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Simultaneous high-definition transcranial direct current stimulation of the motor cortex and motor imagery

机译:同时高清经颅直流刺激电动机皮层和电动机图像

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Transcranial direct current stimulation (tDCS) has been used to affect the excitability of neurons within the cerebral cortex. Improvements in motor learning have been found in multiple studies when tDCS was applied to the motor cortex during or before task learning is performed. The application of tDCS to motor imagery, a cognitive task showing activation in similar areas to motor execution, has resulted in differing effects based on the amplitude and duration of stimulation. We utilize high definition tDCS, a more spatially localized version of tDCS, to investigate the effect of anodal stimulation on human motor imagery performance. In parallel, we model this stimulation using a finite element model to calculate stimulation area and electrical field amplitude within the brain in the motor cortex and non-stimulated frontal and parietal regions. Overall, we found a delayed increase in resting baseline power 30 minutes post stimulation in both the right and left sensorimotor cortices which resulted in an increase in event-related desynchronization.
机译:经颅直流刺激(TDC)用于影响脑皮质内神经元的兴奋性。在执行TDC在执行任务学习期间或之前将TDC应用于电动机皮质时,已经在多种研究中发现了电机学习的改进。 TDC的应用于电动机图像,一个认知任务,显示在类似区域的激活到电机执行,导致基于刺激幅度和持续时间的不同效果。我们利用高清晰度TDC,一个更空间的TDC版本,探讨阳极刺激对人机图像性能的影响。并行地,我们使用有限元模型模拟该刺激以计算电机皮层和非刺激的前部和顶部区域的大脑内的刺激区域和电场幅度。总体而言,我们发现休息基线功率延迟增加30分钟在右侧和左左传感器皮质中刺激后刺激,导致事件相关的除去的增加。

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