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The Neural Basis of Time-Varying Resting-State Functional Connectivity

机译:时变静止状态功能连通性的神经基础

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摘要

Dynamic network analysis based on resting-state magnetic resonance imaging (rsMRI) is a fairly new and potentially powerful tool for neuroscience and clinical research. Dynamic analysis can be sensitive to changes that occur in psychiatric or neurologic disorders and can detect variations related to performance on individual trials in healthy subjects. However, the appearance of time-varying connectivity can also arise in signals that share no temporal information, complicating the interpretation of dynamic functional connectivity studies. Researchers have begun utilizing simultaneous imaging and electrophysiological recording to elucidate the neural basis of the networks and their variability in animals and in humans. In this article, we review findings that link changes in electrically recorded brain states to changes in the networks obtained with rsMRI and discuss some of the challenges inherent in interpretation of these studies. The literature suggests that multiple brain processes may contribute to the dynamics observed, and we speculate that it may be possible to separate particular aspects of the rsMRI signal to enhance sensitivity to certain types of neural activity, providing new tools for basic neuroscience and clinical research.
机译:基于静止状态磁共振成像(rsMRI)的动态网络分析是用于神经科学和临床研究的相当新的且潜在强大的工具。动态分析可能会对精神病或神经疾病发生的变化敏感,并且可以检测与健康受试者个别试验的表现相关的变化。但是,时变连接的出现也会出现在不共享时间信息的信号中,这使动态功能连接研究的解释变得复杂。研究人员已开始利用同步成像和电生理记录来阐明网络的神经基础及其在动物和人类中的变异性。在本文中,我们回顾了将电记录的大脑状态变化与rsMRI获得的网络变化联系起来的发现,并讨论了解释这些研究所固有的一些挑战。文献表明,多个大脑过程可能有助于观察到的动力学,我们推测可能可以分离rsMRI信号的特定方面,以增强对某些类型的神经活动的敏感性,从而为基础神经科学和临床研究提供新的工具。

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