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Discover the groundbreaking advancements in biofluids modeling and biological engineering with our latest publication. This book offers a unique blend of analytical and computational solutions to tackle complex biofluids problems, providing a comprehensive understanding of non-Newtonian flows in blood vessels, clogged arteries and veins, bifurcated arteries and veins, arbitrary stent geometries, tissue properties prediction, and porous media Darcy flow simulation in large-scale organ analysis.
This book introduces cutting-edge methods for biofluids modeling and biological engineering, rigorously treating the subjects with clear assumptions and solutions. It also delves into key supporting physics-based ideas, algorithmic details, and software design interfaces, aiming to provide anatomical and clinical information that physicians need.
This volume offers a self-contained exposition that includes all required biological concepts, plus the background preparation needed in fluid mechanics, basic differential equations, and modern numerical analysis. The presentation style will appeal to medical practitioners, researchers, biomedical engineers, and students interested in quantitative fluid flow modeling, as well as engineering students eager to learn about advances in a rapidly growing and changing biological science.
As such, the book represents must-reading suitable at the advanced undergraduate level, and motivated readers should be able to embark on related research following guided study. Dive into the future of biofluids modeling and biological engineering with this comprehensive guide.
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