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无创性联合可塑性诱导人类大脑皮质-皮质通路。

Noninvasive associative plasticity induction in a corticocortical pathway of the human brain.

机构信息

Department of Experimental Psychology, University of Oxford, Oxford OX1 3UD, United Kingdom.

出版信息

J Neurosci. 2011 Nov 30;31(48):17669-79. doi: 10.1523/JNEUROSCI.1513-11.2011.

Abstract

Coincident pairing of presynaptic and postsynaptic activity selectively strengthens synaptic connections, a key mechanism underlying cortical plasticity. Using paired associative transcranial magnetic stimulation (TMS), we demonstrate selective potentiation of physiological connectivity between two human brain regions, ventral premotor cortex (PMv) and primary motor cortex (M1) after repeated paired-pulse TMS of PMv and M1. The effect was anatomically specific: paired stimulation of the presupplementary motor area and M1 did not induce changes in PMv-M1 pathway connectivity. The effect was dependent on stimulation order: repeated stimulation of PMv before M1 led to strengthening of the PMv-M1 pathway, while repeated stimulation of M1 before PMv diminished the strength of the PMv-M1 pathway. The expression of the change in the pathway depended on the cognitive state of the subject at the time of testing: when the subject was tested at rest, paired PMv-M1 stimulation led to an increased inhibitory influence of PMv over M1, but when the subject was tested while engaged in a visuomotor task, PMv-M1 stimulation led to an increased facilitatory influence of PMv over M1. Plasticity evolved rapidly, lasted for at least 1 h, and began to reverse 3 h after intervention.

摘要

突触前和突触后活动的偶联选择性地增强了突触连接,这是皮质可塑性的关键机制。我们使用成对关联经颅磁刺激(TMS),在重复刺激 PMv 和 M1 的双脉冲 TMS 后,证明了两个人类大脑区域腹侧运动前皮质(PMv)和初级运动皮质(M1)之间生理连通性的选择性增强。这种效应具有解剖学特异性:对运动前辅助区和 M1 的成对刺激不会引起 PMv-M1 通路连通性的变化。这种效应取决于刺激顺序:PMv 在前 M1 在后的重复刺激会导致 PMv-M1 通路的增强,而 M1 在前 PMv 在后的重复刺激会减弱 PMv-M1 通路的强度。该通路变化的表达取决于测试时受试者的认知状态:当受试者在休息时接受测试时,PMv-M1 刺激会导致 PMv 对 M1 的抑制作用增强,但当受试者在进行视觉运动任务时接受测试时,PMv-M1 刺激会导致 PMv 对 M1 的促进作用增强。这种可塑性演变迅速,至少持续 1 小时,并且在干预后 3 小时开始逆转。

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