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精神分裂症相关的功能整合和功能分离的大脑网络。

State-related functional integration and functional segregation brain networks in schizophrenia.

机构信息

The Mind Research Network, Albuquerque, NM 87106, USA.

出版信息

Schizophr Res. 2013 Nov;150(2-3):450-8. doi: 10.1016/j.schres.2013.09.016. Epub 2013 Oct 2.

Abstract

Altered topological properties of brain connectivity networks have emerged as important features of schizophrenia. The aim of this study was to investigate how the state-related modulations to graph measures of functional integration and functional segregation brain networks are disrupted in schizophrenia. Firstly, resting state and auditory oddball discrimination (AOD) fMRI data of healthy controls (HCs) and schizophrenia patients (SZs) were decomposed into spatially independent components (ICs) by group independent component analysis (ICA). Then, weighted positive and negative functional integration (inter-component networks) and functional segregation (intra-component networks) brain networks were built in each subject. Subsequently, connectivity strength, clustering coefficient, and global efficiency of all brain networks were statistically compared between groups (HCs and SZs) in each state and between states (rest and AOD) within group. We found that graph measures of negative functional integration brain network and several positive functional segregation brain networks were altered in schizophrenia during AOD task. The metrics of positive functional integration brain network and one positive functional segregation brain network were higher during the resting state than during the AOD task only in HCs. These findings imply that state-related characteristics of both functional integration and functional segregation brain networks are impaired in schizophrenia which provides new insight into the altered brain performance in this brain disorder.

摘要

大脑连接网络的拓扑性质改变已成为精神分裂症的重要特征。本研究旨在探讨精神分裂症患者大脑网络功能整合和功能分离的图谱测量的状态相关调制如何被破坏。首先,通过组独立成分分析(ICA)将健康对照组(HCs)和精神分裂症患者(SZs)的静息状态和听觉Oddball 辨别(AOD)fMRI 数据分解为空间独立成分(ICs)。然后,在每个受试者中构建加权正、负功能整合(组件间网络)和功能分离(组件内网络)大脑网络。随后,在每个状态下比较组间(HCs 和 SZs)和组内(静息和 AOD)的所有大脑网络的连接强度、聚类系数和全局效率。我们发现,在 AOD 任务中,精神分裂症患者的负功能整合脑网络和几个正功能分离脑网络的图谱测量值发生了改变。仅在 HCs 中,正功能整合脑网络和一个正功能分离脑网络的指标在静息状态下高于 AOD 任务。这些发现表明,精神分裂症患者的功能整合和功能分离脑网络的状态相关特征受损,为这种大脑障碍中大脑功能的改变提供了新的见解。

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