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用于步态康复与辅助的可穿戴机器人:一项叙述性综述。

Wearable Robots for Rehabilitation and Assistance of Gait: A Narrative Review.

作者信息

Cha Jun Min, Hong Juntaek, Yoo Jehyun, Rha Dong-Wook

机构信息

Department and Research Institute of Rehabilitation Medicine, Yonsei University College of Medicine, Seoul, Korea.

Department of Rehabilitation Medicine, Gachon University Gil Medical Center, Incheon, Korea.

出版信息

Ann Rehabil Med. 2025 Aug;49(4):187-195. doi: 10.5535/arm.250093. Epub 2025 Aug 18.

Abstract

Wearable robotic exoskeletons have emerged as promising technologies for enhancing gait rehabilitation and providing mobility assistance in individuals with neurological and musculoskeletal disorders. This narrative review summarizes recent advances in wearable robots-including both rigid exoskeletons and soft exosuits-and evaluates their clinical application across diverse conditions such as stroke, spinal cord injury, cerebral palsy, and Parkinson's disease. For rehabilitation purposes, these devices enable repetitive, task-specific gait training that promotes motor learning, reduces therapist burden, and facilitates improvements in walking speed, balance, and endurance. Rigid exoskeletons provide substantial joint support and are particularly effective for patients with severe gait impairments, whereas soft exosuits offer lightweight assistance suited to individuals with milder deficits or fatigue, albeit with limited capacity to deliver high-torque support. Beyond rehabilitation, wearable robots are increasingly used as assistive devices to compensate for permanent gait limitations and restore mobility in daily life. However, widespread clinical adoption remains constrained by several challenges, including a lack of standardized protocols; limited evidence from large-scale, multicenter studies; and practical issues such as device weight, comfort, and ease of use in community settings. Recent developments-such as adaptive control algorithms, volition-adaptive assistance, and artificial intelligence integration-are addressing these barriers by enabling more personalized and responsive support. With continued research investment, user-centered design, and supportive policies, wearable exoskeletons hold considerable potential to improve independence, participation, and quality of life for individuals across a broad spectrum of mobility impairments.

摘要

可穿戴式机器人外骨骼已成为有前景的技术,可用于增强步态康复,并为患有神经和肌肉骨骼疾病的个体提供移动辅助。这篇叙述性综述总结了可穿戴机器人(包括刚性外骨骼和软性外装)的最新进展,并评估了它们在中风、脊髓损伤、脑瘫和帕金森病等多种情况下的临床应用。出于康复目的,这些设备能够进行重复性、特定任务的步态训练,促进运动学习,减轻治疗师负担,并有助于提高步行速度、平衡能力和耐力。刚性外骨骼提供强大的关节支撑,对严重步态障碍患者特别有效,而软性外装则提供适合轻度缺陷或疲劳个体的轻量级辅助,尽管提供高扭矩支撑的能力有限。除了康复,可穿戴机器人越来越多地被用作辅助设备,以弥补永久性步态限制并恢复日常生活中的移动能力。然而,广泛的临床应用仍然受到几个挑战的限制,包括缺乏标准化方案;来自大规模、多中心研究的证据有限;以及诸如设备重量、舒适度和在社区环境中的易用性等实际问题。最近的发展,如自适应控制算法、意志自适应辅助和人工智能集成,正在通过提供更个性化和响应性的支持来克服这些障碍。随着持续的研究投入、以用户为中心的设计和支持性政策,可穿戴外骨骼在改善广泛行动障碍个体的独立性、参与度和生活质量方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01d3/12411867/fbb24c069dd2/arm-250093f1.jpg

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