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Dissociated Patterns of Anti-Correlations with Dorsal and Ventral Default-Mode Networks at Rest

机译:与休息的背部和腹侧默认模式网络的反相关的反相关模式

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Previous studies of resting state functional connectivity have demonstrated that the default-mode network (DMN) is negatively correlated with a set of brain regions commonly activated during goal-directed tasks. However, the location and extent of anti-correlations are inconsistent across different studies, which has been posited to result largely from differences in whether or not global signal regression (GSR) was applied as a pre-processing step. Notably, coordinates of seed regions-of-interest defined within the posterior cingulate cortex (PCC)/precuneus, an area often employed to study functional connectivity of the DMN, have been inconsistent across studies. Taken together with recent observations that the DMN contains functionally heterogeneous subdivisions, it is presently unclear whether these seeds map to different DMN subnetworks, whose patterns of anti-correlation may differ. If so, then seed location may be a non-negligible factor that, in addition to differences in preprocessing steps, contributes to the inconsistencies reported among published studies regarding DMN correlations/anti-correlations. In this study, they examined anti-correlations of different subnetworks within the DMN during rest using both seed-based and point process analyses, and discovered that: (1) the ventral branch of the DMN (vDMN) yielded significantly weaker anti-correlations than that associated with the dorsal branch of the DMN (dDMN); (2) vDMN anti-correlations introduced by GSR were distinct from dDMN anti-correlations; (3) PCC/precuneus seeds employed by earlier studies mapped to different DMN subnetworks, which may explain some of the inconsistency (in addition to preprocessing steps) in the reported DMN anti-correlations. (C) 2017 Wiley Periodicals, Inc.
机译:以前的休息状态功能连接的研究表明,默认模式网络(DMN)与在目标定向任务期间通常激活的一组大脑区域负相关。然而,抗相关的位置和程度在不同的研究中不一致,这已经被针对全局信号回归(GSR)作为预处理步骤的差异很大,从而大致来自差异。值得注意的是,在后筒式皮质(PCC)/ preckeus内定义的种子区域的坐标坐标,经常用于研究DMN功能连接的区域,在研究方面存在不一致。与最近的观察结果一起携带DMN含有功能异质细分,目前目前不清楚这些种子是否映射到不同的DMN子网,其反相关模式可能不同。如果是这样,则种子位置可能是不可忽略的因素,除了预处理步骤的差异之外,还有助于出现关于DMN相关/反相关的公布研究中的不一致。在这项研究中,它们在休息期间使用基于种子和点过程分析的休息期检查了DMN内不同子网的反相关,并发现:(1)DMN(VDMN)的腹部分支产生显着较弱的反相关性与DMN(DDMN)的背部分支相关联; (2)GSR引入的VDMN防相关与DDMN反相关不同; (3)映射到不同DMN子网的早期研究采用的PCC / PREMEUS种子,其可以在报告的DMN防相关中解释一些不一致的不一致(除预处理步骤)。 (c)2017 Wiley期刊,Inc。

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