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Differentiation between solid-ankle cushioned heel and energy storage and return prosthetic foot based on step-to-step transition cost

机译:基于逐步过渡成本的全踝软垫鞋跟与能量存储和修复假脚的区别

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摘要

Decreased push-off power by the prosthetic foot and inadequate roll-over shape of the foot have been shown to increase the energy dissipated during the step-to-step transition in human walking. The aim of this study was to determine whether energy storage and return (ESAR) feet are able to reduce the mechanical energy dissipated during the step-to-step transition. Fifteen males with a unilateral lower-limb amputation walked with their prescribed ESAR foot (Vari-Flex, Ossur; Reykjavík, Iceland) and with a solid-ankle cushioned heel foot (SACH) (1D10, Ottobock; Duderstadt, Germany), while ground reaction forces and kinematics were recorded. The positive mechanical work on the center of mass performed by the trailing prosthetic limb was larger (33%, p = 0.01) and the negative work performed by the leading intact limb was lower (13%, p = 0.04) when walking with the ESAR foot compared with the SACH foot. The reduced step-to-step transition cost coincided with a higher mechanical push-off power generated by the ESAR foot and an extended forward progression of the center of pressure under the prosthetic ESAR foot. Results can explain the proposed improvement in walking economy with this kind of energy storing and return prosthetic foot.
机译:假肢脚的下推力降低和足部的过度翻滚形状已被证明会增加人体步行的逐步过渡过程中耗散的能量。这项研究的目的是确定能量存储和返回(ESAR)脚是否能够减少在逐步过渡过程中耗散的机械能。 15名单侧下肢截肢的男性走路时,他们规定的ESAR脚(Vari-Flex,Ossur;冰岛雷克雅未克)和实心脚踝缓冲脚跟(SACH)(1D10,Ottobock;德国Duderstadt)行走记录了反作用力和运动学。与ESAR一起行走时,假肢后肢在质心上的正向机械功较大(33%,p = 0.01),而完整前肢在负重上的负机械功较低(13%,p = 0.04)与SACH脚相比。逐步降低的转换成本与ESAR脚产生的更高的机械推力和假体ESAR脚下压力中心的向前扩展相吻合。结果可以解释这种能量存储和修复脚的步行经济性的改善建议。

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