DocumentCode :
770220
Title :
Blockwise processing applied to brain microvascular network study
Author :
Fouard, Céline ; Malandain, Grégoire ; Prohaska, Steffen ; Westerhoff, Malte
Author_Institution :
INRIA
Volume :
25
Issue :
10
fYear :
2006
Firstpage :
1319
Lastpage :
1328
Abstract :
The study of cerebral microvascular networks requires high-resolution images. However, to obtain statistically relevant results, a large area of the brain (several square millimeters) must be analyzed. This leads us to consider huge images, too large to be loaded and processed at once in the memory of a standard computer. To consider a large area, a compact representation of the vessels is required. The medial axis is the preferred tool for this application. To extract it, a dedicated skeletonization algorithm is proposed. Numerous approaches already exist which focus on computational efficiency. However, they all implicitly assume that the image can be completely processed in the computer memory, which is not realistic with the large images considered here. We present in this paper a skeletonization algorithm that processes data locally (in subimages) while preserving global properties (i.e., homotopy). We then show some results obtained on a mosaic of three-dimensional images acquired by confocal microscopy
Keywords :
biomedical optical imaging; brain; image thinning; medical image processing; optical microscopy; blockwise processing; brain microvascular network; cerebral microvascular networks; compact vessel representation; confocal microscopy; dedicated skeletonization algorithm; high-resolution images; medial axis; Application software; Brain modeling; Computational efficiency; Computer science; Image resolution; Magnetic resonance imaging; Microscopy; Network topology; Positron emission tomography; Solid modeling; Chamfer map; digital topology; image mosaic; medial axis; skeleton; topological thinning;
fLanguage :
English
Journal_Title :
Medical Imaging, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0062
Type :
jour
DOI :
10.1109/TMI.2006.880670
Filename :
1704890
Link To Document :
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