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ISBN: 9783642273674
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ISBN: 9783642273674
*Mathematical Modeling in Renal Physiology* / pdf eBook für 50.49 € / Aus dem Bereich: eBooks, Fachthemen & Wissenschaft, Mathematik Medien > Bücher nein eBook als pdf eBooks > Fachthemen… More...
ISBN: 9783642273674
Mathematical Modeling in Renal Physiology: ab 50.49 € eBooks > Fachthemen & Wissenschaft > Mathematik Springer-Verlag GmbH eBook als pdf, Springer-Verlag GmbH
2014, ISBN: 9783642273674
eBooks, eBook Download (PDF), Auflage, [PU: Springer-Verlag], Seiten: 221, Springer-Verlag, 2014
2014, ISBN: 9783642273674
eBooks, eBook Download (PDF), 2014, [PU: Springer Berlin], Seiten: 221, Springer Berlin, 2014
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Details of the book - Mathematical Modeling in Renal Physiology
EAN (ISBN-13): 9783642273674
ISBN (ISBN-10): 364227367X
Publishing year: 2014
Publisher: Springer-Verlag GmbH
Book in our database since 2014-10-02T12:23:02+01:00 (London)
Detail page last modified on 2023-12-12T15:54:33+00:00 (London)
ISBN/EAN: 9783642273674
ISBN - alternate spelling:
3-642-27367-X, 978-3-642-27367-4
Alternate spelling and related search-keywords:
Book author: aurelie, edwards, ani, aurel, anita, layton
Information from Publisher
Author: Anita T. Layton; Aurelie Edwards
Title: Lecture Notes on Mathematical Modelling in the Life Sciences; Mathematical Modeling in Renal Physiology
Publisher: Springer; Springer Berlin
221 Pages
Publishing year: 2014-08-06
Berlin; Heidelberg; DE
Language: English
50,28 € (DE)
51,70 € (AT)
64,00 CHF (CH)
Available
VIII, 221 p. 60 illus., 4 illus. in color.
EA; E107; eBook; Nonbooks, PBS / Mathematik/Sonstiges; DV-gestützte Biologie/Bioinformatik; Verstehen; 92C30, 92B99; biology; differential equations; kidney; mathematical modeling; physiology; B; Mathematical and Computational Biology; Mathematics and Statistics; BC
1.Introduction: Basics of Kidney Physiology.- 2.Glomerular Filtration.- 3.Urine Concentration.- 4 Counter-current Exchange Across Vasa Recta.- 5.Tubuloglomerular Feedback.- 6.Electrophysiology of Renal Vascular Smooth Muscle Cells.- 7.Vasomotion and Myogenic Response of the Afferent Arteriole.- 8.Transport Across Tubular Epithelia.- 9.Solutions to Problem Sets.- Index.
This comprehensive and richly illustrated volume provides up-to-date, wide-ranging material on the mathematical modeling of kidney physiology, including clinical data analysis and practice exercises. Basic concepts and modeling techniques introduced in this volume can be applied to other areas (or organs) of physiology.
With the availability of high speed computers and advances in computational techniques, the application of mathematical modeling to biological systems is expanding. The models presented in this book describe the main homeostatic functions performed by the kidney, including blood filtration, excretion of water and salt, maintenance of electrolyte balance, and regulation of blood pressure. Each chapter includes an introduction to the basic relevant physiology, a derivation of the essential conservation equations, and then a discussion of a series of mathematical models, with increasing level of complexity.
This volume will be of interest to biological and mathematical scientists, as well as physiologists and nephrologists, who would like an introduction to mathematical techniques that can be applied to renal transport and function. The material is written for students who have had college-level calculus, but can be used in modeling courses in applied mathematics at all levels through early graduate courses.
Anita T. Layton is the Robert R. and Katherine B. Penn Associate Professor of Mathematics at Duke University.
Aurélie Edwards is director of the Laboratory of Renal Physiology at the Cordeliers Research Center in Paris, in affiliation with the French National Center for Scientific Research (CNRS).
Written by experts in academia Provides the mathematical and biological basis needed to understand transport phenomena in the kidney First book of this kind on the market
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