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Flow Dynamics and Tissue Engineering of Blood Vessels
von Arindam Bit, Jasjit S Suri
Verlag: Institute of Physics Publishing
Reihe: IOP Expanding Physics
Reihe: IPEM-IOP Series in Physics and Engineering in Medicine and Biology
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ISBN: 978-0-7503-2088-7
Erschienen am 20.11.2020
Sprache: Englisch
Umfang: 350 Seiten

Preis: 167,99 €

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Biografische Anmerkung
Inhaltsverzeichnis

Arindam Bit is an assistant professor in the Department of Biomedical Engineering at the National Institute of Technology, Raipur, India. He has more than 40 research publications in peer-reviewed journals and has served as a guest editor to the Journal of Healthcare Engineering and Frontiers of Medical Technologies.
Jasjit S Suri is an innovator, scientist, visionary, industrialist, and an internationally known world leader in biomedical engineering, and he has spent 25 years in the field of biomedical engineering and its management. He was awarded the Marquis Life Time Achievement Award, Fellow of AIMBE and Fellow of AIUM during his career. His main contributions are in artificial intelligence in healthcare, particularly in cardiovascular and neurological fields.



Preface
Acknowledgements
Editor biographies
Contributors
1 Anatomy and physiology of blood vessels
2 Neurovascular structure and function
3 3D bioprinting in tissue engineering and regenerative medicine
4 Numerical analysis of blood flow in vasculature structure
5 Numerical analysis of blood flow in a micro-capillary in in-vitro conditions
6 Experimental analysis of blood flow in vessels with pathological conditions
7 Biomaterials for a synthetic and tissue engineered blood vessel
8 3D printing technology, bioink, fabrication technique of blood vessel and system used for cell culturing
9 Blood flow evaluation in different circulatory systems
10 Fabrication techniques of artificial blood vessels
11 Bioreactors for tissue engineered blood vessels
12 An artificial blood vessel and its controlling aspects-I
13 Control aspects of the circulatory system
14 Control aspects of a heart assistive device


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