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Cortical activity during motor execution, motor imagery, and imagery-based online feedback

机译:运动执行,运动图像和基于图像的在线反馈过程中的皮层活动

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Imagery of motor movement plays an important role in learning of complex motor skills, from learning to serve in tennis to perfecting a pirouette in ballet. What and where are the neural substrates that underlie motor imagery-based learning? We measured electro-corticographic cortical surface potentials in eight human subjects during overt action and kinesthetic imagery of the same movement, focusing on power in "high frequency" (76-100 Hz) and "low frequency" (8-32 Hz) ranges. We quantitatively establish that the spatial distribution of local neuronal population activity during motor imagery mimics the spatial distribution of activity during actual motor movement. By comparing responses to electrocortical stimulation with imagery-induced cortical surface activity, we demonstrate the role of primary motor areas in movement imagery. The magnitude of imagery-induced cortical activity change was ~25% of that associated with actual movement. However, when subjects learned to use this imagery to control a computer cursor in a simple feedback task, the imagery-induced activity change was significantly augmented, even exceeding that of overt movement.
机译:从学习在网球中服役到完善芭蕾旋转腿,运动动作的图像在学习复杂的运动技能中起着重要作用。基于运动图像的学习的神经基础是什么?在哪里?我们在相同动作的明显动作和运动感觉图像期间,在8位人类受试者中测量了大脑皮层皮质表面电势,重点是“高频”(76-100 Hz)和“低频”(8-32 Hz)范围内的功率。我们定量确定运动图像期间局部神经元种群活动的空间分布模仿实际运动过程中活动的空间分布。通过比较对皮层电刺激与图像诱导的皮层表面活动的反应,我们证明了运动图像中主要运动区域的作用。图像诱发的皮层活动变化的幅度约为与实际运动相关的变化的25%。但是,当受试者学会在简单的反馈任务中使用此图像来控制计算机光标时,图像引起的活动变化会大大增加,甚至超过明显的运动。

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