DocumentCode
1746865
Title
Simulated wave propagation and traceback in vascular extraction
Author
Quek, Francis K H ; Kirbas, Cemil
Author_Institution
Dept. of Comput. Sci. & Eng., Wright State Univ., Dayton, OH, USA
fYear
2001
fDate
2001
Firstpage
229
Lastpage
234
Abstract
We present an approach for the extraction of vasculature from angiography images by using a wave propagation and traceback mechanism. We discuss both the theory and the implementation of the approach. Using a dual-sigmoidal filter, we label each pixel in an angiogram with the likelihood that it is within a vessel. Representing the reciprocal of this likelihood image as an array of refractive indices, we propagate a digital wave through the image from the base of the vascular tree. This wave `washes´ over the vasculature, ignoring local noise perturbations. The extraction of the vasculature becomes that of tracing the wave along the local normals to the waveform. While the approach is inherently SIMD, we present an efficient sequential algorithm for the wave propagation, and discuss the traceback algorithm. We demonstrate the effectiveness of our integer image neighborhood-based algorithm and its robustness to image noise
Keywords
biomedical MRI; blood vessels; cardiovascular system; diagnostic radiography; feature extraction; medical image processing; SIMD; angiography images; dual-sigmoidal filter; image noise; integer image neighborhood-based algorithm; local noise perturbations; medical image processing; pixel labeling; refractive indices; sequential algorithm; simulated wave propagation; traceback; vascular extraction; vessel; Angiography; Biomedical imaging; Computational modeling; Data mining; Laboratories; Machine vision; Magnetic noise; Optical imaging; Pattern recognition; X-ray imaging;
fLanguage
English
Publisher
ieee
Conference_Titel
Medical Imaging and Augmented Reality, 2001. Proceedings. International Workshop on
Conference_Location
Shatin, Hong Kong
Print_ISBN
0-7695-1113-9
Type
conf
DOI
10.1109/MIAR.2001.930292
Filename
930292
Link To Document