首页> 外文期刊>Journal of Biomechanics >Altering prosthetic foot stiffness influences foot and muscle function during below-knee amputee walking: a modeling and simulation analysis.
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Altering prosthetic foot stiffness influences foot and muscle function during below-knee amputee walking: a modeling and simulation analysis.

机译:假肢脚部刚度的改变会影响膝盖以下截肢者行走过程中的脚和肌肉功能:建模和仿真分析。

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摘要

Most prosthetic feet are designed to improve amputee gait by storing and releasing elastic energy during stance. However, how prosthetic foot stiffness influences muscle and foot function is unclear. Identifying these relationships would provide quantitative rationale for prosthetic foot prescription that may lead to improved amputee gait. The purpose of this study was to identify the influence of altered prosthetic foot stiffness on muscle and foot function using forward dynamics simulations of amputee walking. Three 2D muscle-actuated forward dynamics simulations of unilateral below-knee amputee walking with a range of foot stiffness levels were generated, and muscle and prosthetic foot contributions to body support and propulsion and residual leg swing were quantified. As stiffness decreased, the prosthetic keel provided increased support and braking (negative propulsion) during the first half of stance while the heel contribution to support decreased. During the second half of stance, the keel provided decreased propulsion and increased support. In addition, the keel absorbed less power from the leg, contributing more to swing initiation. Thus, several muscle compensations were necessary. During the first half of stance, the residual leg hamstrings provided decreased support and increased propulsion. During the second half of stance, the intact leg vasti provided increased support and the residual leg rectus femoris transferred increased energy from the leg to the trunk for propulsion. These results highlight the influence prosthetic foot stiffness has on muscle and foot function throughout the gait cycle and may aid in prescribing feet of appropriate stiffness.
机译:大多数假肢脚旨在通过在站立时存储和释放弹性能量来改善截肢者的步态。然而,尚不清楚假肢的脚部僵硬如何影响肌肉和脚的功能。识别这些关系将为足部假肢处方提供定量依据,这可能会改善截肢者的步态。这项研究的目的是使用被截肢者行走的前向动力学模拟来确定假肢足部刚度改变对肌肉和足部功能的影响。生成了三个2D肌肉驱动的单侧膝下截肢者步行(具有一定范围的脚部僵硬程度)的前向动力学模拟,并量化了肌肉和假肢足对身体支撑,推进和残余小腿摆动的贡献。当刚度降低时,假体龙骨在站立姿势的前半部分提供了增强的支撑和制动(负推进力),而脚后跟对支撑的贡献降低。在姿态的后半部分,龙骨提供了减少的推进力并增加了支撑。此外,龙骨从腿部吸收的能量更少,为挥杆动作做出了更多贡献。因此,必须进行几次肌肉补偿。在上半部分的姿势中,残余的腿绳肌减少了支撑并增加了推进力。在后半个姿势中,完整的腿部巨大肌提供了更多的支撑,而剩余的股直肌则将更多的能量从腿部转移到躯干以进行推进。这些结果突显了假肢足部僵硬对整个步态周期中肌肉和足部功能的影响,并可能有助于规定足部僵硬程度。

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