Design and evaluation of the pneumatic leg prosthesis ERiK to assist elderly amputees with sit-down and stand-up movements.

IF 3.4 Q2 ENGINEERING, BIOMEDICAL Wearable technologies Pub Date : 2023-05-26 eCollection Date: 2023-01-01 DOI:10.1017/wtc.2023.8
Heike Vallery, Frederik Lachmann, Simon van der Helm, Andrew Pennycott, Gerwin Smit
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Abstract

Standing up using one leg is a challenging task for those with a transfemoral amputation, particularly for elderly users with a low activity level. Active prostheses are generally not accessible to this group and available passive prostheses do not support standing up. This article presents the design and evaluation of the "Energy Restoring Intelligent Knee" (ERiK), which stores energy during sit-down in a pneumatic cylinder and returns it during stand-up. We hypothesized that the system would reduce the time needed to perform transitions and also enable higher load sharing by the prosthetic leg. However, the results of an experimental study with seven participants with transfemoral amputation contradict these hypotheses: the participants could neither move faster nor make more use of the prosthetic leg to share their body weight during transitions. We observed that a major obstacle to the useful functionality of the leg was the absence of ankle dorsiflexion - the foot tended to slip during stand-up initiation, such that only low pre-pressures and therefore support levels could be set. The rather binary action of the pneumatics also complicated movement initiation. The lessons learned from this study may be helpful to those seeking to create better designs in the future.

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ERiK气动腿假体辅助老年截肢者坐立运动的设计与评价
摘要对于经股截肢患者来说,单腿站立是一项具有挑战性的任务,尤其是对于活动水平较低的老年人来说。这一组人通常无法使用主动假肢,可用的被动假肢不支持站立。本文介绍了“能量恢复智能膝关节”(ERiK)的设计和评估,它在坐下时将能量存储在气缸中,并在站立时将能量返回。我们假设该系统将减少执行转换所需的时间,并使假腿能够实现更高的负载分担。然而,一项针对七名经股截肢参与者的实验研究结果与这些假设相矛盾:参与者在过渡过程中既不能更快地移动,也不能更多地使用假腿来分担体重。我们观察到,腿部有效功能的一个主要障碍是缺乏踝关节背屈——在站立开始时,脚往往会打滑,因此只能设置较低的预压力,从而达到支撑水平。气动装置的二元作用也使运动启动变得复杂。从这项研究中吸取的教训可能有助于那些寻求在未来创造更好设计的人。
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CiteScore
5.80
自引率
0.00%
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0
审稿时长
11 weeks
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