<p>In these notes, we provide some supplementary material to the manuscript "When does cyclic dominance lead to stable spiral waves?". The notes include a schematic description of the model and movies allowing the visualization of the results. See file "index.html" for comments and captions to the movies.</p
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
We argue that self-excited instabilities are the cause of spiral patterns in simulations of unpertur...
When a rotating external field larger than a critical strength is applied to a meandering spiral wit...
Species diversity in ecosystems is often accompanied by characteristic spatio-temporal patterns. Her...
Spatially extended versions of the cyclic-dominance Rock-Paper-Scissors model have traveling wave (i...
<p>Left column: snapshots of the lattices; middle column: corresponding space-time event plots; righ...
In nature, spatio-temporal patterns in excitable media occur in seemingly un-limited variety. As ear...
Spiral waves in two spatial dimensions (2D), and scroll waves in three dimensions (3D), are regimes ...
A perspective on systems containing many action potential waves that, individually, are prone to spi...
Rotating spiral and scroll waves (vortices) are investigated in the FitzHugh-Nagumo model of excitab...
It is well known that excitable media can sustain "fast" stable traveling pulses of excitation. In m...
Copyright © 2001 Elsevier. NOTICE: This is the author’s version of a work accepted for publication b...
<p>The top panel shows the spatiotemporal evolution of a spiral in the absence of an EAD clump; the ...
<p>A: (Left to right) spatial and spatiotemporal pattern examples. Spot and stripe Turing patterns b...
We have discovered long-lived waves in two sets of numerical models of fast (marginally bound or unb...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
We argue that self-excited instabilities are the cause of spiral patterns in simulations of unpertur...
When a rotating external field larger than a critical strength is applied to a meandering spiral wit...
Species diversity in ecosystems is often accompanied by characteristic spatio-temporal patterns. Her...
Spatially extended versions of the cyclic-dominance Rock-Paper-Scissors model have traveling wave (i...
<p>Left column: snapshots of the lattices; middle column: corresponding space-time event plots; righ...
In nature, spatio-temporal patterns in excitable media occur in seemingly un-limited variety. As ear...
Spiral waves in two spatial dimensions (2D), and scroll waves in three dimensions (3D), are regimes ...
A perspective on systems containing many action potential waves that, individually, are prone to spi...
Rotating spiral and scroll waves (vortices) are investigated in the FitzHugh-Nagumo model of excitab...
It is well known that excitable media can sustain "fast" stable traveling pulses of excitation. In m...
Copyright © 2001 Elsevier. NOTICE: This is the author’s version of a work accepted for publication b...
<p>The top panel shows the spatiotemporal evolution of a spiral in the absence of an EAD clump; the ...
<p>A: (Left to right) spatial and spatiotemporal pattern examples. Spot and stripe Turing patterns b...
We have discovered long-lived waves in two sets of numerical models of fast (marginally bound or unb...
Spiral waves are self-repeating waves that can form in excitable media, propagating outward from the...
We argue that self-excited instabilities are the cause of spiral patterns in simulations of unpertur...
When a rotating external field larger than a critical strength is applied to a meandering spiral wit...