We investigate the stability of synchronization in networks of delay-coupled excitable neural oscillators. On the basis of the master stability function formalism, we demonstrate that synchronization is always stable for excitatory coupling independently of the delay and coupling strength. Superimposing inhibitory links randomly on top of a regular ring of excitatory coupling, which yields a small-world–like network topology, we find a phase transition to desynchronization as the probability of inhibitory links exceeds a critical value. We explore the scaling of the critical value in dependence on network properties. Compared to random networks, we find that small-world topologies are more susceptible to desynchronization via inhibition
Synchronization transitions are investigated in small-world neuronal networks that are locally model...
<div><p>How stable synchrony in neuronal networks is sustained in the presence of conduction delays ...
We consider a ring of identical neurons with delayed nearest neighborhood inhibitory interaction. Un...
Under which conditions can a network of pulse-coupled oscillators sustain stable collective activity...
Under which conditions can a network of pulse-coupled oscillators sustain stable collective activity...
We study a model for a network of synaptically coupled, excitable neurons to identify the role of co...
We use a generic model for type-I excitability (known as the SNIPER or SNIC model) to describe the l...
We use a generic model for type-I excitability (known as the SNIPER or SNIC model) to describe the l...
The phenomenon of enhancement of synchronization due to time delay is investigated in an arbitrary d...
We study synchronization transitions and pattern formation on small-world networks consisting of Mor...
We study a model for a network of synaptically coupled, excitable neurons to identify the role of co...
Coupling delays may cause drastic changes in the dynamics of oscillatory networks. In the present pa...
We show that delayed coupling could induce or enhance stable chaotic synchronization in complex netw...
We show that delayed coupling could induce or enhance stable chaotic synchronization in complex netw...
Adaptive networks change their connectivity with time, depending on their dynamical state. While syn...
Synchronization transitions are investigated in small-world neuronal networks that are locally model...
<div><p>How stable synchrony in neuronal networks is sustained in the presence of conduction delays ...
We consider a ring of identical neurons with delayed nearest neighborhood inhibitory interaction. Un...
Under which conditions can a network of pulse-coupled oscillators sustain stable collective activity...
Under which conditions can a network of pulse-coupled oscillators sustain stable collective activity...
We study a model for a network of synaptically coupled, excitable neurons to identify the role of co...
We use a generic model for type-I excitability (known as the SNIPER or SNIC model) to describe the l...
We use a generic model for type-I excitability (known as the SNIPER or SNIC model) to describe the l...
The phenomenon of enhancement of synchronization due to time delay is investigated in an arbitrary d...
We study synchronization transitions and pattern formation on small-world networks consisting of Mor...
We study a model for a network of synaptically coupled, excitable neurons to identify the role of co...
Coupling delays may cause drastic changes in the dynamics of oscillatory networks. In the present pa...
We show that delayed coupling could induce or enhance stable chaotic synchronization in complex netw...
We show that delayed coupling could induce or enhance stable chaotic synchronization in complex netw...
Adaptive networks change their connectivity with time, depending on their dynamical state. While syn...
Synchronization transitions are investigated in small-world neuronal networks that are locally model...
<div><p>How stable synchrony in neuronal networks is sustained in the presence of conduction delays ...
We consider a ring of identical neurons with delayed nearest neighborhood inhibitory interaction. Un...