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Spatial organization of EEG coherence during listening to consonant and dissonant chords.

机译:在听辅音和不谐音和弦时脑电图一致性的空间组织。

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摘要

Theories of harmony state that the contribution of both sensory and cognitive components is important for musical consonance perception. The aims of the present study were to analyze (a) functional intra- and inter-hemispheric connectivity associated with listening to consonant and dissonant chords using EEG coherence method; (b) relationships between affective responsiveness, sensory aspects of perceived consonance and associated brain connectivity. We identified two lines of inter-hemispheric connectivity in the theta band; one localized anterior being sensitive to consonance and one localized posterior sensitive to dissonance. Stronger right intra-hemispheric connectivity for consonance than dissonance in the theta band was associated with higher pleasantness ratings. The relationship between sensory aspects of perceived consonance and left intra-hemispheric connectivity found in theta-2 was interpreted as processing of vertical harmony without emotional involvement. The stronger connectivity along the axis "left anterior-right posterior" for dissonance than consonance in the alpha-1 band is discussed as a correlate of novelty processing. By introducing a "auditory object dissociation" hypothesis we suggest to extend the present concept of harmony perception. We believe that "auditory object dissociation" is a component of "sensory dissonance."
机译:和声理论指出,感官和认知成分的贡献对于音乐和声感知都很重要。本研究的目的是分析(a)使用EEG相干法分析与听和弦和不谐和弦相关的功能性半球内和半球间连接; (b)情感反应能力,感知到的谐音的感觉方面和相关的大脑连通性之间的关系。我们在θ带中确定了两行半球间连通性。一局部对谐音敏感,另一局部对谐音敏感。与θ带中的失谐相比,右半球内部的更强的谐和度与较高的愉快度等级相关。在theta-2中发现的和声感觉方面与左半球内连通性之间的关系被解释为在没有情感参与的情况下处理垂直和谐。讨论了与α-1波段中的谐音相比,沿谐音“左前右后”轴更强的连通性,这是新奇处理的关联。通过引入“听觉对象分离”假设,我们建议扩展和声感知的当前概念。我们认为“听觉对象分离”是“感觉失调”的组成部分。

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