When simulating the macroscopic current flowing through cardiac ion channels, two mathematical formalisms can be adopted: the Hodgkin–Huxley model (HHM) formulation, which describes openings and closings of channel ‘gates’, or the Markov model (MM) formulation, based on channel ‘state’ transitions. The latter was first used in 1995 to simulate the effects of mutations in ionic currents and, since then, its use has been extended to wild-type channels also. While the MMs better describe the actual behavior of ion channels, they are mathematically more complex than HHMs in terms of parameter estimation and identifiability and are computationally much more demanding, which can dramatically increase computational time in large-scale (e.g....
As cardiac cell models become increasingly complex, a correspondingly complex “genealogy” of inherit...
Abstract. This paper shows that, in the context of the Iyer et al. 67-variable cardiac myocycte mode...
As cardiac cell models become increasingly complex, a correspondingly complex ‘genealogy’ of inherit...
Markov models (MMs) represent a generalization of Hodgkin-Huxley models. They provide a versatile st...
The mathematical modeling of ion channel kinetics is an important tool for studying the electrophysi...
The development of modeling structures at the channel level that can integrate subcellular and cell ...
Markov models of ion channel dynamics have evolved as experimental advances have improved our unders...
Abstract. The cardiac cell is a complex biological system where various processes interact to genera...
A Summary: Mathematical models of the cardiac cell have started to include markovian representations...
Mathematical models for the action potential (AP) generation of the electrically excitable cells inc...
Computational models of ion channels represent the building blocks of conductance-based, biologicall...
Mathematical models of the cardiac cell have started to include markovian representations of the ion...
Long QT syndrome (LQTS) and Brugada syndrome (BrS) are inherited diseases predisposing to ventricu...
AbstractA Markov model of the cardiac sodium channel is presented. The model is similar to the CA1 h...
Sudden cardiac death due to the development of lethal arrhythmias is the dominant cause of mortality...
As cardiac cell models become increasingly complex, a correspondingly complex “genealogy” of inherit...
Abstract. This paper shows that, in the context of the Iyer et al. 67-variable cardiac myocycte mode...
As cardiac cell models become increasingly complex, a correspondingly complex ‘genealogy’ of inherit...
Markov models (MMs) represent a generalization of Hodgkin-Huxley models. They provide a versatile st...
The mathematical modeling of ion channel kinetics is an important tool for studying the electrophysi...
The development of modeling structures at the channel level that can integrate subcellular and cell ...
Markov models of ion channel dynamics have evolved as experimental advances have improved our unders...
Abstract. The cardiac cell is a complex biological system where various processes interact to genera...
A Summary: Mathematical models of the cardiac cell have started to include markovian representations...
Mathematical models for the action potential (AP) generation of the electrically excitable cells inc...
Computational models of ion channels represent the building blocks of conductance-based, biologicall...
Mathematical models of the cardiac cell have started to include markovian representations of the ion...
Long QT syndrome (LQTS) and Brugada syndrome (BrS) are inherited diseases predisposing to ventricu...
AbstractA Markov model of the cardiac sodium channel is presented. The model is similar to the CA1 h...
Sudden cardiac death due to the development of lethal arrhythmias is the dominant cause of mortality...
As cardiac cell models become increasingly complex, a correspondingly complex “genealogy” of inherit...
Abstract. This paper shows that, in the context of the Iyer et al. 67-variable cardiac myocycte mode...
As cardiac cell models become increasingly complex, a correspondingly complex ‘genealogy’ of inherit...