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A finite element study relating to the rapid filling phase of the human ventricles
D-E Bettendorff-Bakman1, P Schmid, P P Lunkenheimer
1Institute of Biomedical Engineering, University of Zurich and Swiss Federal Institute of Technology, Gloriastr. 35, CH-8092 Zürich, Switzerland. bakman@biomed.ee.ethz.ch
Abstract:
During the rapid diastolic filling phase at rest, the ventricles of the human heart double approximately in volume. In order to investigate whether the ventricular filling pressures measured under physiological conditions can give rise to such an extensive augmentation in ventricular volumes, a finite element model of the human right and left ventricles has been developed, taking into account the nonlinear mechanical behavior and effective compressibility of the myocardial tissue. The results were compared with the filling phase of the human left ventricle as extrapolated from measurements documented in the literature. We arrived at the conclusion that the ventricular pressures measured during the rapid filling phase cannot be the sole cause of the rise of the observed ventricular volumes. We rather advocate the assumption that further dilating mechanisms might be part of ventricular activity thus heralding a multiple function of the ventricular muscle body. A further result indicates that under normal conditions the influence of the viscoelasticity of the tissue should not be disregarded in ventricular mechanics.
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