We considered a mathematical model to investigate changes in geometric and hemodynamic indices of left ventricular function in response to changes in myofiber contractility and myocardial tissue stiffness during rotary blood pump support. Left ventricular assistance with a rotary blood pump was simulated based on a previously published biventricular model of the assisted heart and circulation. The ventricles in this model were based on the one-fiber model that relates ventricular function to myofiber contractility and myocardial tissue stiffness. The simulations showed that indices of ventricular geometry, left ventricular shortening fraction, and ejection fraction had the same response to variations in myofiber contractility and myocardial...
A multiscale model of the cardiovascular system (CVS) in which the left ventricle (LV) of the heart ...
Computational models have become essential in predicting medical device efficacy prior to clinical s...
A new mathematical model of the cardiovascular system is proposed. The left ventricle is described b...
We considered a mathematical model to investigate changes in geometric and hemodynamic indices of le...
We considered a mathematical model to investigate changes in geometric and hemodynamic indices of le...
We considered a mathematical model to investigate changes in geometric and hemodynamic indices of le...
We considered a mathematical model to investigate changes in geometric and hemodynamic indices of le...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Myocardial infarction causes part of the left ventricle muscle to not receive adequate oxygen supply...
A multiscale model of the cardiovascular system (CVS) in which the left ventricle (LV) of the heart ...
A multiscale model of the cardiovascular system (CVS) in which the left ventricle (LV) of the heart ...
Computational models have become essential in predicting medical device efficacy prior to clinical s...
A new mathematical model of the cardiovascular system is proposed. The left ventricle is described b...
We considered a mathematical model to investigate changes in geometric and hemodynamic indices of le...
We considered a mathematical model to investigate changes in geometric and hemodynamic indices of le...
We considered a mathematical model to investigate changes in geometric and hemodynamic indices of le...
We considered a mathematical model to investigate changes in geometric and hemodynamic indices of le...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Introduction: Computational modeling of cardiac mechanics and hemodynamics in ischemic heart disease...
Myocardial infarction causes part of the left ventricle muscle to not receive adequate oxygen supply...
A multiscale model of the cardiovascular system (CVS) in which the left ventricle (LV) of the heart ...
A multiscale model of the cardiovascular system (CVS) in which the left ventricle (LV) of the heart ...
Computational models have become essential in predicting medical device efficacy prior to clinical s...
A new mathematical model of the cardiovascular system is proposed. The left ventricle is described b...