首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >THE EFFECTS OF MUSIC ON BRAIN FUNCTIONAL NETWORKS: A NETWORK ANALYSIS
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THE EFFECTS OF MUSIC ON BRAIN FUNCTIONAL NETWORKS: A NETWORK ANALYSIS

机译:音乐对脑功能网络的影响:网络分析

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摘要

The human brain can dynamically adapt to the changing surroundings. To explore this issue, we adopted graph theoretical tools to examine changes in electroen-cephalography (EEG) functional networks while listening to music. Three different excerpts of Chinese Guqin music were played to 16 non-musician subjects. For the main frequency intervals, synchronizations between all pair-wise combinations of EEG electrodes were evaluated with phase lag index (PLI). Then, weighted connectivity networks were created and their organizations were characterized in terms of an average clustering coefficient and characteristic path length. We found an enhanced synchronization level in the alpha2 band during music listening. Music perception showed a decrease of both normalized clustering coefficient and path length in the alpha2 band. Moreover, differences in network measures were not observed between musical excerpts. These experimental results demonstrate an increase of functional connectivity as well as a more random network structure in the alpha2 band during music perception. The present study offers support for the effects of music on human brain functional networks with a trend toward a more efficient but less economical architecture.
机译:人体大脑可以动态适应变化的周围环境。为了探索这个问题,我们采用了图形理论工具,以检查拍摄音乐时触发电脑(EEG)功能网络的变化。中国古勤音乐的三种不同摘录为16名非音乐家科目。对于主频率间隔,用相滞索引(PLI)评估EEG电极的所有成对组合之间的同步。然后,创建了加权连接网络,并且其组织以平均聚类系数和特征路径长度的特征在于。在音乐侦听期间,我们在alpha2频带中找到了增强的同步级别。音乐感知在alpha2频带中显示了归一化聚类系数和路径长度的降低。此外,音乐摘录之间未观察到网络措施的差异。这些实验结果表明,在音乐感知期间,在alpha2带中的功能连接以及更随机的网络结构的增加。本研究为音乐对人脑功能网络的影响提供了支持,以更有效但不太经济的建筑趋势。

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