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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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Flow within the left ventricular cavity: relative significance of various hemodynamic effects analytical modeling of the left ventricle as to the exact matching boundary conditions for the elastic-flow problems. These deviations are characterised according to the various events occurring during the cardiac cycle.
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A method for calculating time-dependent epicardial coronary blood flowmatic investigation of the dependence of coronary flow on various parameters, e.g. peripheral resistance, wall properties, branching pattern, etc. Reasonable comparison between calculations and earlier experiments in horses has been obtained.
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Interaction of modern technology and clinical practicederstanding of the physiological processes, deeper understanding of the pathophysiology of diseases, better diagnostic techniques and better solutions for prevention and treatment of diseases. Analytical approaches, new designs and techniques for quantitative measurements of physiological phenomena
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Some physiological aspects in the development of cardiac modelsld be guided by the desired complexity of the model and the phenomena to be described. The physiological laws which are required for a complete description of the mechanical, energetic and perfusion aspects of the cardiac cycle are presented and discussed. The complexities involved in going from glo
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The role of mathematical models in an assessment of myocardial functionoying the theory of elasticity, these models demonstrate that; (a) in the absence of segmental disease, diastolic P-V and stiffness-stress relations are little affected by LV shape, (b) intrinsic chamber stiffness is complexly related to myocardial elasticity, cavity size, volume/mass ratio and the
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Three-dimensional models of the heart: advantages and limitationss in the cardiac walls and valves, and the developed methods for inverse estimation of myocardial elasticity and contractility during cardiac cycles are especially examined to assess their advantages and limitations. Future finite element cardiac researches are projected and regional myocardial stud
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Models of ventricular dynamicsgnosis and treatment. In particular, work at Rutgers University, including studies of a variety of models, has been presented. These models include an hydraulic pressure source model, an ellipsoided shell model and a segmented shell model. Some of these models are interacted with each other to provi
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