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First steps in the development of an EEG-based system to detect intention of gait initiation

机译:基于脑电图的系统检测步态启动意图的第一步

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The ability to walk is a very important characteristic of the human being that unfortunately not everyone can enjoy. Subjects with spinal cord damage or who have had a stroke may have difficulties in walking, or even be unable to walk, depending on their degree of disability. Although, in some cases, it is possible to recover mobility, the rehabilitation process can continue for long periods of time. This article presents a methodology to detect walking intention in healthy subjects before the movement actually starts. This is done by measuring brain activity through electroencephalographic signals (EEG) that can be extracted from the motor cortex. The preparation and performance of a movement generates a phenomenon called event-related desynchronization (ERD) in the mu and beta frequency bands. This paper shows a technique to characterize this brain process during gait onset and the results of preliminary tests with 3 healthy subjects. The output of the classifier can serve as a command to move an exoskeletal system that helps to perform the movement, so it might improve rehabilitation. The aim is to obtain reliable results to continue further research with more healthy subjects and patients who are not able to walk or do not have the strength to do so and also carry out real time tests.
机译:走路的能力是人类的一个非常重要的特征,不幸的是,并不是每个人都能享受的。脊髓损伤或中风的受试者可能会难以行走,甚至无法行走,具体取决于他们的残疾程度。尽管在某些情况下可以恢复行动能力,但是康复过程可以持续很长时间。本文介绍了一种方法,可以在运动开始之前检测健康受试者的步行意图。这是通过通过可从运动皮层提取的脑电图信号(EEG)测量大脑活动来完成的。运动的准备和执行会在mu和beta频段中产生一种称为事件相关失步(ERD)的现象。本文展示了一种在步态发作过程中表征该大脑过程的技术以及对3名健康受试者进行初步测试的结果。分类器的输出可以用作移动有助于执行运动的骨骼系统的命令,因此它可以改善康复。目的是获得可靠的结果,以继续与更健康的受试者以及无法走路或没有力量做这件事的患者进行进一步的研究,并进行实时测试。

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