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General functional connectivity: Shared features of resting-state and task fMRI drive reliable and heritable individual differences in functional brain networks

Intrinsic connectivity, measured using resting-state fMRI, has emerged as a fundamental tool in the study of the human brain. However, due to practical limitations, many studies do not collect enough resting-state data to generate reliable measures of intrinsic connectivity necessary for studying in...

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Autores principales: Elliott, Maxwell L., Knodt, Annchen R., Cooke, Megan, Kim, M. Justin, Melzer, Tracy R., Keenan, Ross, Ireland, David, Ramrakha, Sandhya, Poulton, Richie, Caspi, Avshalom, Moffitt, Terrie E., Hariri, Ahmad R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Academic Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6462481/
https://www.ncbi.nlm.nih.gov/pubmed/30708106
http://dx.doi.org/10.1016/j.neuroimage.2019.01.068
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author Elliott, Maxwell L.
Knodt, Annchen R.
Cooke, Megan
Kim, M. Justin
Melzer, Tracy R.
Keenan, Ross
Ireland, David
Ramrakha, Sandhya
Poulton, Richie
Caspi, Avshalom
Moffitt, Terrie E.
Hariri, Ahmad R.
author_facet Elliott, Maxwell L.
Knodt, Annchen R.
Cooke, Megan
Kim, M. Justin
Melzer, Tracy R.
Keenan, Ross
Ireland, David
Ramrakha, Sandhya
Poulton, Richie
Caspi, Avshalom
Moffitt, Terrie E.
Hariri, Ahmad R.
author_sort Elliott, Maxwell L.
collection PubMed
description Intrinsic connectivity, measured using resting-state fMRI, has emerged as a fundamental tool in the study of the human brain. However, due to practical limitations, many studies do not collect enough resting-state data to generate reliable measures of intrinsic connectivity necessary for studying individual differences. Here we present general functional connectivity (GFC) as a method for leveraging shared features across resting-state and task fMRI and demonstrate in the Human Connectome Project and the Dunedin Study that GFC offers better test-retest reliability than intrinsic connectivity estimated from the same amount of resting-state data alone. Furthermore, at equivalent scan lengths, GFC displayed higher estimates of heritability than resting-state functional connectivity. We also found that predictions of cognitive ability from GFC generalized across datasets, performing as well or better than resting-state or task data alone. Collectively, our work suggests that GFC can improve the reliability of intrinsic connectivity estimates in existing datasets and, subsequently, the opportunity to identify meaningful correlates of individual differences in behavior. Given that task and resting-state data are often collected together, many researchers can immediately derive more reliable measures of intrinsic connectivity through the adoption of GFC rather than solely using resting-state data. Moreover, by better capturing heritable variation in intrinsic connectivity, GFC represents a novel endophenotype with broad applications in clinical neuroscience and biomarker discovery.
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spelling pubmed-64624812019-04-22 General functional connectivity: Shared features of resting-state and task fMRI drive reliable and heritable individual differences in functional brain networks Elliott, Maxwell L. Knodt, Annchen R. Cooke, Megan Kim, M. Justin Melzer, Tracy R. Keenan, Ross Ireland, David Ramrakha, Sandhya Poulton, Richie Caspi, Avshalom Moffitt, Terrie E. Hariri, Ahmad R. Neuroimage Article Intrinsic connectivity, measured using resting-state fMRI, has emerged as a fundamental tool in the study of the human brain. However, due to practical limitations, many studies do not collect enough resting-state data to generate reliable measures of intrinsic connectivity necessary for studying individual differences. Here we present general functional connectivity (GFC) as a method for leveraging shared features across resting-state and task fMRI and demonstrate in the Human Connectome Project and the Dunedin Study that GFC offers better test-retest reliability than intrinsic connectivity estimated from the same amount of resting-state data alone. Furthermore, at equivalent scan lengths, GFC displayed higher estimates of heritability than resting-state functional connectivity. We also found that predictions of cognitive ability from GFC generalized across datasets, performing as well or better than resting-state or task data alone. Collectively, our work suggests that GFC can improve the reliability of intrinsic connectivity estimates in existing datasets and, subsequently, the opportunity to identify meaningful correlates of individual differences in behavior. Given that task and resting-state data are often collected together, many researchers can immediately derive more reliable measures of intrinsic connectivity through the adoption of GFC rather than solely using resting-state data. Moreover, by better capturing heritable variation in intrinsic connectivity, GFC represents a novel endophenotype with broad applications in clinical neuroscience and biomarker discovery. Academic Press 2019-04-01 /pmc/articles/PMC6462481/ /pubmed/30708106 http://dx.doi.org/10.1016/j.neuroimage.2019.01.068 Text en © 2019 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
Elliott, Maxwell L.
Knodt, Annchen R.
Cooke, Megan
Kim, M. Justin
Melzer, Tracy R.
Keenan, Ross
Ireland, David
Ramrakha, Sandhya
Poulton, Richie
Caspi, Avshalom
Moffitt, Terrie E.
Hariri, Ahmad R.
General functional connectivity: Shared features of resting-state and task fMRI drive reliable and heritable individual differences in functional brain networks
title General functional connectivity: Shared features of resting-state and task fMRI drive reliable and heritable individual differences in functional brain networks
title_full General functional connectivity: Shared features of resting-state and task fMRI drive reliable and heritable individual differences in functional brain networks
title_fullStr General functional connectivity: Shared features of resting-state and task fMRI drive reliable and heritable individual differences in functional brain networks
title_full_unstemmed General functional connectivity: Shared features of resting-state and task fMRI drive reliable and heritable individual differences in functional brain networks
title_short General functional connectivity: Shared features of resting-state and task fMRI drive reliable and heritable individual differences in functional brain networks
title_sort general functional connectivity: shared features of resting-state and task fmri drive reliable and heritable individual differences in functional brain networks
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6462481/
https://www.ncbi.nlm.nih.gov/pubmed/30708106
http://dx.doi.org/10.1016/j.neuroimage.2019.01.068
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