Image Based Computational And Experimental Biomedical Flows


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Image-Based Computational and Experimental Biomedical Flows


Image-Based Computational and Experimental Biomedical Flows

Author: Huidan (Whitney) Yu

language: en

Publisher:

Release Date: 2024-11-19


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This reprint aims to engage readers with the latest advancements in computational modeling and experimental measurement for quantifying hemodynamics in human vascular systems, derived from medical imaging data. The key topics include patient-specific blood flow modeling in arteries, intracranial aneurysms, and coronary stents. Cutting-edge techniques such as computational fluid dynamics (CFD), the lattice Boltzmann method, and innovative experimental setups such as mock circulation loops are highlighted, providing valuable insights into enhancing diagnostic accuracy and advancing personalized treatment strategies for cardiovascular diseases. A significant portion of this Special Issue is devoted to aneurysm studies, examining flow behaviors, wall stresses, and the impact of flow diverters on patient outcomes. Additionally, the reprint addresses cardiac function, myocardial ischemia, and coronary interventions, offering notable advancements in both computational modeling and experimental validation. Together, the research presented in this collection represents a major step forward in cardiovascular disease management, driven by precise simulations and patient-specific approaches.

Image-Based Computational Modeling of the Human Circulatory and Pulmonary Systems


Image-Based Computational Modeling of the Human Circulatory and Pulmonary Systems

Author: Krishnan B. Chandran

language: en

Publisher: Springer Science & Business Media

Release Date: 2010-11-18


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Image-Based Computational Modeling of the Human Circulatory and Pulmonary Systems provides an overview of the current modeling methods and applications enhancing interventional treatments and computer-aided surgery. A detailed description of the techniques behind image acquisition, processing and three-dimensional reconstruction are included. Techniques for the computational simulation of solid and fluid mechanics and structure interaction are also discussed, in addition to various cardiovascular and pulmonary applications. Engineers and researchers involved with image processing and computational modeling of human organ systems will find this a valuable reference.