An EMG-driven exoskeleton hand robotic training device on chronic stroke subjects: task training system for stroke rehabilitation.

N S K Ho, K Y Tong, X L Hu, K L Fung, X J Wei, W Rong, E A Susanto
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引用次数: 262

Abstract

An exoskeleton hand robotic training device is specially designed for persons after stroke to provide training on their impaired hand by using an exoskeleton robotic hand which is actively driven by their own muscle signals. It detects the stroke person's intention using his/her surface electromyography (EMG) signals from the hemiplegic side and assists in hand opening or hand closing functional tasks. The robotic system is made up of an embedded controller and a robotic hand module which can be adjusted to fit for different finger length. Eight chronic stroke subjects had been recruited to evaluate the effects of this device. The preliminary results showed significant improvement in hand functions (ARAT) and upper limb functions (FMA) after 20 sessions of robot-assisted hand functions task training. With the use of this light and portable robotic device, stroke patients can now practice more easily for the opening and closing of their hands at their own will, and handle functional daily living tasks at ease. A video is included together with this paper to give a demonstration of the hand robotic system on chronic stroke subjects and it will be presented in the conference.

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慢性脑卒中患者肌电驱动外骨骼手机器人训练装置:脑卒中康复任务训练系统。
外骨骼手部机器人训练装置是专门为中风后的人设计的,利用外骨骼机械手,通过自身肌肉信号主动驱动,对受损的手部进行训练。它利用偏瘫侧的表面肌电图(EMG)信号来检测中风患者的意图,并协助手的打开或关闭功能任务。该机器人系统由嵌入式控制器和机械手模块组成,机械手模块可以根据不同的手指长度进行调整。8名慢性中风患者被招募来评估该装置的效果。初步结果显示,经过20次机器人辅助手功能任务训练后,手功能(ARAT)和上肢功能(FMA)有显著改善。使用这种轻便便携的机器人设备,中风患者现在可以更轻松地练习按自己的意愿开合双手,并轻松处理功能性日常生活任务。本文还提供了一段视频来演示手部机器人系统在慢性中风患者中的应用,并将在会议上展示。
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