We study numerically the dynamics of spiral waves in an excitable medium with negative restitution. For our study we use two models of the excitable medium: a cellular automaton and a reaction-diffusion model. There are no significant effects of negative restitution as long as the slope of the restitution curve is less steep than -1. In media with slopes steeper than -1, the dynamics of spiral waves can change significantly: (1) the average restitution time jumps to a value where the slope of the restitution curve is about -1; (2) spiral waves can break up into turbulent patterns. We discuss a possible connection between such instabilities and fibrillation in atrial tissue
Human ventricular tissue as well as several animal ventricular preparations show a biphasic shape of...
Abstract. We describe numerical simulations of spiral waves dynamics in the computational model of h...
Spiral waves represent an important example of dissipative structures observed in many distributed s...
We study numerically the dynamics of spiral waves in an excitable medium with negative restitution. ...
We study numerically the dynamics of spiral waves in an excitable medium with negative restitution. ...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Human ventricular tissue as well as several animal ventricular preparations show a biphasic shape of...
Abstract. We describe numerical simulations of spiral waves dynamics in the computational model of h...
Spiral waves represent an important example of dissipative structures observed in many distributed s...
We study numerically the dynamics of spiral waves in an excitable medium with negative restitution. ...
We study numerically the dynamics of spiral waves in an excitable medium with negative restitution. ...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
Human ventricular tissue as well as several animal ventricular preparations show a biphasic shape of...
Abstract. We describe numerical simulations of spiral waves dynamics in the computational model of h...
Spiral waves represent an important example of dissipative structures observed in many distributed s...