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人体膝关节在体内因内翻/外翻及轴向力矩产生的旋转灵活性。

Rotational flexibility of the human knee due to varus/valgus and axial moments in vivo.

作者信息

Mills O S, Hull M L

机构信息

Department of Mechanical Engineering, University of California, Davis 95616.

出版信息

J Biomech. 1991;24(8):673-90. doi: 10.1016/0021-9290(91)90332-h.

Abstract

Knee ligamentous injuries persist in the sport of Alpine skiing. To better understand the load mechanisms which lead to injury, pure varus/valgus and pure axial moments were applied both singly and in combination to the right knees of six human test subjects. The corresponding relative knee rotations in three degrees of freedom were measured. Knee flexion angles for each test subject were 15 and 60 degrees for the individual moments and 60 degrees for the combination moments. For both knee flexion angles the hip flexion angle was 0 degrees. Leg muscles were quiescent and axial force was minimal during all tests. Tables of data include sample statistics for each of four flexibility parameters in each loading direction. Data were analyzed statistically to test for significant differences in flexibility parameters between the test conditions. In flexing the knee from 15 to 60 degrees, the resulting knee rotations under single moments depended upon flexion angle with varus, valgus, and internal rotations increasing significantly. Also, rotations were different depending on load direction; varus rotation was significantly different and greater than valgus rotation at both flexion angles. Also external rotation was significantly different and greater than internal at 15 degrees flexion, but not at 60 degrees flexion. Coupled rotations under single moments were also observed. Applying pure varus/valgus moments resulted in coupled external/internal rotations which were inconsistent and hence not significant. Applying pure axial moments resulted in consistent and hence significant varus/valgus rotations; an external axial moment induced varus rotation and an internal axial moment induced valgus rotation. For combination moments, varus/valgus rotations decreased significantly from those rotations at similar load levels in the single moment studies. Also, a varus moment significantly increased external rotation and a valgus moment significantly decreased internal rotation. These differences indicate significant interaction between corresponding load combinations. These results suggest that load interaction is a potentially important phenomenon in knee injury mechanics.

摘要

膝关节韧带损伤在高山滑雪运动中依然存在。为了更好地理解导致损伤的负荷机制,分别单独以及联合对六名人体试验对象的右膝施加单纯内翻/外翻和单纯轴向力矩。测量了三个自由度下相应的膝关节相对旋转情况。每个试验对象在单独力矩作用下的膝关节屈曲角度为15度和60度,在联合力矩作用下为60度。在所有测试过程中,两个膝关节屈曲角度下的髋关节屈曲角度均为0度。腿部肌肉处于静止状态,且轴向力在所有测试中均最小。数据表格包括每个加载方向上四个柔韧性参数各自的样本统计量。对数据进行统计学分析,以检验测试条件之间柔韧性参数的显著差异。在将膝关节从15度屈曲至60度的过程中,单独力矩作用下产生的膝关节旋转取决于屈曲角度,内翻、外翻和内旋均显著增加。此外,旋转情况因负荷方向而异;在两个屈曲角度下,内翻旋转均显著不同且大于外翻旋转。同样,在15度屈曲时,外旋显著不同且大于内旋,但在60度屈曲时并非如此。在单独力矩作用下也观察到了耦合旋转。施加单纯内翻/外翻力矩会导致不一致的外旋/内旋耦合,因此不显著。施加单纯轴向力矩会导致一致且因此显著的内翻/外翻旋转;外部轴向力矩会引起内翻旋转,而内部轴向力矩会引起外翻旋转。对于联合力矩,内翻/外翻旋转相较于单力矩研究中相似负荷水平下的旋转显著减小。此外,内翻力矩显著增加外旋,外翻力矩显著减小内旋。这些差异表明相应负荷组合之间存在显著相互作用。这些结果表明负荷相互作用在膝关节损伤力学中可能是一个重要现象。

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