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Neural mechanisms underlying word- and phrase-level morphological parsing

机译:单词和短语级别的形态学解析基础的神经机制

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How is morphological and morphosyntactic information processed during sentence reading? Are the neural mechanisms underlying word- and phrase-level combinatorial processing overlapping or distinct? Here, electroencephalography (EEG) and magnetoencephalography (MEG) responses were recorded simultaneously during silent reading of Finnish sentences. The experimental conditions included 1) well-formed grammatical sentences (correct condition), 2) sentences containing morphosyntactic violations (adjective noun number agreement violations), 3) morphological violations (incorrect stem allomorph and inflectional suffix combination), and 4) combined violations, containing both morphosyntactic and morphological violations. Signal space and source modeling results showed that morphosyntactic violations elicited a left anterior negativity effect, generated particularly in the left inferior frontal area. Morphological violations elicited a widespread negativity, resembling the N400. The neural sources of this negativity were localized most prominently to the right temporal cortical networks. Furthermore, all violations elicited P600 effects with similar widespread bilateral fronto-temporal neural generators that did not differ between morphosyntactic and morphological conditions. Our findings suggest at least partially distinct subnetworks in the fronto-temporal cortices for morphological and morphosyntactic parsing during the earlier stages of processes (similar to 400 ms post stimulus onset) and shared neural generators for the later processing stages. (C) 2015 Elsevier Ltd. All rights reserved.
机译:阅读句子时如何处理形态和句法信息?单词和短语级组合处理的神经机制是否重叠或不同?在这里,在静默阅读芬兰句子的同时记录了脑电图(EEG)和磁脑电图(MEG)响应。实验条件包括1)格式正确的语法句子(正确的条件),2)包含形态句法违背的句子(形容词名词数协定违背),3)形态学的违背(不正确的词干同形异义词和变体的后缀组合)和4)组合违背,包含形态句法和形态违规。信号空间和源建模结果表明,形态句法违规会引起左前负电效应,尤其是在左下额叶区域。违反形态引起了广泛的负面影响,类似于N400。这种阴性的神经源最明显地定位于正确的颞皮质网络。此外,所有违规行为都引起了类似的广泛性额颞神经生成器的P600效应,在形态句法和形态条件之间没有差异。我们的发现表明,额叶颞皮层中至少部分不同的子网络可以在过程的早期阶段(类似于刺激发作后的400 ms)进行形态和句法语法解析,并在后期的处理阶段共享神经生成器。 (C)2015 Elsevier Ltd.保留所有权利。

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