Altered small-world brain networks in temporal lobe in patients with schizophrenia performing an auditory oddball task

The functional architecture of the human brain has been extensively described in terms of complex networks characterized by efficient small-world features. Recent functional magnetic resonance imaging (fMRI) studies have found altered small-world topological properties of brain functional networks i...

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Published in:Frontiers in Systems Neuroscience
Main Authors: Qingbao Yu, Jing Sui, Srinivas Rachakonda, Hao He, Godfrey Pearlson, Vince D Calhoun
Format: Article
Language:English
Published: Frontiers Media S.A. 2011-02-01
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fnsys.2011.00007/full
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author Qingbao Yu
Jing Sui
Srinivas Rachakonda
Hao He
Hao He
Godfrey Pearlson
Godfrey Pearlson
Vince D Calhoun
Vince D Calhoun
Vince D Calhoun
Vince D Calhoun
author_facet Qingbao Yu
Jing Sui
Srinivas Rachakonda
Hao He
Hao He
Godfrey Pearlson
Godfrey Pearlson
Vince D Calhoun
Vince D Calhoun
Vince D Calhoun
Vince D Calhoun
author_sort Qingbao Yu
collection DOAJ
container_title Frontiers in Systems Neuroscience
description The functional architecture of the human brain has been extensively described in terms of complex networks characterized by efficient small-world features. Recent functional magnetic resonance imaging (fMRI) studies have found altered small-world topological properties of brain functional networks in patients with schizophrenia (SZ) during the resting state. However, little is known about the small world properties of brain networks in the context of a task. In this study, we investigated the topological properties of human brain functional networks derived from fMRI during an auditory oddball (AOD) task. Data were obtained from 20 healthy controls (HCs) and 20 SZ; A left and a right task-related network which consisted of the top activated voxels in temporal lobe of each hemisphere were analyzed separately. All voxels were detected by group independent component analysis (ICA). Connectivity of the left and right task-related networks were estimated by partial correlation analysis and thresholded to construct a set of undirected graphs. The small-worldness values were decreased in both hemispheres in SZ. In addition, SZ showed longer shortest path length and lower global efficiency only in the left task-related networks. These results suggested small-world attributes are altered during the AOD task-related networks in SZ which provided further evidences for brain dysfunction of connectivity in SZ.
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spelling doaj-art-ec00f52c3a67413483c2db245ce2966e2025-08-19T21:15:56ZengFrontiers Media S.A.Frontiers in Systems Neuroscience1662-51372011-02-01510.3389/fnsys.2011.000072150Altered small-world brain networks in temporal lobe in patients with schizophrenia performing an auditory oddball taskQingbao Yu0Jing Sui1Srinivas Rachakonda2Hao He3Hao He4Godfrey Pearlson5Godfrey Pearlson6Vince D Calhoun7Vince D Calhoun8Vince D Calhoun9Vince D Calhoun10The Mind Research NetworkThe Mind Research NetworkThe Mind Research NetworkThe Mind Research NetworkUniversity of New MexicoOlin Neuropsychiatry Research CenterYale UniversityThe Mind Research NetworkUniversity of New MexicoOlin Neuropsychiatry Research CenterYale UniversityThe functional architecture of the human brain has been extensively described in terms of complex networks characterized by efficient small-world features. Recent functional magnetic resonance imaging (fMRI) studies have found altered small-world topological properties of brain functional networks in patients with schizophrenia (SZ) during the resting state. However, little is known about the small world properties of brain networks in the context of a task. In this study, we investigated the topological properties of human brain functional networks derived from fMRI during an auditory oddball (AOD) task. Data were obtained from 20 healthy controls (HCs) and 20 SZ; A left and a right task-related network which consisted of the top activated voxels in temporal lobe of each hemisphere were analyzed separately. All voxels were detected by group independent component analysis (ICA). Connectivity of the left and right task-related networks were estimated by partial correlation analysis and thresholded to construct a set of undirected graphs. The small-worldness values were decreased in both hemispheres in SZ. In addition, SZ showed longer shortest path length and lower global efficiency only in the left task-related networks. These results suggested small-world attributes are altered during the AOD task-related networks in SZ which provided further evidences for brain dysfunction of connectivity in SZ.http://journal.frontiersin.org/Journal/10.3389/fnsys.2011.00007/fullSchizophreniafMRInetworkSmall-worldICAauditory oddball
spellingShingle Qingbao Yu
Jing Sui
Srinivas Rachakonda
Hao He
Hao He
Godfrey Pearlson
Godfrey Pearlson
Vince D Calhoun
Vince D Calhoun
Vince D Calhoun
Vince D Calhoun
Altered small-world brain networks in temporal lobe in patients with schizophrenia performing an auditory oddball task
Schizophrenia
fMRI
network
Small-world
ICA
auditory oddball
title Altered small-world brain networks in temporal lobe in patients with schizophrenia performing an auditory oddball task
title_full Altered small-world brain networks in temporal lobe in patients with schizophrenia performing an auditory oddball task
title_fullStr Altered small-world brain networks in temporal lobe in patients with schizophrenia performing an auditory oddball task
title_full_unstemmed Altered small-world brain networks in temporal lobe in patients with schizophrenia performing an auditory oddball task
title_short Altered small-world brain networks in temporal lobe in patients with schizophrenia performing an auditory oddball task
title_sort altered small world brain networks in temporal lobe in patients with schizophrenia performing an auditory oddball task
topic Schizophrenia
fMRI
network
Small-world
ICA
auditory oddball
url http://journal.frontiersin.org/Journal/10.3389/fnsys.2011.00007/full
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