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Cardiovascular and Respiratory Bioengineering

Autor Nenad Filipovic
en Limba Engleză Paperback – 15 mai 2022
Cardiovascular and Respiratory Bioengineering focuses on computational tools and modeling techniques in cardiovascular and respiratory systems that help develop bioengineered solutions. The book demonstrates how these technologies can be utilized in order to tackle diseases and medical issues. It provides practical guidance on how a bioengineering or medical problem can be modeled, along with which computational models can be used. Topics include computer modeling of Purkinje fibers with different electrical potential applied, modeling of cardiomyopathies caused by sarcomeric gene mutations, altered sarcomere function, perturbations in intracellular ion homeostasis, impaired myocardial energetics at reduced costs, and more.
The book also discusses blood flow through deformable blood vessels in human aorta, abdominal aortic aneurysm, carotid artery, coronary artery and plaque formation, along with content on stent deployment modeling and stent design and optimization techniques.


  • Features practical applications of cardiovascular and respiratory technology to counteract diseases
  • Includes detailed steps for the modeling of cardiovascular and respiratory systems
  • Explores a range of different modeling methods, including computational modeling, predictive modeling and multi-scale modeling
  • Covers biological processes and biomechanics relevant to cardiovascular and respiratory bioengineering
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Specificații

ISBN-13: 9780128239568
ISBN-10: 0128239565
Pagini: 312
Dimensiuni: 191 x 235 x 24 mm
Greutate: 0.54 kg
Editura: ELSEVIER SCIENCE

Public țintă

Biomedical engineers and professionals working in the area of cardiovascular and respiratory bioengineering; computer scientists; postgraduate and PhD students in the field of bioengineering, as well as those involved in cardiovascular/respiratory diseases; researchers in the areas of biomechanics, biomedical engineering and medicine

Cuprins

1. Blood flow through arteries2. Computational modeling of plaque progression3. Optimization of stent deployment4. Predictive modelling of Abdominal Aorta Aneurism5. Computer models of Purkinje fibers network with different electrical potential6. Modeling of cardiomyopathies caused by sarcomeric gene mutations7. Design of inhalation drug therapy8. Particles deposition in the respiratory region of the lung9. Transport in the lung airways10. Distribution of inhaled drug particles11. Computational modelling of dry powder inhalers for pulmonary drug delivery