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Positive Connectivity Predicts the Dynamic Intrinsic Topology of the Human Brain Network

机译:正连通性预测人脑网络的动态内部拓扑

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摘要

Functional connectivity MRI (fcMRI) has become instrumental in facilitating research of human brain network organization in terms of coincident interactions between positive and negative synchronizations of large-scale neuronal systems. Although there is a common agreement concerning the interpretation of positive couplings between brain areas, a major debate has been made in disentangling the nature of negative connectivity patterns in terms of its emergence in several methodological approaches and its significance/meaning in specific neuropsychiatric diseases. It is still not clear what information the functional negative correlations or connectivity provides or how they relate to the positive connectivity. Through implementing stepwise functional connectivity (SFC) analysis and studying the causality of functional topological patterns, this study aims to shed light on the relationship between positive and negative connectivity in the human brain functional connectome. We found that the strength of negative correlations between voxel-pairs relates to their positive connectivity path-length. More importantly, our study describes how the spatio-temporal patterns of positive connectivity explain the evolving changes of negative connectivity over time, but not the other way around. This finding suggests that positive and negative connectivity do not display equivalent forces but shows that the positive connectivity has a dominant role in the overall human brain functional connectome. This phenomenon provides novel insights about the nature of positive and negative correlations in fcMRI and will potentially help new developments for neuroimaging biomarkers.
机译:功能连接性MRI(fcMRI)在大规模神经元系统的正向和负向同步之间的重合相互作用方面,已经成为促进人类大脑网络组织研究的工具。尽管就大脑区域之间的正向耦合的解释达成了共识,但就消极连通性的性质在几种方法学方法中的出现及其在特定神经精神疾病中的意义/意义而言,人们一直在争论不休。尚不清楚功能性负相关性或连通性提供哪些信息,或者它们与正连通性之间的关系如何。通过执行逐步功能连接(SFC)分析并研究功能拓扑模式的因果关系,本研究旨在阐明人脑功能连接组中正向和负向连接之间的关系。我们发现体素对之间的负相关强度与其正连接路径长度有关。更重要的是,我们的研究描述了正连通性的时空模式如何解释了负连通性随时间的演变变化,但没有相反的解释。这一发现表明,正向和负向连通性不显示相同的作用力,但表明正向连通性在整个人脑功能连接体中起主导作用。这种现象提供了有关功能磁共振成像中正相关和负相关性质的新颖见解,并有可能帮助神经成像生物标记物的新发展。

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