We consider the Morris - Lecar neuron model with a parameter set corresponding to class 1 excitability. We study the effect of random disturbances on the model in the parametric zone where the only attractor of the deterministic system is a stable equilibrium. We show that under noise the stochastic generation of large amplitude oscillations occurs in the system. This phenomenon is confirmed by changes in distributions of random trajectories and interspike intervals. This effect is analyzed using the stochastic sensitivity function technique and the method of confidence domains. We suggest a criterion for the estimation of threshold values of noise intensity leading to the stochastic generation of oscillations
We consider the stochastic dynamics of escape in an excitable system, the FitzHugh-Nagumo (FHN) neur...
A human brain contains billions of neurons. These are extremely complex dynamical systems that are a...
We investigate the stochastic resonance in a FitzHugh-Nagumo neuron model driven by tricho...
The effect of noise on the two-dimensional Morris--Lecar neuron model is studied. In the determinist...
This work is about the state transition of the stochastic Morris-Lecar neuronal model driven by symm...
In this paper we examine two specific models of dynamical systems in which noise plays a central rol...
The stochastically forced three-dimensional Hindmarsh-Rose model of neural activity is considered. W...
We review the behavior of theoretical models of excitable systems driven by Gaussian white noise. We...
A problem of the stochastic nonlinear analysis of neuronal activity is studied by the example of the...
We study the response time of a neuron in the transient regime of FitzHugh-Nagumo model, in the pres...
Periodically stimulated sensory neurons typically exhibit a kind of "statistical phase locking ...
We have analyzed the interplay between noise and periodic modulations in a mean field model of a neu...
We study the nonlinear FitzHugh-Nagumo model witch describes the dynamics of excitable neural elemen...
The present thesis is concerned with the stochastic phase dynamics of neuron models and spike time r...
The brain is an intrinsically noisy environment. Neurons and networks are able to detect and classif...
We consider the stochastic dynamics of escape in an excitable system, the FitzHugh-Nagumo (FHN) neur...
A human brain contains billions of neurons. These are extremely complex dynamical systems that are a...
We investigate the stochastic resonance in a FitzHugh-Nagumo neuron model driven by tricho...
The effect of noise on the two-dimensional Morris--Lecar neuron model is studied. In the determinist...
This work is about the state transition of the stochastic Morris-Lecar neuronal model driven by symm...
In this paper we examine two specific models of dynamical systems in which noise plays a central rol...
The stochastically forced three-dimensional Hindmarsh-Rose model of neural activity is considered. W...
We review the behavior of theoretical models of excitable systems driven by Gaussian white noise. We...
A problem of the stochastic nonlinear analysis of neuronal activity is studied by the example of the...
We study the response time of a neuron in the transient regime of FitzHugh-Nagumo model, in the pres...
Periodically stimulated sensory neurons typically exhibit a kind of "statistical phase locking ...
We have analyzed the interplay between noise and periodic modulations in a mean field model of a neu...
We study the nonlinear FitzHugh-Nagumo model witch describes the dynamics of excitable neural elemen...
The present thesis is concerned with the stochastic phase dynamics of neuron models and spike time r...
The brain is an intrinsically noisy environment. Neurons and networks are able to detect and classif...
We consider the stochastic dynamics of escape in an excitable system, the FitzHugh-Nagumo (FHN) neur...
A human brain contains billions of neurons. These are extremely complex dynamical systems that are a...
We investigate the stochastic resonance in a FitzHugh-Nagumo neuron model driven by tricho...