DocumentCode :
1123425
Title :
Sparse Registration for Three-Dimensional Stress Echocardiography
Author :
Leung, K. Y Esther ; Van Stralen, Marijn ; Nemes, Attila ; Voormolen, Marco M. ; Van Burken, Gerard ; Geleijnse, Marcel L. ; Ten Cate, Folkert J. ; Reiber, Johan H C ; De Jong, Nico ; Van der Steen, Antonius F W ; Bosch, Johan G.
Author_Institution :
Biomed. Eng., Cardiology, Thoraxcenter,, Erasmus MC, Rotterdam
Volume :
27
Issue :
11
fYear :
2008
Firstpage :
1568
Lastpage :
1579
Abstract :
Three-dimensional (3-D) stress echocardiography is a novel technique for diagnosing cardiac dysfunction. It involves evaluating wall motion of the left ventricle, by visually analyzing ultrasound images obtained in rest and in different stages of stress. Since the acquisitions are performed minutes apart, variabilities may exist in the visualized cross-sections. To improve anatomical correspondence between rest and stress, aligning the images is essential. We developed a new intensity-based, sparse registration method to retrieve standard anatomical views from 3-D stress images that were equivalent to the manually selected views in the rest images. Using sparse image planes, the influence of common image artifacts could be reduced. We investigated different similarity measures and different levels of sparsity. The registration was tested using data of 20 patients and quantitatively evaluated based on manually defined anatomical landmarks. Alignment was best using sparse registration with two long-axis and two short-axis views; registration errors were reduced significantly, to the range of interobserver variabilities. In 91% of the cases, the registration result was qualitatively assessed as better than or equal to the manual alignment. In conclusion, sparse registration improves the alignment of rest and stress images, with a performance similar to manual alignment. This is an important step towards objective quantification in 3-D stress echocardiography.
Keywords :
echocardiography; image registration; medical image processing; patient diagnosis; 3D stress echocardiography; cardiac dysfunction diagnosis; image alignment; intensity based sparse registration method; left ventricle wall motion evaluation; similarity measures; sparse image planes; sparsity levels; ultrasound images; visualized cross section variabilities; Echocardiography; Image analysis; Image motion analysis; Image retrieval; Motion analysis; Standards development; Stress; Testing; Ultrasonic imaging; Visualization; Image registration; image registration; stress echocardiography; three-dimensional ultrasound imaging; Artifacts; Echocardiography, Stress; Echocardiography, Three-Dimensional; Heart; Humans; Motion; Myocardial Contraction; Pattern Recognition, Automated; Subtraction Technique;
fLanguage :
English
Journal_Title :
Medical Imaging, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0062
Type :
jour
DOI :
10.1109/TMI.2008.922685
Filename :
4483766
Link To Document :
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