In this work, we propose a methodology based on Monte Carlo Markov chains to explore the parameter space of kinetic models for ion channels. The methodology allows the detection of potential parameter sets of a model that are compatible with experimentally obtained whole-cell currents, which could remain hidden when methods focus on obtaining the parameters that provide the best fit. To show its implementation and utility, we considered a four-state kinetic model proposed in the literature to describe the activation of the voltage-gated proton channel (Hv1), Biophysical Journal, 2014, 107, 1564. In that work, a set of values for the rate transitions that describe the channel kinetics at different intracellular H+ concentration (pHi) were ob...
Quantitative ion channel model evaluation requires the estimation of voltage dependent rate constant...
AbstractFor single channel recordings, the maximum likelihood estimation (MLE) of kinetic rates and ...
Ion channels are membrane proteins that open and close at random and play a vital role in the electr...
Markov models (MMs) represent a generalization of Hodgkin-Huxley models. They provide a versatile st...
Markov models of ion channel dynamics have evolved as experimental advances have improved our unders...
The mathematical modeling of ion channel kinetics is an important tool for studying the electrophysi...
Computational models of ion channels represent the building blocks of conductance-based, biologicall...
We consider the Bayesian analysis of mechanistic models describing the dynamic behavior of ligand-ga...
This paper extends Hodgson's methods to the more familiar and physically realistic class of hid...
AbstractWe describe a maximum likelihood method for direct estimation of rate constants from macrosc...
Ion channels are proteins that are located in the membranes of cells and are capable of conducting i...
Abstract — Three reversible continuous time Markov chain models for ion channels based on the revers...
The process underlying the opening and closing of ionic channels in biological or artificial lipid m...
Mathematical models of the cardiac cell have started to include markovian representations of the ion...
Many ion channels spontaneously switch between different levels of activity. Although this behaviour...
Quantitative ion channel model evaluation requires the estimation of voltage dependent rate constant...
AbstractFor single channel recordings, the maximum likelihood estimation (MLE) of kinetic rates and ...
Ion channels are membrane proteins that open and close at random and play a vital role in the electr...
Markov models (MMs) represent a generalization of Hodgkin-Huxley models. They provide a versatile st...
Markov models of ion channel dynamics have evolved as experimental advances have improved our unders...
The mathematical modeling of ion channel kinetics is an important tool for studying the electrophysi...
Computational models of ion channels represent the building blocks of conductance-based, biologicall...
We consider the Bayesian analysis of mechanistic models describing the dynamic behavior of ligand-ga...
This paper extends Hodgson's methods to the more familiar and physically realistic class of hid...
AbstractWe describe a maximum likelihood method for direct estimation of rate constants from macrosc...
Ion channels are proteins that are located in the membranes of cells and are capable of conducting i...
Abstract — Three reversible continuous time Markov chain models for ion channels based on the revers...
The process underlying the opening and closing of ionic channels in biological or artificial lipid m...
Mathematical models of the cardiac cell have started to include markovian representations of the ion...
Many ion channels spontaneously switch between different levels of activity. Although this behaviour...
Quantitative ion channel model evaluation requires the estimation of voltage dependent rate constant...
AbstractFor single channel recordings, the maximum likelihood estimation (MLE) of kinetic rates and ...
Ion channels are membrane proteins that open and close at random and play a vital role in the electr...