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Time Domain Features for Relationship between Speed and Slow Potentials Activity during Periodic Movement and Motor Imagery at Fast and Slow for BCRI

机译:BCRI在周期性运动过程中速度和慢速电位活动之间的关系的时域特征以及快慢的运动图像

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摘要

Time domain features of slow potentials ≤2 Hz) during periodic movement and motor imagery at fast and slow (4 Hz and 2 Hz) were investigated in 4 healthy subjects by event-related potentials in the paper. EEG was recorded from 64 electrodes and 9 closely spaced electrodes overlaying the left and right sensorimotor area were analyzed. The subjects performed 40 fast and 40 slow (paced by metronome) movement and motor imagery of six tasks that involved three limbs (left and right index fingers and right toes) at first-person perspective. In addition, the subjects also performed motor imagery involved left and right arms and feet at third-person perspective. Based on brain processing mainly involved with the slow potentials during periodic movement and motor imagery, event-related potentials were low-pass filtered with 2 Hz cut-off frequency (24 dB/oct). At C1, Cz, and C2, fast movement-related potentials had a larger positive slow potentials tendency than slow movement-related potentials 1.5 s after movement onset. In contrast to movement, slow motor imagery-related potentials had a larger positive slow potentials tendency than fast motor imagery-related potentials 1.75 s after motor imagery onset at these electrodes. Time delays reaching positive peak and rebound rate after peak were also explored. These results may be very important for further exploring relationship between speed and EEG activity during periodic movement and motor imagery. The study may provide a strategy to realize fine control of robots by brain-controlled robot interface.
机译:通过事件相关电位研究了4名健康受试者在周期性运动过程中慢电位≤2Hz的时域特征以及快慢(4 Hz和2 Hz)的运动​​图像。从64个电极记录了脑电图,并分析了覆盖左右感觉运动区域的9个紧密间隔的电极。在第一人称视角下,受试者进行了40次快动作和40次慢动作(由节拍器调速)和6个任务的运动图像,涉及三个肢体(左右食指和右脚趾)。此外,受试者还以第三人称视角进行了涉及左臂和右臂和脚的运动成像。基于主要涉及周期性运动和运动成像中缓慢电位的大脑处理,对事件相关电位进行了2 Hz截止频率(24 dB / oct)的低通滤波。在C1,Cz和C2处,快速运动相关电位比运动开始后1.5秒的慢运动相关电位具有更大的正慢电位趋势。与运动相反,慢速运动图像相关电位在这些电极上开始运动图像后1.75秒具有比快速运动图像相关电位更大的正慢速趋势。还探讨了达到正峰值的时间延迟和峰值之后的反弹率。这些结果对于进一步探索周期性运动和运动成像期间速度与脑电活动之间的关系可能非常重要。该研究可以提供一种通过大脑控制的机器人界面实现对机器人的精细控制的策略。

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