Mathematical models of cardiac ion channels have been widely used to study and predict the behaviour of ion currents. Typically models are built using biophysically-based mechanistic principles such as Hodgkin-Huxley or Markov state transitions. These models provide an abstract description of the underlying conformational changes of the ion channels. However, due to the abstracted conformation states and assumptions for the rates of transition between them, there are differences between the models and reality—termed model discrepancy or misspecification. In this paper, we demonstrate the feasibility of using a mechanistically-inspired neural network differential equation model, a hybrid non-parametric model, to model ion channel kinetics. W...
The behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic in natur...
The behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic in natur...
Ion channel models are related to non-equilibrium statistical physics, fluid mechanics and electroma...
Mathematical models of cardiac ion channels have been widely used to study and predict the behaviour...
Ion channels are the building blocks of the information processing capability of neurons: any realis...
Markov models of ion channel dynamics have evolved as experimental advances have improved our unders...
Computational models of ion channels represent the building blocks of conductance-based, biologicall...
The mathematical modeling of ion channel kinetics is an important tool for studying the electrophysi...
AbstractThe behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic ...
Mathematical models of voltage-gated ion channels are used in basic research, industrial and clinica...
© 2019 Biophysical Society Mathematical models of ionic currents are used to study the electrophysio...
When simulating the macroscopic current flowing through cardiac ion channels, two mathematical form...
A standard membrane model, based on the continuous deterministic Hodgkin-Huxley equations, is compar...
AbstractA Markov model of the cardiac sodium channel is presented. The model is similar to the CA1 h...
Current mainstream neural computing is based on the electricity model proposed by Hodgkin and Huxley...
The behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic in natur...
The behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic in natur...
Ion channel models are related to non-equilibrium statistical physics, fluid mechanics and electroma...
Mathematical models of cardiac ion channels have been widely used to study and predict the behaviour...
Ion channels are the building blocks of the information processing capability of neurons: any realis...
Markov models of ion channel dynamics have evolved as experimental advances have improved our unders...
Computational models of ion channels represent the building blocks of conductance-based, biologicall...
The mathematical modeling of ion channel kinetics is an important tool for studying the electrophysi...
AbstractThe behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic ...
Mathematical models of voltage-gated ion channels are used in basic research, industrial and clinica...
© 2019 Biophysical Society Mathematical models of ionic currents are used to study the electrophysio...
When simulating the macroscopic current flowing through cardiac ion channels, two mathematical form...
A standard membrane model, based on the continuous deterministic Hodgkin-Huxley equations, is compar...
AbstractA Markov model of the cardiac sodium channel is presented. The model is similar to the CA1 h...
Current mainstream neural computing is based on the electricity model proposed by Hodgkin and Huxley...
The behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic in natur...
The behaviour of ion channels within cardiac and neuronal cells is intrinsically stochastic in natur...
Ion channel models are related to non-equilibrium statistical physics, fluid mechanics and electroma...