Ion channels are pores formed by proteins and responsible for carrying ion fluxes through cellular membranes. The ion channels can assume conformational states thereby controlling ion flow. Physically, the conformational transitions from one state to another are associated with energy barriers between them and are dependent on stimulus, such as, electrical field, ligands, second messengers, etc. Several models have been proposed to describe the kinetics of ion channels. The classical Markovian model assumes that a future transition is independent of the time that the ion channel stayed in a previous state. Others models as the fractal and the chaotic assume that the rate of transitions between the states depend on the time that the ionic ch...
I present a stochastic model for intracellular Ca2 oscillations. The model starts from stochastic b...
The gating kinetics of single-ion channels are generally modeled in terms of Markov processes with r...
The behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic in natur...
Ion channels are pores formed by proteins and responsible for carrying ion fluxes through cellular m...
The kinetics of ion channels have been widely modeled as a Markov process. In these models it is ass...
The gating kinetics of single ion channels have been well described by models which assume that chan...
The gating of ion channels has been modeled by assuming that the transitions between open and closed...
Experiments show that synaptically isolated cortical neurons, stimulated with periodic extra-cellula...
I present a stochastic model for intracellular Ca(2+) oscillations. The model starts from stochastic...
This paper presents the mathematical framework of a cyclic model proposed for describing the transit...
AbstractI present a stochastic model for intracellular Ca2+ oscillations. The model starts from stoc...
The study of ionic channel activity plays an important role in biophysics and neuroscience[1,4,6,9]....
Abstract — Three reversible continuous time Markov chain models for ion channels based on the revers...
The intracellular release of calcium from the endoplasmic reticulum is controlled by ion channels. T...
AbstractWe have developed a method for rapidly computing gating currents from a multiparticle ion ch...
I present a stochastic model for intracellular Ca2 oscillations. The model starts from stochastic b...
The gating kinetics of single-ion channels are generally modeled in terms of Markov processes with r...
The behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic in natur...
Ion channels are pores formed by proteins and responsible for carrying ion fluxes through cellular m...
The kinetics of ion channels have been widely modeled as a Markov process. In these models it is ass...
The gating kinetics of single ion channels have been well described by models which assume that chan...
The gating of ion channels has been modeled by assuming that the transitions between open and closed...
Experiments show that synaptically isolated cortical neurons, stimulated with periodic extra-cellula...
I present a stochastic model for intracellular Ca(2+) oscillations. The model starts from stochastic...
This paper presents the mathematical framework of a cyclic model proposed for describing the transit...
AbstractI present a stochastic model for intracellular Ca2+ oscillations. The model starts from stoc...
The study of ionic channel activity plays an important role in biophysics and neuroscience[1,4,6,9]....
Abstract — Three reversible continuous time Markov chain models for ion channels based on the revers...
The intracellular release of calcium from the endoplasmic reticulum is controlled by ion channels. T...
AbstractWe have developed a method for rapidly computing gating currents from a multiparticle ion ch...
I present a stochastic model for intracellular Ca2 oscillations. The model starts from stochastic b...
The gating kinetics of single-ion channels are generally modeled in terms of Markov processes with r...
The behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic in natur...