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Differences in Neurocognitive Mechanisms Underlying the Processing of Center-Embedded and Non–embedded Musical Structures

机译:中心嵌入式和非嵌入式音乐结构处理过程中神经认知机制的差异

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摘要

In music, chords are organized into hierarchical structures based on recursive or embedded syntax. How the brain extracts recursive grammar is a central question in musical cognition and other cognitive neuroscience, but the precise mechanism remains unclear. By analyzing event related potentials (ERPs) and neural oscillatory activity, the present study investigated neurocognitive mechanisms underlying the processing of center-embedded structure in music by examining the differences in center-embedded and non-embedded structure processing and evaluating how these differences are affected by musical proficiency. Based on Western musical proficiency, the subjects were divided into two groups, non-experts and experts. The results revealed that for non-experts, the processing of center-embedded structure elicited greater early right-anterior negativity (ERAN) and N5 components as well as, reduced alpha and gamma activities than did the non-embedded structure. For experts, no significant difference in the ERP response was observed between the processing of non-embedded and center-embedded structures; however, the processing of center-embedded structure elicited increased beta activity compared to non-embedded structure. These findings indicate that listeners different in proficiency would rely on different cognitive neural mechanisms in music processing with the syntactic complexity increases.
机译:在音乐中,基于递归或嵌入式语法,和弦被组织为分层结构。大脑如何提取递归语法是音乐认知和其他认知神经科学的核心问题,但确切的机制尚不清楚。通过分析事件相关电位(ERP)和神经振荡活动,本研究通过检查中心嵌入和非嵌入结构处理的差异并评估这些差异如何受到影响,研究了音乐中嵌入结构处理的神经认知机制。通过音乐水平。根据西方音乐水平,将受试者分为两组,即非专家和专家。结果表明,对于非专家,与非嵌入式结构相比,对中心嵌入式结构的处理引起更大的早期早期右前负电(ERAN)和N5成分,并降低了α和γ活性。对于专家而言,在非嵌入式和中心嵌入式结构的处理之间,ERP响应没有显着差异。然而,与非嵌入式结构相比,中心嵌入式结构的处理引起增加的beta活性。这些发现表明,熟练程度不同的听众在语法处理中会依赖于不同的认知神经机制,语法复杂度会增加。

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