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Phase synchronization of delta and theta oscillations increase during the detection of relevant lexical information

机译:在检测相关词汇信息期间δ和theta振荡的相位同步会增加

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摘要

During monitoring of the discourse, the detection of the relevance of incoming lexical information could be critical for its incorporation to update mental representations in memory. Because, in these situations, the relevance for lexical information is defined by abstract rules that are maintained in memory, a central aspect to elucidate is how an abstract level of knowledge maintained in mind mediates the detection of the lower-level semantic information. In the present study, we propose that neuronal oscillations participate in the detection of relevant lexical information, based on “kept in mind” rules deriving from more abstract semantic information. We tested our hypothesis using an experimental paradigm that restricted the detection of relevance to inferences based on explicit information, thus controlling for ambiguities derived from implicit aspects. We used a categorization task, in which the semantic relevance was previously defined based on the congruency between a kept in mind category (abstract knowledge), and the lexical semantic information presented. Our results show that during the detection of the relevant lexical information, phase synchronization of neuronal oscillations selectively increases in delta and theta frequency bands during the interval of semantic analysis. These increments occurred irrespective of the semantic category maintained in memory, had a temporal profile specific for each subject, and were mainly induced, as they had no effect on the evoked mean global field power. Also, recruitment of an increased number of pairs of electrodes was a robust observation during the detection of semantic contingent words. These results are consistent with the notion that the detection of relevant lexical information based on a particular semantic rule, could be mediated by increasing the global phase synchronization of neuronal oscillations, which may contribute to the recruitment of an extended number of cortical regions.
机译:在监视语篇期间,检测传入的词汇信息的相关性对于合并以更新记忆中的心理表示形式可能至关重要。因为在这些情况下,词汇信息的相关性是由存储在内存中的抽象规则定义的,所以要阐明的一个主要方面是,记住的抽象知识水平如何介导对较低级别语义信息的检测。在本研究中,我们建议神经元振荡基于从更抽象的语义信息派生的“记住”规则来参与相关词汇信息的检测。我们使用实验范式测试了我们的假设,该范式将基于显性信息的相关性检测限制在推理的范围内,从而控制了从隐含方面得出的歧义。我们使用了一个分类任务,其中先前基于牢记类别(抽象知识)和所呈现的词汇语义信息之间的一致性来定义语义相关性。我们的结果表明,在相关词汇信息的检测过程中,在语义分析的间隔内,神经元振荡的相位同步在δ和θ频带中选择性增加。这些增量的出现与内存中保留的语义类别无关,具有针对每个主题的特定时间配置文件,并且主要是被诱因的,因为它们对诱发的平均全球场强没有影响。另外,在语义偶然词的检测过程中,增加对电极对的招募是一项强有力的观察。这些结果与以下观点相一致:可以通过增加神经元振荡的全局相位同步来介导基于特定语义规则的相关词汇信息的检测,这可能有助于募集更多的皮质区域。

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