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Intra- and interbrain synchronization and network properties when playing guitar in duets

机译:在二重奏中弹吉他时大脑内部和大脑之间的同步以及网络属性

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摘要

To further test and explore the hypothesis that synchronous oscillatory brain activity supports interpersonally coordinated behavior during dyadic music performance, we simultaneously recorded the electroencephalogram (EEG) from the brains of each of 12 guitar duets repeatedly playing a modified Rondo in two voices by C.G. Scheidler. Indicators of phase locking and of within-brain and between-brain phase coherence were obtained from complex time-frequency signals based on the Gabor transform. Analyses were restricted to the delta (1–4 Hz) and theta (4–8 Hz) frequency bands. We found that phase locking as well as within-brain and between-brain phase-coherence connection strengths were enhanced at frontal and central electrodes during periods that put particularly high demands on musical coordination. Phase locking was modulated in relation to the experimentally assigned musical roles of leader and follower, corroborating the functional significance of synchronous oscillations in dyadic music performance. Graph theory analyses revealed within-brain and hyperbrain networks with small-worldness properties that were enhanced during musical coordination periods, and community structures encompassing electrodes from both brains (hyperbrain modules). We conclude that brain mechanisms indexed by phase locking, phase coherence, and structural properties of within-brain and hyperbrain networks support interpersonal action coordination (IAC).
机译:为了进一步测试和探究同步振动的大脑活动在二进位音乐表演过程中支持人际协调行为的假设,我们同时记录了来自12个吉他二重奏中每一个的大脑的脑电图(EEG),这些声音由C.G反复用两种声音反复演奏了改良的Rondo。舍德勒。基于Gabor变换,从复杂的时频信号中获得了相位锁定以及脑内和脑间相位相干性的指标。分析仅限于delta(1-4 Hz)和theta(4-8 Hz)频段。我们发现,在对音乐协调性提出特别高要求的时期,前额电极和中央电极的锁相以及脑内和脑间相位相干连接强度得到了增强。锁相调制是根据实验分配的领导者和跟随者的音乐角色进行的,从而证实了同步振动在二进位音乐演奏中的功能意义。图论分析显示,在音乐协调期间,脑内和超脑的网络具有较小的虚构性,并且在包括两个大脑的电极(超脑模块)的社区结构中得到增强。我们得出的结论是,由锁相,相位连贯性以及大脑内和超脑网络的结构特性索引的大脑机制支持人际行动协调(IAC)。

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