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Diffusion Tensor MR Imaging Visualizes the Altered Hemispheric Fiber Connection in Callosal Dysgenesis

Seung-Koo Lee, Susumu Mori, Dong Joon Kim, Sei Young Kim, Si Yeon Kim and Dong Ik Kim
American Journal of Neuroradiology January 2004, 25 (1) 25-28;
Seung-Koo Lee
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Susumu Mori
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Dong Joon Kim
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Sei Young Kim
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Si Yeon Kim
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Dong Ik Kim
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    Fig 1.

    Anatomic T2-weighted images, diffusion tensor-based color maps, FA maps, and FT of callosal dysgenesis. Upper row depicts normal findings of corpus callosum; i.e., clear red fibers and high FA bundles crossing midline at diffusion tensor MR imaging. Tractography shows interhemispheric fiber connections through corpus callosum; i.e., red-colored fibers in the midline. Middle row shows partially developed corpus callosum in genu portion (white arrow). Tractography demonstrates fibers from parieto-occipital regions converging into small red-colored genu as well as fibers from frontal lobes. Fibers from the posterior part run anteriorly and form longitudinal green-colored fibers, the Probst bundle. In complete agenesis of corpus callosum, the Probst bundle is more apparent as thick, green, high-FA fibers medial to lateral ventricle (double arrows). Tractography shows thick bundles of green color consist of various fibers from ipsilateral hemisphere, Probst bundle, and thick red-colored AC (black arrows).

  • Fig 2.
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    Fig 2.

    T2-weighted and diffusion tensor-based color images at the level of the AC. Right-to-left running red fibers are identified in control subject and one patient with callosal agenesis, whereas other patients did not show these transverse fascicles on diffusion tensor maps (white arrows).

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American Journal of Neuroradiology: 25 (1)
American Journal of Neuroradiology
Vol. 25, Issue 1
1 Jan 2004
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Diffusion Tensor MR Imaging Visualizes the Altered Hemispheric Fiber Connection in Callosal Dysgenesis
Seung-Koo Lee, Susumu Mori, Dong Joon Kim, Sei Young Kim, Si Yeon Kim, Dong Ik Kim
American Journal of Neuroradiology Jan 2004, 25 (1) 25-28;

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Diffusion Tensor MR Imaging Visualizes the Altered Hemispheric Fiber Connection in Callosal Dysgenesis
Seung-Koo Lee, Susumu Mori, Dong Joon Kim, Sei Young Kim, Si Yeon Kim, Dong Ik Kim
American Journal of Neuroradiology Jan 2004, 25 (1) 25-28;
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  • Structural Connectivity Analysis in Children with Segmental Callosal Agenesis
  • Structural and functional brain rewiring clarifies preserved interhemispheric transfer in humans born without the corpus callosum
  • Novel Proximal 14q Deletion: Clinical and Diffusion Tensor Imaging Tractography Findings in a Patient with Lissencephaly, Agenesis of the Corpus Callosum, and Septo-Optic Dysplasia
  • Diffusion Abnormalities and Reduced Volume of the Ventral Cingulum Bundle in Agenesis of the Corpus Callosum: A 3T Imaging Study
  • Agenesis of the Corpus Callosum: An MR Imaging Analysis of Associated Abnormalities in the Fetus
  • Variability of Homotopic and Heterotopic Callosal Connectivity in Partial Agenesis of the Corpus Callosum: A 3T Diffusion Tensor Imaging and Q-Ball Tractography Study
  • Diffusion Tensor Magnetic Resonance Imaging and Tract-Tracing Analysis of Probst Bundle Structure in Netrin1- and DCC-Deficient Mice
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