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沿宏观梯度传播的内在活动模式协调整个大脑的功能连接。

Propagating patterns of intrinsic activity along macroscale gradients coordinate functional connections across the whole brain.

机构信息

Wallace H. Coulter Department of Biomedical Engineering, Emory University/Georgia Institute of Technology, Atlanta 30322, GA, United States.

Wallace H. Coulter Department of Biomedical Engineering, Emory University/Georgia Institute of Technology, Atlanta 30322, GA, United States.

出版信息

Neuroimage. 2021 May 1;231:117827. doi: 10.1016/j.neuroimage.2021.117827. Epub 2021 Feb 5.

Abstract

The intrinsic activity of the human brain, observed with resting-state fMRI (rsfMRI) and functional connectivity, exhibits macroscale spatial organization such as functional networks and gradients. Dynamic analysis techniques have shown that functional connectivity is a mere summary of time-varying patterns with distinct spatial and temporal characteristics. A better understanding of these patterns might provide insight into aspects of the brain's intrinsic activity that cannot be inferred by functional connectivity or the spatial maps derived from it, such as functional networks and gradients. Here, we describe three spatiotemporal patterns of coordinated activity across the whole brain obtained by averaging similar ~20-second-long segments of rsfMRI timeseries. In each of these patterns, activity propagates along a particular macroscale functional gradient, simultaneously across the cerebral cortex and in most other brain regions. In some regions, like the thalamus, the propagation suggests previously-undescribed gradients. The coordinated activity across areas is consistent with known tract-based connections, and nuanced differences in the timing of peak activity between regions point to plausible driving mechanisms. The magnitude of correlation within and particularly between functional networks is remarkably diminished when these patterns are regressed from the rsfMRI timeseries, a quantitative demonstration of their significant role in functional connectivity. Taken together, our results suggest that a few recurring patterns of propagating intrinsic activity along macroscale gradients give rise to and coordinate functional connections across the whole brain.

摘要

静息态 fMRI(rsfMRI)和功能连接观察到的人类大脑内在活动表现出宏观空间组织,如功能网络和梯度。动态分析技术表明,功能连接仅仅是具有不同时空特征的时变模式的总结。更好地理解这些模式可能会深入了解大脑内在活动的某些方面,这些方面不能通过功能连接或从其得出的空间图(如功能网络和梯度)推断出来。在这里,我们描述了通过平均 rsfMRI 时间序列中相似的约 20 秒长的片段获得的整个大脑中协调活动的三个时空模式。在这些模式中的每一个中,活动沿着特定的宏观功能梯度沿特定的宏观功能梯度传播,同时在大脑皮层和大多数其他脑区中传播。在某些区域,如丘脑,传播表明存在以前未描述的梯度。区域之间的协调活动与已知的基于束流的连接一致,并且区域之间峰值活动时间的细微差异指向合理的驱动机制。当这些模式从 rsfMRI 时间序列中回归时,功能网络内和特别是功能网络之间的相关性的幅度显著降低,这是其在功能连接中显著作用的定量证明。总之,我们的结果表明,沿宏观梯度传播内在活动的少数重复模式会产生并协调整个大脑的功能连接。

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