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下肢正常的轴向排列及膝关节的负重分布。

Normal axial alignment of the lower extremity and load-bearing distribution at the knee.

作者信息

Hsu R W, Himeno S, Coventry M B, Chao E Y

机构信息

Department of Orthopedics, Mayo Clinic/Mayo Foundation, Rochester, Minnesota 55905.

出版信息

Clin Orthop Relat Res. 1990 Jun(255):215-27.

PMID:2347155
Abstract

Based on a series of 120 normal subjects of different gender and age, the geometry of the knee joint was analyzed using a full-length weight-bearing roentgenogram of the lower extremity. A special computer program based on the theory of a rigid body spring model was applied to calculate the important anatomic and biomechanical factors of the knee joint. The tibiofemoral mechanical angle was 1.2 degrees varus. Hence, it is difficult to rationalize the 3 degree varus placement of the tibial component in total knee arthroplasty suggested by some authors. The distal femoral anatomic valgus (measured from the lower one-half of the femur) was 4.2 degrees in reference to its mechanical axis. This angle became 4.9 degrees when the full-length femoral anatomic axis was used. When simulating a one-legged weight-bearing stance by shifting the upper-body gravity closer to the knee joint, 75% of the knee joint load passed through the medial tibial plateau. The knee joint-line obliquity was more varus in male subjects. The female subjects had a higher peak joint pressure and a greater patello-tibial Q angle. Age had little effect on the factors relating to axial alignment of the lower extremity and load transmission through the knee joint.

摘要

基于120名不同性别和年龄的正常受试者,利用下肢全长负重X线片分析膝关节的几何结构。应用基于刚体弹簧模型理论的特殊计算机程序来计算膝关节重要的解剖学和生物力学因素。胫股机械角为内翻1.2度。因此,一些作者建议的全膝关节置换术中胫骨部件3度内翻放置难以自圆其说。股骨远端解剖外翻角(从股骨下半部测量)相对于其机械轴为4.2度。当使用股骨全长解剖轴时,这个角度变为4.9度。通过将上半身重力更靠近膝关节移动来模拟单腿负重站立时,75%的膝关节负荷通过胫骨内侧平台。男性受试者的膝关节线倾斜度更内翻。女性受试者的关节压力峰值更高,髌胫Q角更大。年龄对与下肢轴向排列及通过膝关节的负荷传递相关的因素影响不大。

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