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多感觉注意期间的脑振荡活动反映了激活、去抑制和认知控制。

Oscillatory brain activity during multisensory attention reflects activation, disinhibition, and cognitive control.

机构信息

University Medical Center Hamburg-Eppendorf, Department of Neurophysiology and Pathophysiology, Hamburg, Germany.

Institute of Cognitive Science, University of Osnabrück, Germany.

出版信息

Sci Rep. 2016 Sep 8;6:32775. doi: 10.1038/srep32775.

Abstract

In this study, we used a novel multisensory attention paradigm to investigate attention-modulated cortical oscillations over a wide range of frequencies using magnetencephalography in healthy human participants. By employing a task that required the evaluation of the congruence of audio-visual stimuli, we promoted the formation of widespread cortical networks including early sensory cortices as well as regions associated with cognitive control. We found that attention led to increased high-frequency gamma-band activity and decreased lower frequency theta-, alpha-, and beta-band activity in early sensory cortex areas. Moreover, alpha-band coherence decreased in visual cortex. Frontal cortex was found to exert attentional control through increased low-frequency phase synchronisation. Crossmodal congruence modulated beta-band coherence in mid-cingulate and superior temporal cortex. Together, these results offer an integrative view on the concurrence of oscillations at different frequencies during multisensory attention.

摘要

在这项研究中,我们使用了一种新颖的多感觉注意范式,通过在健康人类参与者中使用磁脑图来研究注意调节的皮质振荡在广泛的频率范围内。通过采用需要评估视听刺激一致性的任务,我们促进了包括早期感觉皮层以及与认知控制相关的区域在内的广泛皮质网络的形成。我们发现,注意导致早期感觉皮层区域的高频伽马带活动增加,低频θ、α和β带活动减少。此外,视觉皮层中的α带相干性降低。发现额叶皮层通过增加低频相位同步来发挥注意力控制作用。感觉模态一致性调制中扣带前回和上颞叶皮质的β带相干性。总之,这些结果提供了在多感觉注意过程中不同频率的振荡同时发生的综合观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/499f/5015072/b0b12109fa2e/srep32775-f1.jpg

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