Accurate values for the six cardiac conductivities of the bidomain model are crucial for meaningful electrophysiological simulations of cardiac tissue and are yet to be achieved. A two-stage optimisation process is used to retrieve the cardiac conductivities from cardiac potentials measured on a multi-electrode array—the first stage simultaneously fits all six conductivities, and the second stage fits a subset of the conductivities (intracellular conductivities), while holding the remainder of the conductivities (extracellular conductivities) constant. Previous studies have shown that the intracellular conductivities are retrieved to a lesser degree of accuracy than extracellular conductivities. This study tests the proposition that there e...
Computational cardiac modelling has made incredible strides over the past 40 years toward becoming a...
Background and objective: In silico electrophysiological models are generally validated by comparing...
When modelling tissue-level cardiac electrophysiology, a continuum approximation to the discrete cel...
The bidomain model is often used to simulate the electrical activity in cardiac tissue. It has appli...
This study aims to understand the effect of variations in cardiac conductivity values on defibrillat...
Accurate determination of cardiac tissue parameters is essential in bidomain models that simulate th...
∗Author to whom correspondence should be addressed. 2 This paper describes a multi-electrode grid, w...
Cardiovascular disease is the primary cause of death globally. Although this group encompasses a het...
Impaired electrical conduction has been shown to play an important role in the development of heart ...
Reduced blood flow in the coronary arteries can lead to damaged heart tissue (myocardial ischaemia)....
Cardiac imaging is routinely used to evaluate cardiac tissue properties prior to therapy. By integra...
The action potential of a cardiac cell is made up of a complex balance of ionic currents which flow ...
In standard models of cardiac electrophysiology, including the bidomain and monodomain models, local...
Computational cardiac modelling has made incredible strides over the past 40 years toward becoming a...
Background and objective: In silico electrophysiological models are generally validated by comparing...
When modelling tissue-level cardiac electrophysiology, a continuum approximation to the discrete cel...
The bidomain model is often used to simulate the electrical activity in cardiac tissue. It has appli...
This study aims to understand the effect of variations in cardiac conductivity values on defibrillat...
Accurate determination of cardiac tissue parameters is essential in bidomain models that simulate th...
∗Author to whom correspondence should be addressed. 2 This paper describes a multi-electrode grid, w...
Cardiovascular disease is the primary cause of death globally. Although this group encompasses a het...
Impaired electrical conduction has been shown to play an important role in the development of heart ...
Reduced blood flow in the coronary arteries can lead to damaged heart tissue (myocardial ischaemia)....
Cardiac imaging is routinely used to evaluate cardiac tissue properties prior to therapy. By integra...
The action potential of a cardiac cell is made up of a complex balance of ionic currents which flow ...
In standard models of cardiac electrophysiology, including the bidomain and monodomain models, local...
Computational cardiac modelling has made incredible strides over the past 40 years toward becoming a...
Background and objective: In silico electrophysiological models are generally validated by comparing...
When modelling tissue-level cardiac electrophysiology, a continuum approximation to the discrete cel...