Wave propagation in excitable media with fast inhibitor diffusion is investigated by analytical and numerical methods. The curvature dependence of the velocity of propagating waves is derived and used to explain the appearance of instabilities with respect to transverse perturbations. Numerical simulations show that this instability may lead to the development of spiral turbulence. On the other hand, the computations also demonstrate that in narrow stripes of such excitable media and/or in media with especially chosen nonhomogeneity the spiral turbulence can be suppressed and steadily propagating wave patterns are found instead
We study the process of formation of spiral waves in a heterogeneous excitable medium under external...
We study numerically the dynamics of spiral waves in an excitable medium with negative restitution. ...
We study the process of formation of spiral waves in a heterogeneous excitable medium under external...
Numerical and theoretical studies of the excitability boundaries for spiral waves in 2D and scroll w...
Numerical and theoretical studies of the excitability boundaries for spiral waves in 2D and scroll w...
Numerical and theoretical studies of the excitability boundaries for spiral waves in 2D and scroll w...
We study the effect of small, randomly distributed obstacles on wave propagation in two-dimensional ...
We study the effect of small, randomly distributed obstacles on wave propagation in two-dimensional ...
Abstract. We study the effect of small, randomly distributed obstacles on wave propagation in two-di...
Many theoretical and experimental studies indicate that a propagation block represents an important ...
Many theoretical and experimental studies indicate that a propagation block represents an important ...
Spiral waves are a well-known and intensively studied dynamic phenomenon in excitable media of vario...
Spiral waves represent an important example of dissipative structures observed in many distributed s...
We study the process of formation of spiral waves in a heterogeneous excitable medium under external...
We study numerically the dynamics of spiral waves in an excitable medium with negative restitution. ...
We study the process of formation of spiral waves in a heterogeneous excitable medium under external...
We study numerically the dynamics of spiral waves in an excitable medium with negative restitution. ...
We study the process of formation of spiral waves in a heterogeneous excitable medium under external...
Numerical and theoretical studies of the excitability boundaries for spiral waves in 2D and scroll w...
Numerical and theoretical studies of the excitability boundaries for spiral waves in 2D and scroll w...
Numerical and theoretical studies of the excitability boundaries for spiral waves in 2D and scroll w...
We study the effect of small, randomly distributed obstacles on wave propagation in two-dimensional ...
We study the effect of small, randomly distributed obstacles on wave propagation in two-dimensional ...
Abstract. We study the effect of small, randomly distributed obstacles on wave propagation in two-di...
Many theoretical and experimental studies indicate that a propagation block represents an important ...
Many theoretical and experimental studies indicate that a propagation block represents an important ...
Spiral waves are a well-known and intensively studied dynamic phenomenon in excitable media of vario...
Spiral waves represent an important example of dissipative structures observed in many distributed s...
We study the process of formation of spiral waves in a heterogeneous excitable medium under external...
We study numerically the dynamics of spiral waves in an excitable medium with negative restitution. ...
We study the process of formation of spiral waves in a heterogeneous excitable medium under external...
We study numerically the dynamics of spiral waves in an excitable medium with negative restitution. ...
We study the process of formation of spiral waves in a heterogeneous excitable medium under external...