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Goal orientated stroke rehabilitation utilising electrical stimulation, iterative learning and Microsoft Kinect

机译:利用电气刺激,迭代学习和微软kinect的目标导向康复

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An upper-limb stroke rehabilitation system is developed that assists patients in performing real world functionally relevant reaching tasks. The system provides de-weighting of the arm via a simple spring support whilst functional electrical stimulation is applied to the anterior deltoid and triceps via surface electrodes, and to the wrist and hand extensors via a 40 element surface electrode array. Iterative learning control (ILC) is used to mediate the electrical stimulation, 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. Low-cost, markerless motion tracking is provided via a Microsoft Kinect, with hand and wrist data provided by an electrogoniometer or data glove. The system is described and initial experimental results are presented for a stroke patient starting treatment.
机译:开发了一个高肢冲程康复系统,有助于患者进行现实世界的功能相关的达成任务。该系统通过简单的弹簧支撑件提供臂的解重,同时通过表面电极施加到前三角形和三滴水玻镜的功能电刺激,并经由40元件表面电极阵列向手腕和手延伸部。迭代学习控制(ILC)用于介导电刺激,并根据先前尝试中的理想和实际运动之间的误差更新施加到每个肌群的刺激信号。控制系统应用所需的最小刺激量,最大化自愿努力。低成本,无可比度运动跟踪通过Microsoft Kinect提供,用电动机计或数据手套提供的手和手腕数据。描述了该系统,并提出了用于中风患者的起始处理的初始实验结果。

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