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摆动期初始条件在膝关节僵硬步态中的重要性。

The importance of swing-phase initial conditions in stiff-knee gait.

作者信息

Goldberg Saryn R, Ounpuu Sylvia, Delp Scott L

机构信息

Mechanical Engineering Department, Biomechanical Engineering Division, Stanford University, Stanford, CA 94305-3030, USA.

出版信息

J Biomech. 2003 Aug;36(8):1111-6. doi: 10.1016/s0021-9290(03)00106-4.

Abstract

The diminished knee flexion associated with stiff-knee gait, a movement abnormality commonly observed in persons with cerebral palsy, is thought to be caused by an over-active rectus femoris muscle producing an excessive knee extension moment during the swing phase of gait. As a result, treatment for stiff-knee gait is aimed at altering swing-phase muscle function. Unfortunately, this treatment strategy does not consistently result in improved knee flexion. We believe this is because multiple factors contribute to stiff-knee gait. Specifically, we hypothesize that many individuals with stiff-knee gait exhibit diminished knee flexion not because they have an excessive knee extension moment during swing, but because they walk with insufficient knee flexion velocity at toe-off. We measured the knee flexion velocity at toe-off and computed the average knee extension moment from toe-off to peak flexion in 17 subjects (18 limbs) with stiff-knee gait and 15 subjects (15 limbs) without movement abnormalities. We used forward dynamic simulation to determine how adjusting each stiff-knee subject's knee flexion velocity at toe-off to normal levels would affect knee flexion during swing. We found that only one of the 18 stiff-knee limbs exhibited an average knee extension moment from toe-off to peak flexion that was larger than normal. However, 15 of the 18 limbs exhibited a knee flexion velocity at toe-off that was below normal. Simulating an increase in the knee flexion velocity at toe-off to normal levels resulted in a normal or greater than normal range of knee flexion for each of these limbs. These results suggest that the diminished knee flexion of many persons with stiff-knee gait may be caused by abnormally low knee flexion velocity at toe-off as opposed to excessive knee extension moments during swing.

摘要

膝关节屈曲减少与膝僵硬步态相关,膝僵硬步态是脑瘫患者中常见的一种运动异常,被认为是由股直肌过度活跃导致在步态摆动期产生过度的膝关节伸展力矩所致。因此,针对膝僵硬步态的治疗旨在改变摆动期肌肉功能。不幸的是,这种治疗策略并不能始终如一地改善膝关节屈曲。我们认为这是因为多种因素导致了膝僵硬步态。具体而言,我们假设许多膝僵硬步态患者膝关节屈曲减少并非因为他们在摆动期有过度的膝关节伸展力矩,而是因为他们在足趾离地时膝关节屈曲速度不足。我们测量了17例膝僵硬步态患者(18条肢体)和15例无运动异常的受试者(15条肢体)在足趾离地时的膝关节屈曲速度,并计算了从足趾离地到屈曲峰值的平均膝关节伸展力矩。我们使用正向动力学模拟来确定将每个膝僵硬患者在足趾离地时的膝关节屈曲速度调整到正常水平会如何影响摆动期的膝关节屈曲。我们发现,18条膝僵硬肢体中只有1条在从足趾离地到屈曲峰值的过程中平均膝关节伸展力矩大于正常水平。然而,18条肢体中有15条在足趾离地时的膝关节屈曲速度低于正常水平。模拟将足趾离地时的膝关节屈曲速度提高到正常水平,这些肢体中的每一条都产生了正常或大于正常范围的膝关节屈曲。这些结果表明,许多膝僵硬步态患者膝关节屈曲减少可能是由于足趾离地时膝关节屈曲速度异常低,而不是摆动期膝关节伸展力矩过大。

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