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In vivo white matter microstructure in adolescents with early-onset psychosis: a multi-site mega-analysis

Emerging evidence suggests brain white matter alterations in adolescents with early-onset psychosis (EOP; age of onset <18 years). However, as neuroimaging methods vary and sample sizes are modest, results remain inconclusive. Using harmonized data processing protocols and a mega-analytic approac...

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Autores principales: Barth, Claudia, Kelly, Sinead, Nerland, Stener, Jahanshad, Neda, Alloza, Clara, Ambrogi, Sonia, Andreassen, Ole A., Andreou, Dimitrios, Arango, Celso, Baeza, Inmaculada, Banaj, Nerisa, Bearden, Carrie E., Berk, Michael, Bohman, Hannes, Castro-Fornieles, Josefina, Chye, Yann, Crespo-Facorro, Benedicto, de la Serna, Elena, Díaz-Caneja, Covadonga M., Gurholt, Tiril P., Hegarty, Catherine E., James, Anthony, Janssen, Joost, Johannessen, Cecilie, Jönsson, Erik G., Karlsgodt, Katherine H., Kochunov, Peter, Lois, Noemi G., Lundberg, Mathias, Myhre, Anne M., Pascual-Diaz, Saül, Piras, Fabrizio, Smelror, Runar E., Spalletta, Gianfranco, Stokkan, Therese S., Sugranyes, Gisela, Suo, Chao, Thomopoulos, Sophia I., Tordesillas-Gutiérrez, Diana, Vecchio, Daniela, Wedervang-Resell, Kirsten, Wortinger, Laura A., Thompson, Paul M., Agartz, Ingrid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10005938/
https://www.ncbi.nlm.nih.gov/pubmed/36510004
http://dx.doi.org/10.1038/s41380-022-01901-3
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author Barth, Claudia
Kelly, Sinead
Nerland, Stener
Jahanshad, Neda
Alloza, Clara
Ambrogi, Sonia
Andreassen, Ole A.
Andreou, Dimitrios
Arango, Celso
Baeza, Inmaculada
Banaj, Nerisa
Bearden, Carrie E.
Berk, Michael
Bohman, Hannes
Castro-Fornieles, Josefina
Chye, Yann
Crespo-Facorro, Benedicto
de la Serna, Elena
Díaz-Caneja, Covadonga M.
Gurholt, Tiril P.
Hegarty, Catherine E.
James, Anthony
Janssen, Joost
Johannessen, Cecilie
Jönsson, Erik G.
Karlsgodt, Katherine H.
Kochunov, Peter
Lois, Noemi G.
Lundberg, Mathias
Myhre, Anne M.
Pascual-Diaz, Saül
Piras, Fabrizio
Smelror, Runar E.
Spalletta, Gianfranco
Stokkan, Therese S.
Sugranyes, Gisela
Suo, Chao
Thomopoulos, Sophia I.
Tordesillas-Gutiérrez, Diana
Vecchio, Daniela
Wedervang-Resell, Kirsten
Wortinger, Laura A.
Thompson, Paul M.
Agartz, Ingrid
author_facet Barth, Claudia
Kelly, Sinead
Nerland, Stener
Jahanshad, Neda
Alloza, Clara
Ambrogi, Sonia
Andreassen, Ole A.
Andreou, Dimitrios
Arango, Celso
Baeza, Inmaculada
Banaj, Nerisa
Bearden, Carrie E.
Berk, Michael
Bohman, Hannes
Castro-Fornieles, Josefina
Chye, Yann
Crespo-Facorro, Benedicto
de la Serna, Elena
Díaz-Caneja, Covadonga M.
Gurholt, Tiril P.
Hegarty, Catherine E.
James, Anthony
Janssen, Joost
Johannessen, Cecilie
Jönsson, Erik G.
Karlsgodt, Katherine H.
Kochunov, Peter
Lois, Noemi G.
Lundberg, Mathias
Myhre, Anne M.
Pascual-Diaz, Saül
Piras, Fabrizio
Smelror, Runar E.
Spalletta, Gianfranco
Stokkan, Therese S.
Sugranyes, Gisela
Suo, Chao
Thomopoulos, Sophia I.
Tordesillas-Gutiérrez, Diana
Vecchio, Daniela
Wedervang-Resell, Kirsten
Wortinger, Laura A.
Thompson, Paul M.
Agartz, Ingrid
author_sort Barth, Claudia
collection PubMed
description Emerging evidence suggests brain white matter alterations in adolescents with early-onset psychosis (EOP; age of onset <18 years). However, as neuroimaging methods vary and sample sizes are modest, results remain inconclusive. Using harmonized data processing protocols and a mega-analytic approach, we compared white matter microstructure in EOP and healthy controls using diffusion tensor imaging (DTI). Our sample included 321 adolescents with EOP (median age = 16.6 years, interquartile range (IQR) = 2.14, 46.4% females) and 265 adolescent healthy controls (median age = 16.2 years, IQR = 2.43, 57.7% females) pooled from nine sites. All sites extracted mean fractional anisotropy (FA), mean diffusivity (MD), radial diffusivity (RD), and axial diffusivity (AD) for 25 white matter regions of interest per participant. ComBat harmonization was performed for all DTI measures to adjust for scanner differences. Multiple linear regression models were fitted to investigate case-control differences and associations with clinical variables in regional DTI measures. We found widespread lower FA in EOP compared to healthy controls, with the largest effect sizes in the superior longitudinal fasciculus (Cohen’s d = 0.37), posterior corona radiata (d = 0.32), and superior fronto‐occipital fasciculus (d = 0.31). We also found widespread higher RD and more localized higher MD and AD. We detected significant effects of diagnostic subgroup, sex, and duration of illness, but not medication status. Using the largest EOP DTI sample to date, our findings suggest a profile of widespread white matter microstructure alterations in adolescents with EOP, most prominently in male individuals with early-onset schizophrenia and individuals with a shorter duration of illness.
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spelling pubmed-100059382023-03-12 In vivo white matter microstructure in adolescents with early-onset psychosis: a multi-site mega-analysis Barth, Claudia Kelly, Sinead Nerland, Stener Jahanshad, Neda Alloza, Clara Ambrogi, Sonia Andreassen, Ole A. Andreou, Dimitrios Arango, Celso Baeza, Inmaculada Banaj, Nerisa Bearden, Carrie E. Berk, Michael Bohman, Hannes Castro-Fornieles, Josefina Chye, Yann Crespo-Facorro, Benedicto de la Serna, Elena Díaz-Caneja, Covadonga M. Gurholt, Tiril P. Hegarty, Catherine E. James, Anthony Janssen, Joost Johannessen, Cecilie Jönsson, Erik G. Karlsgodt, Katherine H. Kochunov, Peter Lois, Noemi G. Lundberg, Mathias Myhre, Anne M. Pascual-Diaz, Saül Piras, Fabrizio Smelror, Runar E. Spalletta, Gianfranco Stokkan, Therese S. Sugranyes, Gisela Suo, Chao Thomopoulos, Sophia I. Tordesillas-Gutiérrez, Diana Vecchio, Daniela Wedervang-Resell, Kirsten Wortinger, Laura A. Thompson, Paul M. Agartz, Ingrid Mol Psychiatry Article Emerging evidence suggests brain white matter alterations in adolescents with early-onset psychosis (EOP; age of onset <18 years). However, as neuroimaging methods vary and sample sizes are modest, results remain inconclusive. Using harmonized data processing protocols and a mega-analytic approach, we compared white matter microstructure in EOP and healthy controls using diffusion tensor imaging (DTI). Our sample included 321 adolescents with EOP (median age = 16.6 years, interquartile range (IQR) = 2.14, 46.4% females) and 265 adolescent healthy controls (median age = 16.2 years, IQR = 2.43, 57.7% females) pooled from nine sites. All sites extracted mean fractional anisotropy (FA), mean diffusivity (MD), radial diffusivity (RD), and axial diffusivity (AD) for 25 white matter regions of interest per participant. ComBat harmonization was performed for all DTI measures to adjust for scanner differences. Multiple linear regression models were fitted to investigate case-control differences and associations with clinical variables in regional DTI measures. We found widespread lower FA in EOP compared to healthy controls, with the largest effect sizes in the superior longitudinal fasciculus (Cohen’s d = 0.37), posterior corona radiata (d = 0.32), and superior fronto‐occipital fasciculus (d = 0.31). We also found widespread higher RD and more localized higher MD and AD. We detected significant effects of diagnostic subgroup, sex, and duration of illness, but not medication status. Using the largest EOP DTI sample to date, our findings suggest a profile of widespread white matter microstructure alterations in adolescents with EOP, most prominently in male individuals with early-onset schizophrenia and individuals with a shorter duration of illness. Nature Publishing Group UK 2022-12-12 2023 /pmc/articles/PMC10005938/ /pubmed/36510004 http://dx.doi.org/10.1038/s41380-022-01901-3 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Barth, Claudia
Kelly, Sinead
Nerland, Stener
Jahanshad, Neda
Alloza, Clara
Ambrogi, Sonia
Andreassen, Ole A.
Andreou, Dimitrios
Arango, Celso
Baeza, Inmaculada
Banaj, Nerisa
Bearden, Carrie E.
Berk, Michael
Bohman, Hannes
Castro-Fornieles, Josefina
Chye, Yann
Crespo-Facorro, Benedicto
de la Serna, Elena
Díaz-Caneja, Covadonga M.
Gurholt, Tiril P.
Hegarty, Catherine E.
James, Anthony
Janssen, Joost
Johannessen, Cecilie
Jönsson, Erik G.
Karlsgodt, Katherine H.
Kochunov, Peter
Lois, Noemi G.
Lundberg, Mathias
Myhre, Anne M.
Pascual-Diaz, Saül
Piras, Fabrizio
Smelror, Runar E.
Spalletta, Gianfranco
Stokkan, Therese S.
Sugranyes, Gisela
Suo, Chao
Thomopoulos, Sophia I.
Tordesillas-Gutiérrez, Diana
Vecchio, Daniela
Wedervang-Resell, Kirsten
Wortinger, Laura A.
Thompson, Paul M.
Agartz, Ingrid
In vivo white matter microstructure in adolescents with early-onset psychosis: a multi-site mega-analysis
title In vivo white matter microstructure in adolescents with early-onset psychosis: a multi-site mega-analysis
title_full In vivo white matter microstructure in adolescents with early-onset psychosis: a multi-site mega-analysis
title_fullStr In vivo white matter microstructure in adolescents with early-onset psychosis: a multi-site mega-analysis
title_full_unstemmed In vivo white matter microstructure in adolescents with early-onset psychosis: a multi-site mega-analysis
title_short In vivo white matter microstructure in adolescents with early-onset psychosis: a multi-site mega-analysis
title_sort in vivo white matter microstructure in adolescents with early-onset psychosis: a multi-site mega-analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10005938/
https://www.ncbi.nlm.nih.gov/pubmed/36510004
http://dx.doi.org/10.1038/s41380-022-01901-3
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