Self-organized activation patterns in excitable media such as spiral waves and spatio-temporal chaos underlie dangerous cardiac arrhythmias. While the interaction of single spiral waves with different types of heterogeneity has been studied extensively, the effect of heterogeneity on fully developed spatio-temporal chaos remains poorly understood. We investigate how the complexity and stability properties of spatio-temporal chaos in the Bar-Eiswirth model of excitable media depend on the heterogeneity of the underlying medium. We employ different measures characterizing the chaoticity of the system and find that the spatial arrangement of multiple discrete lower excitability regions has a strong impact on the complexity of the dynamics. Var...
Ventricular fibrillation (VF), the major reason behind sudden cardiac death, is turbulent cardian el...
Ventricular fibrillation (VF), the major reason behind sudden cardiac death, is turbulent cardian el...
Arrhythmias are potentially fatal disruptions to the normal heart rhythm, but their underlying dynam...
Self-organized activation patterns in excitable media such as spiral waves and spatio-temporal chaos...
In relation to cardiac arrhythmias, heterogeneity of cardiac tissue is one of the most important fac...
Sub-threshold stimuli cannot initiate excitations in active media in the resting state, but surprisi...
In relation to cardiac arrhythmias, heterogeneity of cardiac tissue is one of the most important fac...
In relation to cardiac arrhythmias, heterogeneity of cardiac tissue is one of the most important fac...
Abstract—High dimensional spatiotemporal chaos under-pins the dynamics associated with life threaten...
Spatiotemporal pattern formation governs dynamics and functions in various biological systems. In th...
Instabilities in cardiac dynamics have been widely investigated in recent years. One facet of this w...
Coherent relaxation and contraction of the heart muscle is essential for efficiently pumping blood t...
In excitable media, chaotic dynamics governed by spiral or scroll waves is often not persistent but ...
In excitable media, chaotic dynamics governed by spiral or scroll waves is often not persistent but ...
In many real-life systems, transient chaotic dynamics plays a major role. For instance, the chaotic ...
Ventricular fibrillation (VF), the major reason behind sudden cardiac death, is turbulent cardian el...
Ventricular fibrillation (VF), the major reason behind sudden cardiac death, is turbulent cardian el...
Arrhythmias are potentially fatal disruptions to the normal heart rhythm, but their underlying dynam...
Self-organized activation patterns in excitable media such as spiral waves and spatio-temporal chaos...
In relation to cardiac arrhythmias, heterogeneity of cardiac tissue is one of the most important fac...
Sub-threshold stimuli cannot initiate excitations in active media in the resting state, but surprisi...
In relation to cardiac arrhythmias, heterogeneity of cardiac tissue is one of the most important fac...
In relation to cardiac arrhythmias, heterogeneity of cardiac tissue is one of the most important fac...
Abstract—High dimensional spatiotemporal chaos under-pins the dynamics associated with life threaten...
Spatiotemporal pattern formation governs dynamics and functions in various biological systems. In th...
Instabilities in cardiac dynamics have been widely investigated in recent years. One facet of this w...
Coherent relaxation and contraction of the heart muscle is essential for efficiently pumping blood t...
In excitable media, chaotic dynamics governed by spiral or scroll waves is often not persistent but ...
In excitable media, chaotic dynamics governed by spiral or scroll waves is often not persistent but ...
In many real-life systems, transient chaotic dynamics plays a major role. For instance, the chaotic ...
Ventricular fibrillation (VF), the major reason behind sudden cardiac death, is turbulent cardian el...
Ventricular fibrillation (VF), the major reason behind sudden cardiac death, is turbulent cardian el...
Arrhythmias are potentially fatal disruptions to the normal heart rhythm, but their underlying dynam...