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Analysis of new diffusion tensor imaging anisotropy measures in the three‐phase plot
Authors:Ferran Prados MSc  Imma Boada PhD  Alberto Prats‐Galino PhD  Josep Antoni Martín‐Fernández PhD  Miquel Feixas PhD  Gerard Blasco RN  Josep Puig MD  Salvador Pedraza MD
Affiliation:1. Graphics and Imaging Laboratory, University of Girona, Spain;2. Human Anatomy and Embryology Unit, Faculty of Medicine, University of Barcelona, Barcelona, Spain;3. Computer Science and Applied Mathematics Department, University of Girona, Spain;4. MRI Center, IDI, Radiology Department, Hospital Universitari de Girona Dr Josep Trueta, Girona, Spain;5. IDIBGI, Programa de Doctorado. Departament de Medicina. Universitat Autònoma de Barcelona, Spain
Abstract:

Purpose:

To evaluate diffusion anisotropy from diffusion tensor imaging using new measures derived from Hellinger divergences and from compositional data distances.

Materials and Methods:

New anisotropy measures obtained from the diffusion tensor imaging were measured and compared with classic ones such as fractional anisotropy (FA) and relative anisotropy (RA). The evaluation was done using the three‐phase plot (3P‐plot). The measures were compared with regard to their sensitivity to detect white and gray matter changes on human DTI data acquired from five normal volunteers. For each volunteer, different volumes of interest located in white matter (WM) and gray matter (GM) were considered.

Results:

The proposed Compositional Kullback‐Leibler (KLA) and the classic FA had a similar behavior, although KLA detected better the transitions between white and gray matter. Moreover, KLA showed a better discrimination in areas with great confluence of fibers.

Conclusion:

KLA detects better than FA the difference between WM and GM. This leads KLA to be a good measure for segmenting WM from GM. J. Magn. Reson. Imaging 2010;31:1435–1444. © 2010 Wiley‐Liss, Inc.
Keywords:diffusion tensor imaging  anisotropy  white matter  brain
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