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开链运动和闭链运动期间胫股关节力的比较。

Comparison of tibiofemoral joint forces during open-kinetic-chain and closed-kinetic-chain exercises.

作者信息

Lutz G E, Palmitier R A, An K N, Chao E Y

机构信息

Biomechanics Laboratory, Mayo Clinic, Rochester, Minnesota.

出版信息

J Bone Joint Surg Am. 1993 May;75(5):732-9. doi: 10.2106/00004623-199305000-00014.

Abstract

The purpose of this study was to analyze forces at the tibiofemoral joint during open and closed-kinetic-chain exercises. Five healthy subjects performed maximum isometric contractions at 30, 60, and 90 degrees of knee flexion during open-kinetic-chain extension, open-kinetic-chain flexion, and closed-kinetic-chain exercises. Electromyographic activity of the quadriceps and hamstrings, as well as load and torque-cell data, were recorded. Tibiofemoral shear and compression forces were calculated with use of a two-dimensional biomechanical model. The results showed that, during the open-kinetic-chain extension exercise, maximum posterior shear forces (the resisting forces to anterior drawer) of 285 +/- 120 newtons (mean and standard deviation) occurred at 30 degrees of knee flexion and maximum anterior shear forces (the resisting forces to posterior drawer) of 1780 +/- 699 newtons occurred at 90 degrees of knee flexion. The closed-kinetic-chain exercise produced significantly less posterior shear force at all angles when compared with the open-kinetic-chain extension exercise. In addition, the closed-kinetic-chain exercise produced significantly less anterior shear force at all angles except 30 degrees when compared with the open-kinetic-chain flexion exercise (p < 0.05). Analysis of tibiofemoral compression forces and electromyographic recruitment patterns revealed that the closed-kinetic-chain exercise produced significantly greater compression forces and increased muscular co-contraction at the same angles at which the open-kinetic-chain exercises produced maximum shear forces and minimum muscular co-contraction.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

本研究的目的是分析在开链和闭链运动过程中胫股关节的受力情况。五名健康受试者在开链伸展、开链屈曲和闭链运动过程中,于膝关节屈曲30°、60°和90°时进行最大等长收缩。记录股四头肌和腘绳肌的肌电图活动以及负荷和扭矩传感器数据。使用二维生物力学模型计算胫股剪切力和压缩力。结果显示,在开链伸展运动中,膝关节屈曲30°时出现最大后向剪切力(前抽屉试验的阻力),为285±120牛顿(均值和标准差),膝关节屈曲90°时出现最大前向剪切力(后抽屉试验的阻力),为1780±699牛顿。与开链伸展运动相比,闭链运动在所有角度产生的后向剪切力均显著减小。此外,与开链屈曲运动相比,闭链运动在除30°以外的所有角度产生的前向剪切力均显著减小(p<0.05)。对胫股压缩力和肌电图募集模式的分析表明,在开链运动产生最大剪切力和最小肌肉共同收缩的相同角度下,闭链运动产生的压缩力显著更大,且肌肉共同收缩增加。(摘要截选至250词)

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