9783030397074-3030397076-Physiology for Engineers: Applying Engineering Methods to Physiological Systems (Biosystems & Biorobotics)

Physiology for Engineers: Applying Engineering Methods to Physiological Systems (Biosystems & Biorobotics)

ISBN-13: 9783030397074
ISBN-10: 3030397076
Edition: 2nd ed. 2020
Author: Michael Chappell
Publication date: 2021
Publisher: Springer
Format: Paperback 188 pages
FREE US shipping
Buy

From $65.51

Book details

ISBN-13: 9783030397074
ISBN-10: 3030397076
Edition: 2nd ed. 2020
Author: Michael Chappell
Publication date: 2021
Publisher: Springer
Format: Paperback 188 pages

Summary

Physiology for Engineers: Applying Engineering Methods to Physiological Systems (Biosystems & Biorobotics) (ISBN-13: 9783030397074 and ISBN-10: 3030397076), written by authors Michael Chappell, was published by Springer in 2021. With an overall rating of 4.0 stars, it's a notable title among other Bioengineering (Bioinformatics, Biological Sciences, Physiology, Basic Medical Sciences, Engineering) books. You can easily purchase or rent Physiology for Engineers: Applying Engineering Methods to Physiological Systems (Biosystems & Biorobotics) (Paperback) from BooksRun, along with many other new and used Bioengineering books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

This book provides an introduction to qualitative and quantitative aspects of human physiology. It examines biological and physiological processes and phenomena, including a selection of mathematical models, showing how physiological problems can be mathematically formulated and studied. It also illustrates how a wide range of engineering and physics topics, such as electronics, fluid dynamics, solid mechanics and control theory can be used to describe and understand physiological processes and systems. Throughout the text, there are introductions to measuring and quantifying physiological processes using both signaling and imaging technologies. This new edition includes updated material on pathophysiology, metabolism and the TCA cycle, as well as more advanced worked examples. This book describes the basic structure and models of cellular systems, the structure and function of the cardiovascular system, and the electrical and mechanical activity of the heart, and provides an overview of the structure and function of the respiratory and nervous systems. It also includes an introduction to the basic concepts and applications of reaction kinetics, pharmacokinetic modelling and tracer kinetics. It appeals to final year biomedical engineering undergraduates and graduates alike, as well as to practising engineers new to the fields of bioengineering or medical physics.
From the Back Cover
This book provides an introduction to qualitative and quantitative aspects of human physiology. It examines biological and physiological processes and phenomena, including a selection of mathematical models, showing how physiological problems can be mathematically formulated and studied. It also illustrates how a wide range of engineering and physics topics, such as electronics, fluid dynamics, solid mechanics and control theory can be used to describe and understand physiological processes and systems. Throughout the text, there are introductions to measuring and quantifying physiological processes using both signaling and imaging technologies. This new edition includes updated material on pathophysiology, metabolism and the TCA cycle, as well as more advanced worked examples.
This book describes the basic structure and models of cellular systems, the structure and function of the cardiovascular system, and the electrical and mechanical activity of the heart, and provides an overview of the structure and function of the respiratory and nervous systems. It also includes an introduction to the basic concepts and applications of reaction kinetics, pharmacokinetic modelling and tracer kinetics. It appeals to final year biomedical engineering undergraduates and graduates alike, as well as to practising engineers new to the fields of bioengineering or medical physics.

Rate this book Rate this book

We would LOVE it if you could help us and other readers by reviewing the book