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Explore orthopaedics as connected knowledge

Search verified OrthoNotes topics and open their connected cases, MCQs, resources, and atlas entries.

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122 visible knowledge nodes in trauma

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Ideberg Classification — Glenoid Fractures

Types I–V: rim (anterior/posterior), transverse, and complex intra-articular patterns. Large articular fragments or instability need ORIF; small rim fractures stable may be non-op.

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Ilizarov Technique — Principles

Tension‑stress effect: gradual distraction (≈1 mm/day in 4 steps) after corticotomy induces regenerate bone and soft‑tissue adaptation. Circular fixator with tensioned wires permits multiplanar stability and early weight bearing. Phases: latency (5–7 d), distraction, consolidation; rate/rhythm critical to regenerate quality. Indications: nonunion (infected), bone loss (transport), deformity correction, limb lengthening. Complications: pin site infection, joint contractures, poor regenerate, psyc...

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Intercondylar Distal Humerus Fractures

T- or Y-shaped intra-articular fractures of the distal humerus. Most common in young adults (high energy) and elderly osteoporotic (low energy). Require anatomic articular reduction, stable fixation, and early mobilization. Olecranon osteotomy gives best exposure to articular surface. Fixation principles: two-column plating—orthogonal (90°) or parallel (180°).

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Intertrochanteric Fractures — AO/OTA

AO 31-A: A1 simple, A2 comminuted, A3 reverse oblique. Implants: DHS for stable A1/A2, CMN for unstable A2/A3. TAD

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Judet–Letournel — Acetabular Fractures

Elementary: posterior wall/column, anterior wall/column, transverse. Associated: posterior column+wall, transverse+posterior wall, T-shaped, anterior column/posterior hemitransverse, both-column. Determines approach (posterior vs anterior/Stoppa) and fixation strategy.

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Kirschner Wire (K-Wire) — Principles, Techniques & Applications

Comprehensive guide to Kirschner wire (K-wire) principles in orthopaedic surgery covering wire properties and sizes, biomechanical principles of fixation, insertion techniques, clinical applications by region, tension band wiring principle, complications including pin tract infection and thermal necrosis, and wire removal.

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Knee Arthroscopy — Portals, Operative Steps & Complications

Comprehensive guide to knee arthroscopy covering indications, patient positioning, standard and accessory portals with anatomical landmarks, the 10-point systematic diagnostic examination, operative steps for meniscal surgery, ACL reconstruction, and chondral procedures, and a full complication profile including neurovascular injury, instrument breakage, and post-operative stiffness.

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Knee Dislocation — Vascular Workup

High-energy injury with high risk of popliteal artery injury (10–40%). Urgent reduction and splinting; check pulses + ABI. If ABI

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Lauge–Hansen Mechanism — Ankle

SA (supination-adduction): lat avulsion → vertical medial fx. SER (supination-external rotation): ATFL → fibula at level → posterior → medial (most common). PA (pronation-abduction), PER (pronation-external rotation) sequences predict associated injuries.

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Levine–Edwards — Hangman’s (Traumatic Spondylolisthesis of Axis)

Type I: 3 mm and/or angulation (disc injury) — traction/halo or surgery. Type IIa: flexion–distraction variant (marked angulation). Type III: with C2–3 facet dislocation — unstable, surgical.

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Lisfranc Injuries

Lisfranc joint = tarsometatarsal articulation; key stabilizer = Lisfranc ligament (medial cuneiform to 2nd MT base). Mechanism: axial load with plantar flexion/twist. Diagnosis: widening between 1st–2nd MT, fleck sign; CT confirms. Treatment: stable injuries = cast; displaced = ORIF (screws/plates) or fusion. Complications: post-traumatic arthritis, chronic pain.

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Lumbar Disc Herniation — Classification, Diagnosis & Management

Comprehensive guide to lumbar disc herniation covering disc anatomy and pathology, morphological classification (protrusion, extrusion, sequestration), dermatomal levels, clinical syndromes by level, Macnab outcome criteria, conservative and surgical management including microdiscectomy, and cauda equina syndrome as a surgical emergency.

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Malunion and Nonunion — Biology & Management

Malunion = fracture healing in unacceptable position (angulation, rotation, shortening, translation). Nonunion = failure of fracture to heal in expected time (9 months with no signs of healing for 3 months). Biological vs mechanical causes; infection as a major impediment. Hypertrophic (good biology, poor mechanics) vs atrophic (poor biology) nonunion. Workup: history, exam, radiographs, lab workup for infection; advanced imaging if required. Management: restore stability and biology — fixation,...

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Malunion Correction — Principles

Malunion = fracture healed in unacceptable alignment causing functional, cosmetic, or biomechanical issues. Decision to correct depends on symptoms, joint at risk, magnitude/plane of deformity, and patient goals. Thorough planning with long‑leg alignment views, scanogram, and CT rotational profile is essential. Osteotomy at CORA restores axis with least translation; fixation by plate, nail, or circular frame. Common techniques: closing wedge, opening wedge (needs graft), dome, step‑cut, and grad...

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Mangled Extremity Severity Score (MESS)

Score based on skeletal/soft tissue injury, ischemia, shock, age. Ischemia >6 h doubles points. MESS ≥7 → amputation likely. Adjunct tool; not absolute.

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Mayo Classification — Olecranon Fractures

Type I: nondisplaced (A noncomminuted / B comminuted). Type II: displaced but stable (A/B). Type III: displaced and unstable (A/B). Type I conservative; II–III usually require fixation; III needs stability restoration.

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Medial Clavicle Physeal Injury (Pseudodislocation) — Pattern

Physeal separation of medial clavicle mimics SCJ dislocation — the physis is weaker than ligaments in children. Posterior displacement threatens mediastinal structures — requires urgent reduction (often operative). CT is essential to distinguish true SCJ dislocation from physeal injury.

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Metatarsal & Phalangeal Fractures

1st metatarsal fractures affect medial column; greater functional impact. 5th metatarsal: distinguish avulsion (zone 1), Jones (zone 2), and diaphyseal stress (zone 3). Multiple metatarsals/malalignment → operative fixation to restore parabola. Toe phalangeal fractures usually non-op; intra‑articular big toe injuries may need fixation. Athletes with Jones/stress fractures often benefit from early fixation.

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Meyers–McKeever (± Zaricznyj) — Tibial Spine (ACL Avulsion)

Type I: Minimally displaced avulsion. Type II: Hinge of posterior fibers intact (anterior lift) — may reduce closed; fixation if interposed tissue. Type III: Completely displaced fragment — requires reduction and fixation. Type IV (Zaricznyj): Comminuted fragment — fixation with sutures/screws after debridement.

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Milch / Jakob–Weiss — Lateral Condyle Humerus Fractures

Milch Type I: Fracture line lateral to trochlear groove (through capitellum–trochlear junction) — more stable. Milch Type II: Fracture line extends into trochlea — less stable (risk of displacement). Jakob/Weiss Displacement Staging: I (

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Myositis Ossificans

Heterotopic ossification in muscle after trauma or neurological injury. Common sites: quadriceps, brachialis, adductors. Symptoms: painful swelling → hard mass, ↓ROM. Radiology: peripheral calcification with central lucency (zoning). Treatment: rest, NSAIDs, physio; excision after maturation (>6–12 mo).

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Navicular & Cuboid Fractures

Tarsal navicular: body, tuberosity, and stress fractures; critical for medial column length and talonavicular congruity. Cuboid: 'nutcracker' fracture from forefoot abduction; lateral column length is key. Imaging: weight-bearing AP/lat/oblique + CT; MRI for stress fractures. Indications for surgery: displacement >2 mm, articular incongruity, medial/lateral column shortening, and instability with Lisfranc involvement. Fixation: screws/mini-plates for navicular; bridging plate/ex-fix for cuboid r...

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Nonunion — Weber & Cech Classification

Viable (hypertrophic/oligotrophic) vs non‑viable (atrophic, necrotic, defect, comminuted). Radiographic callus indicates biology; absence suggests poor biology. Guides treatment: stability alone for viable; add graft/biologics for non‑viable. viable → improve stability; nonviable → improve stability + add biology.

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Nonunion & Bone Transport — Ilizarov

Ilizarov fixator allows bone transport for segmental loss. Principle: distraction osteogenesis by gradual tension on callus. Indications: infected nonunion, bone loss, deformity correction. Protocol: latency 5–7 days, distraction 1 mm/day (0.25×4). Complications: pin site infection, joint stiffness, regenerate problems.

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