Biomechanical evaluation of a prototype foot/ankle prosthesis.

P M Quesada, M Pitkin, J Colvin
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Abstract

In this paper, we report on our pilot evaluation of a prototype foot/ankle prosthesis. This prototype has been designed and fabricated with the intention of providing decreased ankle joint stiffness during the middle portion of the stance phase of gait, and increased (i.e., more normal) knee range of motion during stance. Our evaluation involved fitting the existing prototype foot/ankle prosthesis, as well as a traditional solid ankle cushioned heel (SACH) foot, to an otherwise healthy volunteer with a below-knee (BK) amputation. We measured this individual's lower extremity joint kinematics and kinetics during walking using a video motion analysis system and force platform. These measurements permitted direct comparison of prosthetic ankle joint stiffness and involved side knee joint motion, as well as prosthetic ankle joint moment and power.

脚/踝关节假体原型的生物力学评价。
在本文中,我们报告了我们对原型脚/踝关节假体的试点评估。这个原型的设计和制造的目的是在步态的站立阶段的中间部分提供减少的踝关节僵硬,并在站立期间增加(即更正常)的膝关节运动范围。我们的评估包括将现有的脚/踝关节假体原型,以及传统的固体踝关节缓冲后跟(SACH)脚,安装到一位膝盖以下截肢的健康志愿者身上。我们使用视频运动分析系统和力平台测量了该患者行走时的下肢关节运动学和动力学。这些测量允许直接比较假体踝关节刚度和涉及的侧膝关节运动,以及假体踝关节的力矩和功率。
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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