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Simultaneous Brain-Computer Interfacing and Motor Control:Expanding the Reach of Non-Invasive BCIs

机译:同时脑电脑接口和电机控制:扩大非侵入性BCIS的范围

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Brain-computer interfaces (BCIs) have traditionally been developed for paralyzed and locked-in individuals with no motor control. However, there is a much larger population of patients with some residual motor function as well as the general population of able-bodied individuals, both of whom could benefit significantly from BCIs. An important question that has yet to be systematically studied is: can subjects use BCIs simultaneously with overt motor activity? We present results from a preliminary study aimed at exploring this question. Three subjects used hand motor imagery in an electroencephalographic (EEG) BCI while simultaneously using a joystick to control a cursor. Particular attention was paid to preventing potential muscle artifacts from influencing imagery-based control. All three subjects were able to use the hybrid "imagery+joystick" mode of control over two days, demonstrating the ability to learn and significantly improve performance. These results suggest that subjects can potentially augment their normal human sensorimotor capability by exercising direct brain control over devices concurrently with overt motor control.
机译:脑电脑接口(BCIS)传统上是为瘫痪和锁定的个体开发而没有电机控制。然而,患有一些剩余电机功能的患者患者较大,并且能够拥有的一般人群,其中两者都可以从BCIS中显着受益。尚未系统地研究的一个重要问题是:可以对受试者同时使用明显的电机活动吗?我们提出了旨在探索这个问题的初步研究的结果。三个受试者在脑电图(EEG)BCI中使用了手部电动机图像,同时使用操纵杆来控制光标。需要特别注意,以防止潜在的肌肉伪像影响到基于图像的控制。所有三个科目都能够在两天内使用混合“图像+操纵杆”的控制模式,展示了学习和显着提高性能的能力。这些结果表明,受试者可以通过与公开的电机控制同时进行设备直接脑控制来增加其正常的人类感觉电力能力。

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