Understanding the roles of ion currents is crucial to predict the action of pharmaceuticals and mutations in different scenarios, and thereby to guide clinical interventions in the heart, brain and other electrophysiological systems. Our ability to predict how ion currents contribute to cellular electrophysiology is in turn critically dependent on our characterisation of ion channel kinetics - the voltage-dependent rates of transition between open, closed and inactivated channel states. We present a new method for rapidly exploring and characterising ion channel kinetics, applying it to the hERG potassium channel as an example, with the aim of generating a quantitatively predictive representation of the ion current. We fit a mathematical mo...
The Hodgkin-Huxley formalism for quantitative characterization of ionic channels is widely used in c...
Quantitative ion channel model evaluation requires the estimation of voltage dependent rate constant...
AbstractWe propose what to our knowledge is a new technique for modeling the kinetics of voltage-gat...
Understanding the roles of ion currents is crucial to predict the action of pharmaceuticals and muta...
Understanding the roles of ion currents is crucial to predict the action of pharmaceuticals and muta...
International audienceUnderstanding the roles of ion currents is crucial to predict the action of ph...
Understanding the roles of ion currents is crucial to predict the action of pharmaceuticals and muta...
Understanding the roles of ion currents is crucial to predict the action of pharmaceuticals and muta...
Mathematical models of ionic currents are used to study the electrophysiology of the heart, brain, g...
Predicting how pharmaceuticals may affect heart rhythm is a crucial step in drug development and req...
Predicting how pharmaceuticals may affect heart rhythm is a crucial step in drug-development, and re...
Predicting how pharmaceuticals may affect heart rhythm is a crucial step in drug-development, and re...
© 2019 Biophysical Society Mathematical models of ionic currents are used to study the electrophysio...
The mathematical modeling of ion channel kinetics is an important tool for studying the electrophysi...
The Hodgkin-Huxley formalism for quantitative characterization of ionic channels is widely used in c...
The Hodgkin-Huxley formalism for quantitative characterization of ionic channels is widely used in c...
Quantitative ion channel model evaluation requires the estimation of voltage dependent rate constant...
AbstractWe propose what to our knowledge is a new technique for modeling the kinetics of voltage-gat...
Understanding the roles of ion currents is crucial to predict the action of pharmaceuticals and muta...
Understanding the roles of ion currents is crucial to predict the action of pharmaceuticals and muta...
International audienceUnderstanding the roles of ion currents is crucial to predict the action of ph...
Understanding the roles of ion currents is crucial to predict the action of pharmaceuticals and muta...
Understanding the roles of ion currents is crucial to predict the action of pharmaceuticals and muta...
Mathematical models of ionic currents are used to study the electrophysiology of the heart, brain, g...
Predicting how pharmaceuticals may affect heart rhythm is a crucial step in drug development and req...
Predicting how pharmaceuticals may affect heart rhythm is a crucial step in drug-development, and re...
Predicting how pharmaceuticals may affect heart rhythm is a crucial step in drug-development, and re...
© 2019 Biophysical Society Mathematical models of ionic currents are used to study the electrophysio...
The mathematical modeling of ion channel kinetics is an important tool for studying the electrophysi...
The Hodgkin-Huxley formalism for quantitative characterization of ionic channels is widely used in c...
The Hodgkin-Huxley formalism for quantitative characterization of ionic channels is widely used in c...
Quantitative ion channel model evaluation requires the estimation of voltage dependent rate constant...
AbstractWe propose what to our knowledge is a new technique for modeling the kinetics of voltage-gat...