Exploring the multiple-hit hypothesis of preterm white matter damage using diffusion MRI

Background: Preterm infants are at high risk of diffuse white matter injury and adverse neurodevelopmental outcome. The multiple hit hypothesis suggests that the risk of white matter injury increases with cumulative exposure to multiple perinatal risk factors. Our aim was to test this hypothesis in...

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Main Authors: Madeleine L. Barnett, Nora Tusor, Gareth Ball, Andrew Chew, Shona Falconer, Paul Aljabar, Jessica A. Kimpton, Nigel Kennea, Mary Rutherford, A. David Edwards, Serena J. Counsell
Format: Article
Language:English
Published: Elsevier 2018-01-01
Series:NeuroImage: Clinical
Online Access:http://www.sciencedirect.com/science/article/pii/S2213158217302978
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author Madeleine L. Barnett
Nora Tusor
Gareth Ball
Andrew Chew
Shona Falconer
Paul Aljabar
Jessica A. Kimpton
Nigel Kennea
Mary Rutherford
A. David Edwards
Serena J. Counsell
spellingShingle Madeleine L. Barnett
Nora Tusor
Gareth Ball
Andrew Chew
Shona Falconer
Paul Aljabar
Jessica A. Kimpton
Nigel Kennea
Mary Rutherford
A. David Edwards
Serena J. Counsell
Exploring the multiple-hit hypothesis of preterm white matter damage using diffusion MRI
NeuroImage: Clinical
author_facet Madeleine L. Barnett
Nora Tusor
Gareth Ball
Andrew Chew
Shona Falconer
Paul Aljabar
Jessica A. Kimpton
Nigel Kennea
Mary Rutherford
A. David Edwards
Serena J. Counsell
author_sort Madeleine L. Barnett
title Exploring the multiple-hit hypothesis of preterm white matter damage using diffusion MRI
title_short Exploring the multiple-hit hypothesis of preterm white matter damage using diffusion MRI
title_full Exploring the multiple-hit hypothesis of preterm white matter damage using diffusion MRI
title_fullStr Exploring the multiple-hit hypothesis of preterm white matter damage using diffusion MRI
title_full_unstemmed Exploring the multiple-hit hypothesis of preterm white matter damage using diffusion MRI
title_sort exploring the multiple-hit hypothesis of preterm white matter damage using diffusion mri
publisher Elsevier
series NeuroImage: Clinical
issn 2213-1582
publishDate 2018-01-01
description Background: Preterm infants are at high risk of diffuse white matter injury and adverse neurodevelopmental outcome. The multiple hit hypothesis suggests that the risk of white matter injury increases with cumulative exposure to multiple perinatal risk factors. Our aim was to test this hypothesis in a large cohort of preterm infants using diffusion weighted magnetic resonance imaging (dMRI). Methods: We studied 491 infants (52% male) without focal destructive brain lesions born at <34weeks, who underwent structural and dMRI at a specialist Neonatal Imaging Centre. The median (range) gestational age (GA) at birth was 30+1 (23+2–33+5) weeks and median postmenstrual age at scan was 42+1 (38–45) weeks. dMRI data were analyzed using tract based spatial statistics and the relationship between dMRI measures in white matter and individual perinatal risk factors was assessed. We tested the hypothesis that increased exposure to perinatal risk factors was associated with lower fractional anisotropy (FA), and higher radial, axial and mean diffusivity (RD, AD, MD) in white matter. Neurodevelopmental performance was investigated using the Bayley Scales of Infant and Toddler Development, Third Edition (BSITD-III) in a subset of 381 infants at 20months corrected age. We tested the hypothesis that lower FA and higher RD, AD and MD in white matter were associated with poorer neurodevelopmental performance. Results: Identified risk factors for diffuse white matter injury were lower GA at birth, fetal growth restriction, increased number of days requiring ventilation and parenteral nutrition, necrotizing enterocolitis and male sex. Clinical chorioamnionitis and patent ductus arteriosus were not associated with white matter injury. Multivariate analysis demonstrated that fetal growth restriction, increased number of days requiring ventilation and parenteral nutrition were independently associated with lower FA values. Exposure to cumulative risk factors was associated with reduced white matter FA and FA values at term equivalent age were associated with subsequent neurodevelopmental performance. Conclusion: This study suggests multiple perinatal risk factors have an independent association with diffuse white matter injury at term equivalent age and exposure to multiple perinatal risk factors exacerbates dMRI defined, clinically significant white matter injury. Our findings support the multiple hit hypothesis for preterm white matter injury. Keywords: Brain, Development, Diffusion MRI, Prematurity, Multiple hit hypothesis
url http://www.sciencedirect.com/science/article/pii/S2213158217302978
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spelling doaj-c578b702018047e0ba741eb0fda806e32020-11-25T02:15:34ZengElsevierNeuroImage: Clinical2213-15822018-01-0117596606Exploring the multiple-hit hypothesis of preterm white matter damage using diffusion MRIMadeleine L. Barnett0Nora Tusor1Gareth Ball2Andrew Chew3Shona Falconer4Paul Aljabar5Jessica A. Kimpton6Nigel Kennea7Mary Rutherford8A. David Edwards9Serena J. Counsell10Centre for the Developing Brain, Division of Imaging Sciences & Biomedical Engineering, King's College London, London SE1 7EH, UKCentre for the Developing Brain, Division of Imaging Sciences & Biomedical Engineering, King's College London, London SE1 7EH, UKCentre for the Developing Brain, Division of Imaging Sciences & Biomedical Engineering, King's College London, London SE1 7EH, UKCentre for the Developing Brain, Division of Imaging Sciences & Biomedical Engineering, King's College London, London SE1 7EH, UKCentre for the Developing Brain, Division of Imaging Sciences & Biomedical Engineering, King's College London, London SE1 7EH, UKCentre for the Developing Brain, Division of Imaging Sciences & Biomedical Engineering, King's College London, London SE1 7EH, UKCentre for the Developing Brain, Division of Imaging Sciences & Biomedical Engineering, King's College London, London SE1 7EH, UKSt George's Hospital NHS Trust, Blackshaw Road, London SW17 0QT, UKCentre for the Developing Brain, Division of Imaging Sciences & Biomedical Engineering, King's College London, London SE1 7EH, UKCentre for the Developing Brain, Division of Imaging Sciences & Biomedical Engineering, King's College London, London SE1 7EH, UK; Corresponding author.Centre for the Developing Brain, Division of Imaging Sciences & Biomedical Engineering, King's College London, London SE1 7EH, UKBackground: Preterm infants are at high risk of diffuse white matter injury and adverse neurodevelopmental outcome. The multiple hit hypothesis suggests that the risk of white matter injury increases with cumulative exposure to multiple perinatal risk factors. Our aim was to test this hypothesis in a large cohort of preterm infants using diffusion weighted magnetic resonance imaging (dMRI). Methods: We studied 491 infants (52% male) without focal destructive brain lesions born at <34weeks, who underwent structural and dMRI at a specialist Neonatal Imaging Centre. The median (range) gestational age (GA) at birth was 30+1 (23+2–33+5) weeks and median postmenstrual age at scan was 42+1 (38–45) weeks. dMRI data were analyzed using tract based spatial statistics and the relationship between dMRI measures in white matter and individual perinatal risk factors was assessed. We tested the hypothesis that increased exposure to perinatal risk factors was associated with lower fractional anisotropy (FA), and higher radial, axial and mean diffusivity (RD, AD, MD) in white matter. Neurodevelopmental performance was investigated using the Bayley Scales of Infant and Toddler Development, Third Edition (BSITD-III) in a subset of 381 infants at 20months corrected age. We tested the hypothesis that lower FA and higher RD, AD and MD in white matter were associated with poorer neurodevelopmental performance. Results: Identified risk factors for diffuse white matter injury were lower GA at birth, fetal growth restriction, increased number of days requiring ventilation and parenteral nutrition, necrotizing enterocolitis and male sex. Clinical chorioamnionitis and patent ductus arteriosus were not associated with white matter injury. Multivariate analysis demonstrated that fetal growth restriction, increased number of days requiring ventilation and parenteral nutrition were independently associated with lower FA values. Exposure to cumulative risk factors was associated with reduced white matter FA and FA values at term equivalent age were associated with subsequent neurodevelopmental performance. Conclusion: This study suggests multiple perinatal risk factors have an independent association with diffuse white matter injury at term equivalent age and exposure to multiple perinatal risk factors exacerbates dMRI defined, clinically significant white matter injury. Our findings support the multiple hit hypothesis for preterm white matter injury. Keywords: Brain, Development, Diffusion MRI, Prematurity, Multiple hit hypothesishttp://www.sciencedirect.com/science/article/pii/S2213158217302978