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Toward Task Connectomics: Examining Whole-Brain Task Modulated Connectivity in Different Task Domains

机译:面向任务连接组学:检查不同任务域中的全脑任务调制连接

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摘要

Human brain anatomical and resting-state functional connectivity have been comprehensively portrayed using MRI, which are termed anatomical and functional connectomes. A systematic examination of tasks modulated whole brain functional connectivity, which we term as task connectome, is still lacking. We analyzed 6 block-designed and 1 event-related designed functional MRI data, and examined whole-brain task modulated connectivity in various task domains, including emotion, reward, language, relation, social cognition, working memory, and inhibition. By using psychophysiological interaction between pairs of regions from the whole brain, we identified statistically significant task modulated connectivity in 4 tasks between their experimental and respective control conditions. Task modulated connectivity was found not only between regions that were activated during the task but also regions that were not activated or deactivated, suggesting a broader involvement of brain regions in a task than indicated by simple regional activations. Decreased functional connectivity was observed in all the 4 tasks and sometimes reduced connectivity was even between regions that were both activated during the task. This suggests that brain regions that are activated together do not necessarily work together. The current study demonstrates the comprehensive task connectomes of 4 tasks, and suggested complex relationships between regional activations and connectivity changes.
机译:使用MRI已全面描绘了人脑的解剖结构和静止状态功能连接,这被称为解剖和功能连接体。仍然缺乏对任务调节的全脑功能连通性(我们称为任务连接体)的系统检查。我们分析了6个块设计和1个事件相关设计的功能性MRI数据,并检查了各种任务域中的全脑任务调制的连通性,包括情感,奖励,语言,关系,社交认知,工作记忆和抑制。通过使用来自整个大脑的成对区域之间的心理生理交互作用,我们在其实验条件和相应控制条件之间的4个任务中,确定了具有统计学意义的任务调制连接。不仅在任务执行过程中被激活的区域之间,而且未激活或未激活的区域之间都发现了任务调制的连通性,这表明与简单区域激活所指示的相比,任务中大脑区域的参与范围更大。在所有四个任务中均观察到功能连通性降低,有时甚至在任务期间都激活的区域之间的连通性也降低了。这表明,一起激活的大脑区域不一定协同工作。当前的研究演示了4个任务的综合任务连接组,并提出了区域激活与连接性变化之间的复杂关系。

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