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腘绳肌内外侧力量及力量比值的变化会影响胫股关节运动学。

Variations in medial-lateral hamstring force and force ratio influence tibiofemoral kinematics.

作者信息

Shalhoub Sami, Fitzwater Fallon G, Cyr Adam J, Maletsky Lorin P

机构信息

Bioengineering Graduate Program, University of Kansas, Lawrence, Kansas, 66045.

Department of Mechanical Engineering, University of Kansas, Lawrence, Kansas, 66045.

出版信息

J Orthop Res. 2016 Oct;34(10):1707-1715. doi: 10.1002/jor.23185. Epub 2016 Feb 22.

Abstract

A change in hamstring strength and activation is typically seen after injuries or invasive surgeries such as anterior cruciate reconstruction or total knee replacement. While many studies have investigated the influence of isometric increases in hamstring load on knee joint kinematics, few have quantified the change in kinematics due to a variation in medial to lateral hamstring force ratio. This study examined the changes in knee joint kinematics on eight cadaveric knees during an open-chain deep knee bend for six different loading configurations: five loaded hamstring configurations that varied the ratio of a total load of 175 N between the semimembranosus and biceps femoris and one with no loads on the hamstring. The anterior-posterior translation of the medial and lateral femoral condyles' lowest points along proximal-distal axis of the tibia, the axial rotation of the tibia, and the quadriceps load were measured at each flexion angle. Unloading the hamstring shifted the medial and lateral lowest points posteriorly and increased tibial internal rotation. The influence of unloading hamstrings on quadriceps load was small in early flexion and increased with knee flexion. The loading configuration with the highest lateral hamstrings force resulted in the most posterior translation of the medial lowest point, most anterior translation of the lateral lowest point, and the highest tibial external rotation of the five loading configurations. As the medial hamstring force ratio increased, the medial lowest point shifted anteriorly, the lateral lowest point shifted posteriorly, and the tibia rotated more internally. The results of this study, demonstrate that variation in medial-lateral hamstrings force and force ratio influence tibiofemoral transverse kinematics and quadriceps loads required to extend the knee. © 2016 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 34:1707-1715, 2016.

摘要

腘绳肌力量和激活的变化通常出现在受伤或诸如前交叉韧带重建或全膝关节置换等侵入性手术后。虽然许多研究调查了腘绳肌负荷等长增加对膝关节运动学的影响,但很少有研究量化由于内侧与外侧腘绳肌力量比值变化导致的运动学变化。本研究在八个尸体膝关节进行开链深屈膝时,针对六种不同的负荷配置,研究了膝关节运动学的变化:五种加载的腘绳肌配置,改变了半膜肌和股二头肌之间175 N总负荷的比例,一种是腘绳肌无负荷。在每个屈曲角度测量股骨内外侧髁最低点沿胫骨近端 - 远端轴的前后平移、胫骨的轴向旋转以及股四头肌负荷。卸载腘绳肌会使内侧和外侧最低点向后移动,并增加胫骨内旋。在屈膝早期,卸载腘绳肌对股四头肌负荷的影响较小,且随着膝关节屈曲而增加。在五种负荷配置中,外侧腘绳肌力量最大的负荷配置导致内侧最低点向后平移最多、外侧最低点向前平移最多以及胫骨外旋最大。随着内侧腘绳肌力量比值增加,内侧最低点向前移动,外侧最低点向后移动,胫骨更多地向内旋转。本研究结果表明,内侧 - 外侧腘绳肌力量和力量比值的变化会影响胫股横向运动学以及伸展膝关节所需的股四头肌负荷。© 2016骨科学研究协会。由威利期刊公司出版。《矫形外科学研究》34:1707 - 1715,2016。

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