Patellar forces during knee extension.

R. Nisell, J. Ekholm
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引用次数: 66

Abstract

A radiographical study of 20 loaded knees of healthy subjects and a knee dissection study of 20 specimens were performed in order to present a two-dimensional patello-femoral joint biomechanical model. A constant knee-extending moment gave 25-40% lower force magnitudes in the patellar tendon than in the quadriceps tendon if the knee was flexed to 60-120 deg. The magnitude of the patello-femoral joint compressive force reached its maximum at 90 deg knee angle and decreased slightly towards 120 deg. A compressive force between quadriceps tendon and femoral intercondylar groove was present above 60 deg knee angle and its magnitude was estimated. The patellar forces in women were about 20% higher than in men. The biomechanical model may be used in knee rehabilitation activities to optimize and individualize exercise programmes. The model may also be applied to daily activities in order to quantify patellar forces.
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膝盖伸展过程中的髌骨力。
为了建立一个二维髌骨-股骨关节生物力学模型,我们对20例健康受试者负重膝关节进行了x线摄影研究,并对20例标本进行了膝关节解剖研究。当膝关节屈曲至60-120度时,恒定的膝关节伸直力矩使髌骨肌腱的压力大小比股四头肌肌腱的压力大小小25-40%。髌骨-股骨关节压缩力的大小在膝关节90度角处达到最大,向120度角处略有下降。在膝关节60度角以上,股四头肌肌腱和股骨髁间沟之间存在压缩力,其大小可以估计。女性的髌骨受力比男性高20%。生物力学模型可用于膝关节康复活动,以优化和个性化的运动方案。该模型也可应用于日常活动,以量化髌骨受力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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