音乐熟悉会引起右侧额叶/颞叶和顶叶区域在θ和α波段的功能连接性

IF 2.3 3区 医学 Q3 CLINICAL NEUROLOGY
Alireza Malekmohammadi, Gordon Cheng
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引用次数: 0

摘要

经常聆听不熟悉的音乐选段会在大脑中形成功能性连接,因为音乐变得熟悉且令人难忘。然而,在熟悉音乐的过程中,这些连接在大脑皮层的哪个频谱上产生尚未确定。本研究调查了二十名参与者在三次被动聆听最初未知的古典音乐选段时,通过脑电图(EEG)记录到的大脑中基于相位的功能连接的电生理变化。功能连通性的评估基于通过重复测量方差分析测量所有重复中所有成对组合的脑电图电极之间的相位同步性,以及通过加权相位滞后指数(WPLI)方法测量不同频段中每两次重复聆听未知音乐之间的相位同步性。结果表明,在渐进的短期熟悉过程中,右额叶和右顶叶区域在θ和α频段的相位同步性增强。此外,在逐渐熟悉音乐的过程中,还发现右颞区和右顶区之间在θ频段的相位同步性增强。总之,本研究通过揭示在被动聆听过程中,重复在右半球的θ和α波段形成相位耦合,探索了短期音乐熟悉对神经反应的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Music Familiarization Elicits Functional Connectivity Between Right Frontal/Temporal and Parietal Areas in the Theta and Alpha Bands.

Frequent listening to unfamiliar music excerpts forms functional connectivity in the brain as music becomes familiar and memorable. However, where these connections spectrally arise in the cerebral cortex during music familiarization has yet to be determined. This study investigates electrophysiological changes in phase-based functional connectivity recorded with electroencephalography (EEG) from twenty participants' brains during thrice passive listening to initially unknown classical music excerpts. Functional connectivity is evaluated based on measuring phase synchronization between all pairwise combinations of EEG electrodes across all repetitions via repeated measures ANOVA and between every two repetitions of listening to unknown music with the weighted phase lag index (WPLI) method in different frequency bands. The results indicate an increased phase synchronization during gradual short-term familiarization between the right frontal and the right parietal areas in the theta and alpha bands. In addition, the increased phase synchronization is discovered between the right temporal areas and the right parietal areas at the theta band during gradual music familiarization. Overall, this study explores the short-term music familiarization effects on neural responses by revealing that repetitions form phasic coupling in the theta and alpha bands in the right hemisphere during passive listening.

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来源期刊
Brain Topography
Brain Topography 医学-临床神经学
CiteScore
4.70
自引率
7.40%
发文量
41
审稿时长
3 months
期刊介绍: Brain Topography publishes clinical and basic research on cognitive neuroscience and functional neurophysiology using the full range of imaging techniques including EEG, MEG, fMRI, TMS, diffusion imaging, spectroscopy, intracranial recordings, lesion studies, and related methods. Submissions combining multiple techniques are particularly encouraged, as well as reports of new and innovative methodologies.
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