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Ankle robotics training with concurrent physiological monitoring in multiple sclerosis: A case report

机译:脚踝机器人训练培训多发性硬化症中的同时生理监测:案例报告

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In this paper, we investigate the feasibility of employing robotics, high-density electroencephalography (EEG), and surface electromyography (EMG) for ankle rehabilitation in a subject with multiple sclerosis (MS). A single session of seated, interactive ankle robot (“Anklebot”) training with concurrent 60-channel EEG and 2-channel EMG monitoring was conducted. The task entailed pointing with the ankle while playing a video game that synchronized ankle movements to guide a screen cursor through 560 moving gates. Practice-induced improvements in multiple motor control measures were accompanied by changes in EEG measures of activation and networking, and in EMG measures indicating greater muscle activity. Our results suggest that Anklebot training and concurrent EEG-EMG monitoring is a feasible approach that may be deployed clinically to advance understanding of the neurophysiological mechanisms in motor-learning based recovery in persons with ankle motor deficits secondary to MS and other neurologic injuries.
机译:在本文中,我们研究了使用多发性硬化症(MS)的受试者中踝关节康复的机器人,高密度脑电图(EEG)和表面肌电学(EMG)的可行性。通过并发60通道EEG和2通道EMG监测进行单个坐的坐着的坐着的交互式脚踝机器人(“Anklebot”)训练。在播放同步脚踝运动的视频游戏时,该任务需要指向脚踝,以引导屏幕光标到560移动门。多种电机控制措施的实践诱导的改进伴随着激活和网络脑电图措施的变化,以及表明肌肉活动更大的肌肉措施。我们的研究结果表明,Anklebot培训和同时EEG-EMG监测是一种可行的方法,可以在临床上部署,以推进在具有继发于MS和其他神经系统损伤的脚踝运动缺陷的人员中基于运动学习的复苏中的神经生理机制。

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