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Fracture Overview

Fracture Overview

A fracture is defined as a break in the continuity of a bone.

Fracture Classification

Open vs Closed Fractures

Fracture type Description
Open fracture The fractured bone creates direct communication between the bone and the external environment (i.e. the overlying skin is NOT intact)

Open fracture carries a higher risk of infection

Closed fracture The overlying skin is intact, with no communication between the fracture site and the external environment (the fractured bone did not breach through the skin)

Complete vs Incomplete Fractures

Fracture type Description
Complete fracture The fracture line completely traverses the entire width of the bone, disrupting the cortex circumferentially (all the way around)
Incomplete fracture The fracture line does not traverse completely through the bone, leaving one opposing cortex intact

More common in children

Displaced vs Undisplaced Fractures

Fracture type Description
Displaced fracture Any fracture that loses its normal anatomical alignment between the bone fragments

There are 4 main subtypes of displaced fracture (depending on how the fracture has moved out of place):

  • Angulation (tilt) – occurs when the bone bends away from the normal straight axis, creating an angle at the fracture site
  • Translation (shift) – occurs when the bone fragments slide sideways parallel to one another such that they are no longer in a straight line but remain parallel
  • Rotation (shift) – occurs when one bone fragment twists along its long axis while the other fragment remains fixed (difficult to see on a standard 2D X-ray, often detected on clinical examination)
  • Length changes
    • Shortening (impaction) – bone fragments are pulled towards each other
    • Distraction (gapping) – bone fragments are pulled away from each other
Undisplaced fracture The bone fragments remain in near-normal anatomical alignment

Fracture Pattern

Fracture patterns are based on the visual geometric layout of the bone break:

Fracture pattern Definition Typical mechanism of injury Typical bone involvement
Transverse Fracture line runs perpendicular to the long axis of the bone Direct blunt force Long bones (e.g. radius, ulna, tibia)
Oblique Fracture line runs diagonally across the bone Combination of bending and compression forces Specific long bones (e.g. tibia, fibula, metacarpal / metatarsal)
Spiral Fracture line twists around the shaft of the bone in a spiral / helical pattern

*It can be difficult to distinguish from an oblique fracture, especially on 2D radiographs

Torsional / rotational twisting force Specific long bones (e.g. tibia, fibula, metacarpal / metatarsal)
Avulsion A bone fragment is pulled away from the main bone at the attachment site of a tendon or ligament Sudden traction / pulling force Occurs at tendon / ligament attachment sites (e.g. medial epicondyle of humerus, base of 5th metatarsal, ASIS, malleolus)
Comminuted Bone is broken into more than 2 distinct fragments High-energy crush or impact injury Major long bones (e.g. femur, tibia, humerus)
Impacted One bone fragment is driven into the adjacent fragment, causing the fragments to become wedged together Axial loading along the long axis of the bone Intracapsular NoF fracture, distal radius fracture, proximal humeral fracture, vertebral compression fracture

Cause-Based Classification

Cause Definition Examples
Traumatic fracture Occurs due to an acute external force applied to normal, healthy bone Falls, road traffic accidents, sports injury
Stress fracture Occurs due to repetitive loading over time, causing microdamage to accumulate faster than bone can repair Metatarsal stress fracture in a runner
Fragility fracture Occurs after low-energy trauma that would not normally cause a fracture, usually due to reduced bone strength Osteoporotic NoF or vertebral compression fracture
Pathological fracture Occurs through abnormal bone that has been weakened by an underlying disease Fracture through bone metastasis, primary bone tumour or bone cyst

Paediatric Fracture Patterns

Fracture type Description
Greenstick fracture An incomplete fracture where one side of the bone breaks while the opposite cortex bends
Buckle / torus fracture An incomplete compression injury where the cortex buckles without a complete break through the bone
Physeal fracture A fracture involving the growth plate. This is clinically important because growth plate injury may affect future bone growth

Classified using the Salter-Harris classification (higher grades are associated with more severe injuries):

  • Type I = through the growth plate
  • Type II = through the growth plate and metaphysis
  • Type III = through the growth plate and epiphysis
  • Type IV = through the growth plate, epiphysis, and metaphysis
  • Type V = crush injury to the growth plate

Clinical Features

Fractures typically present as:

  • Pain
  • Swelling
  • Tenderness
  • Deformity
  • Loss of function
  • Reduced ROM
  • Inability to weight bear (in lower limb fractures)

Assessment and Diagnosis

Clinical assessment:

  • Assess distal neurovascular status
    • Nerve injury suggested by change in sensory / paraesthesia / weakness
    • Vascular injury suggested by delayed capillary refill time / weak pulse / cold skin
  • Check for compartment syndrome (suggested by severe pain out of proportion or severe pain on passive stretch)
  • Assess joint above and below

1st line investigation: plain X-ray

  • If X-ray is inconclusive, CT may be considered (but not routinely necessary)

Complications

Acute complications
  • Haemorrhage (esp. in pelvic fracture)
  • Neurovascular injury
  • Compartment syndrome
  • Fracture-dislocation
  • Soft tissue injury (e.g. muscle, tendons, ligaments, skin)
  • Visceral injury (e.g. pelvic fracture causing bladder / urethral injury, rib fracture causing pneumothorax)
Early complications
  • Infection (esp. in open fracture)
  • Fat embolism syndrome
    • Associated with long bone fractures, esp. femoral shaft fractures
    • Classic triad of respiratory distress + neurological dysfunction + petechial rash
  • Complications from reduced mobility
Long-term complications Healing-related complications:

  • Delayed union (fracture takes longer to heal than expected)
  • Non-union (fracture fails to heal adequately)
  • Malunion (fracture heals in an abnormal position)
  • Avascular necrosis (disrupted blood supply causing bone death, important in scaphoid and NoF fractures)

Other complications:

  • ↑ Risk of OA
  • Chronic pain
  • Complex regional pain syndrome
  • Reduced function

In children, fractures affecting the growth plate (physeal fractures) can affect future bone growth

Management

General management principles:

  • A-E assessment for major trauma
  • Analgesia
  • Immobilise the limb to prevent further soft tissue or neurovascular injury
  • Reduction and/or fixation

Reduction and Fixation

Reduction and fixation are 2 related but separate management principles in orthopaedics:

  • Reduction = attempting to restore the fracture fragments into anatomical position
  • Fixation = keeping the fracture fragments in position while healing occurs

Types of reduction:

  • Closed reduction: fracture is manipulated back into position without surgically exposing the bone (e.g. manipulation of a displaced distal radial fracture)
    • Often followed by cast, splint, brace or sling
  • Open reduction: fracture is surgically exposed to allow direct visualisation and realignment (e.g. managing a NoF fracture)

Types of fixation:

  • Internal fixation: metal work is placed inside the body to hold the bone fragments in place (e.g. plates, screws, intramedullary nails, wires)
  • External fixation: screws or wires are inserted through the skin directly into the bone fragment, which are then connected to a metal frame on the outside of the body
    • Primarily used in severe fractures, fractures with extensive soft tissue damage, limb lengthening and deformity correction, temporary stabilisation (until oedema resolves and internal fixation can be safely performed)

Key indications for open reduction internal fixation (ORIF):

  • Failed closed reduction
  • Open fracture
  • Unstable fracture
  • Significantly displaced fracture
  • Intra-articular fracture
  • Neurovascular compromise
  • Fracture-dislocation
  • Multiple fractures / polytrauma

Open Fracture Management

Open fracture is an orthopaedic emergency due to infection risk:

  • Urgent IV empirical antibiotics
  • Check tetanus status (see the Tetanus Prophylaxis article for more information)
  • Urgent orthopaedic referral for surgical debridement and washout

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