Preventing ventricular fibrillation by flattening cardiac restitution
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Open Access
- 16 May 2000
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 97 (11), 6061-6066
- https://doi.org/10.1073/pnas.090492697
Abstract
Ventricular fibrillation is the leading cause of sudden cardiac death. In fibrillation, fragmented electrical waves meander erratically through the heart muscle, creating disordered and ineffective contraction. Theoretical and computer studies, as well as recent experimental evidence, have suggested that fibrillation is created and sustained by the property of restitution of the cardiac action potential duration (that is, its dependence on the previous diastolic interval). The restitution hypothesis states that steeply sloped restitution curves create unstable wave propagation that results in wave break, the event that is necessary for fibrillation. Here we present experimental evidence supporting this idea. In particular, we identify the action of the drug bretylium as a prototype for the future development of effective restitution-based antifibrillatory agents. We show that bretylium acts in accord with the restitution hypothesis: by flattening restitution curves, it prevents wave break and thus prevents fibrillation. It even converts existing fibrillation, either to a periodic state (ventricular tachycardia, which is much more easily controlled) or to quiescent healthy tissue.Keywords
This publication has 34 references indexed in Scilit:
- A Randomized Study of the Prevention of Sudden Death in Patients with Coronary Artery DiseaseNew England Journal of Medicine, 1999
- Sudden Cardiac DeathCirculation, 1998
- Spatiotemporal complexity of ventricular fibrillation revealed by tissue mass reduction in isolated swine right ventricle. Further evidence for the quasiperiodic route to chaos hypothesis.Journal of Clinical Investigation, 1997
- Electrical alternans and spiral wave breakup in cardiac tissueChaos: An Interdisciplinary Journal of Nonlinear Science, 1994
- Action potential alternans and irregular dynamics in quinidine-intoxicated ventricular muscle cells. Implications for ventricular proarrhythmia.Circulation, 1993
- Mortality and Morbidity in Patients Receiving Encainide, Flecainide, or PlaceboNew England Journal of Medicine, 1991
- Stimulus-induced critical point. Mechanism for electrical initiation of reentry in normal canine myocardium.Journal of Clinical Investigation, 1989
- Bretylium Tosylate for Suppression of Ventricular Fibrillation after Experimental Myocardial InfarctionNature, 1968
- Quantitative comparison of bretylium with other antifibrillatory drugsThe American Journal of Cardiology, 1968
- Anti-arrhythmic Action of BretyliumNature, 1965