DocumentCode
1050466
Title
A 3D reconstruction of vascular structures from two X-ray angiograms using an adapted simulated annealing algorithm
Author
Pellot, Claire ; Herment, Alain ; Sigelle, Marc ; Horain, Patrick ; Maître, Henri ; Peronneau, Pierre
Author_Institution
INSERM, Paris, France
Volume
13
Issue
1
fYear
1994
fDate
3/1/1994 12:00:00 AM
Firstpage
48
Lastpage
60
Abstract
A three-dimensional (3D) reconstruction of the vessel lumen from two angiographic views, based on the reconstruction of a series of cross-sections, is proposed. Assuming uniform mixing of contrast medium and background subtraction, the cross-section of each vessel is reconstructed through a binary representation. A priori information about both the slice to be reconstructed and the relationships between adjacent slices are incorporated to lessen ambiguities on the reconstruction. Taking into account the knowledge of normal vessel geometry, an initial solution of each slice is created using an elliptic model-based method. This initial solution is then deformed to be made consistent with projection data while being constrained into a connected realistic shape. For that purpose, properties on the expected optimal solution are described through a Markov random field. To find an optimal solution, a specific optimization algorithm based on simulated annealing is used. The method performs well both on single vessels and on branching vessels possessing an additional inherent ambiguity when viewed at oblique angles. Results on 2D slice independent reconstruction and 3D reconstruction of a stack of spatially continuous 2D slices are presented for single vessels and bifurcations
Keywords
diagnostic radiography; image reconstruction; medical image processing; simulated annealing; 2D slice independent reconstruction; 3D reconstruction; Markov Random Field; X-ray angiography; adapted simulated annealing algorithm; bifurcations; branching vessels; medical diagnostic imaging; normal vessel geometry; oblique angles; optimization algorithm; projection data; spatially continuous 2D slices; vascular structures; Angiography; Bifurcation; Geometry; Image processing; Image reconstruction; Lesions; Markov random fields; Shape; Simulated annealing; Solid modeling;
fLanguage
English
Journal_Title
Medical Imaging, IEEE Transactions on
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/42.276144
Filename
276144
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