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White matter tract microstructure, macrostructure, and associated cortical gray matter morphology across the lifespan

Characterizing how, when and where the human brain changes across the lifespan is fundamental to our understanding of developmental processes of childhood and adolescence, degenerative processes of aging, and divergence from normal patterns in disease and disorders. We aimed to provide detailed desc...

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Autores principales: Schilling, Kurt G, Chad, Jordan A., Chamberland, Maxime, Nozais, Victor, Rheault, Francois, Archer, Derek, Li, Muwei, Gao, Yurui, Cai, Leon, Del’Acqua, Flavio, Newton, Allen, Moyer, Daniel, Gore, John C., Lebel, Catherine, Landman, Bennett A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10557619/
https://www.ncbi.nlm.nih.gov/pubmed/37808645
http://dx.doi.org/10.1101/2023.09.25.559330
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author Schilling, Kurt G
Chad, Jordan A.
Chamberland, Maxime
Nozais, Victor
Rheault, Francois
Archer, Derek
Li, Muwei
Gao, Yurui
Cai, Leon
Del’Acqua, Flavio
Newton, Allen
Moyer, Daniel
Gore, John C.
Lebel, Catherine
Landman, Bennett A
author_facet Schilling, Kurt G
Chad, Jordan A.
Chamberland, Maxime
Nozais, Victor
Rheault, Francois
Archer, Derek
Li, Muwei
Gao, Yurui
Cai, Leon
Del’Acqua, Flavio
Newton, Allen
Moyer, Daniel
Gore, John C.
Lebel, Catherine
Landman, Bennett A
author_sort Schilling, Kurt G
collection PubMed
description Characterizing how, when and where the human brain changes across the lifespan is fundamental to our understanding of developmental processes of childhood and adolescence, degenerative processes of aging, and divergence from normal patterns in disease and disorders. We aimed to provide detailed descriptions of white matter pathways across the lifespan by thoroughly characterizing white matter microstructure, white matter macrostructure, and morphology of the cortex associated with white matter pathways. We analyzed 4 large, high-quality, publicly-available datasets comprising 2789 total imaging sessions, and participants ranging from 0 to 100 years old, using advanced tractography and diffusion modeling. We first find that all microstructural, macrostructural, and cortical features of white matter bundles show unique lifespan trajectories, with rates and timing of development and degradation that vary across pathways – describing differences between types of pathways and locations in the brain, and developmental milestones of maturation of each feature. Second, we show cross-sectional relationships between different features that may help elucidate biological changes occurring during different stages of the lifespan. Third, we show unique trajectories of age-associations across features. Finally, we find that age associations during development are strongly related to those during aging. Overall, this study reports normative data for several features of white matter pathways of the human brain that will be useful for studying normal and abnormal white matter development and degeneration.
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spelling pubmed-105576192023-10-07 White matter tract microstructure, macrostructure, and associated cortical gray matter morphology across the lifespan Schilling, Kurt G Chad, Jordan A. Chamberland, Maxime Nozais, Victor Rheault, Francois Archer, Derek Li, Muwei Gao, Yurui Cai, Leon Del’Acqua, Flavio Newton, Allen Moyer, Daniel Gore, John C. Lebel, Catherine Landman, Bennett A bioRxiv Article Characterizing how, when and where the human brain changes across the lifespan is fundamental to our understanding of developmental processes of childhood and adolescence, degenerative processes of aging, and divergence from normal patterns in disease and disorders. We aimed to provide detailed descriptions of white matter pathways across the lifespan by thoroughly characterizing white matter microstructure, white matter macrostructure, and morphology of the cortex associated with white matter pathways. We analyzed 4 large, high-quality, publicly-available datasets comprising 2789 total imaging sessions, and participants ranging from 0 to 100 years old, using advanced tractography and diffusion modeling. We first find that all microstructural, macrostructural, and cortical features of white matter bundles show unique lifespan trajectories, with rates and timing of development and degradation that vary across pathways – describing differences between types of pathways and locations in the brain, and developmental milestones of maturation of each feature. Second, we show cross-sectional relationships between different features that may help elucidate biological changes occurring during different stages of the lifespan. Third, we show unique trajectories of age-associations across features. Finally, we find that age associations during development are strongly related to those during aging. Overall, this study reports normative data for several features of white matter pathways of the human brain that will be useful for studying normal and abnormal white matter development and degeneration. Cold Spring Harbor Laboratory 2023-09-26 /pmc/articles/PMC10557619/ /pubmed/37808645 http://dx.doi.org/10.1101/2023.09.25.559330 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Schilling, Kurt G
Chad, Jordan A.
Chamberland, Maxime
Nozais, Victor
Rheault, Francois
Archer, Derek
Li, Muwei
Gao, Yurui
Cai, Leon
Del’Acqua, Flavio
Newton, Allen
Moyer, Daniel
Gore, John C.
Lebel, Catherine
Landman, Bennett A
White matter tract microstructure, macrostructure, and associated cortical gray matter morphology across the lifespan
title White matter tract microstructure, macrostructure, and associated cortical gray matter morphology across the lifespan
title_full White matter tract microstructure, macrostructure, and associated cortical gray matter morphology across the lifespan
title_fullStr White matter tract microstructure, macrostructure, and associated cortical gray matter morphology across the lifespan
title_full_unstemmed White matter tract microstructure, macrostructure, and associated cortical gray matter morphology across the lifespan
title_short White matter tract microstructure, macrostructure, and associated cortical gray matter morphology across the lifespan
title_sort white matter tract microstructure, macrostructure, and associated cortical gray matter morphology across the lifespan
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10557619/
https://www.ncbi.nlm.nih.gov/pubmed/37808645
http://dx.doi.org/10.1101/2023.09.25.559330
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