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Vascular Biomechanics Concepts Models And Applications T Christian Gasser

  • SKU: BELL-38411954
Vascular Biomechanics Concepts Models And Applications T Christian Gasser
$ 31.00 $ 45.00 (-31%)

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Vascular Biomechanics Concepts Models And Applications T Christian Gasser instant download after payment.

Publisher: Springer
File Extension: PDF
File size: 22.24 MB
Pages: 685
Author: T Christian Gasser
ISBN: 9783030709655, 3030709655
Language: English
Year: 2021

Product desciption

Vascular Biomechanics Concepts Models And Applications T Christian Gasser by T Christian Gasser 9783030709655, 3030709655 instant download after payment.

This textbook serves as a modern introduction to vascular biomechanics and provides the comprehensive overview of the entire vascular system that is needed to run successful vascular biomechanics simulations. It aims to provide the reader with a holistic analysis of the vascular system towards its biomechanical description and includes numerous fully through-calculated examples. Various topics covered include vascular system descriptions, vascular exchange, blood vessel mechanics, vessel tissue characterization, blood flow mechanics, and vascular tissue growth and remodeling. This textbook is ideally suited for students and researchers studying and working in classical and computational vascular biomechanics. The book could also be of interest to developers of vascular devices and experts working with the regulatory approval of biomedical simulations. Follows the principle of “learning by doing” and provides numerous fully through-calculated examples for active learning, immediate recall, and self-examination; Provides a holistic understanding of vascular functioning and the integration of information from different disciplines to enable students to use sophisticated numerical methods to simulate the response of the vascular system; Includes several case studies that integrate the presented material. Case studies address problems, such as the biomechanical rupture risk assessment of Abdominal Aortic Aneurysms, Finite Element analysis of structural and blood flow problems, the computation of wall stress and wall shear stress in the aorta.

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