Department of Neurobiology and Biophysics, Vilnius University, 10257 Vilnius, Lithuania.
Jāzeps Vītols Latvian Academy of Music, 1050 Riga, Latvia.
Sensors (Basel). 2022 May 27;22(11):4064. doi: 10.3390/s22114064.
The neural correlates of intentional emotion transfer by the music performer are not well investigated as the present-day research mainly focuses on the assessment of emotions evoked by music. In this study, we aim to determine whether EEG connectivity patterns can reflect differences in information exchange during emotional playing. The EEG data were recorded while subjects were performing a simple piano score with contrasting emotional intentions and evaluated the subjectively experienced success of emotion transfer. The brain connectivity patterns were assessed from the EEG data using the Granger Causality approach. The effective connectivity was analyzed in different frequency bands-delta, theta, alpha, beta, and gamma. The features that (1) were able to discriminate between the neutral baseline and the emotional playing and (2) were shared across conditions, were used for further comparison. The low frequency bands-delta, theta, alpha-showed a limited number of connections (4 to 6) contributing to the discrimination between the emotional playing conditions. In contrast, a dense pattern of connections between regions that was able to discriminate between conditions (30 to 38) was observed in beta and gamma frequency ranges. The current study demonstrates that EEG-based connectivity in beta and gamma frequency ranges can effectively reflect the state of the networks involved in the emotional transfer through musical performance, whereas utility of the low frequency bands (delta, theta, alpha) remains questionable.
目前的研究主要集中在评估音乐引发的情绪上,因此,音乐演奏者有意情绪传递的神经相关性还没有得到很好的研究。在这项研究中,我们旨在确定脑电图连接模式是否可以反映情感演奏过程中信息交换的差异。研究记录了被试演奏具有对比情感意图的简单钢琴曲时的脑电图数据,并评估了他们主观体验到的情感传递的成功程度。使用格兰杰因果关系方法从脑电图数据中评估脑连接模式。在不同的频带(delta、theta、alpha、beta 和 gamma)中分析有效连通性。能够区分中性基线和情感演奏的特征(1)和(2)在条件之间共享,用于进一步比较。低频带(delta、theta、alpha)显示了数量有限的连接(4 到 6 个),有助于区分情感演奏条件。相比之下,在 beta 和 gamma 频率范围内观察到一种能够区分条件的区域之间密集的连接模式(30 到 38 个)。本研究表明,基于脑电图的 beta 和 gamma 频带的连通性可以有效地反映通过音乐演奏进行情感传递所涉及的网络状态,而低频带(delta、theta、alpha)的效用仍然存在疑问。