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在被动屈伸循环中轴向胫骨压缩产生的 ACL 力和膝关节运动学。

ACL forces and knee kinematics produced by axial tibial compression during a passive flexion-extension cycle.

机构信息

Biomechanics Research Section, Department of Orthopaedic Surgery, David Geffen School of Medicine at UCLA, 1000 Veteran Ave Room 21-67, Los Angeles, California.

出版信息

J Orthop Res. 2014 Jan;32(1):89-95. doi: 10.1002/jor.22476. Epub 2013 Aug 31.

Abstract

Application of axial tibial force to the knee at a fixed flexion angle has been shown to generate ACL force. However, direct measurements of ACL force under an applied axial tibial force have not been reported during a passive flexion-extension cycle. We hypothesized that ACL forces and knee kinematics during knee extension would be significantly different than those during knee flexion, and that ACL removal would significantly increase all kinematic measurements. A 500 N axial tibial force was applied to intact knees during knee flexion-extension between 0° and 50°. Contact force on the sloping lateral tibial plateau produced a coupled internal + valgus rotation of the tibia, anterior tibial displacement, and elevated ACL forces. ACL forces during knee extension were significantly greater than those during knee flexion between 5° and 50°. During knee extension, ACL removal significantly increased anterior tibial displacement between 0° and 50°, valgus rotation between 5° and 50°, and internal tibial rotation between 5° and 15°. With the ACL removed, kinematic measurements during knee extension were significantly greater than those during knee flexion between 5° and 45°. The direction of knee flexion-extension movement is an important variable in determining ACL forces and knee kinematics produced by axial tibial force.

摘要

在固定的屈曲角度下对膝关节施加轴向胫骨力已被证明可以产生 ACL 力。然而,在被动屈伸循环期间,尚未报道在施加轴向胫骨力下对 ACL 力进行直接测量。我们假设在膝关节伸展期间,ACL 力和膝关节运动学将与膝关节屈曲期间有明显不同,并且 ACL 切除将显著增加所有运动学测量值。在 0°至 50°之间的膝关节屈伸过程中,向完整的膝关节施加 500N 的轴向胫骨力。在倾斜的外侧胫骨平台上的接触力产生了胫骨的耦合内 + 外翻旋转、胫骨前移位和 ACL 力升高。在膝关节伸展期间,ACL 力明显大于膝关节屈曲期间的力,范围在 5°至 50°之间。在膝关节伸展期间,ACL 切除后,0°至 50°之间的胫骨前移位、5°至 50°之间的外翻旋转以及 5°至 15°之间的胫骨内旋显著增加。在 ACL 切除后,膝关节伸展期间的运动学测量值明显大于膝关节屈曲期间的测量值,范围在 5°至 45°之间。膝关节屈伸运动的方向是决定 ACL 力和轴向胫骨力产生的膝关节运动学的重要变量。

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