用于普及健康的可穿戴上肢机器人:综述

IF 5 Q1 ENGINEERING, BIOMEDICAL Progress in biomedical engineering (Bristol, England) Pub Date : 2023-03-23 DOI:10.1088/2516-1091/acc70a
Chukwuemeka Ochieze, Soroush Zare, Ye Sun
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引用次数: 1

摘要

可穿戴机器人,也称为外骨骼,几十年来一直被设计用于以人为中心的辅助。它们提供辅助技术,以维持和提高患者的自然自我独立能力,并为康复提供新的治疗解决方案,以实现普遍健康。上肢外骨骼可以显著增强人类对环境的操作,这对患者的独立性、自尊和生活质量至关重要。为了在医院和家庭环境中长期使用,仍然需要具有高舒适性、生物相容性和可操作性的新技术。软机器人技术的最新进展开创了基于可控和柔顺材料和结构的软外骨骼(也称为外骨骼)。从机器人设计到不同的实际应用,对刚性外骨骼进行了引人注目的文献综述。由于这种新兴状态,很少有人关注上肢软外骨骼。本文旨在对可穿戴上肢机器人(包括刚性和柔性外骨骼)的最新进展进行系统综述,重点介绍其在各种普及医疗环境中的设计和应用。对可穿戴机器人的技术需求进行了仔细的审查,并特别讨论了可穿戴机器人可以增强的辅助和康复。来自刚性可穿戴机器人的知识可能会为软外骨骼设计提供实践经验和启发新想法。我们还讨论了可穿戴辅助机器人在普及健康方面的挑战和机遇。
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Wearable upper limb robotics for pervasive health: a review
Wearable robotics, also called exoskeletons, have been engineered for human-centered assistance for decades. They provide assistive technologies for maintaining and improving patients’ natural capabilities towards self-independence and also enable new therapy solutions for rehabilitation towards pervasive health. Upper limb exoskeletons can significantly enhance human manipulation with environments, which is crucial to patients’ independence, self-esteem, and quality of life. For long-term use in both in-hospital and at-home settings, there are still needs for new technologies with high comfort, biocompatibility, and operability. The recent progress in soft robotics has initiated soft exoskeletons (also called exosuits), which are based on controllable and compliant materials and structures. Remarkable literature reviews have been performed for rigid exoskeletons ranging from robot design to different practical applications. Due to the emerging state, few have been focused on soft upper limb exoskeletons. This paper aims to provide a systematic review of the recent progress in wearable upper limb robotics including both rigid and soft exoskeletons with a focus on their designs and applications in various pervasive healthcare settings. The technical needs for wearable robots are carefully reviewed and the assistance and rehabilitation that can be enhanced by wearable robotics are particularly discussed. The knowledge from rigid wearable robots may provide practical experience and inspire new ideas for soft exoskeleton designs. We also discuss the challenges and opportunities of wearable assistive robotics for pervasive health.
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