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首页> 外文期刊>Human brain mapping >Acute modulation of cortical oscillatory activities during short trains of high-frequency repetitive transcranial magnetic stimulation of the human motor cortex: A combined EEG and TMS study.
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Acute modulation of cortical oscillatory activities during short trains of high-frequency repetitive transcranial magnetic stimulation of the human motor cortex: A combined EEG and TMS study.

机译:短周期的高频重复经颅磁刺激人类运动皮层的皮质振荡活动的急性调制:结合脑电图和TMS研究。

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In this study, a combined repetitive transcranial magnetic stimulation/electroencephalography (rTMS/EEG) method was used to explore the acute changes of cortical oscillatory activity induced by intermittent short trains of high-frequency (5-Hz) rTMS delivered over the left primary motor cortex (M1). We evaluated the electrophysiological reaction to magnetic stimulation during and 2-4 s after 20 trains of 20-pulses rTMS, using event-related power (ERPow) that reflects the regional oscillatory activity of neural assemblies, and event-related coherence (ERCoh) that reflects the interregional functional connectivity of oscillatory neural activity. These event-related transformations were for the upper alpha (10-12 Hz) and beta (18-22 Hz) frequency ranges, respectively. For the alpha band, threshold rTMS and subthreshold rTMS induced an ERPow increase during the trains of stimulation mainly in frontal and central regions ipsilateral to stimulation. For the beta band, a similar synchronization of cortical oscillations for both rTMS intensities was seen. Moreover, subthreshold rTMS affected alpha-band activity more than threshold rTMS, inducing a specific ERCoh decrease over the posterior regions during the trains of stimulation. For beta band, the decrease in functional coupling was observed mainly during threshold rTMS. These findings provide a better understanding of the cortical effects of high-frequency rTMS, whereby the induction of oscillations reflects the capacity of electromagnetic pulses to alter regional and interregional synaptic transmissions of neural populations. Hum Brain Mapp, 2008. (c) 2007 Wiley-Liss, Inc.
机译:在这项研究中,结合重复经颅磁刺激/脑电图(rTMS / EEG)方法来探讨由左初级运动的高频(5-Hz)rTMS的间歇短火车诱导的皮层振荡活动的急性变化皮质(M1)。我们使用反映神经组件区域振荡活动的事件相关功率(ERPow)和事件相关相干性(ERCoh)评估了20串20脉冲rTMS期间和之后2-4秒内对磁刺激的电生理反应。反映了振荡神经活动的区域间功能连接。这些与事件相关的转换分别针对较高的alpha(10-12 Hz)和beta(18-22 Hz)频率范围。对于alpha波段,阈值rTMS和阈下rTMS引起的刺激序列中的ERPow增加主要在与刺激相同的额叶和中央区域。对于β波段,可以看到两种rTMS强度的皮层振荡都具有相似的同步性。此外,亚阈值rTMS对α波段活动的影响大于阈值rTMS,从而在刺激过程中导致后部区域的特定ERCOh降低。对于β波段,主要在阈值rTMS期间观察到功能耦合的降低。这些发现为高频rTMS的皮质效应提供了更好的理解,由此,振荡的感应反映了电磁脉冲改变神经种群的区域和区域间突触传递的能力。嗡嗡的大脑Mapp,2008年。(c)2007 Wiley-Liss,Inc.

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