, or the more practical delta pressure (diastolic pressure − compartment pressure) < 30 mmHg — the key here is using the diastolic pressure, not the systolic. The exam loves to plant "a difference from systolic pressure > 30" as a tempting wrong answer. Once diagnosed, proceed immediately to emergency fasciotomy; meanwhile the affected limb must never be elevated above the level of the heart (this lowers perfusion pressure and worsens ischemia), and any circumferential cast or dressing must be removed.

Rhabdomyolysis: Three Hours Under a Steel Beam and a Bag of Rust-Colored Urine

⟶ Mechanism

For the worker pinned beneath the steel beam for three hours, the entire story unfolds along a five-step causal chain: muscle crush injury and ischemia → cell membrane rupture, myoglobin and potassium and phosphate leak into the bloodstream → myoglobin crystallizes and obstructs the acidic renal tubules, compounded by renal ischemia → acute kidney injury (AKI) → hyperkalemia directly threatens the heart. So the core of management is actually very simple: flush the toxins out and dilute them.

Full text

The first and most important step in the treatment chain is aggressive intravenous crystalloid fluid resuscitation — maintaining a robust urine output to flush the myoglobin out. This is the top priority, and "fluid restriction" is a completely wrong move. The intern's instinct to restrict fluids is the most common way to lose points on this question; the folk wisdom that "poor kidneys mean you should restrict fluids" applied here will send the patient straight into dialysis. Next comes alkalinization of the urine (sodium bicarbonate, targeting urine pH > 6.5) to reduce the nephrotoxicity of myoglobin, along with monitoring and management of hyperkalemia.

The lab findings have their own signature too: CK (creatine kinase) markedly elevated, often above 1000 and sometimes into the tens of thousands; urine dipstick positive for blood, yet microscopy shows no red blood cells (because what is actually testing positive is myoglobin). Electrolytes typically show hyperkalemia, hyperphosphatemia, hyperuricemia, and early hypocalcemia. Do not routinely correct the early hypocalcemia — because calcium deposits in the damaged muscle and is later released during recovery, producing rebound hypercalcemia instead; calcium should be given only for tetany or life-threatening hyperkalemia.

Gustilo Grading and Polytrauma: Life > Limb

Full text · 1 table

An open fracture is bone that has torn open a filthy channel to the outside world; the Gustilo classification grades the injury by wound size, degree of contamination, and soft-tissue condition, and directly determines antibiotic choice and debridement strategy.

GradeWoundContamination/tissue
I< 1 cmClean
II1–10 cmModerate contamination, moderate soft-tissue injury
III> 10 cm, or severe contamination, tissue loss, vascular injuryIIIA can be covered / IIIB requires a flap / IIIC involves arterial injury requiring repair

Swipe or scroll sideways to compare every column; keyboard: focus the table and use arrow keys.

Treatment principles: intravenous antibiotics as early as possible (cefazolin for Grade I/II; add an aminoglycoside for Grade III; add anaerobic coverage for soil contamination), tetanus prophylaxis, emergency thorough debridement, and fracture fixation.

The sequencing of polytrauma management is also pure logic. The mnemonic is Life over Limb — saving life always takes priority over saving the limb — and within limb salvage, the internal order is: control bleeding → vascular reconstruction → skeletal fixation → nerve repair → repeated debridement. The most commonly tested trap is "nerve reconstruction before skeletal reconstruction" — wrong: the skeleton must be stabilized first before nerve repair means anything; suturing a nerve over an unstable, shifting fracture is like sewing thread in the wind.

Volkmann Contracture: The Extrinsic Muscles Die, the Intrinsic Muscles May Survive

⚠ Trap
✗🦦Volkmann contracture is forearm ischemia, so surely every muscle in the whole hand is damaged — meaning the intrinsic muscles can't be normal either?
✓🐻‍❄️That's the most common least-appropriate trap in this question. The extrinsic flexors live inside the forearm compartment and die along with everything else there; but the intrinsic muscles (lumbricals, interossei) are supplied by the hand and never sit inside that compartment, so as long as the ischemia hasn't extended into the hand, the intrinsic muscles may still be alive. Remember: extrinsic muscles die, intrinsic muscles may be spared — this is a high-frequency, easy-point detail.
★ Must-know
Emergency Chapter Must-Know Checklist
  • 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).
Full text

Last is a detail question tied directly to understanding mechanism — Volkmann ischemic contracture, which classically follows a pediatric supracondylar humerus fracture or forearm compartment syndrome. The forearm's extrinsic flexors (FDP/FDS) sit within the forearm compartment, and prolonged ischemia leaves them fibrosed and contracted, producing flexion deformities of the wrist and fingers. But there is a commonly tested "least appropriate" trap here: the hand's intrinsic muscles (lumbricals, interossei) are supplied by the hand's own vessels and do not lie within the forearm compartment; so if the ischemia never extends into the hand, intrinsic muscle function may remain normal. "The intrinsic muscles could never function normally" is an incorrect statement.

The decision to replant an amputated digit follows this same line of reasoning. The least suitable case for replantation is a "single digit with multiple-level amputation" — microvascular reconstruction is extremely complex, success rates are low, and function is poor, so revision of the stump is usually chosen instead; good candidates for replantation include the thumb (which accounts for forty percent of hand function), multiple-digit amputation, any digit in a child, and amputations at the palm or wrist level.

♪ Memory hook

In compartment syndrome, pain comes first and the pulse goes last; in rhabdomyolysis, flood the body with fluids, never restrict them; and the skeleton is stabilized before the nerve.

Read-aloud version (copy the whole thing into any TTS)

A steel beam pins a worker for three hours before he is freed; he arrives with his forearm swollen so tight the skin looks glossy, and passively extending his fingers makes him scream in pain, while the urine in his catheter bag is a thick, rusty brown, the color of cola. The intern hurries to elevate the limb, give analgesics, and restrict fluids, thinking this will ease the burden on the kidneys, but the attending walks in, glances at him, shakes his head, and says all three moves are wrong. Musculoskeletal emergencies are, at their core, three separate races: compartment syndrome is muscle trapped in a sealed space, slowly strangling itself; rhabdomyolysis is a mass of dying muscle dumping its contents into the bloodstream and then into the renal tubules; open fracture is bone that has torn open a filthy channel to the outside world; and the shared core truth is that time is tissue, with a handful of counterintuitive treatment principles being exactly where the exam loves to lay its ambush.

To understand why compartment syndrome is such an emergency, first picture its mechanism as a self-amplifying loop. A fracture, a crush injury, or reperfusion causes bleeding and edema within the compartment, and because the compartment is a sealed space wrapped in fascia that cannot expand, pressure rises and microcirculatory perfusion pressure falls, tissue begins to turn ischemic, and the ischemia in turn makes cells release still more fluid, causing more swelling — a vicious cycle. The entire time window is only six to eight hours; beyond that, muscle and nerve suffer irreversible necrosis. The five P's must be memorized in the order they appear, not as a rote string of letters. The earliest and most important is pain, specifically pain out of proportion to passive stretch — gently extending his fingers makes him scream. Next come paresthesia and a tense, pressured feeling, with paralysis appearing only in the intermediate stage, while pulse loss is a late finding, and by the time it appears, it is already too late. So the biggest trap is using "the pulse is still present" as a criterion to rule the diagnosis out, along with treating painlessness as one of the P's, when the very core of compartment syndrome is severe pain. The diagnostic threshold is an intracompartmental pressure above thirty millimeters of mercury, or the more practical delta pressure below thirty, and the key here is to use the diastolic pressure, not the systolic — the exam loves to plant "a difference from systolic pressure greater than thirty" as a tempting wrong answer. Once diagnosed, proceed immediately to fasciotomy, and the affected limb must never be elevated above the heart, because elevation actually lowers perfusion and worsens the ischemia — it should be kept level with the heart; at the same time, remove any circumferential cast or dressing.

The mechanism of rhabdomyolysis follows the same logic. Muscle undergoes massive necrosis under crush injury and ischemia, and cellular contents — myoglobin, potassium, phosphate, creatine kinase — pour into the bloodstream all at once; myoglobin is filtered by the kidney and crystallizes within the renal tubules in the acidic environment, obstructing them, and combined with renal ischemia, acute kidney injury forms rapidly, while soaring blood potassium directly threatens the heart. So the core of management is actually very simple: flush those toxins out and dilute them. The first and most important step is aggressive intravenous crystalloid fluid resuscitation, maintaining a robust urine output to flush the myoglobin out — this is the top priority, and fluid restriction is a completely wrong move; the folk wisdom that poor kidneys call for fluid restriction will, applied here, send the patient straight into dialysis. Only after that comes alkalinization of the urine, targeting a urine pH above six point five, along with monitoring and managing hyperkalemia. The lab signature is creatine kinase markedly elevated, often above a thousand and sometimes into the tens of thousands; urine dipstick positive for blood yet microscopy shows no red blood cells, because what is actually testing positive is myoglobin; electrolytes typically show hyperkalemia, hyperphosphatemia, hyperuricemia, and early hypocalcemia, and the early hypocalcemia should not be routinely corrected, because calcium deposits in the damaged muscle and is released again during recovery, producing rebound hypercalcemia instead — calcium is given only for tetany or life-threatening hyperkalemia.

Open fracture is bone that has torn open a filthy channel to the outside world, and the Gustilo classification looks at wound size, contamination, and soft tissue. Grade I is under one centimeter and clean; Grade II is one to ten centimeters with moderate contamination; Grade III is over ten centimeters, or involves severe contamination, tissue loss, or vascular injury — and severe contamination alone is enough to upgrade the injury to Grade III regardless of length, which is a commonly tested trap. Management calls for intravenous antibiotics as early as possible, tetanus prophylaxis, emergency thorough debridement, and fracture fixation. The sequencing of polytrauma management is pure logic: saving life always takes priority over saving the limb, and within limb salvage, the internal order is control bleeding, vascular reconstruction, skeletal fixation, nerve repair, and repeated debridement. The most commonly tested trap is nerve reconstruction before skeletal reconstruction — this is wrong; the skeleton must be stabilized first before nerve repair means anything, and suturing a nerve over an unstable, shifting fracture is like sewing thread in the wind.

The last detail question tied directly to understanding mechanism is Volkmann contracture. It classically follows a pediatric supracondylar humerus fracture or forearm compartment syndrome; the forearm's extrinsic flexors — the flexor digitorum profundus and flexor digitorum superficialis — sit within the forearm compartment, and prolonged ischemia leaves them fibrosed and contracted, producing flexion deformities of the wrist and fingers. But there is a commonly tested least-appropriate trap here: the hand's intrinsic muscles, such as the lumbricals and interossei, are supplied by the hand's own vessels and do not lie within the forearm compartment, so if the ischemia never extends into the hand, intrinsic muscle function may remain normal — "the intrinsic muscles could never function normally" is an incorrect statement. The decision to replant an amputated digit follows this same line of reasoning: the least suitable case for replantation is a single digit with multiple-level amputation, because microvascular reconstruction is extremely complex, success rates are low, and function is poor; good candidates include the thumb, multiple digits, any digit in a child, and amputations at the palm or wrist level. The whole chapter's three emergencies share one throughline: act the moment the earliest warning sign appears, don't wait for every textbook symptom to arrive, and sequence your thinking as life before limb, bone stabilized before nerve repaired, and fluids given before anything else is considered.

🧪 Practice on this topic: 9 questions Taiwan board past papers · in Chinese, with explanations
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🧪 Whole exam sections (question book, in Chinese)Orthopedic Emergencies (Open Fractures/Compartment Syndrome) 9
★ High-yield points & traps from past exams (1 section)
Orthopedic Emergencies (Open Fractures/Compartment Syndrome) 9 questions
  • 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.
03

The Mechanics of Sports Injury: Ligaments, Tendons, and Nerves in Contention

~4 min · 34 past questions · 🎬 Video

PIN injury: the wrist can extend, the fingers cannot, and there is no sensory deficit. That is because ECRL runs directly off the main trunk of the radial nerve without passing through the PIN, and the PIN itself is a purely motor nerve.

Full text
Case

A 16-year-old basketball player plants abruptly and pivots mid-game, hears a clear "pop" inside her knee, and drops to the floor on the spot; within three hours, her right knee has swollen into a taut ball. In the next examination room, a 28-year-old new mother who has been carrying her infant for six months develops sudden, severe pain on the radial side of her right wrist, and simply cannot move her thumb; she assumes it is just tendon inflammation, until a single touch to the radial styloid makes her scream. Then there is a 45-year-old clerical worker who, for the past six months, has woken at night with numbness in her right thumb, index, and middle fingers, relieved only by shaking her hand — she types ten hours a day.

Sports injuries and repetitive-use injuries are, at their core, stories of mechanics compounded over time. Ligaments and tendons tear in predictable ways under force from different directions, and nerves are slowly strangled within the anatomical tunnels they are forced to pass through. The test point is never to memorize by rote which ligament goes with which test, but rather to deduce which structure will tear from the direction of force, and which nerve will take the hit from the site of entrapment.

The Six Dorsal Wrist Extensor Compartments: Counting from Radial to Ulnar

⟶ Mechanism

The new mother's story is the classic four-step mechanism of de Quervain tenosynovitis: repetitive thumb abduction combined with radial deviation (carrying an infant, scrolling a phone) → repeated friction thickens the tendon sheaths of APL and EPB in compartment 1 → the sheath narrows and tendon gliding is restricted → persistent pain near the radial styloid. The signature test is the Finkelstein test — the thumb is folded into the palm and the wrist is deviated ulnarly; provoked severe pain is a positive result. The trap most often flipped on the exam is placing this in compartment 3 — wrong: compartment 3 houses EPL, which governs thumb extension, not abduction. Remember "compartment 1 governs thumb abduction" and you will never get this wrong.

Full text · 1 table

The dorsum of the wrist has six compartments separated by the extensor retinaculum, numbered from radial to ulnar: compartment 1, APL/EPB; compartment 2, ECRL/ECRB; compartment 3, EPL; compartment 4, EDC/EIP; compartment 5, EDM; compartment 6, ECU. Memorizing this sequence alone unlocks an entire category of questions, because the location of every stenosing tenosynovitis and tendon rupture maps directly onto which compartment it occupies.

CompartmentTendons containedClinical significance
1APL + EPBClassic site of de Quervain tenosynovitis; positive Finkelstein test
2ECRL + ECRBIntersection syndrome
3EPL (extensor pollicis longus)Uses Lister's tubercle as a pulley; may rupture in delayed fashion after distal radius fracture
4EDC + EIP
5EDM (extensor digiti minimi)Sole occupant of its compartment
6ECU (extensor carpi ulnaris)

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The Four Major Knee Ligaments: Mechanism Determines Diagnosis

⟶ Mechanism

The reason the ACL swells into a taut balloon so quickly after tearing is a five-step causal chain: noncontact deceleration and pivoting → the ACL tears → the synovial vessels enveloping the ACL rupture simultaneously → blood pours directly into the joint space → a large, dark-red hemarthrosis develops within hours. Roughly seventy percent of acute traumatic hemarthroses are ACL tears. Its classic mechanism of injury is noncontact: landing from a jump, sudden deceleration with pivoting, or valgus stress on the knee; the most sensitive signature test is the Lachman test (followed by the anterior drawer and pivot-shift tests). By contrast, the classic mechanism for the PCL (posterior cruciate ligament) is a dashboard injury — the tibia is struck directly backward while the knee is flexed; its bleeding is scant and slow, so swelling is not obvious, and instead the patient complains of the knee giving way when walking downstairs or downhill. In one sentence: the ACL is torn by the patient's own twisting motion (noncontact) and swells immediately; the PCL is torn by an external blow (dashboard) and barely swells at all.

Full text · 1 table

The basketball player's "pop" followed by rapid swelling within hours points, in ninety percent of cases, to the anterior cruciate ligament (ACL). Why does the ACL tear so fast and swell so dramatically?

LigamentClassic mechanismSignature testImaging/complications
ACLNoncontact jump/deceleration/pivot/valgusLachman (most sensitive), anterior drawer, pivot-shiftA "pop" + large hemarthrosis within hours
PCLDashboard (tibia struck backward while knee flexed)Posterior drawer, posterior sagSwelling not obvious, knee gives way going downstairs
MCLValgus forceValgus stress testOften combined with ACL (unhappy triad)
LCLVarus forceVarus stress testMay be combined with common peroneal nerve injury

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The classic definition of the unhappy (terrible) triad is ACL + MCL + medial meniscus (O'Donoghue's triad); the licensing exam's standard answer treats "medial" as correct, even though modern research has found that combined injury of the lateral meniscus may actually be more common — when the wording is contested, "medial" remains the traditional correct answer.

Upper Limb Nerve Entrapment: Reasoning from Nerve, Muscle, and Deficit

Full text · 1 table

The clerical worker who types ten hours a day has classic carpal tunnel syndrome — the median nerve is slowly strangled beneath the transverse carpal ligament, producing numbness and pain in the thumb, index, and middle fingers, worse at night and relieved by shaking the hand (the flick sign), with thenar atrophy over the long term. Diagnosis rests on clinical findings plus NCV/EMG, with Tinel's and Phalen's signs as supporting tests.

NerveSite of entrapmentSensory/motor findingsDiagnostic test of choice
Median nerveBeneath the transverse carpal ligament (carpal tunnel)Numbness/pain in thumb, index, middle fingers; worse at night; positive flick sign; thenar atrophyClinical + NCV/EMG; Tinel's/Phalen's
Ulnar nerveCubital tunnel at the elbowNumbness in the 4th/5th fingers, ↓grip strength, claw handNCV/EMG (localizes the segment, grades severity), not MRI
Radial nerve, main trunkRadial groove of the humerusWrist drop + sensory deficit
PIN (posterior interosseous nerve)Arcade of FrohsePurely motor: cannot extend fingers, but no sensory deficit, no true wrist drop

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The diagnostic test of choice for cubital tunnel syndrome is NCV/EMG, not MRI — a commonly tested "most appropriate" trap. NCV/EMG can localize the affected segment and grade its severity, whereas MRI is, in this setting, not actually first-line.

Anterior Shoulder Instability: Which Direction for the Apprehension Test

⚠ Trap
✗🦦For the apprehension test in anterior instability, should I try provoking it by internally rotating the patient's arm?
✓🐻‍❄️Wrong direction. The posture of anterior dislocation is precisely abduction plus external rotation, so the provocative test must likewise abduct to 90° and then add external rotation, reproducing the very posture that drives the humeral head out anteroinferiorly — only then will the patient feel that fear of "about to dislocate." Internal rotation will never provoke anterior instability — this question is frequently flipped as a trap.
★ Must-know
Sports Injuries and Nerve Entrapment
  • 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).
Full text

Anterior dislocation is the most common type of shoulder dislocation; the mechanism is a shoulder positioned in abduction and external rotation, which drives the humeral head out anteroinferiorly. It is often combined with a Bankart lesion (anteroinferior labral tear) and a Hill-Sachs lesion (a posterolateral impression defect on the humeral head).

The signature anterior apprehension test is performed as follows: abduct the shoulder to 90° → then apply external rotation to the maximum angle, provoking the patient's fear of "about to dislocate" as a positive result. The direction is external rotation, not internal rotation — a high-frequency trap.

♪ Memory hook

For ligaments, read the direction of force; for nerves, read the site of entrapment — the ACL tears fast because its synovium runs rich with blood.

Read-aloud version (copy the whole thing into any TTS)

A basketball player plants abruptly and pivots mid-game, hears a pop inside her knee, and drops to the floor on the spot; within three hours her knee has swollen into a taut ball. In the next room, a new mother who has been carrying her infant for six months develops severe pain on the radial side of her right wrist and cannot move her thumb, screaming the instant her radial styloid is touched. Then there is a clerical worker who types ten hours a day and has, for six months, woken at night with numbness in her thumb, index, and middle fingers, relieved only by shaking her hand. Sports injuries and repetitive-use injuries are, at their core, stories of mechanics compounded over time; ligaments and tendons tear in predictable ways under force from different directions, and nerves are slowly strangled within the anatomical tunnels they are forced to pass through. The test point is never to memorize by rote which ligament goes with which test, but to deduce which structure will tear from the direction of force, and which nerve will take the hit from the site of entrapment.

The six dorsal wrist extensor compartments, numbered from radial to ulnar, are compartment one, abductor pollicis longus plus extensor pollicis brevis; compartment two, extensor carpi radialis longus plus brevis; compartment three, extensor pollicis longus; compartment four, extensor digitorum communis plus extensor indicis proprius; compartment five, extensor digiti minimi; and compartment six, extensor carpi ulnaris. Memorizing this sequence alone unlocks an entire category of questions, because the location of every stenosing tenosynovitis and tendon rupture maps directly onto which compartment it occupies. The new mother has classic de Quervain tenosynovitis: the mechanism is repetitive thumb abduction combined with radial deviation, as in carrying an infant or scrolling a phone, which causes the tendon sheaths of abductor pollicis longus and extensor pollicis brevis in compartment one to thicken and narrow from repeated friction, producing persistent pain near the radial styloid. The signature Finkelstein test folds the thumb into the palm and deviates the wrist ulnarly; provoked severe pain is a positive result. The trap most often flipped on the exam is placing this in compartment three, but compartment three houses extensor pollicis longus, which governs extension, not abduction — remember that compartment one governs thumb abduction and you will never get this wrong. Extensor pollicis longus carries another clinical significance: it uses Lister's tubercle as a pulley, and after a distal radius fracture it may rupture in delayed fashion from friction or ischemia.

The basketball player's pop followed by rapid swelling within hours points, in ninety percent of cases, to the anterior cruciate ligament. The ACL tears so fast and swells so dramatically because it is wrapped in a richly vascularized synovium, so the moment it tears, blood pours directly into the joint space, producing a large, dark-red hemarthrosis within hours; roughly seventy percent of acute traumatic hemarthroses are ACL tears. Its classic mechanism of injury is noncontact: landing from a jump, sudden deceleration with pivoting, or valgus stress on the knee, and the most sensitive signature test is the Lachman test, followed by the anterior drawer and pivot-shift tests. By contrast, the classic mechanism for the PCL is a dashboard injury, where the tibia is struck directly backward while the knee is flexed; its bleeding is scant and slow, so swelling is not obvious, and instead the patient complains of the knee giving way when walking downstairs or downhill. In one sentence: the ACL is torn by the patient's own twisting motion and swells immediately, while the PCL is torn by an external blow and barely swells at all. The medial collateral ligament is caused by a valgus force and is often grouped with the ACL and medial meniscus as the unhappy triad; the licensing exam's traditional correct answer specifies the medial meniscus, even though modern research has found the lateral meniscus may actually be more common. The lateral collateral ligament is caused by a varus force and may be combined with common peroneal nerve injury.

The clerical worker has classic carpal tunnel syndrome: the median nerve is slowly strangled beneath the transverse carpal ligament, producing numbness and pain in the thumb, index, and middle fingers, worse at night and relieved by shaking the hand — the so-called flick sign — with thenar atrophy over the long term; diagnosis rests on clinical findings plus electromyography and nerve conduction studies, with Tinel's and Phalen's tests as supporting evidence. When the ulnar nerve is entrapped in the cubital tunnel at the elbow, it presents with numbness in the fourth and fifth fingers, reduced grip strength, and a claw hand, and its diagnostic test of choice is electromyography and nerve conduction studies rather than MRI, because the former can localize the segment and grade the severity — a commonly tested "most appropriate" trap. When the main trunk of the radial nerve is entrapped in the radial groove of the humerus, it produces a true wrist drop plus sensory deficit, whereas the posterior interosseous nerve entrapped at the arcade of Frohse has an entirely different signature: the wrist can extend but the fingers cannot, with no sensory deficit, because extensor carpi radialis longus runs directly off the main trunk of the radial nerve without passing through the posterior interosseous nerve, and the posterior interosseous nerve itself is purely motor, carrying no sensory fibers. So from the extent of the deficit and the presence or absence of sensory loss, you can work backward to the exact site of entrapment.

The last direction commonly flipped as a trap is that of the apprehension test for anterior shoulder instability. Anterior dislocation is the most common type of shoulder dislocation; the mechanism is a shoulder positioned in abduction and external rotation, which drives the humeral head out anteroinferiorly, often combined with a Bankart lesion (anteroinferior labral tear) and a Hill-Sachs lesion (a posterolateral impression defect on the humeral head). So this provocative test must likewise reproduce the very posture that drives the humeral head forward: abduct the shoulder to ninety degrees and then apply external rotation to the maximum angle, and only then will the patient feel that fear of "about to dislocate"; internal rotation will never provoke anterior instability, and this question is most often flipped as a trap. The whole chapter really does just one thing: it translates the mechanical movements of the playing field into anatomical consequences within the joint, and then works backward from those consequences to identify which structure tore where, and which nerve is entrapped where. Once you understand the correspondence between movement and structure, none of it needs to be memorized by rote.

🧪 Practice on this topic: 34 questions Taiwan board past papers · in Chinese, with explanations
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🧪 Whole exam sections (question book, in Chinese)Sports Injuries 34
★ High-yield points & traps from past exams (1 section)
Sports Injuries 34 questions
  • 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.
04

From Infancy to Adolescence: The Growth Line of the Pediatric Hip and Spine

~5 min · 48 past questions · 🎬 Video

Think hip dysplasia in infancy, Perthes disease at school age, slipped epiphysis in an obese adolescent — age is the biggest clue in pediatric orthopedics.

Full text
Case

Three children with "hip pain or a limp" come through the clinic one after another. The first is a three-month-old girl; her mother says the skin folds on her thigh look asymmetric, and when the physician gently abducts her hip, he feels a clunk. The second is a six-year-old boy who has limped for the past two months, complains of right hip pain, and has clearly cut back on activity. The third is a thirteen-year-old overweight boy whose chief complaint is "left knee pain" for a month — yet his left hip is tender to palpation, and the X-ray shows the femoral head has slipped off the growth plate.

In pediatric orthopedics questions, the first clue is always age. For the same complaint of hip pain or a limp: think DDH in infancy, Perthes disease at school age, and SCFE in an overweight adolescent — this single age axis solves the majority of questions on its own. But to understand why age slices the differential so cleanly, you have to return to the mechanics and blood-supply story behind each disease.

Infancy → School Age → Adolescence: Three Hip Diseases, One Axis

⟶ Mechanism

DDH follows a four-step causal chain: acetabular dysplasia → the joint between the femoral head and acetabulum is loose → the hip can be dislocated by external force after birth → a positive Barlow test dislocates it, a positive Ortolani test reduces it back. Perthes disease: at 4–8 years, the blood supply to the femoral head's secondary ossification center is fragile → avascular necrosis → collapse and fragmentation → the degree of remodeling determines prognosis. SCFE: adolescent obesity plus an obliquely oriented growth plate → shear force exceeds the strength of the growth plate → the femoral epiphysis slips posteroinferiorly off the metaphysis → often presenting as knee pain (referred pain along the obturator nerve).

⚠ Trap
✗🦦For a disease that strikes children, surely the younger the child, the more severe it is and the worse the prognosis? So Perthes disease under age five must have a worse prognosis?
✓🐻‍❄️This question is built precisely to make you fall into that intuitive trap. In Perthes disease, a younger age actually means a better prognosis — because there is so much growth left, the femoral head has plenty of time to remodel; the older the child, the less room there is for remodeling, and the collapsed shape becomes fixed, setting up future degenerative arthritis. Remember: Perthes disease under age five has a good prognosis, over age eight a poor one.
Full text · 1 table
DiseaseTypical agePathologyImaging/featuresManagement
DDH (developmental dysplasia of the hip)Newborn to infantDysplasia/dislocation of the acetabulum and femoral headUltrasound (<4–6 months), X-ray (>4–6 months)Pavlik harness (<6 months)
Perthes disease (Legg-Calvé-Perthes)4–8 years (male > female)Avascular necrosis (AVN) of the femoral headFemoral head collapse, fragmentationContainment (bracing/surgery)
SCFE (slipped capital femoral epiphysis)Peripubertal (10–14 years), obeseThe epiphysis slips through the growth plateFrog-leg lateral view, abnormal Klein's lineUrgent in-situ pinning

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Screening for DDH relies on three signature tests, each with a completely different function. Ortolani's test combines abduction with lifting to reduce an already-dislocated femoral head back into the acetabulum, producing a clunk; Barlow's test combines adduction with downward pressure to dislocate a dislocatable femoral head, producing another clunk. In one sentence: Ortolani reduces, Barlow dislocates — these two are frequently confused. Galeazzi's sign compares knee height with the hips and knees flexed, checking whether thigh length is symmetric. The Patrick (FABER) test assesses the lumbar spine, sacroiliac joint, and hip range of motion, and is not a screening tool for DDH — a classic "least appropriate" trap answer.

Perthes disease is collapse and deformity of the femoral head after avascular necrosis, predisposing to degenerative arthritis later in life. One prognostic factor is commonly flipped as a trap: the younger the age of onset, the better the prognosis — because more growth remains available for remodeling; onset after age 8 actually carries a worse prognosis. Other poor prognostic factors include lateral pillar involvement, increased radiolucency of the lateral femoral head, necrosis affecting more than 50% of the head, and a horizontally oriented growth plate.

The 13-year-old overweight boy is the classic face of SCFE: peripubertal, obese, often with an endocrine abnormality (hypothyroidism, growth hormone disorder), bilateral in roughly 20–25% of cases. It carries one of the most easily delayed traps in clinical practice: SCFE often presents as knee pain or anterior thigh pain (referred pain along the obturator nerve) — the child complains of knee pain, you order a knee X-ray, it comes back completely normal, and he is sent home; three months later the femoral head has slipped even further. Whenever an adolescent presents with knee pain, always examine the hip. The principle of fixation is urgent in-situ pinning, and forceful reduction must never be attempted — forceful reduction increases the risk of avascular necrosis of the femoral head.

Other Must-Know Pediatric Orthopedic Conditions

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Congenital muscular torticollis: fibrosis of the sternocleidomastoid (SCM) — not the trapezius — causes the head to tilt toward the affected side and the chin to rotate toward the opposite side. "Trapezius fibrosis" is a commonly tested least-appropriate answer.

Congenital pseudarthrosis of the tibia: often combined with neurofibromatosis type 1 (NF-1), with the tibia bowing anterolaterally; that site is the weakest point and prone to pathologic fracture.

Mucopolysaccharidosis (MPS), skeletal changes (dysostosis multiplex): widened clavicles, oval- or beak-shaped vertebral bodies, acetabular dysplasia, and coxa valga; coxa vara is the least common finding — a high-frequency, easy-point fact.

Leg length discrepancy (LLD): <2 cm — a shoe lift; 2–5 cm — epiphysiodesis of the longer limb; >5 cm — limb lengthening surgery.

Herniated Disc: Mechanics Determines the Level

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Back from pediatrics to the adult spine. Ninety percent of herniated intervertebral discs (HIVDs) in the lumbar spine occur at L4–5 and L5–S1 — not L3–4 — because these two levels bear the greatest axial load, have the greatest range of motion, and have the largest discs. The direction of herniation is most often posterolateral, compressing the nerve root exiting at the level below.

Disc levelNerve root compressedPresentation
L4–5L5Weak great toe dorsiflexion, numbness on the dorsum of the foot, no notable reflex change
L5–S1S1Weak plantarflexion, absent ankle (Achilles) reflex
L3–4L4↓Knee reflex, anteromedial thigh

Swipe or scroll sideways to compare every column; keyboard: focus the table and use arrow keys.

The red flag is saddle anesthesia plus bowel or bladder incontinence — suspect cauda equina syndrome, an orthopedic emergency requiring emergent MRI plus urgent decompressive surgery; delayed decompression leaves permanent bladder and sexual dysfunction. On differential diagnosis, cauda equina syndrome (compression of nerve roots below L2) is a lower motor neuron picture that is asymmetric, severely painful, with progressive loss of saddle sensation; whereas conus medullaris syndrome (around the L1–L2 vertebral level) is more symmetric, causes early bowel and bladder dysfunction, and mixes upper and lower motor neuron findings.

Spinal Tumors: One Cut Through Three Anatomical Layers

⟶ Mechanism

Differentiating spinal tumors comes down to two localizing questions: is it intradural or extradural? Is it intramedullary or extramedullary? Each of the three resulting layers has its own regular occupant. The most common extradural tumor is metastasis (also the most common spinal tumor overall), because the vertebral bodies are rich in red marrow and lie adjacent to the valveless Batson venous plexus, making hematogenous spread here especially easy; intradural-extramedullary tumors are predominantly benign — meningioma, schwannoma, neurofibroma; the most common intramedullary tumors are ependymoma (roughly 60% in adults) and astrocytoma. Note that anaplastic astrocytoma is intramedullary, though it is frequently misclassified as intradural-extramedullary — a high-frequency trap.

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Metastases most often occur in the thoracic spine (which has the most vertebral levels, 12, and lies adjacent to the Batson venous plexus), followed by the cervical spine, then the lumbar spine, with the sacrum least affected; intramedullary metastasis is extremely rare (<5%). In management, absence of significant neural compression → do not operate immediately; confirm first with imaging (bone scan/CT) plus biopsy, then proceed to radiotherapy, chemotherapy, or systemic therapy. Surgical decompression and fixation is reserved for acute neural compression, spinal instability, or failure of radiotherapy — "operate immediately on seeing a metastatic tumor" is a commonly tested error.

Scoliosis and Chiari I

★ Must-know
Pediatric Orthopedics and the Spine
  • 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).
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Adolescent idiopathic scoliosis (AIS): a thoracic curve convex to the right in roughly 90% of cases (a characteristic direction). The Risser sign assesses skeletal maturity (ossification of the iliac apophysis progressing from anterosuperior to posterior, graded 0–5) and guides the timing of surgery. By sex ratio, the larger the curve, the higher the proportion of females (roughly 5–7:1 for curves >25°). Management follows the Cobb angle: <25° — observation; 25–45° (skeletally immature, low Risser) → bracing to prevent progression; >45–50° — consider surgical correction and fusion.

Chiari I malformation: the cerebellar tonsils herniate more than 5 mm below the foramen magnum; frequently combined with syringomyelia; not combined with spina bifida or hydrocephalus (this distinguishes it from Chiari II). It presents with occipital headache (worsened by coughing or straining), and if a syrinx forms, it can produce dissociated sensory loss (reduced pain and temperature sensation with preserved touch).

♪ Memory hook

Think hip dysplasia in infancy, Perthes disease at school age, slipped epiphysis in an obese adolescent — age is the biggest clue in pediatric orthopedics.

Read-aloud version (copy the whole thing into any TTS)

Three children with hip pain or a limp come through the clinic one after another: a three-month-old girl with asymmetric thigh skin folds, whose hip produces a clunk on abduction; a six-year-old boy who has limped for two months and complains of right hip pain; and a thirteen-year-old overweight boy whose chief complaint is a month of left knee pain, yet whose left hip is tender to palpation, with an X-ray showing the femoral head slipped off the growth plate. In pediatric orthopedics questions, the first clue is always age: think developmental dysplasia of the hip in infancy, avascular necrosis in Perthes disease at school age, and slipped capital femoral epiphysis in an obese adolescent — this single age axis solves the majority of questions on its own. To understand why age slices the differential so cleanly, you have to return to the mechanics and blood-supply story behind each disease.

Screening for developmental dysplasia of the hip relies on three signature tests, each with a completely different function. Ortolani's test combines abduction with lifting to reduce an already-dislocated femoral head back into the acetabulum, producing a clunk; Barlow's test combines adduction with downward pressure to dislocate a dislocatable femoral head, producing another clunk — in one sentence, Ortolani reduces, Barlow dislocates, and these two are frequently confused. Galeazzi's sign compares knee height with the hips and knees flexed, checking whether thigh length is symmetric, while the Patrick, or FABER, test assesses the lumbar spine, sacroiliac joint, and hip range of motion, and is not a screening tool for developmental dysplasia of the hip — a classic least-appropriate trap answer. Perthes disease is collapse and deformity of the femoral head after avascular necrosis, predisposing to degenerative arthritis later in life; one prognostic factor is commonly flipped as a trap — the younger the age of onset, the better the prognosis, because more growth remains available for remodeling, while onset after age eight actually carries a worse prognosis. Slipped capital femoral epiphysis classically occurs in obese, peripubertal children, often with hypothyroidism and growth hormone abnormalities, and is bilateral in roughly twenty to twenty-five percent of cases; it carries one of the most easily delayed traps in clinical practice, often presenting as knee or anterior thigh pain, which is referred pain along the obturator nerve — the child complains of knee pain, you order a knee X-ray, it comes back completely normal, and he is sent home, only for the femoral head to have slipped even further three months later. So whenever an adolescent presents with knee pain, always examine the hip. The principle of fixation is urgent in-situ pinning, never forceful reduction, since forceful reduction increases the risk of avascular necrosis of the femoral head.

A few more short chains of must-know facts in pediatric orthopedics: congenital muscular torticollis is fibrosis of the sternocleidomastoid, not the trapezius, causing the head to tilt toward the affected side and the chin to rotate to the opposite side — "trapezius fibrosis" is a commonly tested least-appropriate answer. Congenital pseudarthrosis of the tibia is often combined with neurofibromatosis type 1, with the tibia bowing anterolaterally, the site being the weakest point and prone to pathologic fracture. The skeletal changes of mucopolysaccharidosis are predominantly widened clavicles, oval- or beak-shaped vertebral bodies, acetabular dysplasia, and coxa valga, with coxa vara being the least common finding — a high-frequency, easy-point fact. For leg length discrepancy, under two centimeters calls for a shoe lift, two to five centimeters calls for epiphysiodesis of the longer limb, and only beyond five centimeters is limb lengthening surgery used.

Back from pediatrics to the adult spine, ninety percent of lumbar herniated intervertebral discs occur between L4–5 and L5–S1, not L3–4, because these two levels bear the greatest axial load, have the greatest range of motion, and have the largest discs; the direction of herniation is most often posterolateral, compressing the nerve root exiting at the level below, so an L4–5 herniation compresses the L5 nerve, and an L5–S1 herniation compresses the S1 nerve along with loss of the Achilles reflex. The red flag is saddle anesthesia plus bowel or bladder incontinence, raising suspicion for cauda equina syndrome, an orthopedic emergency requiring emergent MRI plus urgent decompressive surgery — delayed decompression leaves permanent bladder and sexual dysfunction. On differential diagnosis, cauda equina syndrome involves compression of nerve roots below L2, is a lower motor neuron picture, asymmetric, severely painful, with progressive loss of saddle sensation; whereas conus medullaris syndrome, at the level of the L1–L2 vertebral bodies, is more symmetric, causes early bowel and bladder dysfunction, and mixes upper and lower motor neuron findings.

Differentiating spinal tumors comes down to asking two localizing questions: is it intradural or extradural, is it intramedullary or extramedullary — each of the three resulting layers has its own regular occupant. The most common extradural tumor is metastasis, which is also the most common spinal tumor overall, because the vertebral bodies are rich in red marrow and lie adjacent to the valveless Batson venous plexus, making hematogenous spread here especially easy, which is why it favors the thoracic spine, the region with the most vertebral levels. Intradural-extramedullary tumors are predominantly benign, including meningioma, schwannoma, and neurofibroma, while the most common intramedullary tumors are ependymoma, accounting for roughly sixty percent in adults, and astrocytoma; anaplastic astrocytoma is also intramedullary and is frequently misclassified as intradural-extramedullary, a high-frequency trap, while intramedullary metastasis is extremely rare, under five percent. In management, when there is no neural compression, imaging plus biopsy plus radiotherapy and chemotherapy come first, not immediate surgery — operating immediately on seeing a metastatic tumor is a commonly tested error. In adolescent idiopathic scoliosis, the thoracic curve is convex to the right in roughly ninety percent of cases; the Risser sign looks at ossification of the iliac apophysis to assess skeletal maturity, and management follows the Cobb angle — under twenty-five degrees is observation, twenty-five to forty-five degrees with skeletal immaturity calls for bracing to prevent progression, and only beyond forty-five to fifty degrees is surgical correction and fusion considered. Chiari I malformation is herniation of the cerebellar tonsils more than five millimeters below the foramen magnum, often combined with syringomyelia, and not combined with spina bifida or hydrocephalus, which distinguishes it from Chiari II; if a syrinx forms, it can produce dissociated sensory loss, meaning reduced pain and temperature sensation with preserved touch. The whole chapter, moving from infancy through adolescence to the adult spine, follows one throughline: think mechanics or blood supply first, then match it to age, and never ignore a neurological red flag.

🧪 Practice on this topic: 46 questions Taiwan board past papers · in Chinese, with explanations
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🧪 Whole exam sections (question book, in Chinese)Pediatric Orthopedics 16Spinal Disorders 32
★ High-yield points & traps from past exams (2 sections)
Pediatric Orthopedics 16 questions
  • 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.
Spinal Disorders 32 questions
  • 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.
05

Joints, Bone Remodeling, and Biomaterials: Chronic Storms and the Body's Engineering

~8 min · 42 past questions · 🎬 Video

Osteophytes are the characteristic lesion of OA and are uncommon in RA — this direction is the one most often flipped as a trap.

Full text
Case

Three more patients settle into the clinic. A 58-year-old man was jolted awake last night by searing pain in his left big toe joint, now so red and swollen it cannot bear to be touched; he admits he has never once held back on beer and seafood. A 45-year-old woman has had symmetric swelling and pain in the proximal interphalangeal joints of both index and middle fingers for six months, with an hour of morning stiffness before it slowly loosens. A 72-year-old man, on long-term steroids for asthma, has recently developed right hip pain and a catch in his gait; the X-ray shows a translucent crescent-shaped band in his femoral head.

Arthritis, bone remodeling, and orthopedic biomaterials — this chapter draws every mechanical thread from earlier chapters back down to the level of cells, bone matrix, and time. Why a joint hurts depends on whether the cartilage is degenerating or under immune-mediated synovial attack; why bone grows brittle depends on which way the scale tips between resorption and formation; why a prosthetic joint fails or becomes infected depends on the hardness, elasticity, and compatibility of its materials and the timing of antibiotics. At its core, every one of these is a chronic storm.

Gout vs. CPPD: Different Crystals, Different Traps

⟶ Mechanism

The 58-year-old man has a textbook gout attack, and the causal chain runs clean in five steps: serum urate becomes supersaturated → monosodium urate (MSU) crystals deposit in the first metatarsophalangeal joint (podagra) → neutrophils are chemotactically recruited and phagocytose the crystals → massive release of IL-1β and other inflammatory mediators → severe pain, redness, swelling, and warmth. Under polarized light, its signature is needle-shaped crystals with negative birefringence — yellow when aligned parallel to the polarizer axis. By contrast, CPPD (pseudogout) crystals are calcium pyrophosphate dihydrate, rhomboid or rectangular with positive birefringence, appearing blue, and its imaging signature is chondrocalcinosis, favoring the knee and wrist.

⚠ Trap
✗🦦The patient is having an acute gout attack — I'll quickly start allopurinol to bring the urate down, twice the effect for half the effort!
✓🐻‍❄️Stop right there! This is the double trap in this question. You must never "newly start" a urate-lowering drug during an acute attack, because fluctuating serum urate can trigger or prolong the flare; but if he was already taking allopurinol, it should be continued without interruption during the acute phase, simply adding NSAIDs or colchicine. And remember, serum urate can be normal during an acute attack — don't use a normal serum urate to rule out gout; the diagnosis is confirmed by aspirating joint fluid and examining it for crystals.
Full text · 1 table
FeatureGoutCPPD (pseudogout)
CrystalMonosodium urate (MSU), needle-shapedCalcium pyrophosphate, rhomboid/rectangular
Polarized lightNegative birefringence, yellow when parallelPositive birefringence, blue
ImagingMarginal erosions (punched-out, overhanging edge)Chondrocalcinosis
PredilectionFirst metatarsophalangeal joint (podagra)Knee, wrist

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Treating acute gout carries two important traps. First, never "newly start" a urate-lowering drug (allopurinol) during an acute attack — because fluctuations in serum urate can actually trigger or prolong the flare. First-line treatment is NSAIDs or colchicine (which inhibits microtubules → blocks neutrophil chemotaxis), with steroids as second-line or for patients with poor renal function or polyarticular involvement. But if the patient was already taking allopurinol regularly before the attack, it should be continued without interruption during the acute phase, simply adding NSAIDs or colchicine; stopping the urate-lowering drug is actually the wrong move. Second, serum urate is not necessarily elevated during an acute attack and may even be normal, because urate is depositing into the joint and transiently falls in the blood — so a normal serum urate cannot rule out gout; the diagnosis is confirmed by aspirating joint fluid and examining it for crystals.

OA vs. RA: Cartilage Degeneration vs. Synovial Attack

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The 45-year-old woman's symmetric swelling and pain in the small joints of both hands is the signature of RA. Although OA and RA are both called "arthritis," they are fundamentally different diseases — OA is progressive cartilage degeneration compounded by abnormal chondrocyte repair (an imbalance between synthesis and breakdown), and is not primarily inflammatory; RA is autoimmune synovitis, which grows a pannus that directly erodes the joint margins.

FeatureOARA
NatureCartilage degeneration (not primarily inflammatory)Autoimmune synovitis (pannus)
DistributionWeight-bearing large joints, DIP (Heberden's nodes), asymmetricSmall joints of both hands (MCP/PIP), symmetric, polyarticular
ImagingOsteophytes, asymmetric joint space narrowing, subchondral sclerosisMarginal erosions, soft-tissue swelling, periarticular osteopenia, no osteophytes

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The OPG–RANKL–RANK Axis: Accelerator and Brake

⟶ Mechanism

This axis follows a four-step causal chain: osteoblasts secrete RANKL → RANKL binds the RANK receptor on the surface of osteoclast precursors → this drives osteoclast differentiation and activation → osteoprotegerin (OPG), also secreted by osteoblasts, acts as a decoy receptor that intercepts RANKL first → cutting off the resorption pathway. So more OPG = less resorption = bone density preserved; more RANKL = more resorption = bone loss. Clinically, denosumab is a monoclonal antibody against RANKL, playing the role of "synthetic OPG" to suppress bone resorption and treat osteoporosis.

Full text

To understand osteoporosis and antiresorptive drugs, you first have to understand the switch that controls bone remodeling.

The exam loves to lay ambushes along this pathway. Wnt, LRP5/6, and RUNX2 belong to the osteoblast differentiation pathway and are transcription factors, not the RANKL decoy receptor — a high-frequency "does not belong" trap.

Diseases of bone remodeling can be sorted into three broad categories by level of osteoclast activity: osteopetrosis has low or absent osteoclast activity (bone density is abnormally high yet brittle, with narrowed marrow cavities); postmenopausal osteoporosis has high osteoclast activity (↓estrogen → ↑resorption); Paget disease has abnormally overactive osteoclasts (chaotic remodeling, with both excessive resorption and excessive new bone formation). Be careful: senile osteoporosis is driven mainly by decreased osteoblast activity (not by resorption), and osteomalacia is a mineralization defect from vitamin D deficiency — if a question asks about "abnormal osteoclast activity," neither of these should be chosen.

Kienböck Disease and AVN: Blood Supply Decides Everything

⟶ Mechanism

For the 72-year-old man on long-term steroids, the translucent crescent-shaped band seen in his femoral head on X-ray is the signature of avascular necrosis (AVN) — the crescent sign. Among the risk factors for AVN, the most important are chronic alcohol use and steroids; the earliest and most sensitive imaging finding is a low-signal band on T1-weighted MRI. The same logic of blood supply deciding everything also applies to the lunate — Kienböck disease follows a five-step causal chain: ulnar minus variance (a relatively short ulna) → the lunate bears excessive stress → inadequate blood supply → avascular necrosis → collapse. So treatment follows the principle "a short ulna calls for a shortened radius," performing radial shortening to redistribute stress evenly and reduce the load on the lunate; radial lengthening is the least appropriate choice — it would instead increase pressure on the lunate and worsen the necrosis.

Prosthetic Joints: What Goes Where, and Why

⚠ Trap
✗🦦Titanium alloy has the best biocompatibility, so let's use titanium alloy for the femoral head too — one material, start to finish!
✓🐻‍❄️That's exactly the trap in this question. Titanium alloy's strength is osseointegration and compatibility, but it lacks sufficient hardness — used on the femoral head's articulating surface, it would wear excessively. So the weight-bearing joint head should use cobalt-chromium or ceramic, while titanium alloy belongs on the stem — one component needs to be hard and wear-resistant, the other needs elasticity close to bone; each has its own requirement.
Full text · 1 table

The core of prosthetic joint biomaterials comes down to two distinct needs: the weight-bearing articulating surface must be hard and wear-resistant, while the bone-integrating surface must be biocompatible with an elastic modulus close to bone.

ComponentSuitable materialRationale
Femoral head (articulating surface)Cobalt-chromium-molybdenum alloy (CoCrMo), ceramicHigh hardness, wear-resistant; titanium alloy lacks sufficient hardness and is unsuitable as a weight-bearing joint head
Acetabular linerUHMWPE (ultra-high-molecular-weight polyethylene)Low coefficient of friction
StemTitanium alloyElastic modulus close to bone, good osseointegration, high biocompatibility

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The chemistry of bone cement (PMMA, polymethylmethacrylate) is also a test point. The powder is a polymer plus an initiator, and the liquid is the monomer (which must be stored away from light); once mixed, polymerization is an exothermic reaction, reaching temperatures of 70–80°C that can cause local thermal necrosis of bone tissue. The most lethal complication is bone cement implantation syndrome: at the moment of pressurized filling, unreacted monomer enters the bloodstream, or fat and marrow are forced into the venous system under pressure and cause embolism, producing hypotension, hypoxemia, arrhythmia, and even shock — most often seen at the instant of cement pressurization during hip replacement.

The core of prosthetic joint infection prevention is that choosing the right antibiotic matters more than the duration. The first choice is cefazolin (a first-generation cephalosporin); the timing of administration is 30–60 minutes before skin incision (not 120 minutes before); it should be discontinued within 24 hours after surgery (not 72 hours).

Osteoporosis Drugs Split into Two Camps

Full text

Osteoporosis is diagnosed by DXA with a T-score ≤ −2.5; premenopausal women and children use the Z-score instead. Medications split into two camps: antiresorptive agents (bisphosphonates, denosumab, SERMs such as raloxifene, calcitonin) suppress osteoclasts; anabolic agents (teriparatide, i.e., PTH 1–34, and romosozumab, an anti-sclerostin antibody) stimulate bone formation. Teriparatide is the other face of PTH — given intermittently at low dose, it actually builds bone, standing in sharp contrast to the continuous high PTH of primary hyperparathyroidism, which instead drives resorption.

Benign Bone Lesions and Soft-Tissue Pathology: Age + Location + Histology

Full text · 1 table
LesionSignatureKey points
Fibrous cortical defect (FCD)A small, eccentric, multilobulated, radiolucent lesion of the distal femur in a child (e.g., age 7)The most common benign bone lesion of childhood; resolves spontaneously without treatment
Aneurysmal bone cyst (ABC)An expansile, lytic lesion of the tibia in an adolescent (e.g., age 16), with a thin bony shell, blood-filled cystic spaces, and giant cellsContains fibroblasts, woven bone, osteoclast-like giant cells
Inclusion body myositis (IBM)Rimmed vacuoles on Gomori trichrome stainAbnormal intracellular protein aggregation (including TDP-43); occurs in the elderly with asymmetric weakness, poor response to steroids

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Septic Arthritis by Age

Full text

In children under two years old and across age groups in general, the most common pathogen in septic arthritis is Staphylococcus aureus (current PCR-based studies: Kingella kingae often leads at 6 months–4 years) — not Salmonella; Salmonella is seen mainly in patients with sickle cell disease (predominantly causing osteomyelitis). Neonates (<3 months) require additional coverage for group B Streptococcus (GBS) and gram-negative rods; in unvaccinated infants and young children, Haemophilus influenzae type b was once a major culprit in earlier years (now greatly reduced thanks to vaccination). In sexually active adolescents, think Neisseria gonorrhoeae.

Renal Osteodystrophy and the Deep External Rotators of the Hip

Full text

Two final short chains, independent of each other but both commonly tested. Renal osteodystrophy's four key lab directions follow a five-step mechanistic chain: declining renal function → decreased 1α-hydroxylase activity → decreased active vitamin D → hypocalcemia → high phosphate combined with low calcium jointly stimulate the parathyroid glands → secondary hyperparathyroidism, ↑PTH, increased bone resorption. So the pattern is ↓calcium, ↑phosphate, ↓active vitamin D, ↑PTH — thyroid hormone has no direct relationship to renal osteodystrophy (a common "unrelated" distractor). The bone pathology can present as high-turnover disease (osteitis fibrosa cystica) or low-turnover disease (adynamic bone disease, often caused by excessive suppression of PTH — from overzealous calcium or calcitriol supplementation, or an overly aggressive calcimimetic).

The six deep external rotators of the hip, remembered by the mnemonic PGOGOQ: Piriformis, Gemellus superior, Obturator internus, Gemellus inferior, Obturator externus, Quadratus femoris. Quadratus femoris is a member; the quadriceps is not — that is the knee-extensor group on the front of the thigh, and the similarity in name is a commonly tested source of confusion. Hypertrophy or spasm of the piriformis can compress the sciatic nerve passing beneath it → piriformis syndrome, causing deep buttock pain radiating down the leg.

Innervation of the Hand Muscles: LOAF and One Exception

★ Must-know
Joints, Bone Remodeling, and Biomaterials · Must-Know Checklist
  • 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).
Full text

Last is a short chain every hand surgeon must know cold. The muscles of the hand divide into intrinsic muscles (both origin and insertion within the hand — the lumbricals, interossei, thenar, and hypothenar muscles) and extrinsic muscles (muscle belly in the forearm — FDP/FDS/FPL/the extensor group). A commonly tested "does not belong" trap: FDP (flexor digitorum profundus) originates in the forearm and is an extrinsic muscle, not an intrinsic one.

The core of hand innervation: the median nerve supplies LOAF — Lumbricals 1 and 2, Opponens pollicis, Abductor pollicis brevis, and the superficial head of Flexor pollicis brevis (most of the thenar eminence is median-innervated); but adductor pollicis is supplied by the ulnar nerve — the exception within the thenar group, and also a high-frequency test point. Clinically, a positive Froment sign (thumb IP joint flexes to compensate while pinching paper) tests for weakness of adductor pollicis, pointing to ulnar nerve pathology. The remaining intrinsic muscles of the hand (the hypothenar muscles, the interossei, and the 3rd and 4th lumbricals) are supplied by the ulnar nerve.

The logic guiding microsurgical replantation of an amputated digit is "whether meaningful function can be restored after replantation matters more than simply preserving life or form." Strong indications: the thumb (accounting for roughly 40% of hand function), multiple digits, any digit in a child, amputation at the palm or wrist level. Relative contraindications: a single adult digit amputated proximal to the FDS insertion (zone II, the "no man's land") — the tendon sheath system at this level is complex, tendon adhesions are common, range-of-motion recovery is poor, and the functional outcome is often worse than preserving the adjacent digit or fitting a prosthesis. A single digit with multiple-level amputation is likewise the least suitable case (microvascular reconstruction is extremely complex).

♪ Memory hook

Gout is negative and needle-shaped, pseudogout is positive and rhomboid; RANKL is the accelerator, osteoprotegerin is the brake; cobalt-chromium for the head, titanium alloy for the stem.

Read-aloud version (copy the whole thing into any TTS)

Three more patients settle into the clinic: a fifty-eight-year-old man jolted awake last night by searing pain in his left big toe joint, now red and swollen beyond touch, who has never once held back on beer and seafood; a forty-five-year-old woman with six months of symmetric swelling and pain in the proximal interphalangeal joints of her index and middle fingers, with an hour of morning stiffness before it loosens; and a seventy-two-year-old man on long-term steroids for asthma, with right hip pain, whose X-ray shows a translucent crescent-shaped band in the femoral head. This chapter draws every mechanical thread from earlier chapters back down to the level of cells, matrix, and time: joint pain depends on whether the cartilage is degenerating or under immune-mediated synovial attack, brittle bone depends on which way the scale tips between resorption and formation, and a failing or infected prosthetic joint depends on the hardness, elasticity, and compatibility of its materials and the timing of antibiotics — at its core, every one of these is a chronic storm.

The man has textbook gout: monosodium urate crystals deposit in the first metatarsophalangeal joint, triggering neutrophil chemotaxis and a massive release of inflammatory mediators, producing severe pain, redness, swelling, and warmth; under polarized light the crystals are needle-shaped, negatively birefringent, yellow when parallel to the axis. Pseudogout crystals, by contrast, are calcium pyrophosphate, rhomboid, positively birefringent, and blue, with chondrocalcinosis as the imaging signature, favoring the knee and wrist. Treating acute gout carries two traps: first, never newly start a urate-lowering drug during an acute attack, because fluctuating serum urate can trigger or prolong the flare — first-line treatment is an NSAID or colchicine, with steroids as second-line; but if the patient was already taking a urate-lowering drug regularly before the attack, it should be continued without interruption, simply adding an anti-inflammatory, since stopping it is the wrong move. Second, serum urate during an acute attack is not necessarily elevated and may even be normal, because urate is depositing into the joint and transiently falls in the blood, so a normal serum urate cannot rule out gout — the diagnosis is confirmed by aspirating joint fluid and examining it for crystals. The woman's symmetric swelling and pain in the small joints of both hands is the signature of rheumatoid arthritis: osteoarthritis is progressive cartilage degeneration compounded by abnormal chondrocyte repair and is not primarily inflammatory, while rheumatoid arthritis is autoimmune synovitis that grows a pannus directly eroding the joint margins; osteophytes are the characteristic lesion of osteoarthritis and are uncommon in rheumatoid arthritis, and this direction is the one most often flipped as a trap.

To understand osteoporosis, you first have to understand the switch that controls bone remodeling. Osteoblasts secrete RANKL, which binds the RANK receptor on osteoclast precursors and drives osteoclast differentiation and activation, while osteoprotegerin, also secreted by osteoblasts, is the decoy receptor for RANKL, intercepting it first so that resorption is blocked. Clinically, denosumab is an anti-RANKL antibody that plays the role of synthetic osteoprotegerin. A trap the exam frequently plants is that Wnt, LRP (low-density lipoprotein receptor-related protein), and RUNX2 are the pathway and transcription factors of osteoblast differentiation, not the RANKL decoy receptor. Diseases can be sorted into three categories by level of osteoclast activity: osteopetrosis has low or absent osteoclast activity, so bone density is abnormally high yet brittle, with narrowed marrow cavities; postmenopausal osteoporosis has high osteoclast activity because falling estrogen drives excessive bone resorption; and Paget disease has abnormally overactive osteoclasts, producing chaotic bone remodeling. But senile osteoporosis is driven mainly by decreased osteoblast activity, and osteomalacia is a mineralization defect — if a question asks about abnormal osteoclast activity, neither of these should be chosen.

The crescent-shaped band in the elderly man's femoral head is the crescent sign of avascular necrosis; the most important risk factors are chronic alcohol use and steroids, and the earliest and most sensitive imaging finding is a low-signal band on T1-weighted MRI. The same logic of blood supply also applies to Kienböck disease of the lunate, which is often combined with ulnar minus variance, meaning a relatively short ulna, because a short ulna causes the lunate to bear excessive stress; treatment therefore pairs a short ulna with a shortened radius, performing radial shortening to redistribute stress evenly, while radial lengthening is the least appropriate choice, since it instead increases pressure and worsens the necrosis. The core of prosthetic joint biomaterials comes down to two needs: the weight-bearing articulating surface must be hard and wear-resistant, and the bone-integrating surface must be biocompatible with elasticity close to bone. So the femoral head uses cobalt-chromium-molybdenum alloy or ceramic, since titanium alloy lacks sufficient hardness for a weight-bearing joint head, while the stem uses titanium alloy because its elasticity is close to bone and its osseointegration is excellent, and the acetabular liner uses ultra-high-molecular-weight polyethylene for its low friction. Bone cement powder is a polymer plus an initiator, and the liquid is the monomer, which must be stored away from light; once mixed, polymerization is an exothermic reaction that can reach seventy to eighty degrees and cause local thermal necrosis of bone tissue. The most lethal complication is bone cement implantation syndrome: at the moment of pressurized filling, unreacted monomer enters the bloodstream, or fat and marrow are forced into the venous system under pressure and cause embolism, producing hypotension, hypoxemia, and shock. The core of prosthetic joint infection prevention is that choosing the right antibiotic matters more than the duration — the first choice is the first-generation cephalosporin cefazolin, given thirty to sixty minutes before skin incision, and discontinued within twenty-four hours after surgery. Osteoporosis is diagnosed by a bone density T-score of negative two point five or lower, and medications split into two camps: the antiresorptive bisphosphonates, denosumab, selective estrogen receptor modulators, and calcitonin all suppress osteoclasts, while the anabolic teriparatide, a parathyroid hormone fragment, actually builds bone when given intermittently at low dose, standing in sharp contrast to the continuous high parathyroid hormone of primary hyperparathyroidism, which instead resorbs it.

Benign bone lesions fall into place once you tie together age, location, and histology: fibrous cortical defect favors the distal femur in a child, eccentric, multilobulated, and radiolucent — the most common benign bone lesion of childhood, and one that resolves on its own; aneurysmal bone cyst favors the tibia in an adolescent, an expansile lytic lesion with a thin bony shell, blood-filled cystic spaces, and osteoclast-like giant cells; inclusion body myositis shows rimmed vacuoles on Gomori trichrome stain with abnormal accumulation of TDP-43, and the key distinguishing features are asymmetric weakness in the elderly and a poor response to steroids. In septic arthritis, the most common organism in children under two and across age groups in general is Staphylococcus aureus, not Salmonella; Salmonella is seen mainly in sickle cell disease, predominantly causing osteomyelitis, neonates under three months require additional coverage for group B Streptococcus and gram-negative rods, and sexually active adolescents should raise suspicion for gonococcus. Renal osteodystrophy follows logically from its mechanism: declining renal function lowers active vitamin D, which in turn causes hypocalcemia, while the kidneys also fail to excrete phosphate, causing hyperphosphatemia; low calcium and high phosphate together with vitamin D deficiency jointly stimulate the parathyroid glands, producing secondary hyperparathyroidism, with parathyroid hormone rising and bone resorption increasing — so calcium is low, phosphate is high, active vitamin D is low, and parathyroid hormone is high, while thyroid hormone has no direct relationship to any of this and is a common unrelated distractor; low-turnover adynamic bone disease is often caused by excessive suppression of parathyroid hormone. The six deep posterior hip external rotators follow the mnemonic piriformis, superior gemellus, obturator internus, inferior gemellus, obturator externus, and quadratus femoris — quadratus femoris is a member, the quadriceps is not, because that is the knee-extensor group on the front of the thigh, and piriformis hypertrophy compressing the sciatic nerve beneath it produces piriformis syndrome. In the muscles of the hand, those with both origin and insertion within the hand are intrinsic, and those with their muscle belly in the forearm are extrinsic, so flexor digitorum profundus and flexor digitorum superficialis are extrinsic muscles, not intrinsic ones; the median nerve supplies LOAF, meaning the first and second lumbricals plus opponens pollicis, abductor pollicis brevis, and the superficial head of flexor pollicis brevis — most of the thenar eminence is median-innervated, but adductor pollicis is the ulnar-nerve exception, and a positive Froment sign tests for its weakness, pointing to ulnar nerve pathology. The logic of digit replantation is that function outweighs simply preserving life or form: strong indications are the thumb, multiple digits, any digit in a child, and amputation at the palm or wrist level, while relative contraindications are a single adult digit in zone II, where the tendon sheath system is complex and function recovers poorly, and a single digit with multiple-level amputation, which is likewise least suitable because microvascular reconstruction is extremely complex. The whole issue closes with one line: having read through this volume on bones, joints, and nerves, you will find that the answer is always to think mechanics or blood supply first and timing second, and the trap is always hiding on the side opposite your first instinct.

🧪 Practice on this topic: 21 questions Taiwan board past papers · in Chinese, with explanations
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★ High-yield points & traps from past exams (3 sections)
Hand Surgery Anatomy and Microsurgical Reconstruction 3 questions
  • 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.
Degenerative Joint Disease and Joint Replacement 8 questions
  • 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.
Musculoskeletal and Soft Tissue Pathology 8 questions
  • 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).
★ Final review: every must-know in this subject (6 sets)
01 · The Collapse of the Ring: Pelvis, Hip, Wrist, and the Acute Phase of Fracture
★ Must-know
Pelvic Fracture
  • 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).
01 · The Collapse of the Ring: Pelvis, Hip, Wrist, and the Acute Phase of Fracture
★ Must-know
Hip Dislocation, Wrist Fractures, and Acute Fracture Care
  • 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).
02 · Ischemia, Acid, and Leakage: The Emergency Chapter Where Time Is Tissue
★ Must-know
Emergency Chapter Must-Know Checklist
  • 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).
03 · The Mechanics of Sports Injury: Ligaments, Tendons, and Nerves in Contention
★ Must-know
Sports Injuries and Nerve Entrapment
  • 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).
04 · From Infancy to Adolescence: The Growth Line of the Pediatric Hip and Spine
★ Must-know
Pediatric Orthopedics and the Spine
  • 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).
05 · Joints, Bone Remodeling, and Biomaterials: Chronic Storms and the Body's Engineering
★ Must-know
Joints, Bone Remodeling, and Biomaterials · Must-Know Checklist
  • 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).
★ High-yield points & traps: 9 exam sections (from the question book)
Pelvic Fractures 4 questions
  • 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.
Spinal Disorders 32 questions
  • 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.
Sports Injuries 34 questions
  • 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).