AbstractIn this paper, we describe a numerical approach based on finite difference method to solve a mathematical model arising from a model of neuronal variability. The mathematical modelling of the determination of the expected time for generation of action potentials in nerve cells by random synaptic inputs in dendrites includes a general boundary-value problem for singularly perturbed differential–difference equation with small shifts. In the numerical treatment for such type of boundary-value problems, first we use Taylor approximation to tackle the terms containing small shifts which converts it to a boundary-value problem for singularly perturbed differential equation. A rigorous analysis is carried out to obtain priori estimates on ...
In recent years deep brain stimulation (DBS) has seen success in curing adverseeffects of several di...
On the level of the spiking activity, the integrate-and-fire neuron is one of the most commonly used...
In this paper there is presented a model of electrical signal propagation in neurons. The behaviors...
AbstractIn this paper, we describe a numerical approach based on finite difference method to solve a...
AbstractThe objective of this paper is to present a numerical study of a class of boundary value pro...
AbstractIn this paper a finite difference method is presented for singularly perturbed differential-...
Introduction In this chapter we will discuss some practical and technical aspects of numerical meth...
We consider a simple neural field model in which the state variable is dendritic voltage, and in whi...
The pattern of nerve action potentials produced by unit permeability changes (quantal inputs) occurr...
In this work we consider the Hodgkin Huxley model in the form of a coupled system of one singularly ...
The underlying theme of this thesis is that neuronal morphology influences neuronal behaviour. Three...
One of the most notorious characteristics of neuronal electrical activity is its variability, whose...
We consider a noisy leaky integrate-and-fire (NLIF) neuron model. The resulting nonlinear time-depen...
A field of computational neuroscience develops mathematical models to describe neuronal systems. The...
The brain is a very complex system in the strong sense. It features a huge amount of individual cell...
In recent years deep brain stimulation (DBS) has seen success in curing adverseeffects of several di...
On the level of the spiking activity, the integrate-and-fire neuron is one of the most commonly used...
In this paper there is presented a model of electrical signal propagation in neurons. The behaviors...
AbstractIn this paper, we describe a numerical approach based on finite difference method to solve a...
AbstractThe objective of this paper is to present a numerical study of a class of boundary value pro...
AbstractIn this paper a finite difference method is presented for singularly perturbed differential-...
Introduction In this chapter we will discuss some practical and technical aspects of numerical meth...
We consider a simple neural field model in which the state variable is dendritic voltage, and in whi...
The pattern of nerve action potentials produced by unit permeability changes (quantal inputs) occurr...
In this work we consider the Hodgkin Huxley model in the form of a coupled system of one singularly ...
The underlying theme of this thesis is that neuronal morphology influences neuronal behaviour. Three...
One of the most notorious characteristics of neuronal electrical activity is its variability, whose...
We consider a noisy leaky integrate-and-fire (NLIF) neuron model. The resulting nonlinear time-depen...
A field of computational neuroscience develops mathematical models to describe neuronal systems. The...
The brain is a very complex system in the strong sense. It features a huge amount of individual cell...
In recent years deep brain stimulation (DBS) has seen success in curing adverseeffects of several di...
On the level of the spiking activity, the integrate-and-fire neuron is one of the most commonly used...
In this paper there is presented a model of electrical signal propagation in neurons. The behaviors...