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Low cost and light-weight multi-DOF exoskeleton for comprehensive upper limb rehabilitation

机译:低成本,轻量的多自由度外骨骼,可进行全面的上肢康复

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摘要

To respond to increasing risk of stroke in elderly people, several robotic devices for rehabilitation of upper limb and hand have been developed. The devices for upper limb which are mostly operated in active manner have potential to cause subluxation at shoulder because they constrain natural movement of the shoulder joint (Glenohumeral joint). The devices for hand tends to be too heavy to wear during daily activities because hand has greater degrees of freedom (DOFs) requiring many actuating units. Thus, it is hard to find upper limb devices including both arm and hand devices although upper limb tasks require both functions. Through this paper, we introduce concept and development progress of a low cost and light-weight device which includes both upper arm and hand. This work-in-progress paper aims at reporting the design and evaluation of passive gravity compensating tracker mechanism for shoulder joint which is one of the key parts of the whole upper limb rehabilitation system.
机译:为了应对老年人中风风险的增加,已经开发了几种用于康复上肢和手的机器人设备。由于上肢装置会限制肩关节(盂肱关节)的自然运动,因此大多数以主动方式操作的装置有可能引起肩部半脱位。由于手具有较大的自由度(DOF),需要许多驱动单元,因此用于手的装置在日常活动中往往太重而无法佩戴。因此,尽管上肢任务需要两种功能,但很难找到包括手臂和手部设备在内的上肢设备。通过本文,我们介绍了一种既包括上臂又包括手部的低成本轻便设备的概念和开发进展。这篇正在进行中的论文旨在报告肩关节被动重力补偿跟踪器机构的设计和评估,该机构是整个上肢康复系统的关键部分之一。

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