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An Empirical Comparison of Meta- and Mega-Analysis With Data From the ENIGMA Obsessive-Compulsive Disorder Working Group
Objective: Brain imaging communities focusing on different diseases have increasingly started to collaborate and to pool data to perform well-powered meta- and mega-analyses. Some methodologists claim that a one-stage individual-participant data (IPD) mega-analysis can be superior to a two-stage agg...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2019
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6331928/ https://www.ncbi.nlm.nih.gov/pubmed/30670959 http://dx.doi.org/10.3389/fninf.2018.00102 |
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author | Boedhoe, Premika S. W. Heymans, Martijn W. Schmaal, Lianne Abe, Yoshinari Alonso, Pino Ameis, Stephanie H. Anticevic, Alan Arnold, Paul D. Batistuzzo, Marcelo C. Benedetti, Francesco Beucke, Jan C. Bollettini, Irene Bose, Anushree Brem, Silvia Calvo, Anna Calvo, Rosa Cheng, Yuqi Cho, Kang Ik K. Ciullo, Valentina Dallaspezia, Sara Denys, Damiaan Feusner, Jamie D. Fitzgerald, Kate D. Fouche, Jean-Paul Fridgeirsson, Egill A. Gruner, Patricia Hanna, Gregory L. Hibar, Derrek P. Hoexter, Marcelo Q. Hu, Hao Huyser, Chaim Jahanshad, Neda James, Anthony Kathmann, Norbert Kaufmann, Christian Koch, Kathrin Kwon, Jun Soo Lazaro, Luisa Lochner, Christine Marsh, Rachel Martínez-Zalacaín, Ignacio Mataix-Cols, David Menchón, José M. Minuzzi, Luciano Morer, Astrid Nakamae, Takashi Nakao, Tomohiro Narayanaswamy, Janardhanan C. Nishida, Seiji Nurmi, Erika L. O'Neill, Joseph Piacentini, John Piras, Fabrizio Piras, Federica Reddy, Y. C. Janardhan Reess, Tim J. Sakai, Yuki Sato, Joao R. Simpson, H. Blair Soreni, Noam Soriano-Mas, Carles Spalletta, Gianfranco Stevens, Michael C. Szeszko, Philip R. Tolin, David F. van Wingen, Guido A. Venkatasubramanian, Ganesan Walitza, Susanne Wang, Zhen Yun, Je-Yeon Thompson, Paul M. Stein, Dan J. van den Heuvel, Odile A. Twisk, Jos W. R. |
author_facet | Boedhoe, Premika S. W. Heymans, Martijn W. Schmaal, Lianne Abe, Yoshinari Alonso, Pino Ameis, Stephanie H. Anticevic, Alan Arnold, Paul D. Batistuzzo, Marcelo C. Benedetti, Francesco Beucke, Jan C. Bollettini, Irene Bose, Anushree Brem, Silvia Calvo, Anna Calvo, Rosa Cheng, Yuqi Cho, Kang Ik K. Ciullo, Valentina Dallaspezia, Sara Denys, Damiaan Feusner, Jamie D. Fitzgerald, Kate D. Fouche, Jean-Paul Fridgeirsson, Egill A. Gruner, Patricia Hanna, Gregory L. Hibar, Derrek P. Hoexter, Marcelo Q. Hu, Hao Huyser, Chaim Jahanshad, Neda James, Anthony Kathmann, Norbert Kaufmann, Christian Koch, Kathrin Kwon, Jun Soo Lazaro, Luisa Lochner, Christine Marsh, Rachel Martínez-Zalacaín, Ignacio Mataix-Cols, David Menchón, José M. Minuzzi, Luciano Morer, Astrid Nakamae, Takashi Nakao, Tomohiro Narayanaswamy, Janardhanan C. Nishida, Seiji Nurmi, Erika L. O'Neill, Joseph Piacentini, John Piras, Fabrizio Piras, Federica Reddy, Y. C. Janardhan Reess, Tim J. Sakai, Yuki Sato, Joao R. Simpson, H. Blair Soreni, Noam Soriano-Mas, Carles Spalletta, Gianfranco Stevens, Michael C. Szeszko, Philip R. Tolin, David F. van Wingen, Guido A. Venkatasubramanian, Ganesan Walitza, Susanne Wang, Zhen Yun, Je-Yeon Thompson, Paul M. Stein, Dan J. van den Heuvel, Odile A. Twisk, Jos W. R. |
author_sort | Boedhoe, Premika S. W. |
collection | PubMed |
description | Objective: Brain imaging communities focusing on different diseases have increasingly started to collaborate and to pool data to perform well-powered meta- and mega-analyses. Some methodologists claim that a one-stage individual-participant data (IPD) mega-analysis can be superior to a two-stage aggregated data meta-analysis, since more detailed computations can be performed in a mega-analysis. Before definitive conclusions regarding the performance of either method can be drawn, it is necessary to critically evaluate the methodology of, and results obtained by, meta- and mega-analyses. Methods: Here, we compare the inverse variance weighted random-effect meta-analysis model with a multiple linear regression mega-analysis model, as well as with a linear mixed-effects random-intercept mega-analysis model, using data from 38 cohorts including 3,665 participants of the ENIGMA-OCD consortium. We assessed the effect sizes and standard errors, and the fit of the models, to evaluate the performance of the different methods. Results: The mega-analytical models showed lower standard errors and narrower confidence intervals than the meta-analysis. Similar standard errors and confidence intervals were found for the linear regression and linear mixed-effects random-intercept models. Moreover, the linear mixed-effects random-intercept models showed better fit indices compared to linear regression mega-analytical models. Conclusions: Our findings indicate that results obtained by meta- and mega-analysis differ, in favor of the latter. In multi-center studies with a moderate amount of variation between cohorts, a linear mixed-effects random-intercept mega-analytical framework appears to be the better approach to investigate structural neuroimaging data. |
format | Online Article Text |
id | pubmed-6331928 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-63319282019-01-22 An Empirical Comparison of Meta- and Mega-Analysis With Data From the ENIGMA Obsessive-Compulsive Disorder Working Group Boedhoe, Premika S. W. Heymans, Martijn W. Schmaal, Lianne Abe, Yoshinari Alonso, Pino Ameis, Stephanie H. Anticevic, Alan Arnold, Paul D. Batistuzzo, Marcelo C. Benedetti, Francesco Beucke, Jan C. Bollettini, Irene Bose, Anushree Brem, Silvia Calvo, Anna Calvo, Rosa Cheng, Yuqi Cho, Kang Ik K. Ciullo, Valentina Dallaspezia, Sara Denys, Damiaan Feusner, Jamie D. Fitzgerald, Kate D. Fouche, Jean-Paul Fridgeirsson, Egill A. Gruner, Patricia Hanna, Gregory L. Hibar, Derrek P. Hoexter, Marcelo Q. Hu, Hao Huyser, Chaim Jahanshad, Neda James, Anthony Kathmann, Norbert Kaufmann, Christian Koch, Kathrin Kwon, Jun Soo Lazaro, Luisa Lochner, Christine Marsh, Rachel Martínez-Zalacaín, Ignacio Mataix-Cols, David Menchón, José M. Minuzzi, Luciano Morer, Astrid Nakamae, Takashi Nakao, Tomohiro Narayanaswamy, Janardhanan C. Nishida, Seiji Nurmi, Erika L. O'Neill, Joseph Piacentini, John Piras, Fabrizio Piras, Federica Reddy, Y. C. Janardhan Reess, Tim J. Sakai, Yuki Sato, Joao R. Simpson, H. Blair Soreni, Noam Soriano-Mas, Carles Spalletta, Gianfranco Stevens, Michael C. Szeszko, Philip R. Tolin, David F. van Wingen, Guido A. Venkatasubramanian, Ganesan Walitza, Susanne Wang, Zhen Yun, Je-Yeon Thompson, Paul M. Stein, Dan J. van den Heuvel, Odile A. Twisk, Jos W. R. Front Neuroinform Neuroscience Objective: Brain imaging communities focusing on different diseases have increasingly started to collaborate and to pool data to perform well-powered meta- and mega-analyses. Some methodologists claim that a one-stage individual-participant data (IPD) mega-analysis can be superior to a two-stage aggregated data meta-analysis, since more detailed computations can be performed in a mega-analysis. Before definitive conclusions regarding the performance of either method can be drawn, it is necessary to critically evaluate the methodology of, and results obtained by, meta- and mega-analyses. Methods: Here, we compare the inverse variance weighted random-effect meta-analysis model with a multiple linear regression mega-analysis model, as well as with a linear mixed-effects random-intercept mega-analysis model, using data from 38 cohorts including 3,665 participants of the ENIGMA-OCD consortium. We assessed the effect sizes and standard errors, and the fit of the models, to evaluate the performance of the different methods. Results: The mega-analytical models showed lower standard errors and narrower confidence intervals than the meta-analysis. Similar standard errors and confidence intervals were found for the linear regression and linear mixed-effects random-intercept models. Moreover, the linear mixed-effects random-intercept models showed better fit indices compared to linear regression mega-analytical models. Conclusions: Our findings indicate that results obtained by meta- and mega-analysis differ, in favor of the latter. In multi-center studies with a moderate amount of variation between cohorts, a linear mixed-effects random-intercept mega-analytical framework appears to be the better approach to investigate structural neuroimaging data. Frontiers Media S.A. 2019-01-08 /pmc/articles/PMC6331928/ /pubmed/30670959 http://dx.doi.org/10.3389/fninf.2018.00102 Text en Copyright © 2019 Boedhoe, Heymans, Schmaal, Abe, Alonso, Ameis, Anticevic, Arnold, Batistuzzo, Benedetti, Beucke, Bollettini, Bose, Brem, Calvo, Calvo, Cheng, Cho, Ciullo, Dallaspezia, Denys, Feusner, Fitzgerald, Fouche, Fridgeirsson, Gruner, Hanna, Hibar, Hoexter, Hu, Huyser, Jahanshad, James, Kathmann, Kaufmann, Koch, Kwon, Lazaro, Lochner, Marsh, Martínez-Zalacaín, Mataix-Cols, Menchón, Minuzzi, Morer, Nakamae, Nakao, Narayanaswamy, Nishida, Nurmi, O'Neill, Piacentini, Piras, Piras, Reddy, Reess, Sakai, Sato, Simpson, Soreni, Soriano-Mas, Spalletta, Stevens, Szeszko, Tolin, van Wingen, Venkatasubramanian, Walitza, Wang, Yun, ENIGMA-OCD Working-Group, Thompson, Stein, van den Heuvel and Twisk. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Neuroscience Boedhoe, Premika S. W. Heymans, Martijn W. Schmaal, Lianne Abe, Yoshinari Alonso, Pino Ameis, Stephanie H. Anticevic, Alan Arnold, Paul D. Batistuzzo, Marcelo C. Benedetti, Francesco Beucke, Jan C. Bollettini, Irene Bose, Anushree Brem, Silvia Calvo, Anna Calvo, Rosa Cheng, Yuqi Cho, Kang Ik K. Ciullo, Valentina Dallaspezia, Sara Denys, Damiaan Feusner, Jamie D. Fitzgerald, Kate D. Fouche, Jean-Paul Fridgeirsson, Egill A. Gruner, Patricia Hanna, Gregory L. Hibar, Derrek P. Hoexter, Marcelo Q. Hu, Hao Huyser, Chaim Jahanshad, Neda James, Anthony Kathmann, Norbert Kaufmann, Christian Koch, Kathrin Kwon, Jun Soo Lazaro, Luisa Lochner, Christine Marsh, Rachel Martínez-Zalacaín, Ignacio Mataix-Cols, David Menchón, José M. Minuzzi, Luciano Morer, Astrid Nakamae, Takashi Nakao, Tomohiro Narayanaswamy, Janardhanan C. Nishida, Seiji Nurmi, Erika L. O'Neill, Joseph Piacentini, John Piras, Fabrizio Piras, Federica Reddy, Y. C. Janardhan Reess, Tim J. Sakai, Yuki Sato, Joao R. Simpson, H. Blair Soreni, Noam Soriano-Mas, Carles Spalletta, Gianfranco Stevens, Michael C. Szeszko, Philip R. Tolin, David F. van Wingen, Guido A. Venkatasubramanian, Ganesan Walitza, Susanne Wang, Zhen Yun, Je-Yeon Thompson, Paul M. Stein, Dan J. van den Heuvel, Odile A. Twisk, Jos W. R. An Empirical Comparison of Meta- and Mega-Analysis With Data From the ENIGMA Obsessive-Compulsive Disorder Working Group |
title | An Empirical Comparison of Meta- and Mega-Analysis With Data From the ENIGMA Obsessive-Compulsive Disorder Working Group |
title_full | An Empirical Comparison of Meta- and Mega-Analysis With Data From the ENIGMA Obsessive-Compulsive Disorder Working Group |
title_fullStr | An Empirical Comparison of Meta- and Mega-Analysis With Data From the ENIGMA Obsessive-Compulsive Disorder Working Group |
title_full_unstemmed | An Empirical Comparison of Meta- and Mega-Analysis With Data From the ENIGMA Obsessive-Compulsive Disorder Working Group |
title_short | An Empirical Comparison of Meta- and Mega-Analysis With Data From the ENIGMA Obsessive-Compulsive Disorder Working Group |
title_sort | empirical comparison of meta- and mega-analysis with data from the enigma obsessive-compulsive disorder working group |
topic | Neuroscience |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6331928/ https://www.ncbi.nlm.nih.gov/pubmed/30670959 http://dx.doi.org/10.3389/fninf.2018.00102 |
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empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup AT stevensmichaelc empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup AT szeszkophilipr empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup AT tolindavidf empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup AT vanwingenguidoa empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup AT venkatasubramanianganesan empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup AT walitzasusanne empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup AT wangzhen empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup AT yunjeyeon empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup AT empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup AT thompsonpaulm empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup AT steindanj empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup AT vandenheuvelodilea empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup AT twiskjoswr empiricalcomparisonofmetaandmegaanalysiswithdatafromtheenigmaobsessivecompulsivedisorderworkinggroup |