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首页> 外文期刊>Journal of Cognitive Neuroscience >Top–Down Control of Alpha Phase Adjustment in Anticipation of Temporally Predictable Visual Stimuli
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Top–Down Control of Alpha Phase Adjustment in Anticipation of Temporally Predictable Visual Stimuli

机译:自上而下的预期相位视觉刺激的阿尔法相位调整控制。

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摘要

Alpha oscillations (8-14 Hz) are proposed to represent an active mechanism of functional inhibition of neuronal processing. Specifically, alpha oscillations are associated with pulses of inhibition repeating every approximate to 100 msec. Whether alpha phase, similar to alpha power, is under top-down control remains unclear. Moreover, the sources of such putative top-down phase control are unknown. We designed a cross-modal (visual/auditory) attention study in which we used magnetoencephalography to record the brain activity from 34 healthy participants. In each trial, a somatosensory cue indicated whether to attend to either the visual or auditory domain. The timing of the stimulus onset was predictable across trials. We found that, when visual information was attended, anticipatory alpha power was reduced in visual areas, whereas the phase adjusted just before the stimulus onset. Performance in each modality was predicted by the phase of the alpha oscillations previous to stimulus onset. Alpha oscillations in the left pFC appeared to lead the adjustment of alpha phase in visual areas. Finally, alpha phase modulated stimulus-induced gamma activity. Our results confirm that alpha phase can be top-down adjusted in anticipation of predictable stimuli and improve performance. Phase adjustment of the alpha rhythm might serve as a neurophysiological resource for optimizing visual processing when temporal predictions are possible and there is considerable competition between target and distracting stimuli.
机译:提出了α振荡(8-14 Hz)来表示神经元加工功能抑制的积极机制。具体来说,α振荡与抑制脉冲相关,每隔大约100毫秒重复一次。与α功率相似的α相是否处于自上而下的控制尚不清楚。而且,这种推定的自上而下的相位控制的来源是未知的。我们设计了一个跨模态(视觉/听觉)注意力研究,其中我们使用了脑磁图记录了34位健康参与者的大脑活动。在每个试验中,体感提示指示是否要参加视觉或听觉领域。在所有试验中,刺激发作的时机都是可以预测的。我们发现,当参加视觉信息时,视觉区域的预期alpha功率会降低,而相位恰好在刺激发作之前进行了调整。每种刺激的表现都通过刺激发作之前的α振荡阶段来预测。左pFC中的α振荡似乎导致视觉区域中α相的调整。最后,阿尔法相调制刺激诱导伽玛活性。我们的结果证实,α相可以自上而下调整以预期可预期的刺激并改善性能。当可能进行时间​​预测并且目标和分散注意力的刺激之间存在相当大的竞争时,α节奏的相位调整可能会作为神经生理资源来优化视觉处理。

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  • 来源
    《Journal of Cognitive Neuroscience》 |2018年第8期|1157-1169|共13页
  • 作者单位

    Inst Nacl Neurol & Neurocirugia Manuel Velasco Su, Mexico City, DF, Mexico;

    Univ Birmingham, Ctr Human Brain Hlth, Birmingham, W Midlands, England;

    Radboud Univ Nijmegen, Ctr Cognit Neuroimaging, Donders Inst Brain Cognit & Behav, Nijmegen, Netherlands;

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