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ISBN: 9781441997586
The volumes in this authoritative series present a multidisciplinary approach to modeling and simulation of flows in the cardiovascular and ventilatory systems, especially multiscale mode… Mehr…
2011, ISBN: 9781441997586
eBooks, eBook Download (PDF), 2011, The volumes in this authoritative series present a multidisciplinary approach to modeling and simulation of flows in the cardiovascular and ventilatory… Mehr…
ISBN: 9781441997586
*Cell and Tissue Organization in the Circulatory and Ventilatory Systems* / pdf eBook für 96.49 € / Aus dem Bereich: eBooks, Sachthemen & Ratgeber, Technik Medien > Bücher nein eBook als … Mehr…
ISBN: 9781441997586
Cell and Tissue Organization in the Circulatory and Ventilatory Systems: ab 96.49 € eBooks > Sachthemen & Ratgeber > Technik Springer-Verlag GmbH eBook als pdf, Springer-Verlag GmbH
2011, ISBN: 9781441997586
eBooks, eBook Download (PDF), 2011, [PU: Springer New York], Springer New York, 2011
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Detailangaben zum Buch - Cell and Tissue Organization in the Circulatory and Ventilatory Systems
EAN (ISBN-13): 9781441997586
ISBN (ISBN-10): 144199758X
Erscheinungsjahr: 2011
Herausgeber: Springer New York
735 Seiten
Sprache: eng/Englisch
Buch in der Datenbank seit 2012-02-20T10:35:08+01:00 (Berlin)
Detailseite zuletzt geändert am 2023-10-01T18:44:39+02:00 (Berlin)
ISBN/EAN: 9781441997586
ISBN - alternative Schreibweisen:
1-4419-9758-X, 978-1-4419-9758-6
Alternative Schreibweisen und verwandte Suchbegriffe:
Autor des Buches: thiriet
Titel des Buches: systems cell, the cell, ventilator
Daten vom Verlag:
Autor/in: Marc Thiriet
Titel: Biomathematical and Biomechanical Modeling of the Circulatory and Ventilatory Systems; Cell and Tissue Organization in the Circulatory and Ventilatory Systems
Verlag: Springer; Springer US
736 Seiten
Erscheinungsjahr: 2011-09-08
New York; NY; US
Sprache: Englisch
96,29 € (DE)
99,00 € (AT)
118,00 CHF (CH)
Available
XII, 736 p.
EA; E107; eBook; Nonbooks, PBS / Biologie/Biochemie, Biophysik; Biophysik; Verstehen; blood flow prediction; cardiovascular systems modeling; cell cytoskeleton; cell environment; cell types systems; macroscopic blood flow behavior; modeling respiratory function; modeling simulation of flows; physiological flows; ventilatory systems modeling; Systems Biology; B; Biophysics; Biomedical Engineering and Bioengineering; Mathematical and Computational Biology; Computational and Systems Biology; Engineering Fluid Dynamics; Cardiology; Physics and Astronomy; Biomedizinische Technik; DV-gestützte Biologie/Bioinformatik; Maschinenbau: Strömungsmechanik; Kardiologie, Angiologie; BC
The volumes in this authoritative series present a multidisciplinary approach to modeling and simulation of flows in the cardiovascular and ventilatory systems, especially multiscale modeling and coupled simulations. The cardiovascular and respiratory systems are tightly coupled, as their primary function is to supply oxygen to and remove carbon dioxide from the body's cells. Because physiological conduits have deformable and reactive walls, macroscopic flow behavior and prediction must be coupled to nano- and microscopic events in a corrector scheme of regulated mechanisms. Therefore, investigation of flows of blood and air in physiological conduits requires an understanding of the biology, chemistry, and physics of these systems together with the mathematical tools to describe their functioning.
The present volume is devoted to cellular events that allow adaptation to environmental conditions, particularly mechanotransduction. It begins with cell organization anda survey of cell types in the vasculature and respiratory tract. It then addresses cell structure and functions, especially in interactions with adjoining cells and matrix.
References.- Notations: Aliases and Symbols.- Notations: Prefixes and Suffixes.- Biochemical, Medical and Physical Aliases.- Mathematical Symbols, Molecules, and Physical Quantities.- Index.
The volumes in this authoritative series present a multidisciplinary approach to modeling and simulation of flows in the cardiovascular and ventilatory systems, especially multiscale modeling and coupled simulations. The cardiovascular and respiratory systems are tightly coupled, as their primary function is to supply oxygen to and remove carbon dioxide from the body's cells. Because physiological conduits have deformable and reactive walls, macroscopic flow behavior and prediction must be coupled to nano- and microscopic events in a corrector scheme of regulated mechanisms. Therefore, investigation of flows of blood and air in physiological conduits requires an understanding of the biology, chemistry, and physics of these systems together with the mathematical tools to describe their functioning.
The present volume is devoted to cellular events that allow adaptation to environmental conditions, particularly mechanotransduction. It begins with cell organizationand a survey of cell types in the vasculature and respiratory tract. It then addresses cell structure and functions, especially in interactions with adjoining cells and matrix.
Describes cell types, functions, and fate in the regulated activities of the circulatory and respiratory systems Presents applications of mechanics and mathematics for an understanding and prediction of function in health and disease Integrates biology, chemistry, and physics for a multidisciplinary understanding of physiological flows
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