The complex structure of cardiac tissue is considered to be one of the main determinants of an arrhythmogenic substrate. This study is aimed at developing the first mathematical model to describe the formation of cardiac tissue, using a joint in silico-in vitro approach. First, we performed experiments under various conditions to carefully characterise the morphology of cardiac tissue in a culture of neonatal rat ventricular cells. We considered two cell types, namely, cardiomyocytes and fibroblasts. Next, we proposed a mathematical model, based on the Glazier-Graner-Hogeweg model, which is widely used in tissue growth studies. The resultant tissue morphology was coupled to the detailed electrophysiological Korhonen-Majumder model for neona...
Cardiac tissue engineering has a potential to provide functional, synchronously contractile tissue c...
The goal of this thesis is to develop a biophysically and geometrically accurate discrete-cell compu...
Prediction of the safety of a novel pharmaceutical compound at the earliest possible stage of develo...
The complex structure of cardiac tissue is considered to be one of the main determinants of an arrhy...
Cardiac fibrosis occurs in many forms of heart disease and is considered to be one of the main arrhy...
Cardiac fibrosis occurs in many forms of heart disease and is considered to be one of the main arrhy...
Cardiac fibrosis occurs in many forms of heart disease and is considered to be one of the main arrhy...
<p>Engineered monolayers created by using microabrasion and micropatterning methods have provided a ...
<p>The role of cardiac tissue structure in both normal and abnormal impulse conduction has been exte...
Computational simulations of cardiac electrophysiology provide detailed information on the depolariz...
<div><p>To understand how excitable tissues give rise to arrhythmias, it is crucially necessary to u...
International audienceThe in vitro cultures of cardiac cells represent valuable models to study the ...
To understand how excitable tissues give rise to arrhythmias, it is crucially necessary to understan...
Today, computer models of the heart can simulate electrical propagation in complex and realistic ana...
The aim of this study was to establish the role played by anisotropic diffusion in (i) the number of...
Cardiac tissue engineering has a potential to provide functional, synchronously contractile tissue c...
The goal of this thesis is to develop a biophysically and geometrically accurate discrete-cell compu...
Prediction of the safety of a novel pharmaceutical compound at the earliest possible stage of develo...
The complex structure of cardiac tissue is considered to be one of the main determinants of an arrhy...
Cardiac fibrosis occurs in many forms of heart disease and is considered to be one of the main arrhy...
Cardiac fibrosis occurs in many forms of heart disease and is considered to be one of the main arrhy...
Cardiac fibrosis occurs in many forms of heart disease and is considered to be one of the main arrhy...
<p>Engineered monolayers created by using microabrasion and micropatterning methods have provided a ...
<p>The role of cardiac tissue structure in both normal and abnormal impulse conduction has been exte...
Computational simulations of cardiac electrophysiology provide detailed information on the depolariz...
<div><p>To understand how excitable tissues give rise to arrhythmias, it is crucially necessary to u...
International audienceThe in vitro cultures of cardiac cells represent valuable models to study the ...
To understand how excitable tissues give rise to arrhythmias, it is crucially necessary to understan...
Today, computer models of the heart can simulate electrical propagation in complex and realistic ana...
The aim of this study was to establish the role played by anisotropic diffusion in (i) the number of...
Cardiac tissue engineering has a potential to provide functional, synchronously contractile tissue c...
The goal of this thesis is to develop a biophysically and geometrically accurate discrete-cell compu...
Prediction of the safety of a novel pharmaceutical compound at the earliest possible stage of develo...