Image-based computational modeling of the human circulatory and pulmonary systems : methods and applications
Author(s)
Bibliographic Information
Image-based computational modeling of the human circulatory and pulmonary systems : methods and applications
Springer, c2011
Available at 1 libraries
  Aomori
  Iwate
  Miyagi
  Akita
  Yamagata
  Fukushima
  Ibaraki
  Tochigi
  Gunma
  Saitama
  Chiba
  Tokyo
  Kanagawa
  Niigata
  Toyama
  Ishikawa
  Fukui
  Yamanashi
  Nagano
  Gifu
  Shizuoka
  Aichi
  Mie
  Shiga
  Kyoto
  Osaka
  Hyogo
  Nara
  Wakayama
  Tottori
  Shimane
  Okayama
  Hiroshima
  Yamaguchi
  Tokushima
  Kagawa
  Ehime
  Kochi
  Fukuoka
  Saga
  Nagasaki
  Kumamoto
  Oita
  Miyazaki
  Kagoshima
  Okinawa
  Korea
  China
  Thailand
  United Kingdom
  Germany
  Switzerland
  France
  Belgium
  Netherlands
  Sweden
  Norway
  United States of America
Note
Includes bibliographical references and index
Description and Table of Contents
Description
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.
Table of Contents
Introduction.- Image Acquisition.- Image Processing and 3D Reconstruction.- Computational Techniques for Biological Fluids.- Computational Techniques for Biological Soft Tissue.- Fluid-Structure Interaction Algorithm Development.- Arterial Circulation and Disease Processes.- Biomechanics of AAA, Cerebral Aneurysms, and Vascular Grafts.- Fluid Mechanics for Interventions and Surgical Planning.- Computational Analysis of Lung Tissue and Airway Flow Dynamics.- Mechanical Valve Fluid Dynamics and Thrombus Initiation.- Aortic, Mitral, and Biological Prosthetic Valve Dynamics.- Micro-Scale Analysis of Blood Particles and Use of Multi-Scale Models.- Multi-Scale Modeling of Biological Soft Tissue.
by "Nielsen BookData"