Magnetic stimulation mapping of motor cortex: factors contributing to map area

G.W Thickbroom , R Sammut , F.L Mastaglia
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引用次数: 103

Abstract

Transcranial magnetic stimulation (TMS) can evoke an electromyographic response in muscles of the hand with stimulation at a large number of scalp sites widely spaced over the contralateral primary motor area of the brain. To determine the extent to which this is due to current spread from the stimulating coil to a smaller region of excited cortex, excitability curves of motor evoked potential amplitude vs. stimulus intensity were measured at multiple scalp sites. It was found that these curves were of very similar shape, but with different offsets along the stimulus intensity axis. This could be explained on the basis of current flow to a small excitable region of cortex located at some depth in the brain. It is concluded that the surface area of TMS maps is primarily determined by current spread and by the relationship between the position of the coil on the scalp and the depth of the motor output region in the cortex, and does not necessarily provide a true indication of the spatial extent of the motor output region projecting to the target muscle.

磁刺激的运动皮质映射:影响映射区域的因素
经颅磁刺激(TMS)可以通过刺激大量分布在对侧大脑初级运动区域的头皮部位来引起手部肌肉的肌电反应。为了确定这在多大程度上是由于电流从刺激线圈扩散到兴奋皮层的较小区域,在头皮多个部位测量了运动诱发电位振幅与刺激强度的兴奋性曲线。结果发现,这些曲线的形状非常相似,但沿刺激强度轴的偏移量不同。这可以解释为电流流向位于大脑深处的皮质的一个小的可兴奋区域。由此得出结论,经颅磁刺激图的表面积主要由电流分布和头皮线圈位置与皮层运动输出区域深度之间的关系决定,并不一定能提供运动输出区域投射到目标肌肉的空间范围的真实指示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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