
Biological Flow in Large Vessels
Dialog Between Numerical Modeling and In Vitro/In Vivo Experiments
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Biological Flow in Large Vessels
Dialog Between Numerical Modeling and In Vitro/In Vivo Experiments
About this book
This book examines recent methods used for blood flow modeling and associated in vivo experiments, conducted using experimental data from medical imaging. Different strategies are proposed, from small-scale models to complex 3D modeling using modern computational codes. The geometries are wide-ranging and deal with the narrowing and widening of sections (stenoses, aneurysms), bifurcations, geometries associated with prosthetic elements, and even cases of vessels with smaller dimensions than those of the blood cells circulating in them.
Biological Flow in Large Vessels provides answers to the question of how medical and biomechanical knowledge can be combined to address clinical problems. It offers guidance for further development of numerical models, as well as experimental protocols applied to clinical research, with tools that can be used in real-time and at the patient's bedside, for decision-making support, predicting the progression of pathologies, and planning personalized interventions.
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Information
Table of contents
- Cover
- Table of Contents
- Title Page
- Copyright
- Preface
- 1 Hemodynamics and Hemorheology
- 2 CFD Analyses of Different Parameters Influencing the Hemodynamic Outcomes of Complex Aortic Endovascular Repair
- 3 Vascular Geometric Singularities, Hemodynamic Markers and Pathologies
- 4 Role of Arterial Blood Flow in Atherosclerosis
- 5 Patient-specific Hemodynamic Simulations: Model Parameterization from Clinical Data to Enable Intervention Planning
- 6 Reduced-order Models of Blood Flow: Application to Arterial Stenoses
- 7 YALES2BIO: A General Purpose Solver Dedicated to Blood Flows
- 8 Capsule Relaxation Under Flow in a Tube
- Conclusion: Words and Things
- List of Authors
- Index
- End User License Agreement