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Titlebook: Simulation and Imaging of the Cardiac System; State of the Heart Samuel Sideman (R.J. Matas/Winnipeg Professor of B Book 1985 Martinus Nijh

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Material and structural limitations in a 3-D finite element model of the left ventricled in a finite element analysis of the ventricle. These factors constitute the three-dimensional geometry of the LV and its kinematical boundary conditions; the extent of the deformation the ventricle undergoes; the pressure distribution on the endocardium; the myocardial constitutive law as well as
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Quantitative 3-D imaging of the heart: myocardium and chamberserally a single bolus injection of approximately 2 ml/kg roentgen contrast agent in the right atrium will provide information of the chamber volumes and myocardial mass within 5% of the actual value. The detailed shape of the chambers and myocardium facilitates evaluation of heart deformed by comple
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A data acquisition and processing system for ultrasound- and video images and the reconstruction of (1) the class of scenes is a priori restricted to scenes and regions which are relevant for analyzing and (2) each image is available in a form suitable for processing. To ease clinical application we have developed the Modular Multi Mode-Microprocessor System (M5PS), an image acquisition and proce
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The cardiac and vascular interactions in the regulation of cardiac outputrs may be called coupling factors, because their magnitudes are determined by the characteristics of both the cardiac and vascular components of the cardiovascular system. The nature of the coupling between these two components can be analyzed by means of two characteristic curves. The first curve,
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Flow within the left ventricular cavity: relative significance of various hemodynamic effectsthe purpose of diagnosis, prognosis and physiological understanding. Numerical computations requires different schemes for the intraventricular flow-pressure solution and for the myocardial contraction-expansion solution. The matching boundary conditions for these two solutions is the ventricular pr
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A method for calculating time-dependent epicardial coronary blood flowy vasculature together with the one-dimensional, unsteady equations for flow with friction. The epicardial coronary geometry includes the left main bifurcation and a selected number of smaller branches, each of which terminates in a resistance which is related to intramyocardial compression through
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