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上肢神经康复与辅助中的软机器人技术:当前临床证据与建议

Soft Robotics in Upper Limb Neurorehabilitation and Assistance: Current Clinical Evidence and Recommendations.

作者信息

Tanczak Natalie, Yurkewich Aaron, Missiroli Francesco, Wee Seng Kwee, Kager Simone, Choi Hyungmin, Cho Kyu-Jin, Yap Hong Kai, Piazza Cristina, Masia Lorenzo, Lambercy Olivier

机构信息

Singapore-ETH Centre, Future Health Technologies Programme, Singapore, Singapore.

Department of Health Sciences and Technology, Rehabilitation Engineering Laboratory, ETH Zurich, Zurich, Switzerland.

出版信息

Soft Robot. 2025 Jun;12(3):303-314. doi: 10.1089/soro.2024.0034. Epub 2024 Dec 30.

Abstract

Soft robotics is gaining interest in rehabilitation applications, bringing new opportunities to offset the loss of upper limb motor function following neurological, neuromuscular, or traumatic injuries. Unlike conventional rigid robotics, the added softness in linkages or joints promises to make rehabilitation robots compliant, which translates into higher levels of safety, comfort, usability, and portability, opening the door for these rehabilitation technologies to be used in daily life. While several reviews documented the different technical implementations of soft rehabilitation robots, it is essential to discuss the growing clinical evidence on the feasibility and effectiveness of using this technology for rehabilitative and assistive purposes, whether softness brings the expected advantages from the perspective of end users, and how we should proceed in the future of this field. In this perspective article, we present recent clinical evidence on how 13 different upper limb devices were used in both controlled (clinical) and uncontrolled (at home) settings in more than 37 clinical studies. From these findings and our own experience, we derive recommendations for future developers and end users regarding the design, application, and evaluation of soft robotics for upper limb rehabilitation and assistance.

摘要

软体机器人技术在康复应用中越来越受到关注,为弥补神经、神经肌肉或创伤性损伤后上肢运动功能的丧失带来了新的机遇。与传统的刚性机器人不同,连杆或关节增加的柔软性有望使康复机器人具有柔顺性,这意味着更高的安全性、舒适性、易用性和便携性,为这些康复技术在日常生活中的应用打开了大门。虽然有几篇综述记录了软体康复机器人的不同技术实现方式,但讨论关于将该技术用于康复和辅助目的的可行性和有效性的越来越多的临床证据、柔软性从最终用户的角度是否带来了预期的优势,以及我们在该领域的未来应如何发展是至关重要的。在这篇观点文章中,我们展示了关于13种不同上肢设备如何在37项以上临床研究的受控(临床)和非受控(在家)环境中使用的最新临床证据。从这些发现以及我们自己的经验中,我们就上肢康复和辅助软体机器人的设计、应用和评估向未来的开发者和最终用户提出建议。

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