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Increased power by harmonizing structural MRI site differences with the ComBat batch adjustment method in ENIGMA

A common limitation of neuroimaging studies is their small sample sizes. To overcome this hurdle, the Enhancing Neuro Imaging Genetics through Meta-Analysis (ENIGMA) Consortium combines neuroimaging data from many institutions worldwide. However, this introduces heterogeneity due to different scanni...

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Autores principales: Radua, Joaquim, Vieta, Eduard, Shinohara, Russell, Kochunov, Peter, Quidé, Yann, Green, Melissa J., Weickert, Cynthia S., Weickert, Thomas, Bruggemann, Jason, Kircher, Tilo, Nenadić, Igor, Cairns, Murray J., Seal, Marc, Schall, Ulrich, Henskens, Frans, Fullerton, Janice M., Mowry, Bryan, Pantelis, Christos, Lenroot, Rhoshel, Cropley, Vanessa, Loughland, Carmel, Scott, Rodney, Wolf, Daniel, Satterthwaite, Theodore D, Tan, Yunlong, Sim, Kang, Piras, Fabrizio, Spalletta, Gianfranco, Banaj, Nerisa, Pomarol-Clotet, Edith, Solanes, Aleix, Albajes-Eizagirre, Anton, Canales-Rodríguez, Erick J., Sarro, Salvador, Giorgio, Annabella Di, Bertolino, Alessandro, Stäblein, Michael, Oertel, Viola, Knöchel, Christian, Borgwardt, Stefan, du Plessis, Stefan, Yun, Je-Yeon, Kwon, Jun Soo, Dannlowski, Udo, Hahn, Tim, Grotegerd, Dominik, Alloz, Clara, Arango, Celso, Janssen, Joost, Díaz-Caneja, Covadonga, Jiang, Wenhao, Calhoun, Vince, Ehrlich, Stefan, Yang, Kun, Cascella, Nicola G., Takayanagi, Yoichiro, Sawa, Akira, Tomyshev, Alexander, Lebedeva, Irina, Kaleda, Vasily, Kirschner, Matthias, Hoschl, Cyril, Tomecek, David, Skoch, Antonin, van Amelsvoort, Therese, Bakker, Geor, James, Anthony, Preda, Adrian, Weideman, Andrea, Stein, Dan J., Howells, Fleur, Uhlmann, Anne, Temmingh, Henk, López-Jaramillo, Carlos, Díaz-Zuluaga, Ana, Fortea, Lydia, Martinez-Heras, Eloy, Solana, Elisabeth, Llufriu, Sara, Jahanshad, Neda, Thompson, Paul, Turner, Jessica, van Erp, Theo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7524039/
https://www.ncbi.nlm.nih.gov/pubmed/32470572
http://dx.doi.org/10.1016/j.neuroimage.2020.116956
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author Radua, Joaquim
Vieta, Eduard
Shinohara, Russell
Kochunov, Peter
Quidé, Yann
Green, Melissa J.
Weickert, Cynthia S.
Weickert, Thomas
Bruggemann, Jason
Kircher, Tilo
Nenadić, Igor
Cairns, Murray J.
Seal, Marc
Schall, Ulrich
Henskens, Frans
Fullerton, Janice M.
Mowry, Bryan
Pantelis, Christos
Lenroot, Rhoshel
Cropley, Vanessa
Loughland, Carmel
Scott, Rodney
Wolf, Daniel
Satterthwaite, Theodore D
Tan, Yunlong
Sim, Kang
Piras, Fabrizio
Spalletta, Gianfranco
Banaj, Nerisa
Pomarol-Clotet, Edith
Solanes, Aleix
Albajes-Eizagirre, Anton
Canales-Rodríguez, Erick J.
Sarro, Salvador
Giorgio, Annabella Di
Bertolino, Alessandro
Stäblein, Michael
Oertel, Viola
Knöchel, Christian
Borgwardt, Stefan
du Plessis, Stefan
Yun, Je-Yeon
Kwon, Jun Soo
Dannlowski, Udo
Hahn, Tim
Grotegerd, Dominik
Alloz, Clara
Arango, Celso
Janssen, Joost
Díaz-Caneja, Covadonga
Jiang, Wenhao
Calhoun, Vince
Ehrlich, Stefan
Yang, Kun
Cascella, Nicola G.
Takayanagi, Yoichiro
Sawa, Akira
Tomyshev, Alexander
Lebedeva, Irina
Kaleda, Vasily
Kirschner, Matthias
Hoschl, Cyril
Tomecek, David
Skoch, Antonin
van Amelsvoort, Therese
Bakker, Geor
James, Anthony
Preda, Adrian
Weideman, Andrea
Stein, Dan J.
Howells, Fleur
Uhlmann, Anne
Temmingh, Henk
López-Jaramillo, Carlos
Díaz-Zuluaga, Ana
Fortea, Lydia
Martinez-Heras, Eloy
Solana, Elisabeth
Llufriu, Sara
Jahanshad, Neda
Thompson, Paul
Turner, Jessica
van Erp, Theo
author_facet Radua, Joaquim
Vieta, Eduard
Shinohara, Russell
Kochunov, Peter
Quidé, Yann
Green, Melissa J.
Weickert, Cynthia S.
Weickert, Thomas
Bruggemann, Jason
Kircher, Tilo
Nenadić, Igor
Cairns, Murray J.
Seal, Marc
Schall, Ulrich
Henskens, Frans
Fullerton, Janice M.
Mowry, Bryan
Pantelis, Christos
Lenroot, Rhoshel
Cropley, Vanessa
Loughland, Carmel
Scott, Rodney
Wolf, Daniel
Satterthwaite, Theodore D
Tan, Yunlong
Sim, Kang
Piras, Fabrizio
Spalletta, Gianfranco
Banaj, Nerisa
Pomarol-Clotet, Edith
Solanes, Aleix
Albajes-Eizagirre, Anton
Canales-Rodríguez, Erick J.
Sarro, Salvador
Giorgio, Annabella Di
Bertolino, Alessandro
Stäblein, Michael
Oertel, Viola
Knöchel, Christian
Borgwardt, Stefan
du Plessis, Stefan
Yun, Je-Yeon
Kwon, Jun Soo
Dannlowski, Udo
Hahn, Tim
Grotegerd, Dominik
Alloz, Clara
Arango, Celso
Janssen, Joost
Díaz-Caneja, Covadonga
Jiang, Wenhao
Calhoun, Vince
Ehrlich, Stefan
Yang, Kun
Cascella, Nicola G.
Takayanagi, Yoichiro
Sawa, Akira
Tomyshev, Alexander
Lebedeva, Irina
Kaleda, Vasily
Kirschner, Matthias
Hoschl, Cyril
Tomecek, David
Skoch, Antonin
van Amelsvoort, Therese
Bakker, Geor
James, Anthony
Preda, Adrian
Weideman, Andrea
Stein, Dan J.
Howells, Fleur
Uhlmann, Anne
Temmingh, Henk
López-Jaramillo, Carlos
Díaz-Zuluaga, Ana
Fortea, Lydia
Martinez-Heras, Eloy
Solana, Elisabeth
Llufriu, Sara
Jahanshad, Neda
Thompson, Paul
Turner, Jessica
van Erp, Theo
author_sort Radua, Joaquim
collection PubMed
description A common limitation of neuroimaging studies is their small sample sizes. To overcome this hurdle, the Enhancing Neuro Imaging Genetics through Meta-Analysis (ENIGMA) Consortium combines neuroimaging data from many institutions worldwide. However, this introduces heterogeneity due to different scanning devices and sequences. ENIGMA projects commonly address this heterogeneity with random-effects meta-analysis or mixed-effects mega-analysis. Here we tested whether the batch adjustment method, ComBat, can further reduce site-related heterogeneity and thus increase statistical power. We conducted random-effects meta-analyses, mixed-effects mega-analyses and ComBat mega-analyses to compare cortical thickness, surface area and subcortical volumes between 2897 individuals with a diagnosis of schizophrenia and 3141 healthy controls from 33 sites. Specifically, we compared the imaging data between individuals with schizophrenia and healthy controls, covarying for age and sex. The use of ComBat substantially increased the statistical significance of the findings as compared to random-effects meta-analyses. The findings were more similar when comparing ComBat with mixed-effects mega-analysis, although ComBat still slightly increased the statistical significance. ComBat also showed increased statistical power when we repeated the analyses with fewer sites. Results were nearly identical when we applied the ComBat harmonization separately for cortical thickness, cortical surface area and subcortical volumes. Therefore, we recommend applying the ComBat function to attenuate potential effects of site in ENIGMA projects and other multi-site structural imaging work. We provide easy-to-use functions in R that work even if imaging data are partially missing in some brain regions, and they can be trained with one data set and then applied to another (a requirement for some analyses such as machine learning).
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spelling pubmed-75240392020-09-29 Increased power by harmonizing structural MRI site differences with the ComBat batch adjustment method in ENIGMA Radua, Joaquim Vieta, Eduard Shinohara, Russell Kochunov, Peter Quidé, Yann Green, Melissa J. Weickert, Cynthia S. Weickert, Thomas Bruggemann, Jason Kircher, Tilo Nenadić, Igor Cairns, Murray J. Seal, Marc Schall, Ulrich Henskens, Frans Fullerton, Janice M. Mowry, Bryan Pantelis, Christos Lenroot, Rhoshel Cropley, Vanessa Loughland, Carmel Scott, Rodney Wolf, Daniel Satterthwaite, Theodore D Tan, Yunlong Sim, Kang Piras, Fabrizio Spalletta, Gianfranco Banaj, Nerisa Pomarol-Clotet, Edith Solanes, Aleix Albajes-Eizagirre, Anton Canales-Rodríguez, Erick J. Sarro, Salvador Giorgio, Annabella Di Bertolino, Alessandro Stäblein, Michael Oertel, Viola Knöchel, Christian Borgwardt, Stefan du Plessis, Stefan Yun, Je-Yeon Kwon, Jun Soo Dannlowski, Udo Hahn, Tim Grotegerd, Dominik Alloz, Clara Arango, Celso Janssen, Joost Díaz-Caneja, Covadonga Jiang, Wenhao Calhoun, Vince Ehrlich, Stefan Yang, Kun Cascella, Nicola G. Takayanagi, Yoichiro Sawa, Akira Tomyshev, Alexander Lebedeva, Irina Kaleda, Vasily Kirschner, Matthias Hoschl, Cyril Tomecek, David Skoch, Antonin van Amelsvoort, Therese Bakker, Geor James, Anthony Preda, Adrian Weideman, Andrea Stein, Dan J. Howells, Fleur Uhlmann, Anne Temmingh, Henk López-Jaramillo, Carlos Díaz-Zuluaga, Ana Fortea, Lydia Martinez-Heras, Eloy Solana, Elisabeth Llufriu, Sara Jahanshad, Neda Thompson, Paul Turner, Jessica van Erp, Theo Neuroimage Article A common limitation of neuroimaging studies is their small sample sizes. To overcome this hurdle, the Enhancing Neuro Imaging Genetics through Meta-Analysis (ENIGMA) Consortium combines neuroimaging data from many institutions worldwide. However, this introduces heterogeneity due to different scanning devices and sequences. ENIGMA projects commonly address this heterogeneity with random-effects meta-analysis or mixed-effects mega-analysis. Here we tested whether the batch adjustment method, ComBat, can further reduce site-related heterogeneity and thus increase statistical power. We conducted random-effects meta-analyses, mixed-effects mega-analyses and ComBat mega-analyses to compare cortical thickness, surface area and subcortical volumes between 2897 individuals with a diagnosis of schizophrenia and 3141 healthy controls from 33 sites. Specifically, we compared the imaging data between individuals with schizophrenia and healthy controls, covarying for age and sex. The use of ComBat substantially increased the statistical significance of the findings as compared to random-effects meta-analyses. The findings were more similar when comparing ComBat with mixed-effects mega-analysis, although ComBat still slightly increased the statistical significance. ComBat also showed increased statistical power when we repeated the analyses with fewer sites. Results were nearly identical when we applied the ComBat harmonization separately for cortical thickness, cortical surface area and subcortical volumes. Therefore, we recommend applying the ComBat function to attenuate potential effects of site in ENIGMA projects and other multi-site structural imaging work. We provide easy-to-use functions in R that work even if imaging data are partially missing in some brain regions, and they can be trained with one data set and then applied to another (a requirement for some analyses such as machine learning). 2020-05-26 2020-09 /pmc/articles/PMC7524039/ /pubmed/32470572 http://dx.doi.org/10.1016/j.neuroimage.2020.116956 Text en This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Radua, Joaquim
Vieta, Eduard
Shinohara, Russell
Kochunov, Peter
Quidé, Yann
Green, Melissa J.
Weickert, Cynthia S.
Weickert, Thomas
Bruggemann, Jason
Kircher, Tilo
Nenadić, Igor
Cairns, Murray J.
Seal, Marc
Schall, Ulrich
Henskens, Frans
Fullerton, Janice M.
Mowry, Bryan
Pantelis, Christos
Lenroot, Rhoshel
Cropley, Vanessa
Loughland, Carmel
Scott, Rodney
Wolf, Daniel
Satterthwaite, Theodore D
Tan, Yunlong
Sim, Kang
Piras, Fabrizio
Spalletta, Gianfranco
Banaj, Nerisa
Pomarol-Clotet, Edith
Solanes, Aleix
Albajes-Eizagirre, Anton
Canales-Rodríguez, Erick J.
Sarro, Salvador
Giorgio, Annabella Di
Bertolino, Alessandro
Stäblein, Michael
Oertel, Viola
Knöchel, Christian
Borgwardt, Stefan
du Plessis, Stefan
Yun, Je-Yeon
Kwon, Jun Soo
Dannlowski, Udo
Hahn, Tim
Grotegerd, Dominik
Alloz, Clara
Arango, Celso
Janssen, Joost
Díaz-Caneja, Covadonga
Jiang, Wenhao
Calhoun, Vince
Ehrlich, Stefan
Yang, Kun
Cascella, Nicola G.
Takayanagi, Yoichiro
Sawa, Akira
Tomyshev, Alexander
Lebedeva, Irina
Kaleda, Vasily
Kirschner, Matthias
Hoschl, Cyril
Tomecek, David
Skoch, Antonin
van Amelsvoort, Therese
Bakker, Geor
James, Anthony
Preda, Adrian
Weideman, Andrea
Stein, Dan J.
Howells, Fleur
Uhlmann, Anne
Temmingh, Henk
López-Jaramillo, Carlos
Díaz-Zuluaga, Ana
Fortea, Lydia
Martinez-Heras, Eloy
Solana, Elisabeth
Llufriu, Sara
Jahanshad, Neda
Thompson, Paul
Turner, Jessica
van Erp, Theo
Increased power by harmonizing structural MRI site differences with the ComBat batch adjustment method in ENIGMA
title Increased power by harmonizing structural MRI site differences with the ComBat batch adjustment method in ENIGMA
title_full Increased power by harmonizing structural MRI site differences with the ComBat batch adjustment method in ENIGMA
title_fullStr Increased power by harmonizing structural MRI site differences with the ComBat batch adjustment method in ENIGMA
title_full_unstemmed Increased power by harmonizing structural MRI site differences with the ComBat batch adjustment method in ENIGMA
title_short Increased power by harmonizing structural MRI site differences with the ComBat batch adjustment method in ENIGMA
title_sort increased power by harmonizing structural mri site differences with the combat batch adjustment method in enigma
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7524039/
https://www.ncbi.nlm.nih.gov/pubmed/32470572
http://dx.doi.org/10.1016/j.neuroimage.2020.116956
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