Basic Introduction to Bioelectromagnetics, Third Edition

Basic Introduction to Bioelectromagnetics, Third Edition

Author: Cynthia Furse

Publisher: CRC Press

Published: 2018-09-21

Total Pages: 320

ISBN-13: 0429849478

DOWNLOAD EBOOK

Basic Introduction to Bioelectromagnetics, Third Edition, is a primary source for medical technologists and life scientists seeking to understand how electromagnetic fields interact with the body, and how they are used in medical applications. Instead of the complex math commonly used when analyzing electromagnetics, this book uses graphical methods and simple equations. The third edition is updated with color graphics that show the fields in bright, clear colors. Each concept is presented with an associated discussion and application, including MRI, NMR, hyperthermia, neural stimulation, ultrasound, and cardiac pacing/defibrillation. Offering a simplified explanation of a very complex subject, this third edition provides an accessible introduction for life scientists and medical technologist on how EM fields work, what controls them, and the factors important to experimental setups and medical applications. This qualitative and illustrative book: Covers the entire frequency spectrum from direct current (DC) up through optical frequencies. Includes more than 200 illustrations, 65 in color, and 40 medical applications. Incorporates examples from real-world applications to explain concepts. Concentrates on the qualitative explanation of the key concepts, fundamental principles, and characteristic behaviors of EM fields, without complicated mathematics. Offers practical rules of thumb to understand real situations. Requires only a background in algebra, in contrast to typical EM books that require vector calculus and differential equations.


Basic Introduction to Bioelectromagnetics

Basic Introduction to Bioelectromagnetics

Author: Cynthia Furse

Publisher: CRC Press

Published: 2009-03-09

Total Pages: 288

ISBN-13: 1420055437

DOWNLOAD EBOOK

Although classical electromagnetic (EM) field theory is typically embedded in vector calculus and differential equations, many of the basic concepts and characteristics can be understood with precursory mathematical knowledge. Completely revised and updated, Basic Introduction to Bioelectromagnetics, Second Edition facilitates the process of interd


Basic Introduction to Bioelectromagnetics, Third Edition

Basic Introduction to Bioelectromagnetics, Third Edition

Author: Cynthia Furse

Publisher: CRC Press

Published:

Total Pages: 300

ISBN-13: 9781138749757

DOWNLOAD EBOOK

This will be a modest revision of a good selling work, that will now be a text/reference in bioelectromagnetics. The authors (and others) have successfully used this second edition as a primary text for senior/1st year graduate courses in this area. Consequently, a major new addition to this work will be the inclusion of end-of-chapter problems and examples. Each chapter will be appropriately updated where necessary. There will be a focus on emerging applications within bioelectromagnetics.


Basic Introduction to Bioelectromagnetics

Basic Introduction to Bioelectromagnetics

Author: Douglas A. Christensen

Publisher: CRC Press

Published: 1999-08-31

Total Pages: 194

ISBN-13: 9780849311987

DOWNLOAD EBOOK

The purpose of this book is to explain the basic concepts, fundamental principles, and characteristic behaviors of electric and magnetic fields to those who do not have a background in vector calculus and partial differential equations.


BioElectroMagnetics

BioElectroMagnetics

Author: Riadh Habash

Publisher: CRC Press

Published: 2020-05-04

Total Pages: 506

ISBN-13: 1498779042

DOWNLOAD EBOOK

This book is an educational resource of evolving scientific knowledge in the area of bioelectromagnetics that may serve the interests of students and decision-makers, as well as society as a whole. It is distinguished by extensive descriptions of fundamental biophysical concepts and their relevance to human health. Reflecting the transdisciplinary approach from several different intellectual streams including physics, biology, epidemiology, medicine, environment, risk science, and engineering, the book is quite a venture into the battling studies to assess the latest research on health effects and biomedical applications of EM energy. This new edition of the book particularly looks at the potential threats from the emerging 5G wireless networks, which will deploy large numbers of low-powered smartphones, notebooks, tablets, radio access networks, and other transmitters. Features Introduces necessary biophysical principles of EM fields in the context of their interaction with living systems. Strengthens understanding of cutting-edge research on several major areas in the broad area of bioelectromagnetics. Presents safety standards and guidelines for human exposure to EM fields. Discusses techniques that have been developed to ensure adequate EM-thermal dosimetry required for both health effects and biomedical applications. Provides insight into the determinants of EM health risk assessment and public concerns. Includes extensive reference list at the end of each chapter to enhance further study. Riadh Habash is a special appointment professor and McLaughlin Research Chair in Electromagnetic Fields and Health at the University of Ottawa, Canada. He has been the recipient of many awards, including the National Wighton Fellowship Award, and has authored or co-authored over 90 research articles, six books, and five book chapters. His most recent books are Green Engineering in 2017 and Professional Practice in 2019 (CRC Press), with the remaining previous books targeting the area of bioelectromagnetics.


Bioelectromagnetism

Bioelectromagnetism

Author: Jaakko Malmivuo

Publisher: Oxford University Press, USA

Published: 1995

Total Pages: 512

ISBN-13: 9780195058239

DOWNLOAD EBOOK

This text applies engineering science and technology to biological cells and tissues that are electrically conducting and excitable. It describes the theory and a wide range of applications in both electric and magnetic fields.


Human Interaction with Electromagnetic Fields

Human Interaction with Electromagnetic Fields

Author: Dragan Poljak

Publisher: Academic Press

Published: 2019-06-07

Total Pages: 280

ISBN-13: 012816624X

DOWNLOAD EBOOK

Human Interaction with Electromagnetic Fields: Computational Models in Dosimetry presents some highly rigorous and sophisticated integral equation techniques from computational electromagnetics (CEM), along with practical techniques for the calculation and measurement of internal dosimetry. Theory is accompanied by numerical modeling algorithms and illustrative computational examples that range from academic to full real-world scenarios. Covers both deterministic and stochastic modeling Presents implementations of integral equation approaches, overcoming the limitations of the FDTD approach Presents various biomedical applications


Electromagnetic Fields and Radiation

Electromagnetic Fields and Radiation

Author: Riadh W.Y. Habash

Publisher: CRC Press

Published: 2018-10-08

Total Pages: 314

ISBN-13: 1351830279

DOWNLOAD EBOOK

This reference explores the sources, characteristics, bioeffects, and health hazards of extremely low-frequency (ELF) fields and radio frequency radiation (RFR), analyzing current research as well as the latest epidemiological studies to assess potential risks associated with exposure and to develop effective safety guidelines. Compiles reports and investigations from four decades of study on the effect of nonionizing electromagnetic fields and radiation on human health Summarizing modern engineering approaches to control exposure, Electromagnetic Fields and Radiation discusses: EM interaction mechanisms in biological systems Explorations into the impact of EM fields on free radicals, cells, tissues, organs, whole organisms, and the population Regulatory standards in the United States, Canada, Europe, and Asia Pacific Evaluation of incident fields from various EM sources Measurement surveys for various sites including power lines, substations, mobile systems, cellular base stations, broadcast antennas, traffic radar devices, heating equipment, and other sources Dosimetry techniques for the determination of internal EM fields Conclusions reached by the Food and Drug Administration, World Health Organization, and other institutions