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Disruption of structure–function coupling in the schizophrenia connectome

Neuroimaging studies have demonstrated that the phenomenology of schizophrenia maps onto diffuse alterations in large-scale functional and structural brain networks. However, the relationship between structural and functional deficits remains unclear. To answer this question, patients with establish...

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Autores principales: Cocchi, Luca, Harding, Ian H., Lord, Anton, Pantelis, Christos, Yucel, Murat, Zalesky, Andrew
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4055899/
https://www.ncbi.nlm.nih.gov/pubmed/24936428
http://dx.doi.org/10.1016/j.nicl.2014.05.004
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author Cocchi, Luca
Harding, Ian H.
Lord, Anton
Pantelis, Christos
Yucel, Murat
Zalesky, Andrew
author_facet Cocchi, Luca
Harding, Ian H.
Lord, Anton
Pantelis, Christos
Yucel, Murat
Zalesky, Andrew
author_sort Cocchi, Luca
collection PubMed
description Neuroimaging studies have demonstrated that the phenomenology of schizophrenia maps onto diffuse alterations in large-scale functional and structural brain networks. However, the relationship between structural and functional deficits remains unclear. To answer this question, patients with established schizophrenia and matched healthy controls underwent resting-state functional and diffusion weighted imaging. The network-based statistic was used to characterize between-group differences in whole-brain functional connectivity. Indices of white matter integrity were then estimated to assess the structural correlates of the functional alterations observed in patients. Finally, group differences in the relationship between indices of functional and structural brain connectivity were determined. Compared to controls, patients with schizophrenia showed decreased functional connectivity and impaired white matter integrity in a distributed network encompassing frontal, temporal, thalamic, and striatal regions. In controls, strong interregional coupling in neural activity was associated with well-myelinated white matter pathways in this network. This correspondence between structure and function appeared to be absent in patients with schizophrenia. In two additional disrupted functional networks, encompassing parietal, occipital, and temporal cortices, the relationship between function and structure was not affected. Overall, results from this study highlight the importance of considering not only the separable impact of functional and structural connectivity deficits on the pathoaetiology of schizophrenia, but also the implications of the complex nature of their interaction. More specifically, our findings support the core nature of fronto-striatal, fronto-thalamic, and fronto-temporal abnormalities in the schizophrenia connectome.
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spelling pubmed-40558992014-06-16 Disruption of structure–function coupling in the schizophrenia connectome Cocchi, Luca Harding, Ian H. Lord, Anton Pantelis, Christos Yucel, Murat Zalesky, Andrew Neuroimage Clin Article Neuroimaging studies have demonstrated that the phenomenology of schizophrenia maps onto diffuse alterations in large-scale functional and structural brain networks. However, the relationship between structural and functional deficits remains unclear. To answer this question, patients with established schizophrenia and matched healthy controls underwent resting-state functional and diffusion weighted imaging. The network-based statistic was used to characterize between-group differences in whole-brain functional connectivity. Indices of white matter integrity were then estimated to assess the structural correlates of the functional alterations observed in patients. Finally, group differences in the relationship between indices of functional and structural brain connectivity were determined. Compared to controls, patients with schizophrenia showed decreased functional connectivity and impaired white matter integrity in a distributed network encompassing frontal, temporal, thalamic, and striatal regions. In controls, strong interregional coupling in neural activity was associated with well-myelinated white matter pathways in this network. This correspondence between structure and function appeared to be absent in patients with schizophrenia. In two additional disrupted functional networks, encompassing parietal, occipital, and temporal cortices, the relationship between function and structure was not affected. Overall, results from this study highlight the importance of considering not only the separable impact of functional and structural connectivity deficits on the pathoaetiology of schizophrenia, but also the implications of the complex nature of their interaction. More specifically, our findings support the core nature of fronto-striatal, fronto-thalamic, and fronto-temporal abnormalities in the schizophrenia connectome. Elsevier 2014-05-09 /pmc/articles/PMC4055899/ /pubmed/24936428 http://dx.doi.org/10.1016/j.nicl.2014.05.004 Text en © 2014 The Authors http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/).
spellingShingle Article
Cocchi, Luca
Harding, Ian H.
Lord, Anton
Pantelis, Christos
Yucel, Murat
Zalesky, Andrew
Disruption of structure–function coupling in the schizophrenia connectome
title Disruption of structure–function coupling in the schizophrenia connectome
title_full Disruption of structure–function coupling in the schizophrenia connectome
title_fullStr Disruption of structure–function coupling in the schizophrenia connectome
title_full_unstemmed Disruption of structure–function coupling in the schizophrenia connectome
title_short Disruption of structure–function coupling in the schizophrenia connectome
title_sort disruption of structure–function coupling in the schizophrenia connectome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4055899/
https://www.ncbi.nlm.nih.gov/pubmed/24936428
http://dx.doi.org/10.1016/j.nicl.2014.05.004
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