KATP channel opening accelerates and stabilizes rotors in a swine heart model of ventricular fibrillation
Cardiovascular Research

Abstract
The mechanisms underlying ventricular fibrillation (VF) are still disputed. Recent studies have highlighted the role of KATP-channels. We hypothesized that, under certain conditions, VF can be driven by stable and epicardially detectable rotors in large hearts. To test our hypothesis, we used a swine model of accelerated VF by opening KATP-channels with cromakalim.
Optical mapping, spectral analysis, and phase singularity tracking were performed in eight perfused swine hearts during VF. Pseudo-bipolar electrograms were computed. KATP-channel opening almost doubled the maximum dominant frequency (14.3 ± 2.2 vs. 26.5 ± 2.8 Hz,
Upon KATP-channel opening, VF consisted of rapid and highly organized domains mainly due to stationary rotors, surrounded by poorly organized areas. A ‘beat phenomenon’ due to the quasi-periodic onset of drifting rotors was observed. These findings demonstrate the feasibility of a VF driven by stable rotors in hearts whose size is similar to the human heart. Our model also showed that complex fractionation does not seem to localize stationary rotors.
Contributors

Javier Moreno
Author

Tamara Archondo
Author

Ashley Chin
Author

Nicasio Pérez-Castellano
Author

Elena Usandizaga
Author

María Jesús García-Torrent
Author

Roberto Molina-Morúa
Author

Pablo González
Author

Cruz Rodríguez-Bobada
Author

Carlos Macaya
Author

Julián Pérez-Villacastín
Author

