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  • 1
    Online-Ressource
    Online-Ressource
    Cambridge :Cambridge University Press,
    UID:
    almahu_9948234286202882
    Umfang: 1 online resource (xx, 220 pages) : , digital, PDF file(s).
    ISBN: 9780511711961 (ebook)
    Inhalt: Mathematical modelling of physiological systems promises to advance our understanding of complex biological phenomena and pathophysiology of diseases. In this book, the authors adopt a mathematical approach to characterize and explain the functioning of the gastrointestinal system. Using the mathematical foundations of thin shell theory, the authors patiently and comprehensively guide the reader through the fundamental theoretical concepts, via step-by-step derivations and mathematical exercises, from basic theory to complex physiological models. Applications to nonlinear problems related to the biomechanics of abdominal viscera and the theoretical limitations are discussed. Special attention is given to questions of complex geometry of organs, effects of boundary conditions on pellet propulsion, as well as to clinical conditions, e.g. functional dyspepsia, intestinal dysrhythmias and the effect of drugs to treat motility disorders. With end of chapter problems, this book is ideal for bioengineers and applied mathematicians.
    Anmerkung: Title from publisher's bibliographic system (viewed on 05 Oct 2015). , 1. Geometry of the surface -- 2. Parameterization of shells of complex geometry -- 3. Nonlinear theory of thin shells -- 4. Continuum model of the biological tissue -- 5. Boundary conditions -- 6. Soft shells -- 7. Biomechanics of the stomach -- 8. Biomechanics of the small intestine -- 9. Biomechanics of the large intestine -- 10. Biological applications of mathematical modeling; Index.
    Weitere Ausg.: Print version: ISBN 9780521116626
    Sprache: Englisch
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
    BibTip Andere fanden auch interessant ...
  • 2
    Online-Ressource
    Online-Ressource
    Cambridge : Cambridge University Press
    UID:
    gbv_883481294
    Umfang: Online-Ressource (1 online resource (240 p.)) , digital, PDF file(s).
    Ausgabe: Online-Ausg.
    ISBN: 9780511711961
    Inhalt: Mathematical modelling of physiological systems promises to advance our understanding of complex biological phenomena and pathophysiology of diseases. In this book, the authors adopt a mathematical approach to characterize and explain the functioning of the gastrointestinal system. Using the mathematical foundations of thin shell theory, the authors patiently and comprehensively guide the reader through the fundamental theoretical concepts, via step-by-step derivations and mathematical exercises, from basic theory to complex physiological models. Applications to nonlinear problems related to the biomechanics of abdominal viscera and the theoretical limitations are discussed. Special attention is given to questions of complex geometry of organs, effects of boundary conditions on pellet propulsion, as well as to clinical conditions, e.g. functional dyspepsia, intestinal dysrhythmias and the effect of drugs to treat motility disorders. With end of chapter problems, this book is ideal for bioengineers and applied mathematicians
    Inhalt: 1. Geometry of the surface -- 2. Parameterization of shells of complex geometry -- 3. Nonlinear theory of thin shells -- 4. Continuum model of the biological tissue -- 5. Boundary conditions -- 6. Soft shells -- 7. Biomechanics of the stomach -- 8. Biomechanics of the small intestine -- 9. Biomechanics of the large intestine -- 10. Biological applications of mathematical modeling; Index
    Anmerkung: Title from publisher's bibliographic system (viewed on 05 Oct 2015)
    Weitere Ausg.: ISBN 9780521116626
    Weitere Ausg.: Druckausg. Miftahof, Roustem Mathematical foundations and biomechanics of the digestive system Cambridge [u.a.] : Cambridge Univ. Press, 2010 ISBN 0521116627
    Weitere Ausg.: ISBN 9780521116626
    Weitere Ausg.: Print version ISBN 9780521116626
    Sprache: Englisch
    Fachgebiete: Biologie
    RVK:
    Schlagwort(e): Verdauungskanal ; Mathematisches Modell ; Gastrointestinale Krankheit ; Mathematisches Modell
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
    BibTip Andere fanden auch interessant ...
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