Stroke Rehabilitation and Parkinson's Disease Tremor Reduction Using BCIs Combined With FES

Sophie Adama, M. Bogdan
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Abstract

This article describes how Stroke and Parkinson's disease are two illnesses that particularly affect motor functions. With the advancements in technology, there is a lot of research focusing on finding solutions: to contribute to neuroplasticity in the first case, and to reduce symptoms in the second case. This manuscript describes the design of a brain-computer interface system (BCI) system paired with an electrical muscle stimulation suit for stroke rehabilitation and the reduction of tremors caused by Parkinson's disease. The idea is to strengthen the sensory-motor feedback loop, which will allow a more stabilized control of the affected extremities by taking into account the patient's motivation. To do so, his brain signals are measured to detect his intention to attempt to execute a movement, in contrast to the classical approach where the movement executions are imposed. A first feasibility study was completed. The author's next step is planning to test the system first with healthy subjects and finally with patients.
脑机接口联合FES治疗脑卒中康复和帕金森病震颤减少
这篇文章描述了中风和帕金森病是如何特别影响运动功能的两种疾病。随着技术的进步,有很多研究集中在寻找解决方案:在第一种情况下促进神经可塑性,在第二种情况下减轻症状。本文描述了一种脑机接口系统(BCI)系统的设计,该系统与电肌肉刺激服配对,用于中风康复和减少帕金森病引起的震颤。这个想法是为了加强感觉-运动反馈回路,考虑到病人的动机,这将允许对受影响的四肢进行更稳定的控制。为了做到这一点,研究人员测量了他的大脑信号,以检测他试图执行某个动作的意图,这与传统的执行动作的方法形成了对比。第一次可行性研究已经完成。作者的下一步计划是首先在健康受试者身上测试该系统,最后在患者身上测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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