A multiscale model of the cardiovascular system (CVS) is presented. Hemodynamics is described by a lumped parameter model, while heart contraction is described at the cellular scale. An electrophysiological model and a mechanical model were coupled and adjusted so that the pressure and volume of both ventricles are linked to the force and length of a half-sarcomere. Particular attention was paid to the extremal values of the sarcomere length, which must keep physiological values. This model is able to reproduce healthy behavior, preload variations experiments, and ventricular failure
A new mathematical model of the cardiovascular system is proposed. The left ventricle is described b...
Heart failure is the leading cause of death in the world and yet the mechanisms of disease progressi...
We propose four novel mathematical models, describing the microscopic mechanisms of force generation...
A multiscale model of the cardiovascular system is presented. Hemodynamics is described by a lumped ...
Many cardiac diseases lead to heart failure (HF) causing increasing morbidity and mortality worldwid...
Mathematical modelling of the human heart and its function can expand our understanding of various c...
This work is focused on different aspects within the loop of multiscale modeling:On the cellular lev...
The human heart beats as a result of multiscale nonlinear dynamics coupling subcellular to whole org...
<div><p>Mathematical models of cardiac function at the cellular level include three major components...
Mathematical modelling of the human heart and its function can expand our understanding of various c...
Mathematical modeling of the human heart and its function can expand our understanding of various ca...
Cardiovascular diseases (CVDs) are the leading cause of death in the western world. With the current...
Finite element (FE) modeling is becoming a widely used approach for the investigation of global hear...
This report deals with modeling and simulation of human cardiovascular system. The purpose of modeli...
We propose four novel mathematical models, describing the microscopic mechanisms of force generation...
A new mathematical model of the cardiovascular system is proposed. The left ventricle is described b...
Heart failure is the leading cause of death in the world and yet the mechanisms of disease progressi...
We propose four novel mathematical models, describing the microscopic mechanisms of force generation...
A multiscale model of the cardiovascular system is presented. Hemodynamics is described by a lumped ...
Many cardiac diseases lead to heart failure (HF) causing increasing morbidity and mortality worldwid...
Mathematical modelling of the human heart and its function can expand our understanding of various c...
This work is focused on different aspects within the loop of multiscale modeling:On the cellular lev...
The human heart beats as a result of multiscale nonlinear dynamics coupling subcellular to whole org...
<div><p>Mathematical models of cardiac function at the cellular level include three major components...
Mathematical modelling of the human heart and its function can expand our understanding of various c...
Mathematical modeling of the human heart and its function can expand our understanding of various ca...
Cardiovascular diseases (CVDs) are the leading cause of death in the western world. With the current...
Finite element (FE) modeling is becoming a widely used approach for the investigation of global hear...
This report deals with modeling and simulation of human cardiovascular system. The purpose of modeli...
We propose four novel mathematical models, describing the microscopic mechanisms of force generation...
A new mathematical model of the cardiovascular system is proposed. The left ventricle is described b...
Heart failure is the leading cause of death in the world and yet the mechanisms of disease progressi...
We propose four novel mathematical models, describing the microscopic mechanisms of force generation...