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Titlebook: Computational Hemodynamics – Theory, Modelling and Applications; Jiyuan Tu,Kiao Inthavong,Kelvin Kian Loong Wong Book 2015 Springer Scienc

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https://doi.org/10.1007/978-94-017-9594-4biofluids; blood flow; cardiovascular; computational fluid dynamics; modelling
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Generation of Computational Mesh for Haemodynamics Analysis,quations described in Chap. 5 are applied onto each cell, or finite element. These discrete equations, which calculate the changes or interpolations between cells are solved to yield the corresponding . values of the flow and field variables such as the velocity, pressure, temperature, and deformation.
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Stochastic Modelling in Production Planningportance. Due to the aging population and epidemic situation of obesity, the increase in incidence of heart diseases spurs forth the market for therapeutic systems that are computationally based and dedicated to the treatment of cardiovascular diseases. The shift in computing and flow visualisation
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https://doi.org/10.1007/978-3-642-11257-7and surface reconstruction. The development of a model first begins with medical imaging of a human subject which can be obtained from various sources, yet all provide essentially similar information. This includes a 3D matrix (or series of 2D matrices) of volume elements (voxels), in which tissues
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https://doi.org/10.1007/978-3-642-11257-7 derive from classical fluid dynamics however closer inspection of the dynamic nature of blood reveals its complex nature. It is a liquid tissue that under fluid motion necessitates principles of modern fluid dynamics such as rheology and fluid structure interactions to describe its flow behaviour.
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