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Wearable soft robotic device for post-stroke shoulder rehabilitation: identifying misalignments

机译:用于中风后肩部康复的可穿戴软机器人设备:识别错位

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摘要

Stroke is the leading cause of long-term disability udin the United States, affecting over 795,000 people annually. In order to regain motor function of the upper body, patients are usually treated by regular sessions with a dedicated physical therapist. A cost-effective wearable upper body orthotics system that can be used at home to empower both the patients and physical therapists is described. The system is composed of a thin, compliant, lightweight, cost-effective soft orthotic device udwith an integrated cable actuation system that is worn over the upper body, an embedded limb position sensing system, an udelectric actuator package and controller. The proposed device is robust to misalignments that may occur during actuation of the compliant brace or when putting on the system. Through simulations and experimental evaluation, it was demonstrated i) that the soft orthotic cable-driven shoulder brace can be successfully actuated without the production of off-axis torques in the presence of misalignments and ii) that the proposed model can identify linear and angular misalignments online.
机译:在美国,中风是导致长期残疾的主要原因,每年影响超过795,000人。为了恢复上身的运动功能,通常需要由专职的物理治疗师定期治疗患者。描述了一种经济有效的可穿戴式上身矫形系统,该系统可在家中使用,以增强患者和理疗师的能力。该系统由薄,柔顺,轻便,具有成本效益的软矫形设备和带在上身上方的集成电缆致动系统,嵌入式肢体位置传感系统,电动致动器套件和控制器组成。所提出的装置对于在顺应支架的致动期间或在戴上系统时可能发生的未对准是鲁棒的。通过仿真和实验评估,证明了i)在存在未对准的情况下,软矫形电缆驱动的肩撑可以成功启动,而不会产生离轴扭矩; ii)所提出的模型可以识别线性和角度未对准线上。

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