Literature DB >> 22623555

Progression of corpus callosum diffusion-tensor imaging values during a period of signal changes consistent with myelination.

James M Provenzale1, Jared Isaacson, Steven Chen.   

Abstract

OBJECTIVE: Changes in signal intensity on T1- and T2-weighted MR images consistent with myelination in the corpus callosum occur during months 3-9 of postnatal life and occur earlier in the splenium than in the genu. We hypothesized that the rate of change in diffusion-tensor imaging parameters in the first year of life would be greater in the splenium, especially during months 3-9. SUBJECTS AND METHODS: Fifty-two infants (age range, 0-52 weeks) underwent one MRI examination with a six-direction diffusion-tensor imaging sequence. Fractional anisotropy, apparent diffusion coefficient, radial diffusivity, and axial diffusivity were measured in the genu and splenium of the corpus callosum. For each parameter, the slopes of change in the splenium and in the genu were measured for the entire first year of life and for the age period 3-9 months. The ratios of slope of change in the splenium to that in the genu in these two periods were compared.
RESULTS: For fractional anisotropy, the ratio of slope of change in the splenium to that in the genu was 1.67 in the first year and 4.00 for 3-9 months; apparent diffusion coefficient, 2.00 in the first year and 4.33 for 3-9 months; radial diffusivity, 1.75 in the first year and 4.40 for 3-9 months; and axial diffusivity, 3.25 in the first year and 4.86 for 3-9 months.
CONCLUSION: Rates of change were always greater in the splenium. For the age period 3-9 months, the splenium-to-genu ratio was approximately 1.5- to 2.5-fold as high as that for the entire year. These findings correspond well with the sequence of signal intensity changes in the corpus callosum.

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Year:  2012        PMID: 22623555     DOI: 10.2214/AJR.11.7849

Source DB:  PubMed          Journal:  AJR Am J Roentgenol        ISSN: 0361-803X            Impact factor:   3.959


  11 in total

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6.  Normal centrolineal myelination of the callosal splenium reflects the development of the cortical origin and size of its commissural fibers.

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7.  Neonatal brain microstructure correlates of neurodevelopment and gait in preterm children 18-22 mo of age: an MRI and DTI study.

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8.  Segmentation of the canine corpus callosum using diffusion-tensor imaging tractography.

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9.  Neonatal physiological correlates of near-term brain development on MRI and DTI in very-low-birth-weight preterm infants.

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10.  Diffusional kurtosis imaging: a promising technique for detecting microstructural changes in neural development and regeneration.

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