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Do intrinsic brain functional networks predict working memory from childhood to adulthood?

Working memory (WM) is defined as the ability to maintain a representation online to guide goal‐directed behavior. Its capacity in early childhood predicts academic achievements in late childhood and its deficits are found in various neurodevelopmental disorders. We employed resting‐state fMRI (rs‐f...

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Autores principales: Zhang, Han, Hao, Shuji, Lee, Annie, Eickhoff, Simon B., Pecheva, Diliana, Cai, Shirong, Meaney, Michael, Chong, Yap‐Seng, Broekman, Birit F. P., Fortier, Marielle V., Qiu, Anqi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7555072/
https://www.ncbi.nlm.nih.gov/pubmed/33463860
http://dx.doi.org/10.1002/hbm.25143
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author Zhang, Han
Hao, Shuji
Lee, Annie
Eickhoff, Simon B.
Pecheva, Diliana
Cai, Shirong
Meaney, Michael
Chong, Yap‐Seng
Broekman, Birit F. P.
Fortier, Marielle V.
Qiu, Anqi
author_facet Zhang, Han
Hao, Shuji
Lee, Annie
Eickhoff, Simon B.
Pecheva, Diliana
Cai, Shirong
Meaney, Michael
Chong, Yap‐Seng
Broekman, Birit F. P.
Fortier, Marielle V.
Qiu, Anqi
author_sort Zhang, Han
collection PubMed
description Working memory (WM) is defined as the ability to maintain a representation online to guide goal‐directed behavior. Its capacity in early childhood predicts academic achievements in late childhood and its deficits are found in various neurodevelopmental disorders. We employed resting‐state fMRI (rs‐fMRI) of 468 participants aged from 4 to 55 years and connectome‐based predictive modeling (CPM) to explore the potential predictive power of intrinsic functional networks to WM in preschoolers, early and late school‐age children, adolescents, and adults. We defined intrinsic functional networks among brain regions identified by activation likelihood estimation (ALE) meta‐analysis on existing WM functional studies (ALE‐based intrinsic functional networks) and intrinsic functional networks generated based on the whole brain (whole‐brain intrinsic functional networks). We employed the CPM on these networks to predict WM in each age group. The CPM using the ALE‐based and whole‐brain intrinsic functional networks predicted WM of individual adults, while the prediction power of the ALE‐based intrinsic functional networks was superior to that of the whole‐brain intrinsic functional networks. Nevertheless, the CPM using the whole‐brain but not the ALE‐based intrinsic functional networks predicted WM in adolescents. And, the CPM using neither the ALE‐based nor whole‐brain networks predicted WM in any of the children groups. Our findings showed the trend of the prediction power of the intrinsic functional networks to cognition in individuals from early childhood to adulthood.
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spelling pubmed-75550722020-10-19 Do intrinsic brain functional networks predict working memory from childhood to adulthood? Zhang, Han Hao, Shuji Lee, Annie Eickhoff, Simon B. Pecheva, Diliana Cai, Shirong Meaney, Michael Chong, Yap‐Seng Broekman, Birit F. P. Fortier, Marielle V. Qiu, Anqi Hum Brain Mapp Research Articles Working memory (WM) is defined as the ability to maintain a representation online to guide goal‐directed behavior. Its capacity in early childhood predicts academic achievements in late childhood and its deficits are found in various neurodevelopmental disorders. We employed resting‐state fMRI (rs‐fMRI) of 468 participants aged from 4 to 55 years and connectome‐based predictive modeling (CPM) to explore the potential predictive power of intrinsic functional networks to WM in preschoolers, early and late school‐age children, adolescents, and adults. We defined intrinsic functional networks among brain regions identified by activation likelihood estimation (ALE) meta‐analysis on existing WM functional studies (ALE‐based intrinsic functional networks) and intrinsic functional networks generated based on the whole brain (whole‐brain intrinsic functional networks). We employed the CPM on these networks to predict WM in each age group. The CPM using the ALE‐based and whole‐brain intrinsic functional networks predicted WM of individual adults, while the prediction power of the ALE‐based intrinsic functional networks was superior to that of the whole‐brain intrinsic functional networks. Nevertheless, the CPM using the whole‐brain but not the ALE‐based intrinsic functional networks predicted WM in adolescents. And, the CPM using neither the ALE‐based nor whole‐brain networks predicted WM in any of the children groups. Our findings showed the trend of the prediction power of the intrinsic functional networks to cognition in individuals from early childhood to adulthood. John Wiley & Sons, Inc. 2020-07-30 /pmc/articles/PMC7555072/ /pubmed/33463860 http://dx.doi.org/10.1002/hbm.25143 Text en © 2020 The Authors. Human Brain Mapping published by Wiley Periodicals LLC. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Research Articles
Zhang, Han
Hao, Shuji
Lee, Annie
Eickhoff, Simon B.
Pecheva, Diliana
Cai, Shirong
Meaney, Michael
Chong, Yap‐Seng
Broekman, Birit F. P.
Fortier, Marielle V.
Qiu, Anqi
Do intrinsic brain functional networks predict working memory from childhood to adulthood?
title Do intrinsic brain functional networks predict working memory from childhood to adulthood?
title_full Do intrinsic brain functional networks predict working memory from childhood to adulthood?
title_fullStr Do intrinsic brain functional networks predict working memory from childhood to adulthood?
title_full_unstemmed Do intrinsic brain functional networks predict working memory from childhood to adulthood?
title_short Do intrinsic brain functional networks predict working memory from childhood to adulthood?
title_sort do intrinsic brain functional networks predict working memory from childhood to adulthood?
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7555072/
https://www.ncbi.nlm.nih.gov/pubmed/33463860
http://dx.doi.org/10.1002/hbm.25143
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