We consider a noisy leaky integrate-and-fire (NLIF) neuron model. The resulting nonlinear time-dependent partial differential equation (PDE) is a Fokker-Planck Equation (FPE) which describes the evolution of the probability density. The finite element method (FEM) has been proposed to solve the governing PDE. In the realistic neural network, the irregular space is always determined. Thus, FEM can be used to tackle those situations whereas other numerical schemes are restricted to the problems with only a finite regular space. The stability of the proposed scheme is also discussed. A comparison with the existing Weighted Essentially Non-Oscillatory (WENO) finite difference approximation is also provided. The numerical results reveal that FEM...
Population density techniques can be used to simulate the behavior of a population of neurons which ...
We consider a simple neural field model in which the state variable is dendritic voltage, and in whi...
En esta tesis se pretende estudiar el comportamiento de las soluciones de algunos de estos modelos ...
Introduction In this chapter we will discuss some practical and technical aspects of numerical meth...
Nonlinear Noisy Leaky Integrate and Fire (NNLIF) models for neurons networks can be written as Fokke...
The network of noisy leaky integrate and fire (NNLIF) model is one of the simplest self-contained me...
Recent work has examined the estimation of models of stimulus-driven neural activity in which a line...
AbstractIn this paper, we describe a numerical approach based on finite difference method to solve a...
To describe the collective behavior of large ensembles of neurons in neuronal network, a kinetic the...
The integrate-and-fire neuron with exponential postsynaptic potentials is a frequently employed mode...
Providing an analytical treatment to the stochastic feature of neu-rons' dynamics is one of the curr...
The leaky integrate-and-fire model for neuronal spiking events driven by a periodic stimulus is stud...
Population equations for infinitely large networks of spiking neurons have a long tradition in theor...
We consider a pair of stochastic integrate and fire neurons receiving correlated stochastic inputs. ...
International audienceBidimensional spiking models currently gather a lot of attention for their sim...
Population density techniques can be used to simulate the behavior of a population of neurons which ...
We consider a simple neural field model in which the state variable is dendritic voltage, and in whi...
En esta tesis se pretende estudiar el comportamiento de las soluciones de algunos de estos modelos ...
Introduction In this chapter we will discuss some practical and technical aspects of numerical meth...
Nonlinear Noisy Leaky Integrate and Fire (NNLIF) models for neurons networks can be written as Fokke...
The network of noisy leaky integrate and fire (NNLIF) model is one of the simplest self-contained me...
Recent work has examined the estimation of models of stimulus-driven neural activity in which a line...
AbstractIn this paper, we describe a numerical approach based on finite difference method to solve a...
To describe the collective behavior of large ensembles of neurons in neuronal network, a kinetic the...
The integrate-and-fire neuron with exponential postsynaptic potentials is a frequently employed mode...
Providing an analytical treatment to the stochastic feature of neu-rons' dynamics is one of the curr...
The leaky integrate-and-fire model for neuronal spiking events driven by a periodic stimulus is stud...
Population equations for infinitely large networks of spiking neurons have a long tradition in theor...
We consider a pair of stochastic integrate and fire neurons receiving correlated stochastic inputs. ...
International audienceBidimensional spiking models currently gather a lot of attention for their sim...
Population density techniques can be used to simulate the behavior of a population of neurons which ...
We consider a simple neural field model in which the state variable is dendritic voltage, and in whi...
En esta tesis se pretende estudiar el comportamiento de las soluciones de algunos de estos modelos ...