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Distal Radial Fracture

NICE guideline [NG38] Fractures (non-complex): assessment and management. Published: Feb 2016.

BRITISH ORTHOPAEDIC ASSOCIATION AUDIT STANDARDS for TRAUMA The Management of Distal Radial Fractures. Dec 2017.

Distal Radial Fracture

Types and Classification

The most important types: [Ref]

Distal radial fracture type Mechanism of injury Description
Colles’ fracture – most common FOOSH onto an extended wrist An extra-articular fracture with dorsal angulation of the distal fragment

This may produce the typical “dinner fork” deformity

Smith’s fracture FOOSH onto a flexed wrist An extra-articular fracture with volar angulation of the distal fragment

This may produce the typical “garden spade” deformity

Note: These fracture patterns are named according to the direction of displacement of the distal fragment (i.e. the fracture fragment closer to the hand/fingers)

Other fracture patterns: [Ref]

Distal radial fracture type Description
Barton fracture An intra-articular fracture of the distal radius

It can be classified as dorsal Barton or volar Barton, depending on the direction of displacement.

Chauffeur’s fracture An intra-articular fracture of the distal radius involving the radial styloid process
Galeazzi fracture-dislocation radial shaft fracturedistal radioulnar joint dislocation

Monteggia fracture-dislocation is often mentioned together with Galeazzi, which is a proximal ulnar fracture + proximal radial head dislocation

Causes and Risk Factors

Distal radius fractures can occur after any trauma to the wrist, but the most common mechanism is fall on outstretched hand (FOOSH) [Ref]

Distal radial fracture has a bimodal age distribution: [Ref]

  • 1st peak at <18 y/o
    • Usually due to higher-energy trauma, e.g. sports injuries or falls
    • More common in males
  • 2nd peak at >50 y/o
    • Usually due to low-energy trauma, e.g. a simple fall from standing height
    • More common in females
    • Osteoporosis is an important risk factor
    • Distal radial fracture is the 2nd most common fracture in the elderly, after hip fractures

Clinical Features

Patients typically present after a FOOSH with:

  • Acute wrist pain (→ reduced wrist movement)
  • Reduced grip strength or difficulty using the hand
  • Swelling around the wrist / distal radius
  • Tenderness over the distal radius
  • Bruising around the wrist or forearm

Visible deformities may be seen, such as:

  • “Dinner fork” deformity in Colles’ fracture
  • “Garden spade” deformity in Smith’s fracture

Visible deformity is not always present or obvious. Therefore, before imaging is performed, it may be difficult to determine the specific type of distal radius fracture clinically.

Investigation and Diagnosis

Clinical assessment should include:

  • Assess skin integrity (to check for open fractures)
  • Distal neurovascular assessment
  • Assess the ulna
  • Assess the joints above and below

1st line investigation: X-ray of the wrist (lateral and posteroanterior views)

  • Colles’ fracture = extra-articular fracture with dorsal angulation of the distal segment
  • Smith’s fracture = extra-articular fracture with volar angulation of the distal segment

Management

Important: If there is any disruption to skin integrity, the fracture should be treated as an open fracture and managed differently.

An open fracture is an orthopaedic emergency due to the high risk of infection. It requires immediate empirical IV antibiotics, urgent orthopaedic assessment, and surgical debridement with fracture stabilisation where indicated.

Initial Management

Perform closed reduction under regional anaesthesia

  • The reduction technique depends on the type of radial fracture
  • The 3-step disimpaction, traction and manipulation is typically used to reduce Colles’ fracture (see the YouTube link for more information)

Definitive Management

Management of Colles’ fracture (or other dorsally displaced fractures):

  • Conservative management should be offered to≥65 y/o if there are no other indications for operative management (see below)
  • Conservative management typically involves
    • Closed reduction (manipulation), followed by
    • Casting the wrist in neutral flexion (usually with a below-elbow cast)
    • Mobilisation should begin 4 weeks after the injury
  • Rationale: in geriatric patients, operative management does NOT improve long-term patient-reported outcome compared to non-operative management [Ref]

Indications for operative management:

Universal indications for surgery (regardless of age and type of fracture) ANY of the following:

  • Open fractures
  • Volar displacement (e.g. Smith’s fracture)
  • Presence of neurological compromise
  • Failure of conservative management (e.g. fracture re-displaces following initial closed reduction)
Threshold for surgery is lower in non-geriatric patients (<65 y/o) ANY of the following: [Ref]

  • Intra-articular displacement or step-off >2 mm
  • Post-reduction radial shortening >3 mm
  • Dorsal tilt >10 degrees

Choice of surgical management:

  • Dorsally displaced fractures (e.g. Colles’ fracture) → K-wire fixation (if there is no fracture of the articular surface of the radial carpal joint, or the displacement can be successfully reduced by closed reduction)
    • If closed reduction of the displacement is not possible → open reduction and plate fixation)
  • Volarly displaced fractures (e.g. Smith’s fracture) → open reduction and plate fixation

Management in Children (Skeletally Immature)

In children (skeletally immature) with dorsally displaced distal radius fractures (including fractures involving a growth plate) who have undergone manipulation, consider:

  • Below-elbow plaster cast, or
  • K-wire fixation if the fracture is completely displaced

References

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