Spatiotemporal dynamics of pacing in models of anatomical reentry
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Reentry around non-conducting ventricular scar tissue, which often causes lethal arrhythmias, is typically treated by rapid stimulation from an implantable defibrillator. However, the mechanisms of termination (success and failure) are poorly understood. To elucidate such mechanisms, we studied pacing of anatomical reentry in 1-D and 2-D excitable cardiac media models. Our results suggest that the existence of inhomogeneity in the reentry circuit is essential for pacing termination of tachycardia to be successful. Considering the role of such inhomogeneities may lead to more effective pacing algorithms.
4 pages, 3 .eps figures included, to appear in Proc. IEEE EMBC 2001, 25-28 Oct 2001, Istanbul, Turkey (23rd Annual Intl Conf of the IEEE Engineering in Medicine and Biology Society)
4 pages, 3 .eps figures included, to appear in Proc. IEEE EMBC 2001, 25-28 Oct 2001, Istanbul, Turkey (23rd Annual Intl Conf of the IEEE Engineering in Medicine and Biology Society)