DocumentCode :
2137026
Title :
Non-linear image registration for correction of motion artifacts during optical imaging of human hearts
Author :
Westergaard, P. ; Umapathy, K. ; Masse, S. ; Sevapstisidis, E. ; Asta, J. ; Farid, T. ; Nair, K. ; Krishnan, S. ; Nanthakumar, K.
Author_Institution :
Univ. Health Network, Toronto, ON
fYear :
2008
fDate :
4-7 May 2008
Abstract :
Optical imaging of cardiac electrical activity can be used to elucidate patho-physiological mechanisms of cardiac arrhythmias. However, cardiac motion during optical imaging causes significant error in electrophysiological measurements such as action potential duration. In particular, cardiac tissue in fibrillation introduces highly non-linear imaging artifacts. We present a novel approach that uses non-linear image registration to correct for in-plane cardiac motion, particularly of non-linear origin found during cardiac arrhythmias. The algorithm is performed entirely post-acquisition and does not require a complicated optical setup. It is computationally fast, and available as open source. The algorithm was tested with images acquired from five excised dilated myopathic human hearts and the results show that the image registration method significantly reduces both non-linear and linear motion-related artifacts in both sinus rhythm and ventricular fibrillation. This algorithm corrects for non-linear imaging artifacts caused by cardiac motion that are impossible to correct using linear registration methods.
Keywords :
bioelectric phenomena; biomedical optical imaging; cardiology; image motion analysis; image registration; medical image processing; cardiac arrhythmias; cardiac motion; cardiac tissue; electrophysiological measurements; fibrillation; human hearts; motion artifacts correction; nonlinear image registration; optical imaging; patho-physiological mechanisms; Cardiac tissue; Electrophysiology; Heart; Humans; Image registration; Motion measurement; Nonlinear optics; Optical imaging; Rhythm; Testing; cardiovascular system; image registration; motion compensation; nonlinear distortion; optical recording;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical and Computer Engineering, 2008. CCECE 2008. Canadian Conference on
Conference_Location :
Niagara Falls, ON
ISSN :
0840-7789
Print_ISBN :
978-1-4244-1642-4
Electronic_ISBN :
0840-7789
Type :
conf
DOI :
10.1109/CCECE.2008.4564839
Filename :
4564839
Link To Document :
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