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A fast and robust hippocampal subfields segmentation: HSF revealing lifespan volumetric dynamics

The hippocampal subfields, pivotal to episodic memory, are distinct both in terms of cyto- and myeloarchitectony. Studying the structure of hippocampal subfields in vivo is crucial to understand volumetric trajectories across the lifespan, from the emergence of episodic memory during early childhood...

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Autores principales: Poiret, Clement, Bouyeure, Antoine, Patil, Sandesh, Grigis, Antoine, Duchesnay, Edouard, Faillot, Matthieu, Bottlaender, Michel, Lemaitre, Frederic, Noulhiane, Marion
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10308024/
https://www.ncbi.nlm.nih.gov/pubmed/37396459
http://dx.doi.org/10.3389/fninf.2023.1130845
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author Poiret, Clement
Bouyeure, Antoine
Patil, Sandesh
Grigis, Antoine
Duchesnay, Edouard
Faillot, Matthieu
Bottlaender, Michel
Lemaitre, Frederic
Noulhiane, Marion
author_facet Poiret, Clement
Bouyeure, Antoine
Patil, Sandesh
Grigis, Antoine
Duchesnay, Edouard
Faillot, Matthieu
Bottlaender, Michel
Lemaitre, Frederic
Noulhiane, Marion
author_sort Poiret, Clement
collection PubMed
description The hippocampal subfields, pivotal to episodic memory, are distinct both in terms of cyto- and myeloarchitectony. Studying the structure of hippocampal subfields in vivo is crucial to understand volumetric trajectories across the lifespan, from the emergence of episodic memory during early childhood to memory impairments found in older adults. However, segmenting hippocampal subfields on conventional MRI sequences is challenging because of their small size. Furthermore, there is to date no unified segmentation protocol for the hippocampal subfields, which limits comparisons between studies. Therefore, we introduced a novel segmentation tool called HSF short for hippocampal segmentation factory, which leverages an end-to-end deep learning pipeline. First, we validated HSF against currently used tools (ASHS, HIPS, and HippUnfold). Then, we used HSF on 3,750 subjects from the HCP development, young adults, and aging datasets to study the effect of age and sex on hippocampal subfields volumes. Firstly, we showed HSF to be closer to manual segmentation than other currently used tools (p < 0.001), regarding the Dice Coefficient, Hausdorff Distance, and Volumetric Similarity. Then, we showed differential maturation and aging across subfields, with the dentate gyrus being the most affected by age. We also found faster growth and decay in men than in women for most hippocampal subfields. Thus, while we introduced a new, fast and robust end-to-end segmentation tool, our neuroanatomical results concerning the lifespan trajectories of the hippocampal subfields reconcile previous conflicting results.
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spelling pubmed-103080242023-06-30 A fast and robust hippocampal subfields segmentation: HSF revealing lifespan volumetric dynamics Poiret, Clement Bouyeure, Antoine Patil, Sandesh Grigis, Antoine Duchesnay, Edouard Faillot, Matthieu Bottlaender, Michel Lemaitre, Frederic Noulhiane, Marion Front Neuroinform Neuroscience The hippocampal subfields, pivotal to episodic memory, are distinct both in terms of cyto- and myeloarchitectony. Studying the structure of hippocampal subfields in vivo is crucial to understand volumetric trajectories across the lifespan, from the emergence of episodic memory during early childhood to memory impairments found in older adults. However, segmenting hippocampal subfields on conventional MRI sequences is challenging because of their small size. Furthermore, there is to date no unified segmentation protocol for the hippocampal subfields, which limits comparisons between studies. Therefore, we introduced a novel segmentation tool called HSF short for hippocampal segmentation factory, which leverages an end-to-end deep learning pipeline. First, we validated HSF against currently used tools (ASHS, HIPS, and HippUnfold). Then, we used HSF on 3,750 subjects from the HCP development, young adults, and aging datasets to study the effect of age and sex on hippocampal subfields volumes. Firstly, we showed HSF to be closer to manual segmentation than other currently used tools (p < 0.001), regarding the Dice Coefficient, Hausdorff Distance, and Volumetric Similarity. Then, we showed differential maturation and aging across subfields, with the dentate gyrus being the most affected by age. We also found faster growth and decay in men than in women for most hippocampal subfields. Thus, while we introduced a new, fast and robust end-to-end segmentation tool, our neuroanatomical results concerning the lifespan trajectories of the hippocampal subfields reconcile previous conflicting results. Frontiers Media S.A. 2023-06-15 /pmc/articles/PMC10308024/ /pubmed/37396459 http://dx.doi.org/10.3389/fninf.2023.1130845 Text en Copyright © 2023 Poiret, Bouyeure, Patil, Grigis, Duchesnay, Faillot, Bottlaender, Lemaitre and Noulhiane. https://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
Poiret, Clement
Bouyeure, Antoine
Patil, Sandesh
Grigis, Antoine
Duchesnay, Edouard
Faillot, Matthieu
Bottlaender, Michel
Lemaitre, Frederic
Noulhiane, Marion
A fast and robust hippocampal subfields segmentation: HSF revealing lifespan volumetric dynamics
title A fast and robust hippocampal subfields segmentation: HSF revealing lifespan volumetric dynamics
title_full A fast and robust hippocampal subfields segmentation: HSF revealing lifespan volumetric dynamics
title_fullStr A fast and robust hippocampal subfields segmentation: HSF revealing lifespan volumetric dynamics
title_full_unstemmed A fast and robust hippocampal subfields segmentation: HSF revealing lifespan volumetric dynamics
title_short A fast and robust hippocampal subfields segmentation: HSF revealing lifespan volumetric dynamics
title_sort fast and robust hippocampal subfields segmentation: hsf revealing lifespan volumetric dynamics
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10308024/
https://www.ncbi.nlm.nih.gov/pubmed/37396459
http://dx.doi.org/10.3389/fninf.2023.1130845
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