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后内侧皮质的功能连接

Functional connectivity of the posteromedial cortex.

机构信息

CCS fMRI, Koelliker Hospital, Turin, Italy.

出版信息

PLoS One. 2010 Sep 30;5(9):e13107. doi: 10.1371/journal.pone.0013107.

Abstract

As different areas within the PMC have different connectivity patterns with various cortical and subcortical regions, we hypothesized that distinct functional modules may be present within the PMC. Because the PMC appears to be the most active region during resting state, it has been postulated to play a fundamental role in the control of baseline brain functioning within the default mode network (DMN). Therefore one goal of this study was to explore which components of the PMC are specifically involved in the DMN. In a sample of seventeen healthy volunteers, we performed an unsupervised voxelwise ROI-based clustering based on resting state functional connectivity. Our results showed four clusters with different network connectivity. Each cluster showed positive and negative correlations with cortical regions involved in the DMN. Progressive shifts in PMC functional connectivity emerged from anterior to posterior and from dorsal to ventral ROIs. Ventral posterior portions of PMC were found to be part of a network implicated in the visuo-spatial guidance of movements, whereas dorsal anterior portions of PMC were interlinked with areas involved in attentional control. Ventral retrosplenial PMC selectively correlated with a network showing considerable overlap with the DMN, indicating that it makes essential contributions in self-referential processing, including autobiographical memory processing. Finally, ventral posterior PMC was shown to be functionally connected with a visual network.The paper represents the first attempt to provide a systematic, unsupervised, voxelwise clustering of the human posteromedial cortex (PMC), using resting-state functional connectivity data. Moreover, a ROI-based parcellation was used to confirm the results.

摘要

由于 PMC 的不同区域与各种皮质和皮质下区域具有不同的连接模式,我们假设 PMC 内可能存在不同的功能模块。由于 PMC 在静息状态下似乎是最活跃的区域,因此有人假设它在默认模式网络 (DMN) 中对基础大脑功能的控制起着至关重要的作用。因此,本研究的一个目标是探索 PMC 的哪些组成部分专门参与 DMN。在 17 名健康志愿者的样本中,我们基于静息状态功能连接进行了无监督的体素 ROI 聚类。我们的结果显示了四个具有不同网络连接的聚类。每个聚类都与 DMN 相关的皮质区域呈正相关和负相关。PMC 的功能连接从前面到后面,从背侧到腹侧 ROI 逐渐变化。PMC 的腹侧后部分被发现是参与运动视觉空间导向的网络的一部分,而 PMC 的背侧前部分与参与注意力控制的区域相互关联。腹侧后扣带回 PMC 选择性地与显示与 DMN 大量重叠的网络相关,表明它在自我参照处理中做出了重要贡献,包括自传体记忆处理。最后,PMC 的腹侧后部分与视觉网络在功能上相连。该论文首次尝试使用静息状态功能连接数据对人类后内侧皮层 (PMC) 进行系统、无监督的体素聚类。此外,还使用基于 ROI 的分割来确认结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1413/2948030/4ca77945a1e5/pone.0013107.g001.jpg

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