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Acetabulum Fractures: Classification and Management.

Letournel·Clin Orthop Relat Res·1980·715 citations·Trauma
PubMed
SummaryAbstract on PubMed →

Letournel's landmark 1980 series synthesizes 22 years and 647 acetabular fractures to establish the definitive ten-type classification system. The paper answers two questions: how fracture anatomy determines surgical approach, and what reduction quality means for long-term hip function. With 582 operative cases, it remains the foundational reference for every acetabular fracture decision.

Study Snapshot

Design
Classification case series
Setting: Single center, Paris
Objective
Whether acetabular fractures can be classified into reproducible elementary and associated types
Outcome(s)
Clinical result (d'Aubigne-Postel) correlated with reduction quality
Subjects
647 acetabular fractures (582 operated)
Follow-up
2–21 years

Key Findings

  • The ten fracture types divide into two mechanically distinct groups — elementary (single disruption) and associated (combined disruptions) — each containing five patterns:
    –Elementary: posterior wall (24.2%), posterior column (4.1%), anterior wall (2.3%), anterior column (4.1%), transverse (8.6%)
    –Associated: transverse + posterior wall (20.7%), both columns (20.2%), T-shaped (6.6%), anterior + hemitransverse (5.7%), posterior column + wall (2.7%)
  • Anatomic reduction was achieved in 72.9% of cases operated within three weeks, but success rates fall sharply with fracture complexity:
    –Posterior wall: 91%
    –Anterior fractures: 75%
    –T-shaped: 69%
    –Both columns: 62% (hardest to reduce)
  • Reduction quality produces the steepest outcome gradient in the series: perfect reduction yielded 84% very good results, while technical failure yielded 0% very good results — making anatomic restoration the single most consequential intraoperative decision.
  • Osteoarthrosis developed in 5.4% of perfectly reduced fractures versus 30.7% of imperfectly reduced fractures — a sixfold difference that quantifies exactly what is surrendered when an imperfect result is accepted.
  • Flexing the knee and applying transcondylar traction during the Kocher-Langenbeck approach reduced sciatic palsy from 18.4% to 6.5% — most palsy is retractor compression, not surgical trauma, and is therefore preventable.
Board PearlAcetabular osteoarthrosis occurs in 5.4% after perfect reduction versus 30.7% after imperfect reduction — pursue anatomic restoration or accept conservative care.

Clinical Relevance

Every acetabular fracture you classify, approach, and reduce follows a framework built from this paper.

The core decision rule is unambiguous: pursue perfect anatomic reduction when operating, because imperfect reduction produces osteoarthrosis at six times the rate of perfect reduction (30.7% vs. 5.4%). In cases where true anatomic reduction cannot be guaranteed, the paper provides a legitimate alternative: apparent congruence — fragments reconstituted around a displaced head. Produced very good results in 7 of 9 cases and can justify nonoperative management.

Approach selection follows directly from fracture classification: Posterior wall, posterior column, transverse + posterior wall. Kocher-Langenbeck Anterior wall, anterior column, anterior + hemitransverse. Ilioinguinal T-shaped and both-column fractures often require staged or combined approaches.

One technical pearl worth ingraining: flex the knee and apply transcondylar traction during every Kocher-Langenbeck case. It dropped sciatic palsy from 18% to 6% in this series and the principle still applies today.

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Acetabulum Fractures: Classification and Management.

Letournel·Clin Orthop Relat Res·1980·715 citations·Trauma
PubMed
SummaryAbstract on PubMed →

Letournel's landmark 1980 series synthesizes 22 years and 647 acetabular fractures to establish the definitive ten-type classification system. The paper answers two questions: how fracture anatomy determines surgical approach, and what reduction quality means for long-term hip function. With 582 operative cases, it remains the foundational reference for every acetabular fracture decision.

Study Snapshot

Design
Classification case series
Setting: Single center, Paris
Objective
Whether acetabular fractures can be classified into reproducible elementary and associated types
Outcome(s)
Clinical result (d'Aubigne-Postel) correlated with reduction quality
Subjects
647 acetabular fractures (582 operated)
Follow-up
2–21 years

Key Findings

  • The ten fracture types divide into two mechanically distinct groups — elementary (single disruption) and associated (combined disruptions) — each containing five patterns:
    –Elementary: posterior wall (24.2%), posterior column (4.1%), anterior wall (2.3%), anterior column (4.1%), transverse (8.6%)
    –Associated: transverse + posterior wall (20.7%), both columns (20.2%), T-shaped (6.6%), anterior + hemitransverse (5.7%), posterior column + wall (2.7%)
  • Anatomic reduction was achieved in 72.9% of cases operated within three weeks, but success rates fall sharply with fracture complexity:
    –Posterior wall: 91%
    –Anterior fractures: 75%
    –T-shaped: 69%
    –Both columns: 62% (hardest to reduce)
  • Reduction quality produces the steepest outcome gradient in the series: perfect reduction yielded 84% very good results, while technical failure yielded 0% very good results — making anatomic restoration the single most consequential intraoperative decision.
  • Osteoarthrosis developed in 5.4% of perfectly reduced fractures versus 30.7% of imperfectly reduced fractures — a sixfold difference that quantifies exactly what is surrendered when an imperfect result is accepted.
  • Flexing the knee and applying transcondylar traction during the Kocher-Langenbeck approach reduced sciatic palsy from 18.4% to 6.5% — most palsy is retractor compression, not surgical trauma, and is therefore preventable.
Board PearlAcetabular osteoarthrosis occurs in 5.4% after perfect reduction versus 30.7% after imperfect reduction — pursue anatomic restoration or accept conservative care.

Clinical Relevance

Every acetabular fracture you classify, approach, and reduce follows a framework built from this paper.

The core decision rule is unambiguous: pursue perfect anatomic reduction when operating, because imperfect reduction produces osteoarthrosis at six times the rate of perfect reduction (30.7% vs. 5.4%). In cases where true anatomic reduction cannot be guaranteed, the paper provides a legitimate alternative: apparent congruence — fragments reconstituted around a displaced head. Produced very good results in 7 of 9 cases and can justify nonoperative management.

Approach selection follows directly from fracture classification: Posterior wall, posterior column, transverse + posterior wall. Kocher-Langenbeck Anterior wall, anterior column, anterior + hemitransverse. Ilioinguinal T-shaped and both-column fractures often require staged or combined approaches.

One technical pearl worth ingraining: flex the knee and apply transcondylar traction during every Kocher-Langenbeck case. It dropped sciatic palsy from 18% to 6% in this series and the principle still applies today.

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