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AJNR Awards, New Junior Editors, and more. Read the latest AJNR updates

Research ArticlePediatric Neuroimaging
Open Access

White Matter Tract Pathology in Pediatric Anoxic Brain Injury from Drowning

M. Ishaque, J.H. Manning, M.D. Woolsey, C.G. Franklin, F.S. Salinas and P.T. Fox
American Journal of Neuroradiology April 2017, 38 (4) 814-819; DOI: https://doi.org/10.3174/ajnr.A5097
M. Ishaque
aFrom the Research Imaging Institute (M.I., M.D.W., C.G.F., F.S.S., P.T.F.)
bDepartment of Radiological Sciences (M.I., P.T.F.), University of Texas Health Science Center at San Antonio, San Antonio, Texas
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J.H. Manning
cMerrill Palmer Skillman Institute (J.H.M.), Wayne State University, Detroit, Michigan
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M.D. Woolsey
aFrom the Research Imaging Institute (M.I., M.D.W., C.G.F., F.S.S., P.T.F.)
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C.G. Franklin
aFrom the Research Imaging Institute (M.I., M.D.W., C.G.F., F.S.S., P.T.F.)
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F.S. Salinas
aFrom the Research Imaging Institute (M.I., M.D.W., C.G.F., F.S.S., P.T.F.)
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P.T. Fox
aFrom the Research Imaging Institute (M.I., M.D.W., C.G.F., F.S.S., P.T.F.)
bDepartment of Radiological Sciences (M.I., P.T.F.), University of Texas Health Science Center at San Antonio, San Antonio, Texas
dSouth Texas Veterans Healthcare System (P.T.F.), San Antonio, Texas
eShenzhen University School of Medicine (P.T.F.), Shenzhen, People's Republic of China.
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Abstract

BACKGROUND AND PURPOSE: Although drowning is a leading cause of mortality and morbidity in young children, the neuropathologic consequences have not been fully determined. The purpose of this article was to quantitatively characterize white matter microstructural abnormalities in pediatric anoxic brain injury from nonfatal drowning and investigate the correlation with motor function.

MATERIALS AND METHODS: Whole-brain T1-weighted and diffusion-weighted MR imaging datasets were acquired in 11 children with chronic anoxic brain injury and 11 age- and sex-matched neurotypical controls (4–12 years of age). A systematic evaluation form and scoring system were created to assess motor function. Tract-Based Spatial Statistics was used to quantify between-group alterations in the diffusion tensor imaging indices of fractional anisotropy and mean diffusivity and to correlate with per-subject functional motor scores.

RESULTS: Group-wise Tract-Based Spatial Statistics analyses demonstrated reduced fractional anisotropy in the bilateral posterior limbs of the internal capsule and the splenium of the corpus callosum (P < .001). Mean diffusivity was more diffusely increased, affecting the bilateral superior corona radiata, anterior and posterior limbs of the internal capsule, and external capsules (P < .001). Individual-subject fractional anisotropy and mean diffusivity values derived from the ROIs of the bilateral posterior limbs of the internal capsule strongly correlated with motor scores and demonstrated more potent between-group effects than with ROIs of the entire corticospinal tract.

CONCLUSIONS: These data particularly implicate the deep white matter, predominantly the posterior limbs of the internal capsule, as targets of damage in pediatric anoxic brain injury with drowning. The substantial involvement of motor-system tracts with relative sparing elsewhere is notable. These results localize white matter pathology and inform future diagnostic and prognostic markers.

ABBREVIATIONS:

ABI
anoxic brain injury
CST
corticospinal tract
FA
fractional anisotropy
MD
mean diffusivity
PLIC
posterior limb of the internal capsule
TBSS
Tract-Based Spatial Statistics
  • © 2017 by American Journal of Neuroradiology

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American Journal of Neuroradiology: 38 (4)
American Journal of Neuroradiology
Vol. 38, Issue 4
1 Apr 2017
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Cite this article
M. Ishaque, J.H. Manning, M.D. Woolsey, C.G. Franklin, F.S. Salinas, P.T. Fox
White Matter Tract Pathology in Pediatric Anoxic Brain Injury from Drowning
American Journal of Neuroradiology Apr 2017, 38 (4) 814-819; DOI: 10.3174/ajnr.A5097

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White Matter Tract Pathology in Pediatric Anoxic Brain Injury from Drowning
M. Ishaque, J.H. Manning, M.D. Woolsey, C.G. Franklin, F.S. Salinas, P.T. Fox
American Journal of Neuroradiology Apr 2017, 38 (4) 814-819; DOI: 10.3174/ajnr.A5097
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