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在演绎推理过程中,具有数学天赋的青少年会调动增强的θ波皮质网络工作空间配置。

Mathematically gifted adolescents mobilize enhanced workspace configuration of theta cortical network during deductive reasoning.

作者信息

Zhang L, Gan J Q, Wang H

机构信息

Key Lab of Child Development and Learning Science of Ministry of Education, Research Center for Learning Science, Southeast University, Nanjing, Jiangsu 210096, China.

Key Lab of Child Development and Learning Science of Ministry of Education, Research Center for Learning Science, Southeast University, Nanjing, Jiangsu 210096, China; School of Computer Science and Electronic Engineering, University of Essex, Colchester, UK.

出版信息

Neuroscience. 2015 Mar 19;289:334-48. doi: 10.1016/j.neuroscience.2014.12.072. Epub 2015 Jan 13.

Abstract

Previous studies have established the importance of the fronto-parietal brain network in the information processing of reasoning. At the level of cortical source analysis, this eletroencepalogram (EEG) study investigates the functional reorganization of the theta-band (4-8Hz) neurocognitive network of mathematically gifted adolescents during deductive reasoning. Depending on the dense increase of long-range phase synchronizations in the reasoning process, math-gifted adolescents show more significant adaptive reorganization and enhanced "workspace" configuration in the theta network as compared with average-ability control subjects. The salient areas are mainly located in the anterior cortical vertices of the fronto-parietal network. Further correlation analyses have shown that the enhanced workspace configuration with respect to the global topological metrics of the theta network in math-gifted subjects is correlated with the intensive frontal midline theta (fm theta) response that is related to strong neural effort for cognitive events. These results suggest that by investing more cognitive resources math-gifted adolescents temporally mobilize an enhanced task-related global neuronal workspace, which is manifested as a highly integrated fronto-parietal information processing network during the reasoning process.

摘要

先前的研究已经证实了额顶叶脑网络在推理信息处理中的重要性。在皮质源分析层面,这项脑电图(EEG)研究调查了数学天赋青少年在演绎推理过程中θ波段(4-8Hz)神经认知网络的功能重组。与平均能力的对照组相比,由于推理过程中远程相位同步的密集增加,数学天赋青少年在θ网络中表现出更显著的适应性重组和增强的“工作区”配置。显著区域主要位于额顶叶网络的前皮质顶点。进一步的相关分析表明,数学天赋受试者中与θ网络全局拓扑指标相关的增强工作区配置,与额叶中线θ(fm theta)强烈反应相关,该反应与认知事件的强大神经努力有关。这些结果表明,通过投入更多认知资源,数学天赋青少年在时间上调动了一个增强的与任务相关的全局神经元工作区,这在推理过程中表现为一个高度整合的额顶叶信息处理网络。

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