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刺激强度与初始脑状态的非线性相互作用:在线 TMS 效应的促进/抑制范围模型的证据。

Nonlinear interaction between stimulation intensity and initial brain state: Evidence for the facilitatory/suppressive range model of online TMS effects.

机构信息

School of Psychology, Faculty of Health and Medical Sciences, University of Surrey, Stag Hill Guildford, GU2 7XH, UK.

Department of Psychology, University of Milano-Bicocca, Milan, Italy; IRCCS Mondino Foundation, Pavia, Italy.

出版信息

Neurosci Lett. 2021 Jan 18;742:135538. doi: 10.1016/j.neulet.2020.135538. Epub 2020 Nov 28.

Abstract

The effects of online Transcranial Magnetic Stimulation (TMS) can qualitatively vary as a function of brain state. For example, TMS intensities which normally impair performance can have a facilitatory effect if the targeted neuronal representations are in a suppressed state. These phenomena have been explained in terms of the existence of distinct facilitatory and suppressive ranges as a function of TMS intensity which are shifted by changes in neural excitability. We tested this model by applying TMS at a low (60 % of phosphene threshold) or high (120 % of phosphene threshold) intensity during a priming paradigm. Our results show that state-dependent TMS effects vary qualitatively as a function of TMS intensity. Whereas the application of TMS at 120 % of participants' phosphene threshold impaired performance on fully congruent trials (in effect, reducing the benefit of priming), TMS applied at a lower intensity (60 % of phosphene threshold), facilitated performance on congruent trials. These results demonstrate that behavioral effects of TMS reflect a nonlinear interaction between initial activation state and TMS intensity. They also provide support for the existence of facilitatory/suppressive ranges of TMS effects which shift when neural excitability changes.

摘要

在线经颅磁刺激 (TMS) 的效果会因大脑状态的不同而发生定性变化。例如,如果目标神经元表示处于抑制状态,则通常会降低性能的 TMS 强度会产生促进作用。这些现象可以根据 TMS 强度作为函数存在的不同促进和抑制范围来解释,这些范围会因神经兴奋性的变化而发生偏移。我们通过在启动范式期间以低强度(闪光阈值的 60%)或高强度(闪光阈值的 120%)应用 TMS 来测试该模型。我们的结果表明,TMS 的状态相关效应会根据 TMS 强度发生定性变化。虽然在 120%的参与者闪光阈值应用 TMS 会损害完全一致试验的表现(实际上,降低了启动的益处),但在较低强度(闪光阈值的 60%)应用 TMS 会促进一致试验的表现。这些结果表明,TMS 的行为效应反映了初始激活状态和 TMS 强度之间的非线性相互作用。它们还为 TMS 效应的促进/抑制范围的存在提供了支持,当神经兴奋性发生变化时,这些范围会发生偏移。

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