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清醒状态下经颅磁刺激诱导的皮质可塑性会影响睡眠期间的脑电图活动。

Cortical plasticity induced by transcranial magnetic stimulation during wakefulness affects electroencephalogram activity during sleep.

作者信息

De Gennaro Luigi, Fratello Fabiana, Marzano Cristina, Moroni Fabio, Curcio Giuseppe, Tempesta Daniela, Pellicciari Maria Concetta, Pirulli Cornelia, Ferrara Michele, Rossini Paolo Maria

机构信息

Department of Psychology, University of Rome La Sapienza, Rome, Italy.

出版信息

PLoS One. 2008 Jun 25;3(6):e2483. doi: 10.1371/journal.pone.0002483.

Abstract

BACKGROUND

Sleep electroencephalogram (EEG) brain oscillations in the low-frequency range show local signs of homeostatic regulation after learning. Such increases and decreases of slow wave activity are limited to the cortical regions involved in specific task performance during wakefulness. Here, we test the hypothesis that reorganization of motor cortex produced by long-term potentiation (LTP) affects EEG activity of this brain area during subsequent sleep.

METHODOLOGY/PRINCIPAL FINDINGS: By pairing median nerve stimulation with transcranial magnetic stimulation over the contralateral motor cortex, one can potentiate the motor output, which is presumed to reflect plasticity of the neural circuitry. This paired associative stimulation increases M1 cortical excitability at interstimulus intervals of 25 ms. We compared the scalp distribution of sleep EEG power following paired associative stimulation at 25 ms to that following a control paradigm with 50 ms intervals. It is shown that the experimental manipulation by paired associative stimulation at 25 ms induces a 48% increase in amplitude of motor evoked potentials. This LTP-like potentiation, induced during waking, affects delta and theta EEG power in both REM and non-REM sleep, measured during the following night. Slow-wave activity increases in some frontal and prefrontal derivations and decreases at sites neighboring and contralateral to the stimulated motor cortex. The magnitude of increased amplitudes of motor evoked potentials by the paired associative stimulation at 25 ms predicts enhancements of slow-wave activity in prefrontal regions.

CONCLUSIONS/SIGNIFICANCE: An LTP-like paradigm, presumably inducing increased synaptic strength, leads to changes in local sleep regulation, as indexed by EEG slow-wave activity. Enhancement and depression of slow-wave activity are interpreted in terms of a simultaneous activation of both excitatory and inhibitory circuits consequent to the paired associative stimulation at 25 ms.

摘要

背景

低频范围内的睡眠脑电图(EEG)脑振荡在学习后显示出局部稳态调节的迹象。慢波活动的这种增加和减少仅限于清醒期间参与特定任务表现的皮质区域。在此,我们测试以下假设:长期增强(LTP)产生的运动皮质重组会影响后续睡眠期间该脑区的EEG活动。

方法/主要发现:通过将正中神经刺激与对侧运动皮质的经颅磁刺激配对,可以增强运动输出,这被认为反映了神经回路的可塑性。这种配对联想刺激在25毫秒的刺激间隔下增加了M1皮质兴奋性。我们比较了25毫秒配对联想刺激后睡眠EEG功率的头皮分布与50毫秒间隔的对照范式后的头皮分布。结果表明,25毫秒的配对联想刺激所进行的实验操作使运动诱发电位的幅度增加了48%。这种在清醒期间诱导的类似LTP的增强作用会影响随后夜间测量的快速眼动(REM)和非快速眼动(non-REM)睡眠中的δ和θ EEG功率。慢波活动在一些额叶和前额叶导联中增加,而在受刺激运动皮质相邻和对侧的部位减少。25毫秒的配对联想刺激使运动诱发电位幅度增加的程度可预测前额叶区域慢波活动的增强。

结论/意义:一种类似LTP的范式,可能会诱导突触强度增加,导致局部睡眠调节发生变化,以EEG慢波活动为指标。慢波活动的增强和抑制被解释为25毫秒配对联想刺激后兴奋性和抑制性回路同时激活的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cecb/2423620/3fd274c2a036/pone.0002483.g001.jpg

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