Microstructural development of human newborn cerebral white matter assessed in vivo by diffusion tensor magnetic resonance imaging

被引:0
|
作者
Hüppi P.S. [1 ,5 ]
Maier S.E. [2 ]
Peled S. [2 ]
Zientara G.P. [2 ]
Barnes P.D. [3 ]
Jolesz F.A. [2 ]
Volpe J.J. [4 ]
机构
[1] Joint Program in Neonatology, Harvard Medical School, Boston
[2] Department of Radiology, Brigham and Women's Hospital, Harvard Medical School, Boston
[3] Department of Radiology, Children's Hospital, Harvard Medical School, Boston
[4] Department of Neurology, Children's Hospital, Harvard Medical School, Boston
[5] Dept. Neurol. Jt. Prog. Neonatology, Harvard Medical School, Children's Hospital, Boston, MA 02115, Fegan 11
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D O I
10.1203/00006450-199810000-00019
中图分类号
学科分类号
摘要
Alterations of the architecture of cerebral white matter in the developing human brain can affect cortical development and result in functional disabilities. A line scan diffusion-weighted magnetic resonance imaging (MRI) sequence with diffusion tensor analysis was applied to measure the apparent diffusion coefficient, to calculate relative anisotropy, and to delineate three-dimensional fiber architecture in cerebral white matter in preterm (n = 17) and full-term infants (n = 7). To assess effects of prematurity on cerebral white matter development, early gestation preterm infants (n = 10) were studied a second time at term. In the central white matter the mean apparent diffusion coefficient at 28 wk was high, 1.8 μm2/ms, and decreased toward term to 1.2 μm2/ms. In the posterior limb of the internal capsule, the mean apparent diffusion coefficients at both times were similar (1.2 versus 1.1 μm2/ms). Relative anisotropy was higher the closer birth was to term with greater absolute values in the internal capsule than in the central white matter. Preterm infants at term showed higher mean diffusion coefficients in the central white matter (1.4 ± 0.24 versus 1.15 ± 0.09 μm2/ms, p = 0.016) and lower relative anisotropy in both areas compared with fullterm infants (white matter, 10.9 ± 0.6 versus 22.9 ± 3.0%, p = 0.001; internal capsule, 24.0 ± 4.44 versus 33.1 ± 0.6% p = 0.006). Nonmyelinated fibers in the corpus callosum were visible by diffusion tensor MRI as early as 28 wk; full-term and preterm infants at term showed marked differences in white matter fiber organization. The data indicate that quantitative assessment of water diffusion by diffusion tensor MRI provides insight into microstructural development in cerebral white matter in living infants.
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页码:584 / 590
页数:6
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