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Temporally-independent functional modes of spontaneous brain activity.自发脑活动的时间独立功能模式。
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Echoes of the brain within the posterior cingulate cortex.后扣带皮层中的脑回声。
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Default mode network connectivity predicts sustained attention deficits after traumatic brain injury.静息态默认网络连接可预测创伤性脑损伤后的持续性注意缺陷。
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默认模式、联合和异模态皮质中的大脑回声。

Echoes of the brain within default mode, association, and heteromodal cortices.

机构信息

Computational, Cognitive and Clinical Neuroimaging Laboratory, and Medical Research Council Clinical Sciences Centre, Faculty of Medicine, Imperial College London, Hammersmith Hospital Campus, London, W12 0NN, United Kingdom.

出版信息

J Neurosci. 2013 Aug 28;33(35):14031-9. doi: 10.1523/JNEUROSCI.0570-13.2013.

DOI:10.1523/JNEUROSCI.0570-13.2013
PMID:23986239
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3810536/
Abstract

Intrinsic connectivity networks (ICNs), such as the default mode, frontoparietal control, and salience networks, provide a useful large-scale description of the functional architecture of the brain. Although ICNs are functionally specialized, the information that they process needs to be integrated for coherent cognition, perception, and behavior. A region capable of performing this integration might be expected to contain traces, or "echoes," of the neural signals from multiple ICNs. Here, using fMRI in humans, we show the existence of specific "transmodal" regions containing echoes of multiple ICNs. These regions include core nodes of the default mode network, as well as multimodal association regions of the temporoparietal and temporo-occipito-parietal junction, right middle frontal gyrus, and dorsal anterior cingulate cortex. In contrast, "unimodal" regions such as the primary sensory and motor cortices show a much more singular pattern of activity, containing traces of few or even single ICNs. The presence of ICN echoes might explain how transmodal regions are involved in multiple different cognitive states. Our results suggest that these transmodal regions have a particular local spatial organization containing topographic maps that relate to multiple ICNs. This makes transmodal regions uniquely placed to be able to mediate the cross talk between the brain's functional networks through local modulation of adjacent regions that communicate with different ICNs.

摘要

内在连接网络(ICNs),如默认模式、额顶控制和突显网络,为大脑的功能架构提供了有用的大规模描述。尽管 ICN 具有功能专门化,但它们处理的信息需要整合以实现连贯的认知、感知和行为。一个能够执行这种整合的区域可能包含来自多个 ICN 的神经信号的痕迹或“回声”。在这里,我们使用人类 fMRI 显示了存在特定的“跨模态”区域,其中包含多个 ICN 的回声。这些区域包括默认模式网络的核心节点,以及颞顶和颞枕顶联合、右额中回和背侧前扣带皮层的多模态联合区域。相比之下,“单模态”区域,如初级感觉和运动皮层,显示出更为单一的活动模式,仅包含少数甚至单个 ICN 的痕迹。ICN 回声的存在可能解释了跨模态区域如何参与多种不同的认知状态。我们的结果表明,这些跨模态区域具有特定的局部空间组织,包含与多个 ICN 相关的地形图。这使得跨模态区域能够通过局部调制与不同 ICN 通信的相邻区域,在大脑的功能网络之间进行交叉对话。