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大脑动态维持从言语中快速提取规则。

Brain dynamics sustaining rapid rule extraction from speech.

机构信息

Institució Catalana de Recerca i Estudis Avançats, Barcelona, Spain.

出版信息

J Cogn Neurosci. 2011 Oct;23(10):3105-20. doi: 10.1162/jocn.2011.21636. Epub 2011 Jan 26.

Abstract

Language acquisition is a complex process that requires the synergic involvement of different cognitive functions, which include extracting and storing the words of the language and their embedded rules for progressive acquisition of grammatical information. As has been shown in other fields that study learning processes, synchronization mechanisms between neuronal assemblies might have a key role during language learning. In particular, studying these dynamics may help uncover whether different oscillatory patterns sustain more item-based learning of words and rule-based learning from speech input. Therefore, we tracked the modulation of oscillatory neural activity during the initial exposure to an artificial language, which contained embedded rules. We analyzed both spectral power variations, as a measure of local neuronal ensemble synchronization, as well as phase coherence patterns, as an index of the long-range coordination of these local groups of neurons. Synchronized activity in the gamma band (20-40 Hz), previously reported to be related to the engagement of selective attention, showed a clear dissociation of local power and phase coherence between distant regions. In this frequency range, local synchrony characterized the subjects who were focused on word identification and was accompanied by increased coherence in the theta band (4-8 Hz). Only those subjects who were able to learn the embedded rules showed increased gamma band phase coherence between frontal, temporal, and parietal regions.

摘要

语言习得是一个复杂的过程,需要不同认知功能的协同参与,包括提取和存储语言的单词及其嵌入规则,以逐步获得语法信息。正如其他研究学习过程的领域所表明的那样,神经元集合之间的同步机制在语言学习过程中可能具有关键作用。特别是,研究这些动态可能有助于揭示不同的振荡模式是否支持基于项目的单词学习和基于语音输入的规则学习。因此,我们在接触包含嵌入规则的人工语言的初始阶段跟踪了振荡神经活动的调制。我们分析了频谱功率变化,作为局部神经元集合同步的度量,以及相位相干模式,作为这些局部神经元组的长程协调的指标。先前报道与选择性注意的参与有关的伽马波段(20-40 Hz)的同步活动在远距离区域之间表现出局部功率和相位相干性的明显分离。在这个频率范围内,局部同步性特征是专注于单词识别的受试者,并且伴随着theta 波段(4-8 Hz)的相干性增加。只有那些能够学习嵌入规则的受试者在额叶、颞叶和顶叶区域之间显示出伽马波段相位相干性增加。

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