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Delta/Theta 波段脑电活动塑造了听觉场景的节律性知觉采样。

Delta/Theta band EEG activity shapes the rhythmic perceptual sampling of auditory scenes.

机构信息

Biological Psychology and Neuropsychology, University of Hamburg, Hamburg, Germany.

Department for Cognitive Neuroscience, University of Bielefeld, Bielefeld, Germany.

出版信息

Sci Rep. 2021 Jan 27;11(1):2370. doi: 10.1038/s41598-021-82008-7.

Abstract

Many studies speak in favor of a rhythmic mode of listening, by which the encoding of acoustic information is structured by rhythmic neural processes at the time scale of about 1 to 4 Hz. Indeed, psychophysical data suggest that humans sample acoustic information in extended soundscapes not uniformly, but weigh the evidence at different moments for their perceptual decision at the time scale of about 2 Hz. We here test the critical prediction that such rhythmic perceptual sampling is directly related to the state of ongoing brain activity prior to the stimulus. Human participants judged the direction of frequency sweeps in 1.2 s long soundscapes while their EEG was recorded. We computed the perceptual weights attributed to different epochs within these soundscapes contingent on the phase or power of pre-stimulus EEG activity. This revealed a direct link between 4 Hz EEG phase and power prior to the stimulus and the phase of the rhythmic component of these perceptual weights. Hence, the temporal pattern by which the acoustic information is sampled over time for behavior is directly related to pre-stimulus brain activity in the delta/theta band. These results close a gap in the mechanistic picture linking ongoing delta band activity with their role in shaping the segmentation and perceptual influence of subsequent acoustic information.

摘要

许多研究都支持有节奏的听力模式,即大约 1 到 4 Hz 的节奏神经过程对声音信息进行编码。事实上,心理物理学数据表明,人类在扩展的声音环境中不是均匀地采样声音信息,而是在大约 2 Hz 的时间尺度上根据不同时刻的证据来做出感知决策。我们在这里测试了一个关键预测,即这种有节奏的感知采样与刺激前大脑活动的状态直接相关。人类参与者在记录脑电图的同时,判断 1.2 秒长的声音环境中频率扫掠的方向。我们根据刺激前 EEG 活动的相位或功率,计算了这些声音环境中不同时间段的感知权重。这揭示了刺激前 EEG 活动在 4 Hz 相位和功率与这些感知权重的节奏成分相位之间的直接联系。因此,用于行为的随时间对声音信息进行采样的时间模式与 delta/theta 频带中的刺激前大脑活动直接相关。这些结果填补了将持续的 delta 频带活动与其在塑造随后的声音信息的分割和感知影响中的作用联系起来的机制图中的一个空白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b19/7840678/a70ec060c7de/41598_2021_82008_Fig1_HTML.jpg

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