The Dynamics of Cardiac Fibrillation

Author:

Weiss James N.1,Qu Zhilin1,Chen Peng-Sheng1,Lin Shien-Fong1,Karagueuzian Hrayr S.1,Hayashi Hideki1,Garfinkel Alan1,Karma Alain1

Affiliation:

1. From the Cardiovascular Research Laboratory and the Departments of Medicine (Cardiology; J.N.W., Z.Q., A.G.), and Physiological Science (A.G.), David Geffen School of Medicine at UCLA, and Cedars-Sinai Medical Center (P.-S.C., S.-F.L., H.S.K., H.H.), Los Angeles, Calif, and the Department of Physics (A.K.), Northeastern University, Boston, Mass.

Abstract

Reentry occurs when the electrical wave propagating through the atria or ventricles breaks locally and forms a rotor (also called a scroll wave or functional reentry). If the waves propagating outward from a rotor develop additional wavebreaks (which may form new rotors), fibrillation results. Tissue heterogeneity, exacerbated by electrical and structural remodeling from cardiac disease, has traditionally been considered the major factor promoting wavebreak and its degeneration to fibrillation. Recently, however, dynamic factors have also been recognized to play a key role. Dynamic factors refer to cellular properties of the cardiac action potential and Ca i cycling, which dynamically generate wave instability and wavebreak, even in tissue that is initially completely homogeneous. Although the latter situation can only be created in computer simulations, its relevance to real (heterogeneous) cardiac tissue has been unequivocally demonstrated. Dynamic factors are related to membrane voltage (V m ) and Ca i . V m factors include electrical restitution of action potential duration and conduction velocity, short-term cardiac memory, and electrotonic currents. Ca i factors are related to dynamic Ca i cycling properties. They act synergistically, as well as with tissue heterogeneity, to promote wavebreak and fibrillation. As global properties, rather than local electrophysiological characteristics, dynamic factors represent an attractive target for novel therapies to prevent ventricular fibrillation.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine

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