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首页> 外文期刊>Journal of Biomechanics >Muscular coordination of knee motion during the terminal-swing phase of normal gait.
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Muscular coordination of knee motion during the terminal-swing phase of normal gait.

机译:正常步态末端摆动阶段中膝盖运动的肌肉协调。

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Children with cerebral palsy often walk with diminished knee extension during the terminal-swing phase, resulting in a troublesome "crouched" posture at initial contact and a shortened stride. Treatment of this gait abnormality is challenging because the factors that extend the knee during normal walking are not well understood, and because the potential of individual muscles to limit terminal-swing knee extension is unknown. This study analyzed a series of three-dimensional, muscle-driven dynamic simulations to quantify the angular accelerations of the knee induced by muscles and other factors during swing. Simulations were generated that reproduced the measured gait dynamics and muscle excitation patterns of six typically developing children walking at self-selected speeds. The knee was accelerated toward extension in the simulations by velocity-related forces (i.e., Coriolis and centrifugal forces) and by a number of muscles, notably the vasti in mid-swing (passive), the hip extensors in terminal swing, and the stance-limb hip abductors, which accelerated the pelvis upward. Knee extension was slowed in terminal swing by the stance-limb hip flexors, which accelerated the pelvis backward. The hamstrings decelerated the forward motion of the swing-limb shank, but did not contribute substantially to angular motions of the knee. Based on these data, we hypothesize that the diminished knee extension in terminal swing exhibited by children with cerebral palsy may, in part, be caused by weak hip extensors or by impaired hip muscles on the stance limb that result in abnormal accelerations of the pelvis.
机译:脑瘫患儿通常在末梢摆动阶段走路时膝盖伸展程度降低,导致初次接触时出现“蹲下”的麻烦姿势,步幅缩短。这种步态异常的治疗具有挑战性,因为人们尚不了解在正常步行过程中伸展膝盖的因素,并且还不清楚单个肌肉限制终末摆动膝盖延伸的潜力。这项研究分析了一系列三维肌肉驱动的动态仿真,以量化在挥杆过程中由肌肉和其他因素引起的膝盖的角加速度。产生了模拟,该模拟再现了六个以自我选择的速度行走的典型发育中的儿童的步态动力学和肌肉兴奋模式。在模拟中,膝关节通过与速度相关的力(例如,科里奥利力和离心力)和许多肌肉加速伸展,这尤其是挥杆中段的肌肉(被动),末端挥杆时的臀部伸肌和姿势-髋关节外展肌,使骨盆向上加速。肢体站立姿势的髋屈肌在末端摆动中减慢了膝盖的伸展速度,从而使骨盆向后加速。绳肌减慢了前肢小腿的向前运动,但对膝盖的角运动没有实质性的贡献。根据这些数据,我们假设脑性瘫痪患儿末梢摆动的膝部伸展减少可能部分是由于髋部伸肌无力或站立时肢体髋部肌肉受损导致骨盆异常加速。

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