首页> 外文OA文献 >Goal-orientated Functional Rehabilitation using Electrical Stimulation and Iterative Learning Control for Motor Recovery in the Upper Extremity Post-Stroke.
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Goal-orientated Functional Rehabilitation using Electrical Stimulation and Iterative Learning Control for Motor Recovery in the Upper Extremity Post-Stroke.

机译:使用电刺激和迭代学习控制进行针对目标的功能康复,以恢复上肢中风后的运动。

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摘要

There is increasing evidence that electrical stimulation (ES) combined with task specific training is effective in the recovery of upper extremity dysfunction following stroke. The aim of this study is to develop a rehabilitation system that delivers precisely controlled levels of stimulation to the shoulder, elbow and wrist during goal-oriented activity which utilises everyday real objects. Iterative learning control (ILC) is used to mediate the ES and updates the stimulation signal applied to each muscle group based on the error between the ideal and actual movement in the previous attempt. The control system applies the minimum amount of stimulation required, maximising voluntary effort with a view to facilitating success at each given task. Markerless motion tracking is provided via a Microsoft Kinect, with hand and wrist data measured by an electrogoniometer. Preliminary results show that ES mediated by ILC has successfully facilitated movement across the shoulder, elbow and wrist of chronic stroke patients. Overall, joint error has reduced for all participants with the mean error across all joints showing reductions for all participants. Furthermore, there was a significant reduction in extrinsic support necessary for each task. The system is described and initial intervention data are reported.
机译:越来越多的证据表明,电刺激(ES)结合特定任务的训练对中风后上肢功能障碍的恢复有效。这项研究的目的是开发一种康复系统,该系统在利用日常实物的目标导向活动中,对肩部,肘部和腕部进行精确控制的刺激水平。迭代学习控制(ILC)用于介导ES,并基于先前尝试中理想运动与实际运动之间的误差来更新应用于每个肌肉组的刺激信号。控制系统采用所需的最小刺激量,以最大程度地增加自愿性工作,以促进在每个给定任务上的成功。通过Microsoft Kinect提供了无标记运动跟踪,手电和腕部数据由电子测角计测量。初步结果表明,由ILC介导的ES已成功促进了慢性卒中患者在肩,肘和腕部的运动。总体而言,所有参与者的关节误差均已降低,所有关节的平均误差均表明所有参与者的关节误差均已降低。此外,每个任务所需的外部支持大大减少。描述该系统并报告初始干预数据。

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