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Abnormal asymmetries in subcortical brain volume in schizophrenia

Subcortical structures, which include the basal ganglia and parts of the limbic system, have key roles in learning, motor control and emotion, but also contribute to higher-order executive functions. Prior studies have reported volumetric alterations in subcortical regions in schizophrenia. Reported...

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Autores principales: Okada, N, Fukunaga, M, Yamashita, F, Koshiyama, D, Yamamori, H, Ohi, K, Yasuda, Y, Fujimoto, M, Watanabe, Y, Yahata, N, Nemoto, K, Hibar, D P, van Erp, T G M, Fujino, H, Isobe, M, Isomura, S, Natsubori, T, Narita, H, Hashimoto, N, Miyata, J, Koike, S, Takahashi, T, Yamasue, H, Matsuo, K, Onitsuka, T, Iidaka, T, Kawasaki, Y, Yoshimura, R, Suzuki, M, Turner, J A, Takeda, M, Thompson, P M, Ozaki, N, Kasai, K, Hashimoto, R
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5030462/
https://www.ncbi.nlm.nih.gov/pubmed/26782053
http://dx.doi.org/10.1038/mp.2015.209
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author Okada, N
Fukunaga, M
Yamashita, F
Koshiyama, D
Yamamori, H
Ohi, K
Yasuda, Y
Fujimoto, M
Watanabe, Y
Yahata, N
Nemoto, K
Hibar, D P
van Erp, T G M
Fujino, H
Isobe, M
Isomura, S
Natsubori, T
Narita, H
Hashimoto, N
Miyata, J
Koike, S
Takahashi, T
Yamasue, H
Matsuo, K
Onitsuka, T
Iidaka, T
Kawasaki, Y
Yoshimura, R
Watanabe, Y
Suzuki, M
Turner, J A
Takeda, M
Thompson, P M
Ozaki, N
Kasai, K
Hashimoto, R
author_facet Okada, N
Fukunaga, M
Yamashita, F
Koshiyama, D
Yamamori, H
Ohi, K
Yasuda, Y
Fujimoto, M
Watanabe, Y
Yahata, N
Nemoto, K
Hibar, D P
van Erp, T G M
Fujino, H
Isobe, M
Isomura, S
Natsubori, T
Narita, H
Hashimoto, N
Miyata, J
Koike, S
Takahashi, T
Yamasue, H
Matsuo, K
Onitsuka, T
Iidaka, T
Kawasaki, Y
Yoshimura, R
Watanabe, Y
Suzuki, M
Turner, J A
Takeda, M
Thompson, P M
Ozaki, N
Kasai, K
Hashimoto, R
author_sort Okada, N
collection PubMed
description Subcortical structures, which include the basal ganglia and parts of the limbic system, have key roles in learning, motor control and emotion, but also contribute to higher-order executive functions. Prior studies have reported volumetric alterations in subcortical regions in schizophrenia. Reported results have sometimes been heterogeneous, and few large-scale investigations have been conducted. Moreover, few large-scale studies have assessed asymmetries of subcortical volumes in schizophrenia. Here, as a work completely independent of a study performed by the ENIGMA consortium, we conducted a large-scale multisite study of subcortical volumetric differences between patients with schizophrenia and controls. We also explored the laterality of subcortical regions to identify characteristic similarities and differences between them. T1-weighted images from 1680 healthy individuals and 884 patients with schizophrenia, obtained with 15 imaging protocols at 11 sites, were processed with FreeSurfer. Group differences were calculated for each protocol and meta-analyzed. Compared with controls, patients with schizophrenia demonstrated smaller bilateral hippocampus, amygdala, thalamus and accumbens volumes as well as intracranial volume, but larger bilateral caudate, putamen, pallidum and lateral ventricle volumes. We replicated the rank order of effect sizes for subcortical volumetric changes in schizophrenia reported by the ENIGMA consortium. Further, we revealed leftward asymmetry for thalamus, lateral ventricle, caudate and putamen volumes, and rightward asymmetry for amygdala and hippocampal volumes in both controls and patients with schizophrenia. Also, we demonstrated a schizophrenia-specific leftward asymmetry for pallidum volume. These findings suggest the possibility of aberrant laterality in neural pathways and connectivity patterns related to the pallidum in schizophrenia.
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spelling pubmed-50304622016-09-29 Abnormal asymmetries in subcortical brain volume in schizophrenia Okada, N Fukunaga, M Yamashita, F Koshiyama, D Yamamori, H Ohi, K Yasuda, Y Fujimoto, M Watanabe, Y Yahata, N Nemoto, K Hibar, D P van Erp, T G M Fujino, H Isobe, M Isomura, S Natsubori, T Narita, H Hashimoto, N Miyata, J Koike, S Takahashi, T Yamasue, H Matsuo, K Onitsuka, T Iidaka, T Kawasaki, Y Yoshimura, R Watanabe, Y Suzuki, M Turner, J A Takeda, M Thompson, P M Ozaki, N Kasai, K Hashimoto, R Mol Psychiatry Original Article Subcortical structures, which include the basal ganglia and parts of the limbic system, have key roles in learning, motor control and emotion, but also contribute to higher-order executive functions. Prior studies have reported volumetric alterations in subcortical regions in schizophrenia. Reported results have sometimes been heterogeneous, and few large-scale investigations have been conducted. Moreover, few large-scale studies have assessed asymmetries of subcortical volumes in schizophrenia. Here, as a work completely independent of a study performed by the ENIGMA consortium, we conducted a large-scale multisite study of subcortical volumetric differences between patients with schizophrenia and controls. We also explored the laterality of subcortical regions to identify characteristic similarities and differences between them. T1-weighted images from 1680 healthy individuals and 884 patients with schizophrenia, obtained with 15 imaging protocols at 11 sites, were processed with FreeSurfer. Group differences were calculated for each protocol and meta-analyzed. Compared with controls, patients with schizophrenia demonstrated smaller bilateral hippocampus, amygdala, thalamus and accumbens volumes as well as intracranial volume, but larger bilateral caudate, putamen, pallidum and lateral ventricle volumes. We replicated the rank order of effect sizes for subcortical volumetric changes in schizophrenia reported by the ENIGMA consortium. Further, we revealed leftward asymmetry for thalamus, lateral ventricle, caudate and putamen volumes, and rightward asymmetry for amygdala and hippocampal volumes in both controls and patients with schizophrenia. Also, we demonstrated a schizophrenia-specific leftward asymmetry for pallidum volume. These findings suggest the possibility of aberrant laterality in neural pathways and connectivity patterns related to the pallidum in schizophrenia. Nature Publishing Group 2016-10 2016-01-19 /pmc/articles/PMC5030462/ /pubmed/26782053 http://dx.doi.org/10.1038/mp.2015.209 Text en Copyright © 2016 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/4.0/
spellingShingle Original Article
Okada, N
Fukunaga, M
Yamashita, F
Koshiyama, D
Yamamori, H
Ohi, K
Yasuda, Y
Fujimoto, M
Watanabe, Y
Yahata, N
Nemoto, K
Hibar, D P
van Erp, T G M
Fujino, H
Isobe, M
Isomura, S
Natsubori, T
Narita, H
Hashimoto, N
Miyata, J
Koike, S
Takahashi, T
Yamasue, H
Matsuo, K
Onitsuka, T
Iidaka, T
Kawasaki, Y
Yoshimura, R
Watanabe, Y
Suzuki, M
Turner, J A
Takeda, M
Thompson, P M
Ozaki, N
Kasai, K
Hashimoto, R
Abnormal asymmetries in subcortical brain volume in schizophrenia
title Abnormal asymmetries in subcortical brain volume in schizophrenia
title_full Abnormal asymmetries in subcortical brain volume in schizophrenia
title_fullStr Abnormal asymmetries in subcortical brain volume in schizophrenia
title_full_unstemmed Abnormal asymmetries in subcortical brain volume in schizophrenia
title_short Abnormal asymmetries in subcortical brain volume in schizophrenia
title_sort abnormal asymmetries in subcortical brain volume in schizophrenia
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5030462/
https://www.ncbi.nlm.nih.gov/pubmed/26782053
http://dx.doi.org/10.1038/mp.2015.209
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