Alterations in Anatomical Covariance in the Prematurely Born
Preterm (PT) birth results in long-term alterations in functional and structural connectivity, but the related changes in anatomical covariance are just beginning to be explored. To test the hypothesis that PT birth alters patterns of anatomical covariance, we investigated brain volumes of 25 PTs an...
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Published in | Cerebral cortex (New York, N.Y. 1991) Vol. 27; no. 1; pp. bhv248 - 543 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
Published |
United States
Oxford University Press
01.01.2017
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Subjects | |
Online Access | Get full text |
ISSN | 1047-3211 1460-2199 |
DOI | 10.1093/cercor/bhv248 |
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Abstract | Preterm (PT) birth results in long-term alterations in functional and structural connectivity, but the related changes in anatomical covariance are just beginning to be explored. To test the hypothesis that PT birth alters patterns of anatomical covariance, we investigated brain volumes of 25 PTs and 22 terms at young adulthood using magnetic resonance imaging. Using regional volumetrics, seed-based analyses, and whole brain graphs, we show that PT birth is associated with reduced volume in bilateral temporal and inferior frontal lobes, left caudate, left fusiform, and posterior cingulate for prematurely born subjects at young adulthood. Seed-based analyses demonstrate altered patterns of anatomical covariance for PTs compared with terms. PTs exhibit reduced covariance with R Brodmann area (BA) 47, Broca's area, and L BA 21, Wernicke's area, and white matter volume in the left prefrontal lobe, but increased covariance with R BA 47 and left cerebellum. Graph theory analyses demonstrate that measures of network complexity are significantly less robust in PTs compared with term controls. Volumes in regions showing group differences are significantly correlated with phonological awareness, the fundamental basis for reading acquisition, for the PTs. These data suggest both long-lasting and clinically significant alterations in the covariance in the PTs at young adulthood. |
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AbstractList | Preterm (PT) birth results in long-term alterations in functional and structural connectivity, but the related changes in anatomical covariance are just beginning to be explored. To test the hypothesis that PT birth alters patterns of anatomical covariance, we investigated brain volumes of 25 PTs and 22 terms at young adulthood using magnetic resonance imaging. Using regional volumetrics, seed-based analyses, and whole brain graphs, we show that PT birth is associated with reduced volume in bilateral temporal and inferior frontal lobes, left caudate, left fusiform, and posterior cingulate for prematurely born subjects at young adulthood. Seed-based analyses demonstrate altered patterns of anatomical covariance for PTs compared with terms. PTs exhibit reduced covariance with R Brodmann area (BA) 47, Broca's area, and L BA 21, Wernicke's area, and white matter volume in the left prefrontal lobe, but increased covariance with R BA 47 and left cerebellum. Graph theory analyses demonstrate that measures of network complexity are significantly less robust in PTs compared with term controls. Volumes in regions showing group differences are significantly correlated with phonological awareness, the fundamental basis for reading acquisition, for the PTs. These data suggest both long-lasting and clinically significant alterations in the covariance in the PTs at young adulthood. |
Author | Lacadie, Cheryl Ment, Laura R. Papademetris, Xenophon Kwon, Soo Hyun Schneider, Karen C. Vohr, Betty R. Scheinost, Dustin Constable, R. Todd |
AuthorAffiliation | 1 Department of Diagnostic Radiology 7 Magnetic Resonance Research Center , New Haven, CT 06520-8043 , USA 2 Department of Pediatrics 6 Department of Pediatrics , Warren Alpert Brown Medical School , Providence, RI , USA 5 Department of Neurology , Yale University School of Medicine , New Haven, CT , USA 3 Department of Biomedical Engineering 4 Department of Neurosurgery |
AuthorAffiliation_xml | – name: 2 Department of Pediatrics – name: 1 Department of Diagnostic Radiology – name: 5 Department of Neurology , Yale University School of Medicine , New Haven, CT , USA – name: 3 Department of Biomedical Engineering – name: 6 Department of Pediatrics , Warren Alpert Brown Medical School , Providence, RI , USA – name: 7 Magnetic Resonance Research Center , New Haven, CT 06520-8043 , USA – name: 4 Department of Neurosurgery |
Author_xml | – sequence: 1 givenname: Dustin surname: Scheinost fullname: Scheinost, Dustin – sequence: 2 givenname: Soo Hyun surname: Kwon fullname: Kwon, Soo Hyun – sequence: 3 givenname: Cheryl surname: Lacadie fullname: Lacadie, Cheryl – sequence: 4 givenname: Betty R. surname: Vohr fullname: Vohr, Betty R. – sequence: 5 givenname: Karen C. surname: Schneider fullname: Schneider, Karen C. – sequence: 6 givenname: Xenophon surname: Papademetris fullname: Papademetris, Xenophon – sequence: 7 givenname: R. Todd surname: Constable fullname: Constable, R. Todd – sequence: 8 givenname: Laura R. surname: Ment fullname: Ment, Laura R. |
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CitedBy_id | crossref_primary_10_1038_s41598_022_20617_6 crossref_primary_10_1080_23273798_2016_1250926 crossref_primary_10_1016_j_neuroimage_2016_10_020 crossref_primary_10_1159_000450886 crossref_primary_10_1523_JNEUROSCI_2272_17_2018 crossref_primary_10_1523_JNEUROSCI_2363_23_2024 crossref_primary_10_1038_pr_2016_197 |
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Keywords | preterm structural covariance young adulthood connectivity anatomical covariance |
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Snippet | Preterm (PT) birth results in long-term alterations in functional and structural connectivity, but the related changes in anatomical covariance are just... |
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SubjectTerms | Adolescent Brain - diagnostic imaging Brain - growth & development Female Humans Image Processing, Computer-Assisted Infant, Premature - growth & development Magnetic Resonance Imaging Male Neural Pathways - diagnostic imaging Neural Pathways - growth & development Organ Size Prospective Studies Young Adult |
Title | Alterations in Anatomical Covariance in the Prematurely Born |
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