Affiliation:
1. School of Physics, Georgia Institute of Technology, Atlanta, GA 30332
Abstract
We identify and demonstrate a universal mechanism for terminating spiral waves in excitable media using an established topological framework. This mechanism dictates whether high- or low-energy defibrillation shocks succeed or fail. Furthermore, this mechanism allows for the design of a single minimal stimulus capable of defibrillating, at any time, turbulent states driven by multiple spiral waves. We demonstrate this method in a variety of computational models of cardiac tissue ranging from simple to detailed human models. The theory described here shows how this mechanism underlies all successful defibrillation and can be used to further develop existing and future low-energy defibrillation strategies.
Funder
National Science Foundation
HHS | NIH | National Heart, Lung, and Blood Institute
Publisher
Proceedings of the National Academy of Sciences
Cited by
18 articles.
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