DocumentCode
935998
Title
Three-dimensional segmentation and interpolation of magnetic resonance brain images
Author
Joliot, Marc ; Mazoyer, Bernard M.
Author_Institution
Service Hospitalier Frederic Joliot, CEA, Orsay, France
Volume
12
Issue
2
fYear
1993
fDate
6/1/1993 12:00:00 AM
Firstpage
269
Lastpage
277
Abstract
The authors propose a method for the 3-D reconstruction of the brain from anisotropic magnetic resonance imaging (MRI) brain data. The method essentially consists in two original algorithms both for segmentation and for interpolation of the MRI data. The segmentation process is performed in three steps. A gray level thresholding of the white and gray matter tissue is performed on the brain MR raw data. A global white matter segmentation is automatically performed with a global 3-D connectivity algorithm which takes into account the anisotropy of the MRI voxel. The gray matter is segmented with a local 3-D connectivity algorithm. Mathematical morphology tools are used to interpolate slices. The whole process gives an isotropic binary representation of both gray and white matter which are available for 3-D surface rendering. The power and practicality of this method have been tested on four brain datasets. The segmentation algorithm favorably compares to a manual one. The interpolation algorithm was compared to the shaped-based method both quantitatively and qualitatively
Keywords
biomedical NMR; brain; image segmentation; interpolation; medical image processing; 3D surface rendering; brain datasets; gray matter; image interpolation; isotropic binary representation; local 3D connectivity algorithm; magnetic resonance brain images; mathematical morphology; medical diagnostic imaging; white matter; Anatomy; Anisotropic magnetoresistance; Brain; Image segmentation; Interpolation; Magnetic resonance; Magnetic resonance imaging; Morphology; Rendering (computer graphics); Three dimensional displays;
fLanguage
English
Journal_Title
Medical Imaging, IEEE Transactions on
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/42.232255
Filename
232255
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