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通过在 ESAR 脚中集成低功耗执行器来提高胫骨截肢者的步行能量效率。

Improving Walking Energy Efficiency in Transtibial Amputees Through the Integration of a Low-Power Actuator in an ESAR Foot.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2024;32:1397-1406. doi: 10.1109/TNSRE.2024.3379904. Epub 2024 Mar 28.

Abstract

Reducing energy consumption during walking is a critical goal for transtibial amputees. The study presents the evaluation of a semi-active prosthesis with five transtibial amputees. The prosthesis has a low-power actuator integrated in parallel into an energy-storing-and-releasing foot. The actuator is controlled to compress the foot during the stance phase, supplementing the natural compression due to the user's dynamic interaction with the ground, particularly during the ankle dorsiflexion phase, and to release the energy stored in the foot during the push-off phase, to enhance propulsion. The control strategy is adaptive to the user's gait patterns and speed. The clinical protocol to evaluate the system included treadmill and overground walking tasks. The results showed that walking with the semi-active prosthesis reduced the Physiological Cost Index of transtibial amputees by up to 16% compared to walking using the subjects' proprietary prosthesis. No significant alterations were observed in the spatiotemporal gait parameters of the participants, indicating the module's compatibility with users' natural walking patterns. These findings highlight the potential of the mechatronic actuator in effectively reducing energy expenditure during walking for transtibial amputees. The proposed prosthesis may bring a positive impact on the quality of life, mobility, and functional performance of individuals with transtibial amputation.

摘要

减少步行时的能量消耗是小腿截肢者的关键目标。本研究对五名小腿截肢者进行了一种带有助动器的半主动假肢的评估。该假肢具有一个低功率的执行器,与一个储能和释能的脚并联。该执行器被控制在站立阶段压缩脚,补充由于用户与地面的动态相互作用而产生的自然压缩,特别是在踝关节背屈阶段,并且在推离阶段释放储存在脚上的能量,以增强推进力。控制策略适应于用户的步态模式和速度。评估系统的临床方案包括跑步机和地面行走任务。结果表明,与使用受试者的专用假肢相比,使用半主动假肢可使小腿截肢者的生理成本指数降低多达 16%。参与者的时空步态参数没有观察到明显的变化,这表明该模块与用户的自然行走模式兼容。这些发现强调了机电执行器在有效降低小腿截肢者步行时能量消耗方面的潜力。所提出的假肢可能会对小腿截肢者的生活质量、移动性和功能表现产生积极影响。

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