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经验驱动同步:音乐专业知识对神经振荡与音乐和弦之间的相位和振幅动态变化有不同的调节作用。

Experience Drives Synchronization: The phase and Amplitude Dynamics of Neural Oscillations to Musical Chords Are Differentially Modulated by Musical Expertise.

作者信息

Pallesen Karen Johanne, Bailey Christopher J, Brattico Elvira, Gjedde Albert, Palva J Matias, Palva Satu

机构信息

Department of Neuroscience and Pharmacology, University of Copenhagen, Copenhagen, Denmark; The Research Clinic for Functional Disorders and Psychosomatics, Aarhus University Hospital, Aarhus, Denmark; Center of Functionally Integrative Neuroscience, Aarhus University, Aarhus, Denmark.

Center of Functionally Integrative Neuroscience, Aarhus University, Aarhus, Denmark.

出版信息

PLoS One. 2015 Aug 20;10(8):e0134211. doi: 10.1371/journal.pone.0134211. eCollection 2015.

Abstract

Musical expertise is associated with structural and functional changes in the brain that underlie facilitated auditory perception. We investigated whether the phase locking (PL) and amplitude modulations (AM) of neuronal oscillations in response to musical chords are correlated with musical expertise and whether they reflect the prototypicality of chords in Western tonal music. To this aim, we recorded magnetoencephalography (MEG) while musicians and non-musicians were presented with common prototypical major and minor chords, and with uncommon, non-prototypical dissonant and mistuned chords, while watching a silenced movie. We then analyzed the PL and AM of ongoing oscillations in the theta (4-8 Hz) alpha (8-14 Hz), beta- (14-30 Hz) and gamma- (30-80 Hz) bands to these chords. We found that musical expertise was associated with strengthened PL of ongoing oscillations to chords over a wide frequency range during the first 300 ms from stimulus onset, as opposed to increased alpha-band AM to chords over temporal MEG channels. In musicians, the gamma-band PL was strongest to non-prototypical compared to other chords, while in non-musicians PL was strongest to minor chords. In both musicians and non-musicians the long-latency (> 200 ms) gamma-band PL was also sensitive to chord identity, and particularly to the amplitude modulations (beats) of the dissonant chord. These findings suggest that musical expertise modulates oscillation PL to musical chords and that the strength of these modulations is dependent on chord prototypicality.

摘要

音乐专长与大脑中的结构和功能变化相关,这些变化是听觉感知能力提升的基础。我们研究了神经元振荡对音乐和弦的锁相(PL)和幅度调制(AM)是否与音乐专长相关,以及它们是否反映了西方调性音乐中和弦的典型性。为此,我们在音乐家和非音乐家观看无声电影时,向他们呈现常见的典型大调和小调和弦,以及不常见的、非典型的不协和和弦和走调和弦,并记录他们的脑磁图(MEG)。然后,我们分析了theta(4 - 8 Hz)、alpha(8 - 14 Hz)、beta - (14 - 30 Hz)和gamma - (30 - 80 Hz)频段中持续振荡对这些和弦的PL和AM。我们发现,与在颞部MEG通道上对和弦的alpha频段AM增加相反,音乐专长与刺激开始后的前300毫秒内,在较宽频率范围内对和弦的持续振荡的PL增强有关。在音乐家中,与其他和弦相比,gamma频段PL对非典型和弦最强,而在非音乐家中,PL对小调和弦最强。在音乐家和非音乐家中,长潜伏期(> 200毫秒)的gamma频段PL也对和弦特性敏感,特别是对不协和和弦的幅度调制(节拍)敏感。这些发现表明,音乐专长会调节对音乐和弦的振荡PL,并且这些调制的强度取决于和弦的典型性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7d0/4546391/40f9a0f6b3e1/pone.0134211.g001.jpg

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