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经颅直流电刺激诱导运动系统的兴奋性调节:一种多模态方法。

Excitability modulation of the motor system induced by transcranial direct current stimulation: a multimodal approach.

机构信息

Cognitive Neuroscience Section, IRCCS Centro San Giovanni di Dio Fatebenefratelli, Brescia, Italy.

出版信息

Neuroimage. 2013 Dec;83:569-80. doi: 10.1016/j.neuroimage.2013.06.076. Epub 2013 Jul 9.

Abstract

Anodal and cathodal transcranial direct current stimulations (tDCS) are both established techniques to induce cortical excitability changes. Typically, in the human motor system, such cortical modulations are inferred through changes in the amplitude of the motor evoked potentials (MEPs). However, it is now possible to directly evaluate tDCS-induced changes at the cortical level by recording the transcranial magnetic stimulation evoked potentials (TEPs) using electroencephalography (EEG). The present study investigated the modulation induced by the tDCS on the motor system. The study evaluates changes in the MEPs, in the amplitude and distribution of the TEPs, in resting state oscillatory brain activity and in behavioral performance in a simple manual response task. Both the short- and long-term tDCS effects were investigated by evaluating their time course at ~0 and 30min after tDCS. Anodal tDCS over the left primary motor cortex (M1) induced an enhancement of corticospinal excitability, whereas cathodal stimulation produced a reduction. These changes in excitability were indexed by changes in MEP amplitude. More interestingly, tDCS modulated the cortical reactivity, which is the neuronal activity evoked by TMS, in a polarity-dependent and site-specific manner. Cortical reactivity increased after anodal stimulation over the left M1, whereas it decreased with cathodal stimulation. These effects were partially present also at long term evaluation. No polarity-specific effect was found either on behavioral measures or on oscillatory brain activity. The latter showed a general increase in the power density of low frequency oscillations (theta and alpha) at both stimulation polarities. Our results suggest that tDCS is able to modulate motor cortical reactivity in a polarity-specific manner, inducing a complex pattern of direct and indirect cortical activations or inhibitions of the motor system-related network, which might be related to changes in synaptic efficacy of the motor cortex.

摘要

阳极和阴极经颅直流电刺激(tDCS)都是诱导皮层兴奋性变化的成熟技术。通常,在人类运动系统中,通过测量运动诱发电位(MEPs)的振幅来推断这种皮层调制。然而,现在可以通过脑电图(EEG)记录经颅磁刺激诱发电位(TEPs),直接评估 tDCS 引起的皮层水平的变化。本研究调查了 tDCS 对运动系统的调制作用。该研究评估了 tDCS 对 MEPs 幅度和分布、静息状态振荡脑活动以及简单手动反应任务中行为表现的调制作用。通过在 tDCS 后约 0 和 30 分钟评估其时间过程,研究了 tDCS 的短期和长期效应。左初级运动皮层(M1)的阳极 tDCS 诱导皮质脊髓兴奋性增强,而阴极刺激则产生抑制。MEP 幅度的变化反映了兴奋性的这些变化。更有趣的是,tDCS 以极性依赖性和特定部位的方式调制了皮层反应性,即 TMS 诱发的神经元活动。左 M1 阳极刺激后皮层反应性增加,而阴极刺激后则降低。这些效应在长期评估中也部分存在。在行为测量或振荡脑活动中均未发现极性特异性效应。后者显示两种刺激极性下低频振荡(θ和α)的功率密度普遍增加。我们的结果表明,tDCS 能够以特定的极性方式调节运动皮层的反应性,诱导与运动系统相关的网络的直接和间接皮层激活或抑制的复杂模式,这可能与运动皮层的突触效能变化有关。

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