Mathematical Modelling of the Human Cardiovascular System

Mathematical Modelling of the Human Cardiovascular System
Title Mathematical Modelling of the Human Cardiovascular System PDF eBook
Author Alfio Quarteroni
Publisher Cambridge University Press
Pages 291
Release 2019-05-09
Genre Mathematics
ISBN 110848039X

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Addresses the mathematical and numerical modelling of the human cardiovascular system, from patient data to clinical applications.

Modeling the Heart and the Circulatory System

Modeling the Heart and the Circulatory System
Title Modeling the Heart and the Circulatory System PDF eBook
Author Alfio Quarteroni
Publisher Springer
Pages 248
Release 2015-04-24
Genre Mathematics
ISBN 3319052306

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The book comprises contributions by some of the most respected scientists in the field of mathematical modeling and numerical simulation of the human cardiocirculatory system. The contributions cover a wide range of topics, from the preprocessing of clinical data to the development of mathematical equations, their numerical solution, and both in-vivo and in-vitro validation. They discuss the flow in the systemic arterial tree and the complex electro-fluid-mechanical coupling in the human heart. Many examples of patient-specific simulations are presented. This book is addressed to all scientists interested in the mathematical modeling and numerical simulation of the human cardiocirculatory system.

Cardiovascular Mathematics

Cardiovascular Mathematics
Title Cardiovascular Mathematics PDF eBook
Author Luca Formaggia
Publisher Springer Science & Business Media
Pages 528
Release 2010-06-27
Genre Mathematics
ISBN 8847011523

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Mathematical models and numerical simulations can aid the understanding of physiological and pathological processes. This book offers a mathematically sound and up-to-date foundation to the training of researchers and serves as a useful reference for the development of mathematical models and numerical simulation codes.

Applied Mathematical Models in Human Physiology

Applied Mathematical Models in Human Physiology
Title Applied Mathematical Models in Human Physiology PDF eBook
Author Johnny T. Ottesen
Publisher SIAM
Pages 311
Release 2004-01-01
Genre Medical
ISBN 9780898718287

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This book introduces mathematicians to real applications from physiology. Using mathematics to analyze physiological systems, the authors focus on models reflecting current research in cardiovascular and pulmonary physiology. In particular, they present models describing blood flow in the heart and the cardiovascular system, as well as the transport of oxygen and carbon dioxide through the respiratory system and a model for baroreceptor regulation.

Mathematical Modelling of Haemodialysis

Mathematical Modelling of Haemodialysis
Title Mathematical Modelling of Haemodialysis PDF eBook
Author Leszek Pstras
Publisher Springer
Pages 166
Release 2019-07-03
Genre Medical
ISBN 3030214109

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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.

Mathematical Modeling and Validation in Physiology

Mathematical Modeling and Validation in Physiology
Title Mathematical Modeling and Validation in Physiology PDF eBook
Author Jerry J. Batzel
Publisher Springer
Pages 270
Release 2012-12-14
Genre Mathematics
ISBN 3642328822

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This volume synthesizes theoretical and practical aspects of both the mathematical and life science viewpoints needed for modeling of the cardiovascular-respiratory system specifically and physiological systems generally. Theoretical points include model design, model complexity and validation in the light of available data, as well as control theory approaches to feedback delay and Kalman filter applications to parameter identification. State of the art approaches using parameter sensitivity are discussed for enhancing model identifiability through joint analysis of model structure and data. Practical examples illustrate model development at various levels of complexity based on given physiological information. The sensitivity-based approaches for examining model identifiability are illustrated by means of specific modeling examples. The themes presented address the current problem of patient-specific model adaptation in the clinical setting, where data is typically limited.

Cardiovascular and Respiratory Systems

Cardiovascular and Respiratory Systems
Title Cardiovascular and Respiratory Systems PDF eBook
Author Jerry J. Batzel
Publisher SIAM
Pages 289
Release 2007-09-20
Genre Mathematics
ISBN 0898717450

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Cardiovascular and Respiratory Systems: Modeling, Analysis, and Control uses a principle-based modeling approach and analysis of feedback control regulation to elucidate the physiological relationships. Models are arranged around specific questions or conditions, such as exercise or sleep transition, and are generally based on physiological mechanisms rather than on formal descriptions of input-output behavior. The authors ask open questions relevant to medical and clinical applications and clarify underlying themes of physiological control organization. Current problems, key issues, developing trends, and unresolved questions are highlighted. Researchers and graduate students in mathematical biology and biomedical engineering will find this book useful. It will also appeal to researchers in the physiological and life sciences who are interested in mathematical modeling.