Altered resting-state functional connectivity of the cerebellum in schizophrenia

Structural and functional abnormalities of the cerebellum in schizophrenia have been reported. Most previous studies investigating resting-state functional connectivity (rsFC) have relied on a priori restrictions on seed regions or specific networks, which may bias observations. In this study, we ai...

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Published inBrain imaging and behavior Vol. 12; no. 2; pp. 383 - 389
Main Authors Zhuo, Chuanjun, Wang, Chunli, Wang, Lina, Guo, Xinyu, Xu, Qingying, Liu, Yanyan, Zhu, Jiajia
Format Journal Article
LanguageEnglish
Published New York Springer US 01.04.2018
Springer Nature B.V
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Online AccessGet full text
ISSN1931-7557
1931-7565
1931-7565
DOI10.1007/s11682-017-9704-0

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Abstract Structural and functional abnormalities of the cerebellum in schizophrenia have been reported. Most previous studies investigating resting-state functional connectivity (rsFC) have relied on a priori restrictions on seed regions or specific networks, which may bias observations. In this study, we aimed to elicit the connectivity alterations of the cerebellum in schizophrenia in a hypothesis-free approach. Ninety-five schizophrenia patients and 93 sex- and age-matched healthy controls underwent resting-state functional magnetic resonance imaging (fMRI). A voxel-wise data-driven method, resting-state functional connectivity density (rsFCD), was used to investigate cerebellar connectivity changes in schizophrenia patients. Regions with altered rsFCD were chosen as seeds to perform seed-based resting-state functional connectivity (rsFC) analyses. We found that schizophrenia patients exhibited decreased rsFCD in the right hemispheric VI; moreover, this cerebellar region showed increased rsFC with the prefrontal cortex and subcortical nuclei and decreased rsFC with the visual cortex and sensorimotor cortex. In addition, some rsFC changes were associated with positive symptoms. These findings suggest that abnormalities of the cerebellar hub and cerebellar-subcortical-cortical loop may be the underlying mechanisms of schizophrenia.
AbstractList Structural and functional abnormalities of the cerebellum in schizophrenia have been reported. Most previous studies investigating resting-state functional connectivity (rsFC) have relied on a priori restrictions on seed regions or specific networks, which may bias observations. In this study, we aimed to elicit the connectivity alterations of the cerebellum in schizophrenia in a hypothesis-free approach. Ninety-five schizophrenia patients and 93 sex- and age-matched healthy controls underwent resting-state functional magnetic resonance imaging (fMRI). A voxel-wise data-driven method, resting-state functional connectivity density (rsFCD), was used to investigate cerebellar connectivity changes in schizophrenia patients. Regions with altered rsFCD were chosen as seeds to perform seed-based resting-state functional connectivity (rsFC) analyses. We found that schizophrenia patients exhibited decreased rsFCD in the right hemispheric VI; moreover, this cerebellar region showed increased rsFC with the prefrontal cortex and subcortical nuclei and decreased rsFC with the visual cortex and sensorimotor cortex. In addition, some rsFC changes were associated with positive symptoms. These findings suggest that abnormalities of the cerebellar hub and cerebellar-subcortical-cortical loop may be the underlying mechanisms of schizophrenia.
Structural and functional abnormalities of the cerebellum in schizophrenia have been reported. Most previous studies investigating resting-state functional connectivity (rsFC) have relied on a priori restrictions on seed regions or specific networks, which may bias observations. In this study, we aimed to elicit the connectivity alterations of the cerebellum in schizophrenia in a hypothesis-free approach. Ninety-five schizophrenia patients and 93 sex- and age-matched healthy controls underwent resting-state functional magnetic resonance imaging (fMRI). A voxel-wise data-driven method, resting-state functional connectivity density (rsFCD), was used to investigate cerebellar connectivity changes in schizophrenia patients. Regions with altered rsFCD were chosen as seeds to perform seed-based resting-state functional connectivity (rsFC) analyses. We found that schizophrenia patients exhibited decreased rsFCD in the right hemispheric VI; moreover, this cerebellar region showed increased rsFC with the prefrontal cortex and subcortical nuclei and decreased rsFC with the visual cortex and sensorimotor cortex. In addition, some rsFC changes were associated with positive symptoms. These findings suggest that abnormalities of the cerebellar hub and cerebellar-subcortical-cortical loop may be the underlying mechanisms of schizophrenia.Structural and functional abnormalities of the cerebellum in schizophrenia have been reported. Most previous studies investigating resting-state functional connectivity (rsFC) have relied on a priori restrictions on seed regions or specific networks, which may bias observations. In this study, we aimed to elicit the connectivity alterations of the cerebellum in schizophrenia in a hypothesis-free approach. Ninety-five schizophrenia patients and 93 sex- and age-matched healthy controls underwent resting-state functional magnetic resonance imaging (fMRI). A voxel-wise data-driven method, resting-state functional connectivity density (rsFCD), was used to investigate cerebellar connectivity changes in schizophrenia patients. Regions with altered rsFCD were chosen as seeds to perform seed-based resting-state functional connectivity (rsFC) analyses. We found that schizophrenia patients exhibited decreased rsFCD in the right hemispheric VI; moreover, this cerebellar region showed increased rsFC with the prefrontal cortex and subcortical nuclei and decreased rsFC with the visual cortex and sensorimotor cortex. In addition, some rsFC changes were associated with positive symptoms. These findings suggest that abnormalities of the cerebellar hub and cerebellar-subcortical-cortical loop may be the underlying mechanisms of schizophrenia.
Author Zhuo, Chuanjun
Xu, Qingying
Zhu, Jiajia
Wang, Lina
Guo, Xinyu
Wang, Chunli
Liu, Yanyan
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  fullname: Zhu, Jiajia
  email: zhujiajiagraduate@163.com
  organization: Department of Radiology and Tianjin Key Laboratory of Functional Imaging, Tianjin Medical University General Hospital, Department of Radiology, The First Affiliated Hospital of Anhui Medical University
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Keywords Cerebellum
Functional connectivity
Schizophrenia
Resting-state fMRI
Functional connectivity density
Language English
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PublicationPlace_xml – name: New York
– name: United States
– name: Indianapolis
PublicationTitle Brain imaging and behavior
PublicationTitleAbbrev Brain Imaging and Behavior
PublicationTitleAlternate Brain Imaging Behav
PublicationYear 2018
Publisher Springer US
Springer Nature B.V
Publisher_xml – name: Springer US
– name: Springer Nature B.V
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Snippet Structural and functional abnormalities of the cerebellum in schizophrenia have been reported. Most previous studies investigating resting-state functional...
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proquest
pubmed
crossref
springer
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Enrichment Source
Publisher
StartPage 383
SubjectTerms Abnormalities
Adult
Biomedical and Life Sciences
Biomedicine
Brain Mapping - methods
Cerebellum
Cerebellum - diagnostic imaging
Cerebellum - physiopathology
Female
Functional magnetic resonance imaging
Hemispheric laterality
Humans
Magnetic Resonance Imaging
Male
Mental disorders
Neural Pathways - physiopathology
Neuroimaging
Neuropsychology
Neuroradiology
Neurosciences
Nuclei
Original Research
Patients
Prefrontal cortex
Psychiatry
Rest
Schizophrenia
Schizophrenia - diagnostic imaging
Schizophrenia - physiopathology
Seeds
Somatosensory cortex
Structure-function relationships
Visual cortex
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Title Altered resting-state functional connectivity of the cerebellum in schizophrenia
URI https://link.springer.com/article/10.1007/s11682-017-9704-0
https://www.ncbi.nlm.nih.gov/pubmed/28293803
https://www.proquest.com/docview/2020703623
https://www.proquest.com/docview/1877853288
https://pubmed.ncbi.nlm.nih.gov/PMC5880870
Volume 12
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