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Auditory cortical delta-entrainment interacts with oscillatory power in multiple fronto-parietal networks

机译:听觉皮层δ-夹带与多个额顶叶网络中的振荡能量相互作用

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摘要

The timing of slow auditory cortical activity aligns to the rhythmic fluctuations in speech. This entrainment is considered to be a marker of the prosodic and syllabic encoding of speech, and has been shown to correlate with intelligibility. Yet, whether and how auditory cortical entrainment is influenced by the activity in other speech–relevant areas remains unknown. Using source-localized MEG data, we quantified the dependency of auditory entrainment on the state of oscillatory activity in fronto-parietal regions. We found that delta band entrainment interacted with the oscillatory activity in three distinct networks. First, entrainment in the left anterior superior temporal gyrus (STG) was modulated by beta power in orbitofrontal areas, possibly reflecting predictive top-down modulations of auditory encoding. Second, entrainment in the left Heschl's Gyrus and anterior STG was dependent on alpha power in central areas, in line with the importance of motor structures for phonological analysis. And third, entrainment in the right posterior STG modulated theta power in parietal areas, consistent with the engagement of semantic memory. These results illustrate the topographical network interactions of auditory delta entrainment and reveal distinct cross-frequency mechanisms by which entrainment can interact with different cognitive processes underlying speech perception.
机译:听觉皮层活动缓慢的时机与语音的节奏波动一致。这种en带被认为是语音的韵律和音节编码的标志,并且已经证明与可懂度相关。然而,其他语言相关区域的活动是否影响听觉皮层夹带以及如何影响听觉皮层夹带仍然未知。使用源本地化的MEG数据,我们量化了听觉夹带对额顶区域振荡活动状态的依赖性。我们发现,三角带夹带在三个不同的网络中与振荡活动相互作用。首先,左前上颞回(STG)的夹带是由眶额区的β功率调制的,可能反映了听觉编码的预测性自上而下的调制。其次,左赫氏回旋带和前STG的夹带取决于中央区域的alpha功率,这与运动结构在语音分析中的重要性相一致。第三,右后STG的夹带调节顶区的theta功率,这与语义记忆的参与一致。这些结果说明了听觉三角洲夹带的地形网络相互作用,并揭示了不同的跨频机制,夹带可以通过这种机制与语音感知的不同认知过程相互作用。

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