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The Electrophysiology of Basic Phrase Building

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Figshare2016-10-12 更新2026-04-29 收录
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A defining trait of linguistic competence is the ability to combine elements into increasingly complex structures to denote, and to comprehend, a potentially infinite number of meanings. Recent magnetoencephalography (MEG) work has investigated these processes by comparing the response to nouns in combinatorial (blue car) and non-combinatorial (rnsh car) contexts. In the current study we extended this paradigm using electroencephalography (EEG) to dissociate the role of semantic content from phonological well-formedness (yerl car). We used event-related potential (ERP) recordings in order to better relate the observed neurophysiological correlates of basic combinatorial operations to prior ERP work on comprehension. We found that nouns in combinatorial contexts (blue car) elicited a greater centro-parietal negativity between 180-400ms, independent of the phonological well-formedness of the context word. We discuss the potential relationship between this ‘combinatorial’ effect and classic N400 effects. We also report preliminary evidence for an early anterior negative deflection immediately preceding the critical noun in combinatorial contexts, which we tentatively interpret as an electrophysiological reflex of syntactic structure initialization.

语言能力的核心特征之一,在于能够将语言要素组合为愈发复杂的结构,以表征并理解潜在无限的语义内涵。近期的脑磁图(magnetoencephalography, MEG)相关研究通过对比组合性语境(如“蓝色汽车”)与非组合性语境(如“rnsh汽车”)下对名词的神经响应,探究了上述语言组合过程。本研究采用脑电图(electroencephalography, EEG)拓展了这一实验范式,旨在将语义内容与语音合法性(如“yerl汽车”)的作用分离开来。我们借助事件相关电位(event-related potential, ERP)记录技术,以期将基础组合操作的神经生理关联,与此前针对语义理解的ERP研究建立更紧密的联系。实验结果显示,组合性语境中的名词会在180~400ms区间诱发更强的中央顶叶负波,且该效应不受语境词语音合法性的影响。我们讨论了这一“组合性”效应与经典N400成分之间的潜在关联。此外,我们还报告了一项初步发现:在组合性语境中,关键名词出现前会即刻出现一处早期前部负偏转,我们暂将其解释为句法结构初始化的电生理反应。

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2016-10-12
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