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Neuroimaging young children and associations with neurocognitive development in a South African birth cohort study

Magnetic resonance imaging (MRI) is an indispensable tool for investigating brain development in young children and the neurobiological mechanisms underlying developmental risk and resilience. Sub-Saharan Africa has the highest proportion of children at risk of developmental delay worldwide, yet in...

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Autores principales: Wedderburn, Catherine J., Subramoney, Sivenesi, Yeung, Shunmay, Fouche, Jean-Paul, Joshi, Shantanu H., Narr, Katherine L., Rehman, Andrea M., Roos, Annerine, Ipser, Jonathan, Robertson, Frances C., Groenewold, Nynke A., Gibb, Diana M., Zar, Heather J., Stein, Dan J., Donald, Kirsten A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Academic Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7443699/
https://www.ncbi.nlm.nih.gov/pubmed/32304884
http://dx.doi.org/10.1016/j.neuroimage.2020.116846
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author Wedderburn, Catherine J.
Subramoney, Sivenesi
Yeung, Shunmay
Fouche, Jean-Paul
Joshi, Shantanu H.
Narr, Katherine L.
Rehman, Andrea M.
Roos, Annerine
Ipser, Jonathan
Robertson, Frances C.
Groenewold, Nynke A.
Gibb, Diana M.
Zar, Heather J.
Stein, Dan J.
Donald, Kirsten A.
author_facet Wedderburn, Catherine J.
Subramoney, Sivenesi
Yeung, Shunmay
Fouche, Jean-Paul
Joshi, Shantanu H.
Narr, Katherine L.
Rehman, Andrea M.
Roos, Annerine
Ipser, Jonathan
Robertson, Frances C.
Groenewold, Nynke A.
Gibb, Diana M.
Zar, Heather J.
Stein, Dan J.
Donald, Kirsten A.
author_sort Wedderburn, Catherine J.
collection PubMed
description Magnetic resonance imaging (MRI) is an indispensable tool for investigating brain development in young children and the neurobiological mechanisms underlying developmental risk and resilience. Sub-Saharan Africa has the highest proportion of children at risk of developmental delay worldwide, yet in this region there is very limited neuroimaging research focusing on the neurobiology of such impairment. Furthermore, paediatric MRI imaging is challenging in any setting due to motion sensitivity. Although sedation and anesthesia are routinely used in clinical practice to minimise movement in young children, this may not be ethical in the context of research. Our study aimed to investigate the feasibility of paediatric multimodal MRI at age 2–3 years without sedation, and to explore the relationship between cortical structure and neurocognitive development at this understudied age in a sub-Saharan African setting. A total of 239 children from the Drakenstein Child Health Study, a large observational South African birth cohort, were recruited for neuroimaging at 2–3 years of age. Scans were conducted during natural sleep utilising locally developed techniques. T1-MEMPRAGE and T2-weighted structural imaging, resting state functional MRI, diffusion tensor imaging and magnetic resonance spectroscopy sequences were included. Child neurodevelopment was assessed using the Bayley-III Scales of Infant and Toddler Development. Following 23 pilot scans, 216 children underwent scanning and T1-weighted images were obtained from 167/216 (77%) of children (median age 34.8 months). Furthermore, we found cortical surface area and thickness within frontal regions were associated with cognitive development, and in temporal and frontal regions with language development (beta coefficient ≥0.20). Overall, we demonstrate the feasibility of carrying out a neuroimaging study of young children during natural sleep in sub-Saharan Africa. Our findings indicate that dynamic morphological changes in heteromodal association regions are associated with cognitive and language development at this young age. These proof-of-concept analyses suggest similar links between the brain and cognition as prior literature from high income countries, enhancing understanding of the interplay between cortical structure and function during brain maturation.
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spelling pubmed-74436992020-10-01 Neuroimaging young children and associations with neurocognitive development in a South African birth cohort study Wedderburn, Catherine J. Subramoney, Sivenesi Yeung, Shunmay Fouche, Jean-Paul Joshi, Shantanu H. Narr, Katherine L. Rehman, Andrea M. Roos, Annerine Ipser, Jonathan Robertson, Frances C. Groenewold, Nynke A. Gibb, Diana M. Zar, Heather J. Stein, Dan J. Donald, Kirsten A. Neuroimage Article Magnetic resonance imaging (MRI) is an indispensable tool for investigating brain development in young children and the neurobiological mechanisms underlying developmental risk and resilience. Sub-Saharan Africa has the highest proportion of children at risk of developmental delay worldwide, yet in this region there is very limited neuroimaging research focusing on the neurobiology of such impairment. Furthermore, paediatric MRI imaging is challenging in any setting due to motion sensitivity. Although sedation and anesthesia are routinely used in clinical practice to minimise movement in young children, this may not be ethical in the context of research. Our study aimed to investigate the feasibility of paediatric multimodal MRI at age 2–3 years without sedation, and to explore the relationship between cortical structure and neurocognitive development at this understudied age in a sub-Saharan African setting. A total of 239 children from the Drakenstein Child Health Study, a large observational South African birth cohort, were recruited for neuroimaging at 2–3 years of age. Scans were conducted during natural sleep utilising locally developed techniques. T1-MEMPRAGE and T2-weighted structural imaging, resting state functional MRI, diffusion tensor imaging and magnetic resonance spectroscopy sequences were included. Child neurodevelopment was assessed using the Bayley-III Scales of Infant and Toddler Development. Following 23 pilot scans, 216 children underwent scanning and T1-weighted images were obtained from 167/216 (77%) of children (median age 34.8 months). Furthermore, we found cortical surface area and thickness within frontal regions were associated with cognitive development, and in temporal and frontal regions with language development (beta coefficient ≥0.20). Overall, we demonstrate the feasibility of carrying out a neuroimaging study of young children during natural sleep in sub-Saharan Africa. Our findings indicate that dynamic morphological changes in heteromodal association regions are associated with cognitive and language development at this young age. These proof-of-concept analyses suggest similar links between the brain and cognition as prior literature from high income countries, enhancing understanding of the interplay between cortical structure and function during brain maturation. Academic Press 2020-10-01 /pmc/articles/PMC7443699/ /pubmed/32304884 http://dx.doi.org/10.1016/j.neuroimage.2020.116846 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wedderburn, Catherine J.
Subramoney, Sivenesi
Yeung, Shunmay
Fouche, Jean-Paul
Joshi, Shantanu H.
Narr, Katherine L.
Rehman, Andrea M.
Roos, Annerine
Ipser, Jonathan
Robertson, Frances C.
Groenewold, Nynke A.
Gibb, Diana M.
Zar, Heather J.
Stein, Dan J.
Donald, Kirsten A.
Neuroimaging young children and associations with neurocognitive development in a South African birth cohort study
title Neuroimaging young children and associations with neurocognitive development in a South African birth cohort study
title_full Neuroimaging young children and associations with neurocognitive development in a South African birth cohort study
title_fullStr Neuroimaging young children and associations with neurocognitive development in a South African birth cohort study
title_full_unstemmed Neuroimaging young children and associations with neurocognitive development in a South African birth cohort study
title_short Neuroimaging young children and associations with neurocognitive development in a South African birth cohort study
title_sort neuroimaging young children and associations with neurocognitive development in a south african birth cohort study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7443699/
https://www.ncbi.nlm.nih.gov/pubmed/32304884
http://dx.doi.org/10.1016/j.neuroimage.2020.116846
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