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首页> 外文期刊>Frontiers in Human Neuroscience >Associations between Functional Connectivity Dynamics and BOLD Dynamics Are Heterogeneous Across Brain Networks
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Associations between Functional Connectivity Dynamics and BOLD Dynamics Are Heterogeneous Across Brain Networks

机译:功能连接动力学和大胆动力学之间的关联在整个大脑网络中是异构的

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Functional brain imaging has revealed two types of dynamic patterns of brain in the resting-state: the dynamics of spontaneous brain activities and the dynamics of functional interconnections between spontaneous brain activities. Although these two types of brain dynamics are usually investigated separately in the literature, recent functional magnetic resonance imaging (fMRI) studies have shown that they exhibit similar spatial patterns, suggesting the dynamics of spontaneous brain activities and the dynamics of their interconnections are associated with each other. In this study, we characterized the local blood oxygenation level dependent (BOLD) dynamics and the functional connectivity dynamics (FCD) in the resting-state, and then investigated their between-region associations. Time-varying FC was estimated as time-varying correlation coefficients using a sliding-window method, and the temporal variability of BOLD and time-varying FC were used to quantify the BOLD dynamics and the FCD, respectively. Our results showed that the BOLD dynamics and the FCD exhibit similar spatial patterns, and they are significantly associated across brain regions. Importantly, such associations are opposite for different types of FC (e.g., within-network FCD are negatively correlated with the BOLD dynamics but the between-network FCD are positively correlated with the BOLD dynamics), and they are spatially heterogeneous across brain networks. The identified heterogeneous associations between the BOLD dynamics and the FCD appear to convey related or even distinct information and might underscore the potential mechanism of brain coordination and co-evolution.
机译:功能性脑成像已揭示了处于静止状态的两种大脑动态模式:自发性脑活动的动力学和自发性脑活动之间的功能互连的动力学。尽管通常在文献中分别对这两种类型的大脑动力学进行了研究,但最近的功能磁共振成像(fMRI)研究表明,它们表现出相似的空间模式,表明自发性大脑活动的动力学及其相互联系的动力学与每种其他。在这项研究中,我们表征了静止状态下局部血液氧合水平依赖性(BOLD)动力学和功能连接动力学(FCD),然后研究了它们之间的区域关联。使用滑窗方法将时变FC估计为时变相关系数,并使用BOLD和时变FC的时间变化分别量化BOLD动力学和FCD。我们的结果表明,BOLD动力学和FCD表现出相似的空间格局,并且在大脑各个区域之间具有显着的关联。重要的是,对于不同类型的FC,这种关联是相反的(例如,网络内FCD与BOLD动力学呈负相关,但网络间FCD与BOLD动力学呈正相关),并且它们在整个大脑网络上在空间上是异质的。在BOLD动力学和FCD之间确定的异质关联似乎传达了相关的甚至不同的信息,并且可能强调了大脑协调和共同进化的潜在机制。

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