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在视觉序列学习期间,神经活动会在训练后的自发 EEG 中留下痕迹。

Neural activations during visual sequence learning leave a trace in post-training spontaneous EEG.

机构信息

Department of Physiology, Pharmacology and Neuroscience, City University of New York Medical School, New York, New York, United States of America.

出版信息

PLoS One. 2013 Jun 14;8(6):e65882. doi: 10.1371/journal.pone.0065882. Print 2013.

Abstract

Recent EEG studies have shown that implicit learning involving specific cortical circuits results in an enduring local trace manifested as local changes in spectral power. Here we used a well characterized visual sequence learning task and high density-(hd-)EEG recording to determine whether also declarative learning leaves a post-task, local change in the resting state oscillatory activity in the areas involved in the learning process. Thus, we recorded hd-EEG in normal subjects before, during and after the acquisition of the order of a fixed spatial target sequence (VSEQ) and during the presentation of targets in random order (VRAN). We first determined the temporal evolution of spectral changes during VSEQ and compared it to VRAN. We found significant differences in the alpha and theta bands in three main scalp regions, a right occipito-parietal (ROP), an anterior-frontal (AFr), and a right frontal (RFr) area. The changes in frontal theta power during VSEQ were positively correlated with the learning rate. Further, post-learning EEG recordings during resting state revealed a significant increase in alpha power in ROP relative to a pre-learning baseline. We conclude that declarative learning is associated with alpha and theta changes in frontal and posterior regions that occur during the task, and with an increase of alpha power in the occipito-parietal region after the task. These post-task changes may represent a trace of learning and a hallmark of use-dependent plasticity.

摘要

最近的脑电图研究表明,涉及特定皮质回路的内隐学习会导致持久的局部痕迹,表现为频谱功率的局部变化。在这里,我们使用了一种经过良好特征描述的视觉序列学习任务和高密度脑电图(hd-EEG)记录来确定陈述性学习是否也会在学习过程中涉及的区域的静息状态振荡活动中留下任务后的局部变化。因此,我们在正常受试者进行固定空间目标序列(VSEQ)的顺序获取以及随机呈现目标(VRAN)之前、期间和之后记录了 hd-EEG。我们首先确定了 VSEQ 期间频谱变化的时间演变,并将其与 VRAN 进行了比较。我们在三个主要头皮区域(右枕顶区(ROP)、前额区(AFr)和右额区(RFr))中发现了在 alpha 和 theta 波段中的显著差异。VSEQ 期间额叶 theta 功率的变化与学习率呈正相关。此外,在静息状态下进行的学习后 EEG 记录显示,相对于学习前基线,ROP 中的 alpha 功率显着增加。我们的结论是,陈述性学习与任务期间前额和后区域的 alpha 和 theta 变化以及任务后枕顶区域 alpha 功率的增加有关。这些任务后的变化可能代表学习的痕迹和使用依赖性可塑性的标志。

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