DocumentCode
3860977
Title
Segmentation and tracking in echocardiographic sequences: active contours guided by optical flow estimates
Author
I. Mikic;S. Krucinski;J.D. Thomas
Author_Institution
Dept. of Electr. Eng., California Univ., San Diego, La Jolla, CA, USA
Volume
17
Issue
2
fYear
1998
Firstpage
274
Lastpage
284
Abstract
This paper presents a method for segmentation and tracking of cardiac structures in ultrasound image sequences. The developed algorithm is based on the active contour framework. This approach requires initial placement of the contour close to the desired position in the image, usually an object outline. Best contour shape and position are then calculated, assuming that at this configuration a global energy function, associated with a contour, attains its minimum. Active contours can be used for tracking by selecting a solution from a previous frame as an initial position in a present frame. Such an approach, however, fails for large displacements of the object of interest. This paper presents a technique that incorporates the information on pixel velocities (optical flow) into the estimate of initial contour to enable tracking of fast-moving objects. The algorithm was tested on several ultrasound image sequences, each covering one complete cardiac cycle. The contour successfully tracked boundaries of mitral valve leaflets, aortic root and endocardial borders of the left ventricle. The algorithm-generated outlines were compared against manual tracings by expert physicians. The automated method resulted in contours that were within the boundaries of intraobserver variability.
Keywords
"Active contours","Image motion analysis","Image segmentation","Ultrasonic imaging","Image sequences","Valves","Shape","Biomedical optical imaging","Cardiac disease","Aerodynamics"
Journal_Title
IEEE Transactions on Medical Imaging
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/42.700739
Filename
700739
Link To Document