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MEG 脑磁图跨被试相位锁定自然语言听力刺激驱动活动与音乐训练相关。

MEG Intersubject Phase Locking of Stimulus-Driven Activity during Naturalistic Speech Listening Correlates with Musical Training.

机构信息

Montreal Neurological Institute, McGill University, Montreal, Quebec H3A 2B4, Canada

Centre for Research on Brain, Language and Music, Montreal, Quebec H3G 2A8, Canada.

出版信息

J Neurosci. 2021 Mar 24;41(12):2713-2722. doi: 10.1523/JNEUROSCI.0932-20.2020. Epub 2021 Feb 3.

Abstract

Musical training is associated with increased structural and functional connectivity between auditory sensory areas and higher-order brain networks involved in speech and motor processing. Whether such changed connectivity patterns facilitate the cortical propagation of speech information in musicians remains poorly understood. We here used magnetoencephalography (MEG) source imaging and a novel seed-based intersubject phase-locking approach to investigate the effects of musical training on the interregional synchronization of stimulus-driven neural responses during listening to naturalistic continuous speech presented in silence. MEG data were obtained from 20 young human subjects (both sexes) with different degrees of musical training. Our data show robust bilateral patterns of stimulus-driven interregional phase synchronization between auditory cortex and frontotemporal brain regions previously associated with speech processing. Stimulus-driven phase locking was maximal in the delta band, but was also observed in the theta and alpha bands. The individual duration of musical training was positively associated with the magnitude of stimulus-driven alpha-band phase locking between auditory cortex and parts of the dorsal and ventral auditory processing streams. These findings provide evidence for a positive relationship between musical training and the propagation of speech-related information between auditory sensory areas and higher-order processing networks, even when speech is presented in silence. We suggest that the increased synchronization of higher-order cortical regions to auditory cortex may contribute to the previously described musician advantage in processing speech in background noise. Musical training has been associated with widespread structural and functional brain plasticity. It has been suggested that these changes benefit the production and perception of music but can also translate to other domains of auditory processing, such as speech. We developed a new magnetoencephalography intersubject analysis approach to study the cortical synchronization of stimulus-driven neural responses during the perception of continuous natural speech and its relationship to individual musical training. Our results provide evidence that musical training is associated with higher synchronization of stimulus-driven activity between brain regions involved in early auditory sensory and higher-order processing. We suggest that the increased synchronized propagation of speech information may contribute to the previously described musician advantage in processing speech in background noise.

摘要

音乐训练与听觉感觉区域和涉及言语和运动处理的更高阶大脑网络之间的结构和功能连接增加有关。这种连接模式的变化是否有助于音乐家中言语信息的皮质传播仍知之甚少。我们在这里使用脑磁图(MEG)源成像和一种新的基于种子的主体间相位锁定方法来研究音乐训练对在安静中聆听自然连续言语时刺激驱动的神经反应的区域间同步的影响。MEG 数据来自 20 名具有不同音乐训练程度的年轻人类受试者(男女)。我们的数据显示,听觉皮层与以前与言语处理相关的额颞脑区之间存在强烈的双侧刺激驱动的区域间相位同步模式。刺激驱动的相位锁定在 delta 波段最大,但在 theta 和 alpha 波段也观察到。个体音乐训练时间与听觉皮层和背侧和腹侧听觉处理流的部分之间的刺激驱动 alpha 波段相位锁定的幅度呈正相关。这些发现为音乐训练与听觉感觉区域和更高阶处理网络之间的言语相关信息传播之间存在正相关关系提供了证据,即使在言语在安静中呈现时也是如此。我们认为,更高阶皮质区域与听觉皮层的同步增加可能有助于描述音乐家中在背景噪声中处理言语的优势。音乐训练与广泛的结构和功能大脑可塑性有关。有人认为这些变化有利于音乐的产生和感知,但也可以转化为其他听觉处理领域,例如言语。我们开发了一种新的脑磁图主体间分析方法来研究连续自然言语感知过程中刺激驱动的神经反应的皮质同步及其与个体音乐训练的关系。我们的结果表明,音乐训练与早期听觉感觉和更高阶处理中涉及的脑区之间刺激驱动活动的更高同步性有关。我们认为,言语信息的增加同步传播可能有助于描述音乐家中在背景噪声中处理言语的优势。

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