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Mathematical Modelling of Haemodialysis : Cardiovascular Response, Body Fluid Shifts, and Solute Kinetics / by Leszek Pstras, Jacek Waniewski.

By: Pstras, Leszek, autor
Contributor(s): Waniewski, Jacek., author.
Series: (Biomedical and Life Sciences (Springer-11642)).Publisher: Cham, Switzerland : Springer International Publishing, 2019Edition: 1st ed. 2019.Description: 1 recurso en línea (XVII, 156 páginas) : 43 ilustraciones, 38 ilustraciones a color.ISBN: 9783030214104.Subject: AngiospermasOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Introduction to renal replacement therapies and mathematical modelling in physiology -- Mathematical modelling in physiology -- Model structure, equations and parameters -- Model analysis and validation -- Simulation results and model outcomes -- Conclusions, challenges and future research directions.
Abstract: Beginning with an introduction to kidney function, renal replacement therapies, and an overview of clinical problems associated with haemodialysis, this book explores the principles of the short-term baroreflex regulation of the cardiovascular system and the mechanisms of water and solute transport across the human body from a mathematical model perspective. It synthesizes theoretical physiological concepts and practical aspects of mathematical modelling needed for simulation and quantitative analysis of the haemodynamic response to dialysis therapy. Including an up-to-date review of the literature concerning the modelled physiological mechanisms and processes, the book serves both as an overview of transport and regulatory mechanisms related to the cardiovascular system and body fluids and as a useful reference for the study and development of mathematical models of dynamic physiological processes. Mathematical Modelling of Haemodialysis: Cardiovascular Response, Body Fluid Shifts, and Solute Kinetics is intended for researchers and graduate students in biomedical engineering, physiology, or medicine interested in mathematical modelling of cardiovascular dynamics and fluid and solute transport across the human body, both under physiological conditions and during haemodialysis therapy.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería QK495.H15 2019 EB (Browse shelf(Opens below)) Acceso electrónico eBook19112088
Total holds: 0

Introduction to renal replacement therapies and mathematical modelling in physiology -- Mathematical modelling in physiology -- Model structure, equations and parameters -- Model analysis and validation -- Simulation results and model outcomes -- Conclusions, challenges and future research directions.

Beginning with an introduction to kidney function, renal replacement therapies, and an overview of clinical problems associated with haemodialysis, this book explores the principles of the short-term baroreflex regulation of the cardiovascular system and the mechanisms of water and solute transport across the human body from a mathematical model perspective. It synthesizes theoretical physiological concepts and practical aspects of mathematical modelling needed for simulation and quantitative analysis of the haemodynamic response to dialysis therapy. Including an up-to-date review of the literature concerning the modelled physiological mechanisms and processes, the book serves both as an overview of transport and regulatory mechanisms related to the cardiovascular system and body fluids and as a useful reference for the study and development of mathematical models of dynamic physiological processes. Mathematical Modelling of Haemodialysis: Cardiovascular Response, Body Fluid Shifts, and Solute Kinetics is intended for researchers and graduate students in biomedical engineering, physiology, or medicine interested in mathematical modelling of cardiovascular dynamics and fluid and solute transport across the human body, both under physiological conditions and during haemodialysis therapy.

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