DocumentCode :
692636
Title :
Diffusion characteristic analysis in human visual cortex
Author :
Shouyu Zhang ; Song Gao ; Xiaojian Kang ; Shanglian Bao
Author_Institution :
Beijing Key Lab. of Med. Phys. & Eng., Peking Univ., Beijing, China
fYear :
2013
fDate :
19-20 Oct. 2013
Firstpage :
107
Lastpage :
111
Abstract :
Since the birth of diffusion tensor imaging (DTI), diffusion characteristic has become a powerful tool to probe the internal structure of the subject. The diffusion anisotropy indices (DAIs) are parameters derived from DTI data which describe the morphological characteristics of diffusion tensor within specific range. It is of great importance to select a proper DAI for the analysis and interpretation of DTI data. In this work, the diffusion characteristic in human visual cortex is analysed with three DAIs: the commonly used fractional anisotropy (FA), ellipsoidal geometric ratio (EAR) proposed lately and ellipsoidal geometric ratio (EGR) that we proposed. The retinotopic mapping and surface-based analysis methods were applied to increase the power and precision studying longitudinal DAI changes in different visual fields (V1, V2, V3 et al). All three DAIs show the similar trend in visual fields, however, EGR and EAR both have higher magnitude and better contrast than FA. In addition, since EGR makes full use of the ellipsoidal volume information, its application result shows a certain improvement compared with EAR.
Keywords :
biodiffusion; biomedical MRI; medical image processing; neurophysiology; vision; diffusion anisotropy indices; diffusion characteristic analysis; diffusion tensor imaging; ellipsoidal geometric ratio; ellipsoidal volume information; fractional anisotropy; human visual cortex; internal subject structure; morphological characteristics; retinotopic mapping; surface-based analysis methods; visual fields; Anisotropic magnetoresistance; Diffusion tensor imaging; Ear; Surface topography; Visualization; DAI; Diffusion; Retinotopic map; Visual cortex;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Medical Imaging Physics and Engineering (ICMIPE), 2013 IEEE International Conference on
Conference_Location :
Shenyang
Print_ISBN :
978-1-4799-6305-8
Type :
conf
DOI :
10.1109/ICMIPE.2013.6864514
Filename :
6864514
Link To Document :
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