The rotating spiral waves that emerge in diverse natural and man-made systems typically exhibit a particle-like behaviour since their adjoint critical eigenmodes (response functions) are often seen to be localised around the spiral core. We present a simple method to numerically compute response functions for circular-core and meandering spirals by recording their drift response to many elementary perturbations. Although our method is computationally more expensive than solving the adjoint system, our technique is fully parallellisable, does not suffer from memory limitations and can be applied to experiments. For a cardiac tissue model with the linear spiral core, we find that the response functions are localised near the turning points of...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Reaction-diffusion mechanics (RDM) systems describe a wide range of practically important phenomena ...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
© 2010 The American Physical Societytypes: Journal ArticleRotating spiral waves are a form of self-o...
In many oscillatory or excitable systems, dynamical patterns emerge which are stationary or periodic...
In many oscillatory or excitable systems, dynamical patterns emerge which are stationary or periodic...
In many oscillatory or excitable systems, dynamical patterns emerge which are stationary or periodic...
This is the author accepted manuscript. The final version is available from the American Physical So...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Preprint of an article submitted for consideration and subsequently published in International Journ...
In many oscillatory or excitable systems, dynamical patterns emerge which are stationary or periodic...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Reaction-diffusion mechanics (RDM) systems describe a wide range of practically important phenomena ...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Reaction-diffusion mechanics (RDM) systems describe a wide range of practically important phenomena ...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
© 2010 The American Physical Societytypes: Journal ArticleRotating spiral waves are a form of self-o...
In many oscillatory or excitable systems, dynamical patterns emerge which are stationary or periodic...
In many oscillatory or excitable systems, dynamical patterns emerge which are stationary or periodic...
In many oscillatory or excitable systems, dynamical patterns emerge which are stationary or periodic...
This is the author accepted manuscript. The final version is available from the American Physical So...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Preprint of an article submitted for consideration and subsequently published in International Journ...
In many oscillatory or excitable systems, dynamical patterns emerge which are stationary or periodic...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Reaction-diffusion mechanics (RDM) systems describe a wide range of practically important phenomena ...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...
Reaction-diffusion mechanics (RDM) systems describe a wide range of practically important phenomena ...
Rotating spiral waves are a form of self-organization observed in spatially extended systems of phys...