Current Concepts in the Management of Freiberg’s Infraction
High-Yield Summary
- Freiberg’s infraction is a osteochondrosis of the metatarsal head, most commonly affecting the second metatarsal in adolescent females, presenting with forefoot pain and limited dorsiflexion.
- Early diagnosis with weight-bearing radiographs and MRI is critical to prevent progression to subchondral collapse and joint incongruity.
- Surgical intervention is indicated for advanced stages with persistent pain, deformityor mechanical symptoms after failed conservative management.
- Joint-preserving procedures, including dorsal closing wedge osteotomy and debridement, are preferred over salvage arthrodesis in younger patients to maintain metatarsophalangeal (MTP) joint function.
- Surgical success depends on restoring metatarsal length, realigning the articular surfaceand minimizing soft tissue disruption.
Clinical Fundamentals
Freiberg’s infraction involves avascular necrosis of the metatarsal head, predominantly the second metatarsal, due to repetitive microtrauma and compromised vascular supply. The second metatarsal bears significant load during gait, especially in the propulsive phase, making it vulnerable to ischemic injury. The metatarsophalangeal joint is a condylar synovial joint permitting dorsiflexion and plantarflexion critical for toe-off mechanics. Epidemiologically, adolescent females aged 13-18 are most affected, likely due to biomechanical factors such as long second metatarsals and footwear choices. The disease progresses through ischemia, subchondral collapseand secondary osteoarthritis, impacting surgical decision-making by emphasizing early intervention to preserve joint congruity.
Classification & Diagnosis
| Classification System | Description | Clinical Relevance |
|---|---|---|
| Smillie Classification | Five stages from early ischemia (Stage I) to joint arthrosis (Stage V) | Guides timing of surgery; stages III-V often require operative intervention |
| Gauthier Classification | Focuses on radiographic changes and joint surface involvement | Helps differentiate candidates for joint-preserving vs. salvage procedures |
Diagnostic Pearls: Weight-bearing AP, obliqueand lateral foot radiographs are essential to assess metatarsal head collapse and joint space narrowing. MRI is superior for early detection of bone marrow edema and cartilage integrity. Common pitfalls include misdiagnosing as metatarsalgia or stress fracture, delaying treatment and worsening prognosis.
Decision-Making Algorithm
Non-operative management is first-line for Smillie Stages I and II, emphasizing activity modification, offloading with orthoses, NSAIDsand physical therapy. Surgery is indicated for:
- Persistent pain beyond 3-6 months despite conservative care
- Radiographic progression to Stage III or higher with subchondral collapse
- Mechanical symptoms such as joint locking or instability
- Significant metatarsal shortening or deformity causing altered biomechanics
Surgical options depend on disease stage and patient factors:
- Joint-preserving dorsal closing wedge osteotomy realigns the articular surface, restores lengthand offloads the necrotic area.
- Debridement and microfracture address cartilage defects in early collapse.
- Resection arthroplasty or arthrodesis reserved for end-stage arthritis or failed joint-preserving surgery.
Implant choice favors low-profile screws or headless compression screws to minimize soft tissue irritation and maintain fixation stability.
Surgical Mastery & Pearls
Step 1: Patient positioning supine with a bump under the ipsilateral hip to facilitate lateral access.
Step 2: Dorsal longitudinal incision centered over the affected metatarsal head, careful dissection to preserve extensor tendons and neurovascular bundles.
Step 3: Capsulotomy to expose the metatarsal head; assess cartilage viability and extent of necrosis.
Step 4: Perform dorsal closing wedge osteotomy proximal to the metatarsal head to elevate and realign the articular surface, restoring joint congruity and length.
Step 5: Fixation with headless compression screws placed perpendicular to the osteotomy plane to optimize compression and minimize hardware prominence.
Step 6: Thorough irrigation and layered closure; consider local soft tissue augmentation if capsular deficiency is present.
Intraoperative Red Flags: Excessive soft tissue stripping risks avascular necrosis progression; inadequate osteotomy correction leads to persistent deformity; hardware prominence can cause extensor tendon irritation.
Evidence-Based Synthesis
Recent studies emphasize early MRI diagnosis to initiate timely conservative management, reducing progression to advanced stages. Comparative analyses show dorsal closing wedge osteotomy yields superior functional outcomes and pain relief compared to resection arthroplasty, particularly in patients under 25 years with Smillie Stage III or IV. However, randomized controlled trials remain limitedand some retrospective data suggest arthrodesis may be preferable in severe joint destruction or older patients. The role of biologics such as platelet-rich plasma remains investigational, with no consensus on efficacy. Current evidence supports a tailored approach balancing joint preservation with symptom relief, underscoring the need for prospective multicenter trials to refine surgical indications.
Master Class Pro-Tip
Optimize osteotomy planning using preoperative weight-bearing CT to precisely quantify metatarsal head collapse and deformity. Intraoperative fluoroscopy combined with direct visualization ensures accurate wedge resection and realignment. Preserve the dorsal metatarsal artery and minimize capsular disruption to maintain residual vascularity. When fixation is challenging due to small fragment size, consider adjunctive bioabsorbable pins to supplement screw fixation and reduce hardware-related complications. Mastery in balancing aggressive correction with soft tissue preservation distinguishes the expert surgeon in managing Freiberg’s infraction.
Last Updated on August 2, 2026 by OrthoNet AI










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