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  • © 2020

Physiology for Engineers

Applying Engineering Methods to Physiological Systems

  • Includes a set of exercises and worked examples for students
  • Has been classroom-tested at the University of Oxford
  • Builds on concepts with which physical sciences and engineering students are already familiar

Part of the book series: Biosystems & Biorobotics (BIOSYSROB, volume 24)

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Table of contents (10 chapters)

  1. Front Matter

    Pages I-IX
  2. Cell Structure and Biochemical Reactions

    • Michael Chappell, Stephen Payne
    Pages 1-19
  3. Cellular Homeostasis and Membrane Potential

    • Michael Chappell, Stephen Payne
    Pages 21-34
  4. The Action Potential

    • Michael Chappell, Stephen Payne
    Pages 35-45
  5. Cellular Transport and Communication

    • Michael Chappell, Stephen Payne
    Pages 47-59
  6. Pharmacokinetics

    • Michael Chappell, Stephen Payne
    Pages 61-72
  7. From Cells to Tissue

    • Michael Chappell, Stephen Payne
    Pages 73-83
  8. Cardiovascular System I: The Heart

    • Michael Chappell, Stephen Payne
    Pages 85-99
  9. Cardiovascular System II: The Vasculature

    • Michael Chappell, Stephen Payne
    Pages 101-123
  10. The Respiratory System

    • Michael Chappell, Stephen Payne
    Pages 125-139
  11. The Central Nervous System

    • Michael Chappell, Stephen Payne
    Pages 141-152
  12. Back Matter

    Pages 153-176

About this book

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.

 


Authors and Affiliations

  • Beacon of Excellence in Precision Imaging & Sir Peter Mansfield Imaging Centre, School of Medicine, University of Nottingham, Nottingham, UK

    Michael Chappell

  • Department of Engineering Science, University of Oxford, Oxford, UK

    Stephen Payne

About the authors

Michael Chappell is an Associate Professor of Engineering Science at the Institute of Biomedical Engineering (IBME), Department of Engineering Science, University of Oxford. Michael also heads the Quantitative Biomedical Inference group, which combines together inference techniques from information engineering with mathematical models from physics and physiology to estimate quantitative information for biomedical, and especially clinical applications. His main interest is medical imaging of metabolism and haemodynamics. Michael read Engineering Science in Oxford at undergraduate level, specialising in information engineering topics and completing a project on the detection of landmines. He then completed a doctorate on SCUBA diving, primarily using mathematical models to explore the development of bubbles from dissolved gases under decompression in the body – the resulting sickness is commonly referred to as 'the bends'. Finally, he found his way into magnetic resonance imaging and now develops ways to measure blood flow and pH in the body with applications in stroke, cancer and dementia. Michael is the co-author of one book, and is a series editor for the Oxford Neuroimaging Primers and an author of two of the primers: Introduction to Neuroimaging Analysis, and Introduction to Perfusion Quantification using Arterial Spin Labelling.

 

Stephen Payne is an Professor of Engineering Science at the Institute of Biomedical Engineering (IBME), Department of Engineering Science, University of Oxford. Stephen heads the Cerebral Haemodynamics Group, focusing on modelling blood flow and metabolism in the brain, which is particularly important in the context of diseases such as stroke and dementia. Another of the group’s key areas is cerebral autoregulation – the mechanism that maintains blood flow almost constantly in response to changes in blood pressure. Stephen has worked in physiological modelling for over 15 years.Having entered the field of biomedical engineering before it was available even as an undergraduate option course, he has seen first-hand how difficult it can be to learn about physiology in a way that makes it amenable to mathematical treatment, such as mathematical modelling, without good introductory guides. Stephen is also the author of two related books on cerebral autoregulation and cerebral blood flow and metabolism.




Bibliographic Information

  • Book Title: Physiology for Engineers

  • Book Subtitle: Applying Engineering Methods to Physiological Systems

  • Authors: Michael Chappell, Stephen Payne

  • Series Title: Biosystems & Biorobotics

  • DOI: https://doi.org/10.1007/978-3-030-39705-0

  • Publisher: Springer Cham

  • eBook Packages: Engineering, Engineering (R0)

  • Copyright Information: Springer Nature Switzerland AG 2020

  • Hardcover ISBN: 978-3-030-39704-3Published: 28 April 2020

  • Softcover ISBN: 978-3-030-39707-4Published: 29 April 2021

  • eBook ISBN: 978-3-030-39705-0Published: 27 April 2020

  • Series ISSN: 2195-3562

  • Series E-ISSN: 2195-3570

  • Edition Number: 2

  • Number of Pages: IX, 176

  • Number of Illustrations: 30 b/w illustrations, 45 illustrations in colour

  • Topics: Biomedical Engineering and Bioengineering, Human Physiology, Systems Biology

Buy it now

Buying options

eBook USD 54.99
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 69.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 109.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access