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Band Power Tuning of Primary Motor Cortex EEG for Continuous Bimanual Movements

机译:初级电机Cortex EEG的频段功率调整,用于连续的Bimanual运动

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Comprehension of natural intelligent systems' capability to exhibit bimanual coordination facilitates the process of building systems with better coordination dynamics. Dark side of the bimanual coordination, 'Bimanual interference', is that execution of continuous bimanual movements is heavily constrained by spatiotemporal coupling. Ability of callosotomy patients to draw circle and square patterns with two different hands simultaneously with perfect uncoupling after surgical removal of Carpus callosum, makes the point clear that Carpus callosum plays key role in bimanual interference. This paper introduces a new viewpoint of this phenomenon. While the right-handed subjects were drawing asymmetric clockwise and anticlockwise circles and symmetric circle-square patterns, neural activity of Primary motor cortex, which controls movement execution, is recorded. Here major emphasis is placed on how different frequency band powers of EEG signals from primary motor cortex are altered with respect to different continuous bimanual movements. Results in this study demonstrate the essence of understanding feedback loop connections between Corpus callosum and primary motor cortex.
机译:理解自然智能系统表现出生物协调的能力促进了具有更好协调动态的构建系统的过程。黑暗的协调的黑暗面,'Bimanual干扰',是连续生理运动的执行受到时尚耦合的严重约束。胼exorocy患者的能力在手术移除癌症后同时使用两只不同的双手使用两只不同的双手绘制圆形和方形图案,使得点胼callosum在虚拟干扰中起着关键作用。本文介绍了这种现象的新观点。虽然右手受试者绘制不对称的顺时针和逆时针圆和对称圆形方形图案,记录了控制运动执行的主电机皮层的神经活动。这里有重点强调,关于不同的连续的Bimanual Movements改变了来自主电机皮质的EEG信号的不同频带功率。这项研究的结果证明了了解语料库和主电机皮质之间的反馈回路连接的本质。

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