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时空动态特性表征了连续说话和倾听的频谱连接特征。

Spatiotemporal dynamics characterise spectral connectivity profiles of continuous speaking and listening.

作者信息

Abbasi Omid, Steingräber Nadine, Chalas Nikos, Kluger Daniel S, Gross Joachim

机构信息

Institute for Biomagnetism and Biosignal Analysis, University of Münster, Münster, Germany.

Otto-Creutzfeldt-Center for Cognitive and Behavioral Neuroscience, University of Münster, Münster, Germany.

出版信息

PLoS Biol. 2023 Jul 21;21(7):e3002178. doi: 10.1371/journal.pbio.3002178.

Abstract

Speech production and perception are fundamental processes of human cognition that both rely on intricate processing mechanisms that are still poorly understood. Here, we study these processes by using magnetoencephalography (MEG) to comprehensively map connectivity of regional brain activity within the brain and to the speech envelope during continuous speaking and listening. Our results reveal not only a partly shared neural substrate for both processes but also a dissociation in space, delay, and frequency. Neural activity in motor and frontal areas is coupled to succeeding speech in delta band (1 to 3 Hz), whereas coupling in the theta range follows speech in temporal areas during speaking. Neural connectivity results showed a separation of bottom-up and top-down signalling in distinct frequency bands during speaking. Here, we show that frequency-specific connectivity channels for bottom-up and top-down signalling support continuous speaking and listening. These findings further shed light on the complex interplay between different brain regions involved in speech production and perception.

摘要

言语产生与感知是人类认知的基本过程,二者均依赖于复杂的处理机制,而目前我们对这些机制仍知之甚少。在此,我们通过使用脑磁图(MEG)来研究这些过程,以全面绘制大脑内部以及在持续说话和倾听过程中大脑区域活动与言语包络之间的连接情况。我们的研究结果不仅揭示了这两个过程部分共享的神经基础,还揭示了在空间、延迟和频率方面的分离。运动和额叶区域的神经活动在δ波段(1至3赫兹)与后续言语耦合,而在说话过程中,θ波段的耦合则跟随颞叶区域的言语。神经连接结果显示,在说话过程中,自下而上和自上而下的信号在不同频段分离。在此,我们表明,用于自下而上和自上而下信号传递的频率特异性连接通道支持持续的说话和倾听。这些发现进一步揭示了参与言语产生和感知的不同脑区之间的复杂相互作用。

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