DocumentCode
69
Title
3-D Carotid Multi-Region MRI Segmentation by Globally Optimal Evolution of Coupled Surfaces
Author
Ukwatta, E. ; Jing Yuan ; Rajchl, Martin ; Wu Qiu ; Tessier, D. ; Fenster, Aaron
Author_Institution
Robarts Res. Inst., Western Univ., London, ON, Canada
Volume
32
Issue
4
fYear
2013
fDate
Apr-13
Firstpage
770
Lastpage
785
Abstract
In this paper, we propose a novel global optimization based 3-D multi-region segmentation algorithm for T1-weighted black-blood carotid magnetic resonance (MR) images. The proposed algorithm partitions a 3-D carotid MR image into three regions: wall, lumen, and background. The algorithm performs such partitioning by simultaneously evolving two coupled 3-D surfaces of carotid artery adventitia boundary (AB) and lumen-intima boundary (LIB) while preserving their anatomical inter-surface consistency such that the LIB is always located within the AB. In particular, we show that the proposed algorithm results in a fully time implicit scheme that propagates the two linearly ordered surfaces of the AB and LIB to their globally optimal positions during each discrete time frame by convex relaxation. In this regard, we introduce the continuous max-flow model and prove its duality/equivalence to the convex relaxed optimization problem with respect to each evolution step. We then propose a fully parallelized continuous max-flow-based algorithm, which can be readily implemented on a GPU to achieve high computational efficiency. Extensive experiments, with four users using 12 3T MR and 26 1.5T MR images, demonstrate that the proposed algorithm yields high accuracy and low operator variability in computing vessel wall volume. In addition, we show the algorithm outperforms previous methods in terms of high computational efficiency and robustness with fewer user interactions.
Keywords
biomedical MRI; blood; blood vessels; graphics processing units; image segmentation; medical image processing; optimisation; 3D carotid multiregion MRI segmentation; 3D multiregion segmentation algorithm; GPU; T1-weighted black-blood carotid magnetic resonance images; anatomical intersurface consistency; carotid artery adventitia boundary; continuous max-flow model; convex relaxation; convex relaxed optimization problem; coupled surfaces; discrete time frame; globally optimal evolution; linearly ordered surfaces; lumen-intima boundary; magnetic flux density 1.5 T; magnetic flux density 3 T; vessel wall volume; Accuracy; Atherosclerosis; Carotid arteries; Deformable models; Image segmentation; Optimization; Probability density function; Carotid atherosclerosis; contour evolution; convex relaxation; coupled level sets; global optimization; image segmentation; Algorithms; Atherosclerosis; Carotid Arteries; Databases, Factual; Humans; Imaging, Three-Dimensional; Magnetic Resonance Imaging; Reproducibility of Results;
fLanguage
English
Journal_Title
Medical Imaging, IEEE Transactions on
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/TMI.2013.2237784
Filename
6403549
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