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用于上楼梯的电动经股假肢的控制与评估

Control and Evaluation of a Powered Transfemoral Prosthesis for Stair Ascent.

作者信息

Ledoux Elissa D, Goldfarb Michael

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2017 Jul;25(7):917-924. doi: 10.1109/TNSRE.2017.2656467. Epub 2017 Jan 20.

Abstract

This paper assesses the metabolic effort exerted by three transfemoral amputees, when using a powered knee and ankle prosthesis for stair ascent, relative to ascending stairs with passive knee and ankle prostheses. The paper describes a controller that provides step-over stair ascent behavior reflective of healthy stair ascent biomechanics, and describes its implementation in a powered prosthesis prototype. Stair ascent experiments were performed with three unilateral transfemoral amputee subjects, comparing the oxygen consumption required to ascend stairs using the powered prosthesis (with a step-over gait), relative to using their daily-use energetically passive prostheses (with a step-to gait). Results indicate on average a 24% reduction in oxygen consumption and a 30% reduction in stair ascent timewhen using the powered prosthesis, relative to when using the passive prostheses. All subjects expressed a strong preference for ascending stairs using the powered prosthesis.

摘要

本文评估了三名经股截肢者在使用动力膝关节和踝关节假肢上楼梯时相对于使用被动膝关节和踝关节假肢上楼梯所付出的代谢努力。本文描述了一种控制器,该控制器可提供反映健康上楼梯生物力学的跨越楼梯上升行为,并描述了其在动力假肢原型中的实现。对三名单侧经股截肢受试者进行了上楼梯实验,比较了使用动力假肢(采用跨越步态)上楼梯与使用日常使用的能量被动假肢(采用步到步态)上楼梯所需的氧气消耗量。结果表明,相对于使用被动假肢,使用动力假肢时平均氧气消耗量降低了24%,上楼梯时间减少了30%。所有受试者都强烈倾向于使用动力假肢上楼梯。

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