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Linking brain activation to topological organization in the frontal lobe as a synergistic indicator to characterize the difference between various cognitive processes of executive functions

机译:将大脑激活与额叶的拓扑组织联系起来作为一种协同指标来表征执行功能的各种认知过程之间的差异

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摘要

Executive functions (EFs) associated with the frontal lobe are vital for goal-orientated behavior. To date, limited efforts have been made to examine the relationships among the behavior, brain activation, and topological organization of functional networks in the frontal lobe underlying various EF tasks, including inhibition, working memory, and cognitive flexibility. In this study, functional near-infrared spectroscopy neuroimaging technique was used to systematically inspect the differences in the brain activation and the topological organization of brain networks between various EF tasks in the frontal lobe. In addition, the relationships between brain activationetwork properties and task performances and the relationships between brain activation and network properties were, respectively, examined for different EF tasks. Consequently, we have discovered that the nodal and global properties of the resting-state and task-evoked networks, respectively, exhibited significant correlations with the activation of various brain regions during various EF tasks. In particular, the measure that links the neural activation to the topological organization of the brain networks in the frontal lobe can serve as a synergistic indicator to examine the difference between various EF tasks, which paves a way toward a comprehensive understanding of the neural mechanism underlying EFs.
机译:与额叶相关的执行功能(EF)对于以目标为导向的行为至关重要。迄今为止,已经做出了有限的努力来检查行为,大脑激活以及额叶下各种EF任务(包括抑制,工作记忆和认知灵活性)背后的额叶功能网络的拓扑结构之间的关系。在这项研究中,功能性近红外光谱神经成像技术被用来系统地检查额叶中各种EF任务之间的大脑激活和大脑网络的拓扑组织的差异。另外,针对不同的EF任务,分别检查了大脑激活/网络属性与任务绩效之间的关系以及大脑激活与网络属性之间的关系。因此,我们发现静止状态和任务诱发网络的节点和全局特性分别在各种EF任务期间与大脑各个区域的激活表现出显着的相关性。特别是,将神经激活与额叶中的大脑网络的拓扑组织联系起来的措施可以作为一种协同指标,以检查各种EF任务之间的差异,从而为全面了解潜在的神经机制铺平了道路。 EFs。

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