Markov models (MMs) represent a generalization of Hodgkin-Huxley models. They provide a versatile structure for modelling single channel data, gating currents, state-dependent drug interaction data, exchanger and pump dynamics, etc. This paper uses examples from cardiac electrophysiology to discuss aspects related to parameter estimation. (i) Parameter unidentifiability (found in 9 out of 13 of the considered models) results in an inability to determine the correct layout of a model, contradicting the idea that model structure and parameters provide insights into underlying molecular processes. (ii) The information content of experimental voltage step clamp data is discussed, and a short but sufficient protocol for parameter estimation is p...
Computational models of ion channels represent the building blocks of conductance-based, biologicall...
The most cell electrophysiological models are not able to predict the channel state, which it can be...
The behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic in natur...
Markov models of ion channel dynamics have evolved as experimental advances have improved our unders...
In this work, we propose a methodology based on Monte Carlo Markov chains to explore the parameter s...
When simulating the macroscopic current flowing through cardiac ion channels, two mathematical form...
The mathematical modeling of ion channel kinetics is an important tool for studying the electrophysi...
Mathematical models of the cardiac cell have started to include markovian representations of the ion...
The development of modeling structures at the channel level that can integrate subcellular and cell ...
This paper extends Hodgson's methods to the more familiar and physically realistic class of hid...
A Summary: Mathematical models of the cardiac cell have started to include markovian representations...
This thesis studies numerical methods for integrating the master equations describing Markov chain m...
Ion channels are proteins that are located in the membranes of cells and are capable of conducting i...
Flow of ions through voltage gated channels can be represented theoretically using stochastic differ...
Sudden cardiac death due to the development of lethal arrhythmias is the dominant cause of mortality...
Computational models of ion channels represent the building blocks of conductance-based, biologicall...
The most cell electrophysiological models are not able to predict the channel state, which it can be...
The behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic in natur...
Markov models of ion channel dynamics have evolved as experimental advances have improved our unders...
In this work, we propose a methodology based on Monte Carlo Markov chains to explore the parameter s...
When simulating the macroscopic current flowing through cardiac ion channels, two mathematical form...
The mathematical modeling of ion channel kinetics is an important tool for studying the electrophysi...
Mathematical models of the cardiac cell have started to include markovian representations of the ion...
The development of modeling structures at the channel level that can integrate subcellular and cell ...
This paper extends Hodgson's methods to the more familiar and physically realistic class of hid...
A Summary: Mathematical models of the cardiac cell have started to include markovian representations...
This thesis studies numerical methods for integrating the master equations describing Markov chain m...
Ion channels are proteins that are located in the membranes of cells and are capable of conducting i...
Flow of ions through voltage gated channels can be represented theoretically using stochastic differ...
Sudden cardiac death due to the development of lethal arrhythmias is the dominant cause of mortality...
Computational models of ion channels represent the building blocks of conductance-based, biologicall...
The most cell electrophysiological models are not able to predict the channel state, which it can be...
The behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic in natur...