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The relationships between extent and microstructural properties of the midsagittal corpus callosum in human brain

Authors
Park, Jun-SungYoon, UicheulKwak, Ki-ChangSeo, Sang WonKim, Sun I.Na, Duk L.Lee, Jong-Min
Issue Date
May-2011
Publisher
ACADEMIC PRESS INC ELSEVIER SCIENCE
Keywords
Interhemispheric connectivity; Corpus callosum; Diffusion tensor imaging; Callosal extent; Axon density
Citation
NeuroImage, v.56, no.1, pp.174 - 184
Indexed
SCIE
SCOPUS
Journal Title
NeuroImage
Volume
56
Number
1
Start Page
174
End Page
184
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/168513
DOI
10.1016/j.neuroimage.2011.01.065
ISSN
1053-8119
Abstract
Recent quantitative analyses of the corpus callosum (CC) have tried to assess the interhemispheric connectivity. Based on histological results showing an expansion of callosal extent at the midsagittal plane, without fiber density alterations, callosal extent was interpreted as an index of interhemispheric connectivity. The microstructural properties of the CC have also been investigated extensively using diffusion tensor imaging, to assess interhemispheric connectivity. The relationships between axonal density and callosal extent need to be investigated to understand how these parameters reflect interhemispheric connectivity. We used a semi-automated CC segmentation scheme in T1-weighted magnetic resonance image and fractional anisotropy (FA) image, respectively. The parameterization method of the segmented CC was applied to 47 right-handed healthy adult subjects. The callosal extent and microstructural properties were measured using the callosal thickness and diffusion indices (FA, mean diffusivity, and axial and radial diffusivity), respectively. Our results revealed a correlation between callosal thickness and FA on the posterior body and isthmus of the CC, which suggests that these regions are more sensitive to fiber alterations than other regions. Based on this result, we suggest that both the extent of the CC and its microstructural properties should be considered together in the estimation of interhemispheric connectivity in healthy adult populations.
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