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经颅磁刺激对意识视觉检测任务中右半球额顶相位同步的因果调制。

Causal modulation of right hemisphere fronto-parietal phase synchrony with Transcranial Magnetic Stimulation during a conscious visual detection task.

机构信息

Cerebral Dynamics, Plasticity and Rehabilitation Group, FRONTLAB team, Institut du Cerveau et la Moelle Épinière (ICM), Pitié-Salpêtrière Hospital, CNRS UMR 7225, INSERM U 1127 & Sorbonne Université, 47 boulevard de l'Hôpital, Paris 75013, France.

IMPACT Team, Lyon Neuroscience Research Center (CRNL), CNRS UMR 5292, INSERM UMRS 1028, University Claude Bernard Lyon 1, Lyon, France.

出版信息

Sci Rep. 2021 Feb 15;11(1):3807. doi: 10.1038/s41598-020-79812-y.

Abstract

Correlational evidence in non-human primates has reported increases of fronto-parietal high-beta (22-30 Hz) synchrony during the top-down allocation of visuo-spatial attention. But may inter-regional synchronization at this specific frequency band provide a causal mechanism by which top-down attentional processes facilitate conscious visual perception? To address this question, we analyzed electroencephalographic (EEG) signals from a group of healthy participants who performed a conscious visual detection task while we delivered brief (4 pulses) rhythmic (30 Hz) or random bursts of Transcranial Magnetic Stimulation (TMS) to the right Frontal Eye Field (FEF) prior to the onset of a lateralized target. We report increases of inter-regional synchronization in the high-beta band (25-35 Hz) between the electrode closest to the stimulated region (the right FEF) and right parietal EEG leads, and increases of local inter-trial coherence within the same frequency band over bilateral parietal EEG contacts, both driven by rhythmic but not random TMS patterns. Such increases were accompained by improvements of conscious visual sensitivity for left visual targets in the rhythmic but not the random TMS condition. These outcomes suggest that high-beta inter-regional synchrony can be modulated non-invasively and that high-beta oscillatory activity across the right dorsal fronto-parietal network may contribute to the facilitation of conscious visual perception. Our work supports future applications of non-invasive brain stimulation to restore impaired visually-guided behaviors by operating on top-down attentional modulatory mechanisms.

摘要

在非人类灵长类动物中,有相关性证据表明,在自上而下分配视空间注意力时,额顶高β(22-30 Hz)同步性增加。但是,这个特定频段的区域间同步是否提供了一种因果机制,通过这种机制,自上而下的注意力过程促进了有意识的视觉感知?为了解决这个问题,我们分析了一组健康参与者的脑电图(EEG)信号,他们在执行有意识的视觉检测任务时,我们在目标出现之前,向右侧额眼区(FEF)施加短暂的(4 脉冲)节律性(30 Hz)或随机的经颅磁刺激(TMS)爆发。我们报告说,在高频带(25-35 Hz)中,靠近刺激区域的电极(右侧 FEF)和右侧顶叶 EEG 导联之间的区域间同步性增加,并且在相同的频率带内,双侧顶叶 EEG 触点之间的局部跨试验相干性增加,这两种增加都是由节律性而不是随机性 TMS 模式驱动的。这种增加伴随着有意识的视觉敏感度的提高,对于左视觉目标,在节律性 TMS 但不是随机 TMS 条件下。这些结果表明,高β区域间同步性可以进行非侵入性调节,并且右侧背侧额顶叶网络中的高β振荡活动可能有助于促进有意识的视觉感知。我们的工作支持了非侵入性脑刺激在通过操作自上而下的注意力调节机制来恢复受损的视觉引导行为方面的未来应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d692/7884390/5c1321c90a57/41598_2020_79812_Fig1_HTML.jpg

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