DocumentCode :
1275532
Title :
An X-ray-based method for the determination of the contrast agent propagation in 3-D vessel structures
Author :
Schmitt, H. ; Grass, M. ; Rasche, V. ; Schramm, O. ; Haehnel, S. ; Sartor, K.
Author_Institution :
Philips Res. Lab., Hamburg, Germany
Volume :
21
Issue :
3
fYear :
2002
fDate :
3/1/2002 12:00:00 AM
Firstpage :
251
Lastpage :
262
Abstract :
A method for the determination of the contrast-agent propagation in vessel trees is presented. A standard three-dimensional (3-D) rotational angiography procedure is performed to reconstruct the morphology of the contrast-filled vessel tree in a 3-D volume. An additional fluoroscopy projection series acquired with a fixed projection angle delivers the temporal information of the bolus propagating. The mapping of the propagation information from the two-dimensional projections to the 3-D image data set is the topic of this paper. A symbolic tree structure is built up that represents the vessel tree including bifurcations. Neighborhood relations between vessel pieces are given in three dimensions. This facilitates filtering procedures and plausibility controls of the resulting time dependent 3-D data set. The presented method proved to be accurate with phantom data and gives novel insight in the feeding structure of arterio-venous malformations and aneurysms.
Keywords :
blood vessels; diagnostic radiography; haemodynamics; image segmentation; medical image processing; pattern clustering; 3-D vessel trees; X-ray angiography; bifurcations; bolus arrival time; clustering by region growing; computational complexity; contrast-agent propagation; flow reconstruction; fluoroscopy projection series; image segmentation; rotational angiography; symbolic tree structure; Aneurysm; Angiography; Bifurcation; Blood; Filtering; Image reconstruction; Morphology; Tree data structures; Visualization; X-ray imaging; Algorithms; Angiography; Arterial Occlusive Diseases; Arteries; Blood Vessels; Cluster Analysis; Contrast Media; Fluoroscopy; Humans; Imaging, Three-Dimensional; Intracranial Arteriovenous Malformations; Models, Cardiovascular; Phantoms, Imaging; Rotation; Sensitivity and Specificity;
fLanguage :
English
Journal_Title :
Medical Imaging, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0062
Type :
jour
DOI :
10.1109/42.996343
Filename :
996343
Link To Document :
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