Uncovering the global task-modulated brain network in chunk decomposition with Chinese characters

计算机科学 顶叶下小叶 眶额皮质 顶叶上小叶 任务(项目管理) 后顶叶皮质 神经科学 中央前回 代表(政治) 认知心理学 分解 功能磁共振成像 心理学 认知 前额叶皮质 生物 经济 管理 法学 磁共振成像 放射科 政治 医学 生态学 政治学
作者
Jiaoyan Pang,Hanning Guo,Xiaochen Tang,Yu Fu,Zhengwu Yang,Yongchao Li,Na An,Jing Luo,Zhijun Yao,Bin Hu
出处
期刊:NeuroImage [Elsevier BV]
卷期号:247: 118826-118826 被引量:2
标识
DOI:10.1016/j.neuroimage.2021.118826
摘要

Chunk decomposition, which requires the mental representation transformation in accordance with behavioral goals, is of vital importance to problem solving and creative thinking. Previous studies have identified that the frontal, parietal, and occipital cortex in the cognitive control network selectively activated in response to chunk tightness, however, functional localization strategy may overlook the interaction brain regions. Based on the notion of a global brain network, we proposed that multiple specialized regions have to be interconnected to maintain goal representation during the course of chunk decomposition. Therefore, the present study applied a beta-series correlation method to investigate interregional functional connectivity in the event-related design of chunk decomposition tasks using Chinese characters, which would highlight critical nodes irrespective to chunk tightness. The results reveal a network of functional hubs with highly within or between module connections, including the orbitofrontal cortex, superior/inferior parietal lobule, hippocampus, and thalamus. We speculate that the thalamus integrates information across modular as an integrative hub while the orbitofrontal cortex tracks the mental states of chunk decomposition on a moment-to-moment basis. The superior and inferior parietal lobule collaborate to manipulate the mental representation of chunk decomposition and the hippocampus associates the relationship between elements in the question and solution phase. Furthermore, the tightness of chunks is not only associated with different processors in visual systems but also leads to increased intermodular connections in right superior frontal gyrus and left precentral gyrus. To summary up, the present study first reveals the task-modulated brain network of chunk decomposition in addition to the tightness-related nodes in the frontal and occipital cortex.

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