首页> 外文会议>Proceedings of the IEEE/RAS-EMBS International Conference on Rehabilitation Robotics >FES-based upper-limb stroke rehabilitation with advanced sensing and control
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FES-based upper-limb stroke rehabilitation with advanced sensing and control

机译:基于FES的上肢卒中康复,具有先进的感应和控制功能

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Functional electrical stimulation (FES) has shown effectiveness in restoring movement post-stroke when applied to assist participants' voluntary action during repeated, motivating tasks. Recent clinical trials have used advanced controllers that precisely adjust FES to assist functional reach and grasp tasks, showing significant reduction in impairment. The system reported in this paper advances the state-of-the-art by: (1) integrating an FES electrode array on the forearm to assist complex hand and wrist gestures; (2) utilising non-contact PrimeSense and Kinect sensors to accurately record the arm, hand and wrist position in 3D; and (3) employing an interactive touch table to present motivating virtual reality (VR) tasks. Feasibility of the system has been evaluated in clinical trials with 4 hemiparetic, chronic stroke participants. Results show that performance error reduced across all tasks and confirm the feasibility of applying precisely controlled FES to multiple muscle groups in the upper limb using advanced sensors, controllers and array hardware. This low-cost, compact technology hence has potential to be transferred to participants' homes in order to reduce upper-limb impairment following chronic stroke.
机译:功能性电刺激(FES)在重复,刺激性任务中用于协助参与者的自愿行动时,在恢复卒中后的运动方面显示出有效的作用。最近的临床试验使用了先进的控制器,可以精确地调整FES来辅助功能到达和抓紧任务,从而显着减少损伤。本文报道的系统通过以下方面改进了现有技术:(1)在前臂上集成FES电极阵列,以协助复杂的手和腕手势; (2)利用非接触式PrimeSense和Kinect传感器以3D方式准确记录手臂,手部和腕部的位置; (3)采用交互式触摸台来呈现激励性虚拟现实(VR)任务。该系统的可行性已在4名偏瘫,慢性卒中患者的临床试验中进行了评估。结果表明,在所有任务中性能误差均得到降低,并证实了使用先进的传感器,控制器和阵列硬件将精确控制的FES应用于上肢的多个肌肉群的可行性。因此,这种低成本,紧凑的技术有可能被转移到参与者的家中,以减少慢性卒中后上肢的损伤。

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