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FreeSurfer‐based segmentation of hippocampal subfields: A review of methods and applications, with a novel quality control procedure for ENIGMA studies and other collaborative efforts

Structural hippocampal abnormalities are common in many neurological and psychiatric disorders, and variation in hippocampal measures is related to cognitive performance and other complex phenotypes such as stress sensitivity. Hippocampal subregions are increasingly studied, as automated algorithms...

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Autores principales: Sämann, Philipp G., Iglesias, Juan Eugenio, Gutman, Boris, Grotegerd, Dominik, Leenings, Ramona, Flint, Claas, Dannlowski, Udo, Clarke‐Rubright, Emily K., Morey, Rajendra A., van Erp, Theo G.M., Whelan, Christopher D., Han, Laura K. M., van Velzen, Laura S., Cao, Bo, Augustinack, Jean C., Thompson, Paul M., Jahanshad, Neda, Schmaal, Lianne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8805696/
https://www.ncbi.nlm.nih.gov/pubmed/33368865
http://dx.doi.org/10.1002/hbm.25326
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author Sämann, Philipp G.
Iglesias, Juan Eugenio
Gutman, Boris
Grotegerd, Dominik
Leenings, Ramona
Flint, Claas
Dannlowski, Udo
Clarke‐Rubright, Emily K.
Morey, Rajendra A.
van Erp, Theo G.M.
Whelan, Christopher D.
Han, Laura K. M.
van Velzen, Laura S.
Cao, Bo
Augustinack, Jean C.
Thompson, Paul M.
Jahanshad, Neda
Schmaal, Lianne
author_facet Sämann, Philipp G.
Iglesias, Juan Eugenio
Gutman, Boris
Grotegerd, Dominik
Leenings, Ramona
Flint, Claas
Dannlowski, Udo
Clarke‐Rubright, Emily K.
Morey, Rajendra A.
van Erp, Theo G.M.
Whelan, Christopher D.
Han, Laura K. M.
van Velzen, Laura S.
Cao, Bo
Augustinack, Jean C.
Thompson, Paul M.
Jahanshad, Neda
Schmaal, Lianne
author_sort Sämann, Philipp G.
collection PubMed
description Structural hippocampal abnormalities are common in many neurological and psychiatric disorders, and variation in hippocampal measures is related to cognitive performance and other complex phenotypes such as stress sensitivity. Hippocampal subregions are increasingly studied, as automated algorithms have become available for mapping and volume quantification. In the context of the Enhancing Neuro Imaging Genetics through Meta Analysis Consortium, several Disease Working Groups are using the FreeSurfer software to analyze hippocampal subregion (subfield) volumes in patients with neurological and psychiatric conditions along with data from matched controls. In this overview, we explain the algorithm's principles, summarize measurement reliability studies, and demonstrate two additional aspects (subfield autocorrelation and volume/reliability correlation) with illustrative data. We then explain the rationale for a standardized hippocampal subfield segmentation quality control (QC) procedure for improved pipeline harmonization. To guide researchers to make optimal use of the algorithm, we discuss how global size and age effects can be modeled, how QC steps can be incorporated and how subfields may be aggregated into composite volumes. This discussion is based on a synopsis of 162 published neuroimaging studies (01/2013–12/2019) that applied the FreeSurfer hippocampal subfield segmentation in a broad range of domains including cognition and healthy aging, brain development and neurodegeneration, affective disorders, psychosis, stress regulation, neurotoxicity, epilepsy, inflammatory disease, childhood adversity and posttraumatic stress disorder, and candidate and whole genome (epi‐)genetics. Finally, we highlight points where FreeSurfer‐based hippocampal subfield studies may be optimized.
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spelling pubmed-88056962022-02-04 FreeSurfer‐based segmentation of hippocampal subfields: A review of methods and applications, with a novel quality control procedure for ENIGMA studies and other collaborative efforts Sämann, Philipp G. Iglesias, Juan Eugenio Gutman, Boris Grotegerd, Dominik Leenings, Ramona Flint, Claas Dannlowski, Udo Clarke‐Rubright, Emily K. Morey, Rajendra A. van Erp, Theo G.M. Whelan, Christopher D. Han, Laura K. M. van Velzen, Laura S. Cao, Bo Augustinack, Jean C. Thompson, Paul M. Jahanshad, Neda Schmaal, Lianne Hum Brain Mapp Review Articles Structural hippocampal abnormalities are common in many neurological and psychiatric disorders, and variation in hippocampal measures is related to cognitive performance and other complex phenotypes such as stress sensitivity. Hippocampal subregions are increasingly studied, as automated algorithms have become available for mapping and volume quantification. In the context of the Enhancing Neuro Imaging Genetics through Meta Analysis Consortium, several Disease Working Groups are using the FreeSurfer software to analyze hippocampal subregion (subfield) volumes in patients with neurological and psychiatric conditions along with data from matched controls. In this overview, we explain the algorithm's principles, summarize measurement reliability studies, and demonstrate two additional aspects (subfield autocorrelation and volume/reliability correlation) with illustrative data. We then explain the rationale for a standardized hippocampal subfield segmentation quality control (QC) procedure for improved pipeline harmonization. To guide researchers to make optimal use of the algorithm, we discuss how global size and age effects can be modeled, how QC steps can be incorporated and how subfields may be aggregated into composite volumes. This discussion is based on a synopsis of 162 published neuroimaging studies (01/2013–12/2019) that applied the FreeSurfer hippocampal subfield segmentation in a broad range of domains including cognition and healthy aging, brain development and neurodegeneration, affective disorders, psychosis, stress regulation, neurotoxicity, epilepsy, inflammatory disease, childhood adversity and posttraumatic stress disorder, and candidate and whole genome (epi‐)genetics. Finally, we highlight points where FreeSurfer‐based hippocampal subfield studies may be optimized. John Wiley & Sons, Inc. 2020-12-27 /pmc/articles/PMC8805696/ /pubmed/33368865 http://dx.doi.org/10.1002/hbm.25326 Text en © 2020 The Authors. Human Brain Mapping published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Review Articles
Sämann, Philipp G.
Iglesias, Juan Eugenio
Gutman, Boris
Grotegerd, Dominik
Leenings, Ramona
Flint, Claas
Dannlowski, Udo
Clarke‐Rubright, Emily K.
Morey, Rajendra A.
van Erp, Theo G.M.
Whelan, Christopher D.
Han, Laura K. M.
van Velzen, Laura S.
Cao, Bo
Augustinack, Jean C.
Thompson, Paul M.
Jahanshad, Neda
Schmaal, Lianne
FreeSurfer‐based segmentation of hippocampal subfields: A review of methods and applications, with a novel quality control procedure for ENIGMA studies and other collaborative efforts
title FreeSurfer‐based segmentation of hippocampal subfields: A review of methods and applications, with a novel quality control procedure for ENIGMA studies and other collaborative efforts
title_full FreeSurfer‐based segmentation of hippocampal subfields: A review of methods and applications, with a novel quality control procedure for ENIGMA studies and other collaborative efforts
title_fullStr FreeSurfer‐based segmentation of hippocampal subfields: A review of methods and applications, with a novel quality control procedure for ENIGMA studies and other collaborative efforts
title_full_unstemmed FreeSurfer‐based segmentation of hippocampal subfields: A review of methods and applications, with a novel quality control procedure for ENIGMA studies and other collaborative efforts
title_short FreeSurfer‐based segmentation of hippocampal subfields: A review of methods and applications, with a novel quality control procedure for ENIGMA studies and other collaborative efforts
title_sort freesurfer‐based segmentation of hippocampal subfields: a review of methods and applications, with a novel quality control procedure for enigma studies and other collaborative efforts
topic Review Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8805696/
https://www.ncbi.nlm.nih.gov/pubmed/33368865
http://dx.doi.org/10.1002/hbm.25326
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