Department of Neuroscience Imaging and Clinical Science, "G. d'Annunzio" University, Chieti, Italy.
Institute for Advanced Biomedical Technologies, "G. d'Annunzio" University, Chieti, Italy.
Sci Rep. 2018 Jan 19;8(1):1287. doi: 10.1038/s41598-018-19698-z.
The interference effects of transcranial magnetic stimulation (TMS) on several electroencephalographic (EEG) measures in both temporal and frequency domains have been reported. We tested the hypothesis whether the offline external inhibitory interference, although focal, could result in a global reorganization of the functional brain state, as assessed by EEG microstates. In 16 healthy subjects, we inhibited five parietal areas and used a pseudo stimulation (Sham) at rest. The EEG microstates were extracted before and after each stimulation. The canonical A, B, C and D templates were found before and after all stimulation conditions. The Sham, as well as the stimulation of a ventral site did not modify any resting EEG microstates' topography. On the contrary, interfering with parietal key-nodes of both dorsal attention (DAN) and default mode networks (DMN), we observed that the microstate C clearly changes, whereas the other three topographies are not affected. These results provide the first causal evidence of a microstates modification following magnetic interference. Since the microstate C has been associated to the activity in regions belonging to the cingulo-opercular network (CON), the regional specificity of such inhibition seems to support the theory of a link between CON and both DAN and DMN at rest.
经颅磁刺激(TMS)对几种脑电图(EEG)在时间和频率域的测量结果的干扰效应已有报道。我们检验了一个假设,即尽管外部抑制干扰是局部的,但它是否会导致功能脑状态的全局重组,如通过 EEG 微观状态来评估。在 16 名健康受试者中,我们抑制了五个顶叶区域,并在休息时使用假刺激(假刺激)。在每次刺激前后提取 EEG 微观状态。在所有刺激条件之前和之后都找到了典型的 A、B、C 和 D 模板。假刺激以及腹侧部位的刺激均未改变任何静息 EEG 微观状态的地形。相反,干扰背侧注意(DAN)和默认模式网络(DMN)的顶叶关键节点时,我们观察到微观状态 C 明显改变,而其他三种地形不受影响。这些结果提供了磁干扰后微观状态改变的第一个因果证据。由于微观状态 C 与属于扣带-顶叶网络(CON)的区域的活动有关,因此这种抑制的区域特异性似乎支持了 CON 与 DAN 和 DMN 在休息时之间存在联系的理论。