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Frequency-based Segregation of Syntactic and Semantic Unification during Online Sentence Level Language Comprehension

机译:在线句子级语言理解期间句法和语义统一的基于频率的分离

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摘要

During sentence level language comprehension, semantic and syntactic unification are functionally distinct operations. Nevertheless, both recruit roughly the same brain areas (spatially overlapping networks in the left frontotemporal cortex) and happen at the same time (in the first few hundred milliseconds after word onset). We tested the hypothesis that semantic and syntactic unification are segregated by means of neuronal synchronization of the functionally relevant networks in different frequency ranges: gamma (40 Hz and up) for semantic unification and lower beta (10–20 Hz) for syntactic unification. EEG power changes were quantified as participants read either correct sentences, syntactically correct though meaningless sentences (syntactic prose), or sentences that did not contain any syntactic structure (random word lists). Other sentences contained either a semantic anomaly or a syntactic violation at a critical word in the sentence. Larger EEG gamma-band power was observed for semantically coherent than for semantically anomalous sentences. Similarly, beta-band power was larger for syntactically correct sentences than for incorrect ones. These results confirm the existence of a functional dissociation in EEG oscillatory dynamics during sentence level language comprehension that is compatible with the notion of a frequency-based segregation of syntactic and semantic unification.
机译:在句子层面语言理解,语义和句法统一在功能上是不同的操作。然而,无论是招大致相同的大脑区域(空间重叠在左额颞叶皮层网络)和(字发病后第一个几百毫秒)在同一时间发生。我们测试了语义和语法统一通过在不同的频率范围内的功能上相关的网络的神经元同步的装置分离的假设:对于语义统一和句法统一低β(10-20赫兹)-γ(40赫兹以上)。脑电功率变化进行量化参与者读取这两种正确的句子,语法正确但毫无意义的句子(句法散文),或句子不包含任何语法结构(随机单词列表)。其他句子无论是包含语义异常或句法违反在句子中的关键单词。观察到比语义反常的句子语义连贯的大脑电图伽玛带电源。同样,β波段功率是为语法正确的句子,比那些不正确较大。这些结果证实句子层面的语言理解中脑电图振荡动力学功能分离是与句法和语义统一的基于频率的种族隔离的概念相兼容的存在。

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