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开放式与闭合式动力链运动期间胫股关节力与肌电图活动的比较。

A comparison of tibiofemoral joint forces and electromyographic activity during open and closed kinetic chain exercises.

作者信息

Wilk K E, Escamilla R F, Fleisig G S, Barrentine S W, Andrews J R, Boyd M L

机构信息

American Sports Medicine Institute, Biomechanical Laboratory, Birmingham, Alabama, USA.

出版信息

Am J Sports Med. 1996 Jul-Aug;24(4):518-27. doi: 10.1177/036354659602400418.

Abstract

We chose to investigate tibiofemoral joint kinetics (compressive force, anteroposterior shear force, and extension torque) and electromyographic activity of the quadriceps, hamstring, and gastrocnemius muscles during open kinetic chain knee extension and closed kinetic chain leg press and squat. Ten uninjured male subjects performed 4 isotonic repetitions with a 12 repetition maximal weight for each exercise. Tibiofemoral forces were calculated using electromyographic, kinematic, and kinetic data. During the squat, the maximal compressive force was 6139 +/- 1708 N, occurring at 91 degrees of knee flexion; whereas the maximal compressive force for the knee extension exercise was 4598 +/- 2546 N (at 90 degrees knee flexion). During the closed kinetic chain exercises, a posterior shear force (posterior cruciate ligament stress) occurred throughout the range of motion, with the peak occurring from 85 degrees to 105 degrees of knee flexion. An anterior shear force (anterior cruciate ligament stress) was noted during open kinetic chain knee extension from 40 degrees to full extension; a peak force of 248 +/- 259 N was noted at 14 degrees of knee flexion. Electromyographic data indicated greater hamstring and quadriceps muscle co-contraction during the squat compared with the other two exercises. During the leg press, the quadriceps muscle electromyographic activity was approximately 39% to 52% of maximal velocity isometric contraction; whereas hamstring muscle activity was minimal (12% maximal velocity isometric contraction). This study demonstrated significant differences in tibiofemoral forces and muscle activity between the two closed kinetic chain exercises, and between the open and closed kinetic chain exercises.

摘要

我们选择研究在开链膝关节伸展、闭链腿举和深蹲过程中胫股关节动力学(压力、前后剪切力和伸展扭矩)以及股四头肌、腘绳肌和腓肠肌的肌电图活动。10名未受伤的男性受试者对每项运动进行4次等张重复,重量为12次重复最大值。使用肌电图、运动学和动力学数据计算胫股关节力。在深蹲过程中,最大压力为6139±1708N,出现在膝关节屈曲91度时;而膝关节伸展运动的最大压力为4598±2546N(膝关节屈曲90度时)。在闭链运动过程中,在整个运动范围内出现后剪切力(后交叉韧带应力),峰值出现在膝关节屈曲85度至105度之间。在开链膝关节伸展从40度至完全伸展过程中观察到前剪切力(前交叉韧带应力);在膝关节屈曲14度时观察到峰值力为248±259N。肌电图数据表明,与其他两项运动相比,深蹲过程中腘绳肌和股四头肌的共同收缩更强。在腿举过程中,股四头肌的肌电图活动约为最大速度等长收缩的39%至52%;而腘绳肌的活动最小(最大速度等长收缩的12%)。这项研究表明,两种闭链运动之间以及开链和闭链运动之间在胫股关节力和肌肉活动方面存在显著差异。

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