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Atypical developmental trajectories of white matter microstructure in prenatal alcohol exposure: Preliminary evidence from neurite orientation dispersion and density imaging

INTRODUCTION: Fetal alcohol spectrum disorder (FASD), a life-long condition resulting from prenatal alcohol exposure (PAE), is associated with structural brain anomalies and neurobehavioral differences. Evidence from longitudinal neuroimaging suggest trajectories of white matter microstructure matur...

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Autores principales: Gimbel, Blake A., Roediger, Donovan J., Ernst, Abigail M., Anthony, Mary E., de Water, Erik, Rockhold, Madeline N., Mueller, Bryon A., Mattson, Sarah N., Jones, Kenneth L., Riley, Edward P., Lim, Kelvin O., Wozniak, Jeffrey R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10165006/
https://www.ncbi.nlm.nih.gov/pubmed/37168930
http://dx.doi.org/10.3389/fnins.2023.1172010
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author Gimbel, Blake A.
Roediger, Donovan J.
Ernst, Abigail M.
Anthony, Mary E.
de Water, Erik
Rockhold, Madeline N.
Mueller, Bryon A.
Mattson, Sarah N.
Jones, Kenneth L.
Riley, Edward P.
Lim, Kelvin O.
Wozniak, Jeffrey R.
author_facet Gimbel, Blake A.
Roediger, Donovan J.
Ernst, Abigail M.
Anthony, Mary E.
de Water, Erik
Rockhold, Madeline N.
Mueller, Bryon A.
Mattson, Sarah N.
Jones, Kenneth L.
Riley, Edward P.
Lim, Kelvin O.
Wozniak, Jeffrey R.
author_sort Gimbel, Blake A.
collection PubMed
description INTRODUCTION: Fetal alcohol spectrum disorder (FASD), a life-long condition resulting from prenatal alcohol exposure (PAE), is associated with structural brain anomalies and neurobehavioral differences. Evidence from longitudinal neuroimaging suggest trajectories of white matter microstructure maturation are atypical in PAE. We aimed to further characterize longitudinal trajectories of developmental white matter microstructure change in children and adolescents with PAE compared to typically-developing Controls using diffusion-weighted Neurite Orientation Dispersion and Density Imaging (NODDI). MATERIALS AND METHODS: Participants: Youth with PAE (n = 34) and typically-developing Controls (n = 31) ages 8–17 years at enrollment. Participants underwent formal evaluation of growth and facial dysmorphology. Participants also completed two study visits (17 months apart on average), both of which involved cognitive testing and an MRI scan (data collected on a Siemens Prisma 3 T scanner). Age-related changes in the orientation dispersion index (ODI) and the neurite density index (NDI) were examined across five corpus callosum (CC) regions defined by tractography. RESULTS: While linear trajectories suggested similar overall microstructural integrity in PAE and Controls, analyses of symmetrized percent change (SPC) indicated group differences in the timing and magnitude of age-related increases in ODI (indexing the bending and fanning of axons) in the central region of the CC, with PAE participants demonstrating atypically steep increases in dispersion with age compared to Controls. Participants with PAE also demonstrated greater increases in ODI in the mid posterior CC (trend-level group difference). In addition, SPC in ODI and NDI was differentially correlated with executive function performance for PAE participants and Controls, suggesting an atypical relationship between white matter microstructure maturation and cognitive function in PAE. DISCUSSION: Preliminary findings suggest subtle atypicality in the timing and magnitude of age-related white matter microstructure maturation in PAE compared to typically-developing Controls. These findings add to the existing literature on neurodevelopmental trajectories in PAE and suggest that advanced biophysical diffusion modeling (NODDI) may be sensitive to biologically-meaningful microstructural changes in the CC that are disrupted by PAE. Findings of atypical brain maturation-behavior relationships in PAE highlight the need for further study. Further longitudinal research aimed at characterizing white matter neurodevelopmental trajectories in PAE will be important.
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spelling pubmed-101650062023-05-09 Atypical developmental trajectories of white matter microstructure in prenatal alcohol exposure: Preliminary evidence from neurite orientation dispersion and density imaging Gimbel, Blake A. Roediger, Donovan J. Ernst, Abigail M. Anthony, Mary E. de Water, Erik Rockhold, Madeline N. Mueller, Bryon A. Mattson, Sarah N. Jones, Kenneth L. Riley, Edward P. Lim, Kelvin O. Wozniak, Jeffrey R. Front Neurosci Neuroscience INTRODUCTION: Fetal alcohol spectrum disorder (FASD), a life-long condition resulting from prenatal alcohol exposure (PAE), is associated with structural brain anomalies and neurobehavioral differences. Evidence from longitudinal neuroimaging suggest trajectories of white matter microstructure maturation are atypical in PAE. We aimed to further characterize longitudinal trajectories of developmental white matter microstructure change in children and adolescents with PAE compared to typically-developing Controls using diffusion-weighted Neurite Orientation Dispersion and Density Imaging (NODDI). MATERIALS AND METHODS: Participants: Youth with PAE (n = 34) and typically-developing Controls (n = 31) ages 8–17 years at enrollment. Participants underwent formal evaluation of growth and facial dysmorphology. Participants also completed two study visits (17 months apart on average), both of which involved cognitive testing and an MRI scan (data collected on a Siemens Prisma 3 T scanner). Age-related changes in the orientation dispersion index (ODI) and the neurite density index (NDI) were examined across five corpus callosum (CC) regions defined by tractography. RESULTS: While linear trajectories suggested similar overall microstructural integrity in PAE and Controls, analyses of symmetrized percent change (SPC) indicated group differences in the timing and magnitude of age-related increases in ODI (indexing the bending and fanning of axons) in the central region of the CC, with PAE participants demonstrating atypically steep increases in dispersion with age compared to Controls. Participants with PAE also demonstrated greater increases in ODI in the mid posterior CC (trend-level group difference). In addition, SPC in ODI and NDI was differentially correlated with executive function performance for PAE participants and Controls, suggesting an atypical relationship between white matter microstructure maturation and cognitive function in PAE. DISCUSSION: Preliminary findings suggest subtle atypicality in the timing and magnitude of age-related white matter microstructure maturation in PAE compared to typically-developing Controls. These findings add to the existing literature on neurodevelopmental trajectories in PAE and suggest that advanced biophysical diffusion modeling (NODDI) may be sensitive to biologically-meaningful microstructural changes in the CC that are disrupted by PAE. Findings of atypical brain maturation-behavior relationships in PAE highlight the need for further study. Further longitudinal research aimed at characterizing white matter neurodevelopmental trajectories in PAE will be important. Frontiers Media S.A. 2023-04-24 /pmc/articles/PMC10165006/ /pubmed/37168930 http://dx.doi.org/10.3389/fnins.2023.1172010 Text en Copyright © 2023 Gimbel, Roediger, Ernst, Anthony, de Water, Rockhold, Mueller, Mattson, Jones, Riley, Lim, CIFASD and Wozniak. 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
Gimbel, Blake A.
Roediger, Donovan J.
Ernst, Abigail M.
Anthony, Mary E.
de Water, Erik
Rockhold, Madeline N.
Mueller, Bryon A.
Mattson, Sarah N.
Jones, Kenneth L.
Riley, Edward P.
Lim, Kelvin O.
Wozniak, Jeffrey R.
Atypical developmental trajectories of white matter microstructure in prenatal alcohol exposure: Preliminary evidence from neurite orientation dispersion and density imaging
title Atypical developmental trajectories of white matter microstructure in prenatal alcohol exposure: Preliminary evidence from neurite orientation dispersion and density imaging
title_full Atypical developmental trajectories of white matter microstructure in prenatal alcohol exposure: Preliminary evidence from neurite orientation dispersion and density imaging
title_fullStr Atypical developmental trajectories of white matter microstructure in prenatal alcohol exposure: Preliminary evidence from neurite orientation dispersion and density imaging
title_full_unstemmed Atypical developmental trajectories of white matter microstructure in prenatal alcohol exposure: Preliminary evidence from neurite orientation dispersion and density imaging
title_short Atypical developmental trajectories of white matter microstructure in prenatal alcohol exposure: Preliminary evidence from neurite orientation dispersion and density imaging
title_sort atypical developmental trajectories of white matter microstructure in prenatal alcohol exposure: preliminary evidence from neurite orientation dispersion and density imaging
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10165006/
https://www.ncbi.nlm.nih.gov/pubmed/37168930
http://dx.doi.org/10.3389/fnins.2023.1172010
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