4.0 Article

Quantifying Achievable Levels of Improvement in Knee Joint Biomechanics During Gait After Total Knee Arthroplasty Relative to Osteoarthritis Severity

期刊

JOURNAL OF APPLIED BIOMECHANICS
卷 37, 期 2, 页码 130-138

出版社

HUMAN KINETICS PUBL INC
DOI: 10.1123/jab.2020-0051

关键词

knee replacement; multivariate; function; human movement

资金

  1. Canadian Institutes for Health Research
  2. Nova Scotia Health Research Foundation
  3. Dalhousie University Department of Surgery
  4. Canadian Foundation for Innovation

向作者/读者索取更多资源

The study found that TKA surgery improves knee biomechanics to levels consistent with moderate OA, with the knee adduction moment and angle being significant contributors to this improvement.
Total knee arthroplasty (TKA) surgery improves knee joint kinematics and kinetics during gait for most patients, but a lack of evidence exists for the level and incidence of improvement that is achieved. The objective of this study was to quantify patient-specific improvements in knee biomechanics relative to osteoarthritis (OA) severity levels. Seventy-two patients underwent 3-dimensional (3D) gait analysis before and 1 year after TKA surgery, as well as 72 asymptomatic adults and 72 with moderate knee OA. A combination of principal component analysis and discriminant analyses were used to categorize knee joint biomechanics for patients before and after surgery relative to asymptomatic, moderate, and severe OA. Post-TKA, 63% were categorized with knee biomechanics consistent with moderate OA, 29% with severe OA, and 8% asymptomatic. The magnitude and pattern of the knee adduction moment and angle (frontal plane features) were the most significant contributors in discriminating between pre-TKA and post-TKA knee biomechanics. Standard of care TKA improves knee biomechanics during gait to levels most consistent with moderate knee OA and predominately targets frontal plane features. These results provide evidence for the level of improvement in knee biomechanics that can be expected following surgery and highlight the biomechanics most targeted by surgery.

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