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Measuring Brain Stimulation Induced Changes in Cortical Properties Using TMS-EEG

机译:使用TMS-EEG测量大脑刺激诱导的皮质特性变化

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Neuromodulatory brain stimulation can induce plastic reorganization of cortical circuits that persist beyond the period of stimulation. Most of our current knowledge about the physiological properties has been derived from the motor cortex. The integration of transcranial magnetic stimulation (TMS) and electroencephalography (EEG) is a valuable method for directly probing excitability, connectivity and oscillatory dynamics of regions throughout the brain. Offering in depth measurement of cortical reactivity, TMS-EEG allows the evaluation of TMS-evoked components that may act as a marker for cortical excitation and inhibition. A growing body of research is using concurrent TMS and EEG (TMS-EEG) to explore the effects of different neuromodulatory techniques such as repetitive TMS and transcranial direct current stimulation on cortical function, particularly in non-motor regions. In this review, we outline studies examining TMS-evoked potentials and oscillations before and after, or during a single session of brain stimulation. Investigating these studies will aid in our understanding of mechanisms involved in the modulation of excitability and inhibition by neuroplasticity following different stimulation paradigms. (C) 2015 Elsevier Inc. All rights reserved.
机译:神经调节性脑刺激可以诱导皮层回路的塑性重组,这种塑性重组在刺激期之外持续存在。我们目前有关生理特性的大多数知识都来自运动皮层。经颅磁刺激(TMS)和脑电图(EEG)的集成是直接探测整个大脑区域的兴奋性,连通性和振荡动力学的有价值的方法。 TMS-EEG提供了对皮质反应性的深度测量,可以评估TMS诱发的成分,这些成分可能充当皮质激发和抑制的标志物。越来越多的研究正在使用并发TMS和EEG(TMS-EEG)探索不同的神经调节技术,例如重复TMS和经颅直流电刺激对皮质功能的影响,特别是在非运动区域。在这篇综述中,我们概述了研究TMS诱发的电位和振荡的前后研究,或在单个会议中的研究。对这些研究进行调查将有助于我们理解在不同刺激范式下,参与调节兴奋性和抑制神经可塑性的机制。 (C)2015 Elsevier Inc.保留所有权利。

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