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Fetal Brain-Sparing, Postnatal Cerebral Oxygenation, and Neurodevelopment at 4 Years of Age Following Fetal Growth Restriction

Objectives: To assess the role of fetal brain-sparing and postnatal cerebral oxygen saturation (r(c)SO(2)) as determinants of long-term neurodevelopmental outcome following fetal growth restriction (FGR). Methods: This was a prospective follow-up study of an FGR cohort of 41 children. Prenatally, th...

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Autores principales: Richter, Anne E., Salavati, Sahar, Kooi, Elisabeth M. W., den Heijer, Anne E., Foreman, Anne B., Schoots, Mirthe H., Bilardo, Caterina M., Scherjon, Sicco A., Tanis, Jozien C., Bos, Arend F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7218090/
https://www.ncbi.nlm.nih.gov/pubmed/32435629
http://dx.doi.org/10.3389/fped.2020.00225
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author Richter, Anne E.
Salavati, Sahar
Kooi, Elisabeth M. W.
den Heijer, Anne E.
Foreman, Anne B.
Schoots, Mirthe H.
Bilardo, Caterina M.
Scherjon, Sicco A.
Tanis, Jozien C.
Bos, Arend F.
author_facet Richter, Anne E.
Salavati, Sahar
Kooi, Elisabeth M. W.
den Heijer, Anne E.
Foreman, Anne B.
Schoots, Mirthe H.
Bilardo, Caterina M.
Scherjon, Sicco A.
Tanis, Jozien C.
Bos, Arend F.
author_sort Richter, Anne E.
collection PubMed
description Objectives: To assess the role of fetal brain-sparing and postnatal cerebral oxygen saturation (r(c)SO(2)) as determinants of long-term neurodevelopmental outcome following fetal growth restriction (FGR). Methods: This was a prospective follow-up study of an FGR cohort of 41 children. Prenatally, the presence of fetal brain-sparing (cerebroplacental ratio < 1) was assessed by Doppler ultrasound. During the first two days after birth, r(c)SO(2) was measured with near-infrared spectroscopy. At 4 years of age, intelligence (IQ points), behavior (T-scores), and executive function (T-scores) were assessed using the Wechsler Preschool and Primary Scale of Intelligence, Child Behavior Checklist, and Behavior Rating Inventory of Executive Function—Preschool Version, respectively. Using linear regression analyses, we tested the association (p < 0.05) between brain-sparing/r(c)SO(2) and normed neurodevelopmental scores. Results: Twenty-six children (gestational age ranging from 28.0 to 39.9 weeks) participated in the follow-up at a median age of 4.3 (range: 3.6 to 4.4) years. Autism spectrum disorder was reported in three children (11.5%). Fetal brain-sparing was associated with better total and externalizing behavior (betas: −0.519 and −0.494, respectively). R(c)SO(2) levels above the lowest quartile, particularly on postnatal day 2 (≥ 77%), were associated with better total and internalizing behavior and executive functioning (betas: −0.582, −0.489, and −0.467, respectively), but also lower performance IQ (beta: −0.530). Brain-sparing mediated some but not all of these associations. Conclusions: In this FGR cohort, fetal brain-sparing and high postnatal r(c)SO(2) were—independently, but also as a reflection of the same mechanism—associated with better behavior and executive function. Postnatal cerebral hyperoxia, however, was negatively associated with brain functions responsible for performance IQ.
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spelling pubmed-72180902020-05-20 Fetal Brain-Sparing, Postnatal Cerebral Oxygenation, and Neurodevelopment at 4 Years of Age Following Fetal Growth Restriction Richter, Anne E. Salavati, Sahar Kooi, Elisabeth M. W. den Heijer, Anne E. Foreman, Anne B. Schoots, Mirthe H. Bilardo, Caterina M. Scherjon, Sicco A. Tanis, Jozien C. Bos, Arend F. Front Pediatr Pediatrics Objectives: To assess the role of fetal brain-sparing and postnatal cerebral oxygen saturation (r(c)SO(2)) as determinants of long-term neurodevelopmental outcome following fetal growth restriction (FGR). Methods: This was a prospective follow-up study of an FGR cohort of 41 children. Prenatally, the presence of fetal brain-sparing (cerebroplacental ratio < 1) was assessed by Doppler ultrasound. During the first two days after birth, r(c)SO(2) was measured with near-infrared spectroscopy. At 4 years of age, intelligence (IQ points), behavior (T-scores), and executive function (T-scores) were assessed using the Wechsler Preschool and Primary Scale of Intelligence, Child Behavior Checklist, and Behavior Rating Inventory of Executive Function—Preschool Version, respectively. Using linear regression analyses, we tested the association (p < 0.05) between brain-sparing/r(c)SO(2) and normed neurodevelopmental scores. Results: Twenty-six children (gestational age ranging from 28.0 to 39.9 weeks) participated in the follow-up at a median age of 4.3 (range: 3.6 to 4.4) years. Autism spectrum disorder was reported in three children (11.5%). Fetal brain-sparing was associated with better total and externalizing behavior (betas: −0.519 and −0.494, respectively). R(c)SO(2) levels above the lowest quartile, particularly on postnatal day 2 (≥ 77%), were associated with better total and internalizing behavior and executive functioning (betas: −0.582, −0.489, and −0.467, respectively), but also lower performance IQ (beta: −0.530). Brain-sparing mediated some but not all of these associations. Conclusions: In this FGR cohort, fetal brain-sparing and high postnatal r(c)SO(2) were—independently, but also as a reflection of the same mechanism—associated with better behavior and executive function. Postnatal cerebral hyperoxia, however, was negatively associated with brain functions responsible for performance IQ. Frontiers Media S.A. 2020-05-06 /pmc/articles/PMC7218090/ /pubmed/32435629 http://dx.doi.org/10.3389/fped.2020.00225 Text en Copyright © 2020 Richter, Salavati, Kooi, Heijer, Foreman, Schoots, Bilardo, Scherjon, Tanis and Bos. http://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 Pediatrics
Richter, Anne E.
Salavati, Sahar
Kooi, Elisabeth M. W.
den Heijer, Anne E.
Foreman, Anne B.
Schoots, Mirthe H.
Bilardo, Caterina M.
Scherjon, Sicco A.
Tanis, Jozien C.
Bos, Arend F.
Fetal Brain-Sparing, Postnatal Cerebral Oxygenation, and Neurodevelopment at 4 Years of Age Following Fetal Growth Restriction
title Fetal Brain-Sparing, Postnatal Cerebral Oxygenation, and Neurodevelopment at 4 Years of Age Following Fetal Growth Restriction
title_full Fetal Brain-Sparing, Postnatal Cerebral Oxygenation, and Neurodevelopment at 4 Years of Age Following Fetal Growth Restriction
title_fullStr Fetal Brain-Sparing, Postnatal Cerebral Oxygenation, and Neurodevelopment at 4 Years of Age Following Fetal Growth Restriction
title_full_unstemmed Fetal Brain-Sparing, Postnatal Cerebral Oxygenation, and Neurodevelopment at 4 Years of Age Following Fetal Growth Restriction
title_short Fetal Brain-Sparing, Postnatal Cerebral Oxygenation, and Neurodevelopment at 4 Years of Age Following Fetal Growth Restriction
title_sort fetal brain-sparing, postnatal cerebral oxygenation, and neurodevelopment at 4 years of age following fetal growth restriction
topic Pediatrics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7218090/
https://www.ncbi.nlm.nih.gov/pubmed/32435629
http://dx.doi.org/10.3389/fped.2020.00225
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