用于康复的软性踝足外骨骼:传动、传感、机械设计和控制策略的系统回顾

IF 3.4 Q2 ENGINEERING, BIOMEDICAL
Wei Meng;Chang Zhu;Haojie Liu;Quan Liu;Sheng Xie
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引用次数: 0

摘要

机器人辅助康复治疗已成为治疗中风患者的主流趋势。它不仅能减轻物理治疗师繁重的体力劳动,还能为患者提供有效的踝足康复和行走辅助。近十年来,软性踝足外骨骼发展迅速。本文从机器人驱动、可穿戴传感器、机械设计和控制策略等方面对软性踝足外骨骼进行了压缩式综述。文中展示了具有代表性的商业和实验室踝足外骨骼。特别关注了新兴的软致动器、可穿戴传感技术以及人在环和分层控制方法。最后,本文还分析并强调了基本挑战和未来可能的发展方向,为下一代软踝足外骨骼的开发提供了可靠的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soft Ankle-Foot Exoskeleton for Rehabilitation: A Systematic Review of Actuation, Sensing, Mechanical Design, and Control Strategy
Robot-assisted rehabilitation therapy has become a mainstream trend for the treatment of stroke patients. It can not only relieve physiotherapists from heavy physical duties, but also provide patients with effective ankle-foot rehabilitation and walking assistance. Soft ankle-foot exoskeletons have rapidly evolved in the last decade. This article presents a compressive review of soft ankle-foot exoskeletons in terms of robot actuation, wearable sensor, mechanical design, and control strategy. Representative commercial and laboratory ankle-foot exoskeletons are demonstrated. Special attention is paid to the emerging soft actuators, wearable sensing techniques, and human-in-the-loop and hierarchical control methods. Finally, essential challenges and possible future directions are also analyzed and highlighted in this paper, which can provide reliable guidance on the development of next-generation soft ankle-foot exoskeletons.
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