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Research ArticlePediatrics
Open Access

Quantitative Diffusion and Spectroscopic Neuroimaging Combined with a Novel Early-Developmental Assessment Improves Models for 1-Year Developmental Outcomes

H.G. Moss, L.G. Wolf, P. Coker-Bolt, V. Ramakrishnan, T. Aljuhani, M. Yazdani, T.R. Brown, J.H. Jensen and D.D. Jenkins
American Journal of Neuroradiology January 2022, 43 (1) 139-145; DOI: https://doi.org/10.3174/ajnr.A7370
H.G. Moss
aFrom the Department of Neuroscience (H.G.M., J.H.J.)
bCenter for Biomedical Imaging (H.G.M., T.R.B., J.H.J., D.D.J.)
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L.G. Wolf
cDepartment of Pediatrics (L.G.W., D.D.J.)
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P. Coker-Bolt
dDivision of Occupational Therapy (P.C.-B., T.A.), College of Health Sciences
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V. Ramakrishnan
eDivision of Public Health Sciences (V.R., T.A.)
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T. Aljuhani
dDivision of Occupational Therapy (P.C.-B., T.A.), College of Health Sciences
eDivision of Public Health Sciences (V.R., T.A.)
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M. Yazdani
fDepartment of Radiology and Radiological Science (M.Y., T.R.B., J.H.J.), Medical University of South Carolina, Charleston, South Carolina
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T.R. Brown
bCenter for Biomedical Imaging (H.G.M., T.R.B., J.H.J., D.D.J.)
fDepartment of Radiology and Radiological Science (M.Y., T.R.B., J.H.J.), Medical University of South Carolina, Charleston, South Carolina
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J.H. Jensen
aFrom the Department of Neuroscience (H.G.M., J.H.J.)
bCenter for Biomedical Imaging (H.G.M., T.R.B., J.H.J., D.D.J.)
fDepartment of Radiology and Radiological Science (M.Y., T.R.B., J.H.J.), Medical University of South Carolina, Charleston, South Carolina
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D.D. Jenkins
bCenter for Biomedical Imaging (H.G.M., T.R.B., J.H.J., D.D.J.)
cDepartment of Pediatrics (L.G.W., D.D.J.)
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Abstract

BACKGROUND AND PURPOSE: Preterm infants are at risk for overt and silent CNS injury, with developmental consequences that are difficult to predict. The novel Specific Test of Early Infant Motor Performance, administered in preterm infants at term age, is indicative of later developmental gross motor and cognitive scores at 12 months. Here, we assessed whether functional performance on this early assessment correlates with CNS integrity via MR spectroscopy or diffusional kurtosis imaging and whether these quantitative neuroimaging methods improve predictions for future 12-month developmental scores.

MATERIALS AND METHODS: MR spectroscopy and quantitative diffusion MR imaging data were acquired in preterm infants (n = 16) at term. Testing was performed at term and 3 months using the Specific Test of Early Infant Motor Performance and the Bayley Scales of Infant and Toddler Development, Third Edition, at 12 months. We modeled the relationship of MR spectroscopy and diffusion MR imaging data with both test scores via multiple linear regression.

RESULTS: MR spectroscopy NAA ratios at a TE of 270 ms in the frontal WM and basal ganglia and kurtosis metrics in major WM tracts correlated strongly with total Specific Test of Early Infant Motor Performance scores. The addition of MR spectroscopy and diffusion separately improved the functional predictions of 12-month outcomes.

CONCLUSIONS: Microstructural integrity of the major WM tracts and metabolism in the basal ganglia and frontal WM strongly correlate with early developmental performance, suggesting that the Specific Test of Early Infant Motor Performance reflects CNS integrity after preterm birth. This study demonstrates that combining quantitative neuroimaging and early functional movement improves the prediction of 12-month outcomes in premature infants.

ABBREVIATIONS:

AIC
Akaike Information Criterion
adj-R2
Adjusted R-squared
Bayley-III
Bayley Scales of Infant and Toddler Development, Third Edition
BG
basal ganglia
DKI
diffusional kurtosis imaging
FA
fractional anisotropy
gCC
genu of the corpus callosum
IFOF
inferior fronto-occipital fasciculus
KFA
kurtosis fractional anisotropy
PLIC
posterior limb of the internal capsule
PTR
posterior thalamic/optic radiations
sCC
splenium of the corpus callosum
STEP
Specific Test of Early Infant Motor Performance
  • © 2022 by American Journal of Neuroradiology

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American Journal of Neuroradiology: 43 (1)
American Journal of Neuroradiology
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1 Jan 2022
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Quantitative Diffusion and Spectroscopic Neuroimaging Combined with a Novel Early-Developmental Assessment Improves Models for 1-Year Developmental Outcomes
H.G. Moss, L.G. Wolf, P. Coker-Bolt, V. Ramakrishnan, T. Aljuhani, M. Yazdani, T.R. Brown, J.H. Jensen, D.D. Jenkins
American Journal of Neuroradiology Jan 2022, 43 (1) 139-145; DOI: 10.3174/ajnr.A7370

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Quantitative Diffusion and Spectroscopic Neuroimaging Combined with a Novel Early-Developmental Assessment Improves Models for 1-Year Developmental Outcomes
H.G. Moss, L.G. Wolf, P. Coker-Bolt, V. Ramakrishnan, T. Aljuhani, M. Yazdani, T.R. Brown, J.H. Jensen, D.D. Jenkins
American Journal of Neuroradiology Jan 2022, 43 (1) 139-145; DOI: 10.3174/ajnr.A7370
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