The human heart is an organ of high complexity and hence, very challenging to simulate. To calculate the force developed by the human heart and therefore the tension of the muscle fibers, accurate models are necessary. The force generated by the cardiac muscle has physiologically imposed limits and depends on various characteristics such as the length, strain and the contraction velocity of the cardiomyocytes. Another characteristic is the activation time of each cardiomyocyte, which is a wave and not a static value for all cardiomyocytes. To simulate a physiologically correct excitation, the functionality of the cardiac simulation framework CardioMechanics was extended to incorporate inhomogeneous activation times. The functionality was th...
In this Master thesis we aim at studying some physiological and computational aspects of the excitat...
Finite element (FE) modeling is becoming a widely used approach for the investigation of global hear...
In recent years, the use of mathematical and geometrical models has been enabling the simulation of ...
The human heart is an organ of high complexity and hence, very challenging to simulate. To calculate...
The human heart beats as a result of multiscale nonlinear dynamics coupling subcellular to whole org...
Contractility has become one of the main readouts in computational and experimental studies on cardi...
A simulation of the function of the human heart and heart muscle has been developed in the form of a...
AbstractWe develop a point model of the cardiac myofilament (MF) to simulate a wide variety of exper...
Experimental studies on isolated cardiomyocytes from different animal species and human hearts have ...
Through the creation of in silico and in vitro models of discontinuous electrical propagation,data c...
Mathematical modelling of the human heart and its function can expand our understanding of various c...
Experimental studies on isolated cardiomyocytes from different animal species and human hearts have ...
The thesis focuses on investigating cardiac mechanics on a microscale. We consider mechanical proces...
In this paper, we present a simulation study of transmural cellular electromechanical properties in ...
variations in repolarization currents in the heart can produce spatial gradients in action potential...
In this Master thesis we aim at studying some physiological and computational aspects of the excitat...
Finite element (FE) modeling is becoming a widely used approach for the investigation of global hear...
In recent years, the use of mathematical and geometrical models has been enabling the simulation of ...
The human heart is an organ of high complexity and hence, very challenging to simulate. To calculate...
The human heart beats as a result of multiscale nonlinear dynamics coupling subcellular to whole org...
Contractility has become one of the main readouts in computational and experimental studies on cardi...
A simulation of the function of the human heart and heart muscle has been developed in the form of a...
AbstractWe develop a point model of the cardiac myofilament (MF) to simulate a wide variety of exper...
Experimental studies on isolated cardiomyocytes from different animal species and human hearts have ...
Through the creation of in silico and in vitro models of discontinuous electrical propagation,data c...
Mathematical modelling of the human heart and its function can expand our understanding of various c...
Experimental studies on isolated cardiomyocytes from different animal species and human hearts have ...
The thesis focuses on investigating cardiac mechanics on a microscale. We consider mechanical proces...
In this paper, we present a simulation study of transmural cellular electromechanical properties in ...
variations in repolarization currents in the heart can produce spatial gradients in action potential...
In this Master thesis we aim at studying some physiological and computational aspects of the excitat...
Finite element (FE) modeling is becoming a widely used approach for the investigation of global hear...
In recent years, the use of mathematical and geometrical models has been enabling the simulation of ...