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Biophysical modeling of neural plasticity induced by transcranial magnetic stimulation

机译:经颅磁刺激诱导神经塑性的生物物理学建模

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Transcranial magnetic stimulation (TMS) is a widely used noninvasive brain stimulation method capable of inducing plastic reorganisation of cortical circuits in humans. Changes in neural activity following TMS are often attributed to synaptic plasticity via process of long-term potentiation and depression (LTP/LTD). However, the precise way in which synaptic processes such as LTP/LTD modulate the activity of large populations of neurons, as stimulated en masse by TMS, are unclear. The recent development of biophysical models, which incorporate the physiological properties of TMS-induced plasticity mathematically, provide an excellent framework for reconciling synaptic and macroscopic plasticity. This article overviews the TMS paradigms used to induce plasticity, and their limitations. It then describes the development of biophysically-based numerical models of the mechanisms underlying LTP/LTD on population-level neuronal activity, and the application of these models to TMS plasticity paradigms, including theta burst and paired associative stimulation. Finally, it outlines how modeling can complement experimental work to improve mechanistic understandings and optimize outcomes of TMS-induced plasticity. (C) 2018 International Federation of Clinical Neurophysiology. Published by Elsevier B.V. All rights reserved.
机译:经颅磁刺激(TMS)是一种广泛使用的无血糖刺激方法,能够在人类中诱导皮质电路的塑性重组。 TMS后神经活性的变化通常归因于通过长期增强和抑郁症(LTP / LTD)的过程的突触可塑性。然而,突触过程如LTP / LED调节大量神经元的活性的精确方式,作为TMS的刺激,尚不清楚。最近的生物物理模型的发展,其在数学上掺入了TMS诱导可塑性的生理特性,为协调突触和宏观塑性提供了优异的框架。本文概述了用于诱导可塑性的TMS范例及其限制。然后,它描述了LTP / LTD上的机制的基于生物物理学的数值模型的发展,并将这些模型应用于TMS塑性范式,包括THETA突发和配对联想刺激。最后,概述了建模如何补充实验工作,以改善机械谅解,并优化TMS诱导的可塑性的结果。 (c)2018年国际临床神经生理联合会联合会。 elsevier b.v出版。保留所有权利。

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