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Rhythmic Effects of Syntax Processing in Music and Language

机译:音乐和语言中句法处理的节奏效果

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摘要

Music and language are human cognitive and neural functions that share many structural similarities. Past theories posit a sharing of neural resources between syntax processing in music and language (Patel, ), and a dynamic attention network that governs general temporal processing (Large and Jones, ). Both make predictions about music and language processing over time. Experiment 1 of this study investigates the relationship between rhythmic expectancy and musical and linguistic syntax in a reading time paradigm. Stimuli (adapted from Slevc et al., ) were sentences broken down into segments; each sentence segment was paired with a musical chord and presented at a fixed inter-onset interval. Linguistic syntax violations appeared in a garden-path design. During the critical region of the garden-path sentence, i.e., the particular segment in which the syntactic unexpectedness was processed, expectancy violations for language, music, and rhythm were each independently manipulated: musical expectation was manipulated by presenting out-of-key chords and rhythmic expectancy was manipulated by perturbing the fixed inter-onset interval such that the sentence segments and musical chords appeared either early or late. Reading times were recorded for each sentence segment and compared for linguistic, musical, and rhythmic expectancy. Results showed main effects of rhythmic expectancy and linguistic syntax expectancy on reading time. There was also an effect of rhythm on the interaction between musical and linguistic syntax: effects of violations in musical and linguistic syntax showed significant interaction only during rhythmically expected trials. To test the effects of our experimental design on rhythmic and linguistic expectancies, independently of musical syntax, Experiment 2 used the same experimental paradigm, but the musical factor was eliminated—linguistic stimuli were simply presented silently, and rhythmic expectancy was manipulated at the critical region. Experiment 2 replicated effects of rhythm and language, without an interaction. Together, results suggest that the interaction of music and language syntax processing depends on rhythmic expectancy, and support a merging of theories of music and language syntax processing with dynamic models of attentional entrainment.
机译:音乐和语言是人类的认知和神经功能,具有许多结构相似性。过去的理论认为,音乐和语言的语法处理(Patel,)与控制一般时间处理的动态注意力网络(Large和Jones,)之间存在着神经资源的共享。两者都会随着时间的推移对音乐和语言处理做出预测。本研究的实验1研究了阅读时间范式中节奏预期与音乐和语言语法之间的关系。刺激(改编自Slevc等人)被分成几段。每个句子段都与一个和弦配对,并以固定的发病间隔间隔出现。语言语法违规出现在花园路径设计中。在花园路径句子的关键区域(即处理句法意外的特定部分)中,对语言,音乐和节奏的预期违例分别进行独立处理:通过呈现失调的和弦来操纵音乐预期有节奏的预期是通过扰动固定的发作间隔来控制的,从而使句段和和弦出现在早期或晚期。记录每个句子段的阅读时间,并比较其语言,音乐和节奏预期。结果显示节奏预期和语言语法预期对阅读时间的主要影响。节奏对音乐和语言句法之间的相互作用也有影响:音乐和语言句法违规的影响仅在有节奏的预期试验中显示出显着的相互作用。为了测试我们的实验设计对节奏和语言期望的影响,与音乐句法无关,实验2使用相同的实验范式,但消除了音乐因素-简单地无声地呈现语言刺激,并在关键区域操纵节奏期望。实验2在没有互动的情况下复制了节奏和语言效果。总之,结果表明音乐和语言语法处理的交互作用取决于节奏的期望,并支持音乐和语言语法处理理论与注意力吸引的动态模型的融合。

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