Basic Introduction to Bioelectromagnetics (eBook)

Artikelnummer: 978-1-4200-5543-6
Einband: PDF
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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 interdisciplinary research by introducing life scientists to the basic concepts of EM fields. This new edition outlines elements of EM that are helpful to life scientists working with physicists and electrical engineers. Each concept is presented with an associated application and discussion. Example applications include hyperthermia, neural stimulation, MRI, NMR, ultrasound, and cardiac pacing/defibrillation. With the liberal use of diagrams and graphs, this qualitative and illustrative point of access:Covers the entire frequency spectrum from direct current (DC) up through optical frequenciesIncludes more than 200 illustrations with 40 medical applicationsIncorporates examples from real applications to explain concepts Concentrates on the qualitative explanation of the key concepts, fundamental principles, and characteristic behaviors of EM fields, without mathematical rigorOffers practical rules of thumb to understand real situationsRequires only an algebra background, in contrast to typical EM books that require vector calculus and partial differential equationsOffering a simplified view of a very complex subject, this second edition provides an accessible introduction for life scientists and medical technologists on how EM fields work, what controls them, and the factors important to experimental setups.
ebookqueries@tandf.co.uk; TEXT_AND_DATA_MINING_PROHIBITED_03
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 interdisciplinary research by introducing life scientists to the basic concepts of EM fields. This new edition outlines elements of EM that are helpful to life scientists working with physicists and electrical engineers. Each concept is presented with an associated application and discussion. Example applications include hyperthermia, neural stimulation, MRI, NMR, ultrasound, and cardiac pacing/defibrillation. With the liberal use of diagrams and graphs, this qualitative and illustrative point of access:Covers the entire frequency spectrum from direct current (DC) up through optical frequenciesIncludes more than 200 illustrations with 40 medical applicationsIncorporates examples from real applications to explain concepts Concentrates on the qualitative explanation of the key concepts, fundamental principles, and characteristic behaviors of EM fields, without mathematical rigorOffers practical rules of thumb to understand real situationsRequires only an algebra background, in contrast to typical EM books that require vector calculus and partial differential equationsOffering a simplified view of a very complex subject, this second edition provides an accessible introduction for life scientists and medical technologists on how EM fields work, what controls them, and the factors important to experimental setups.
ebookqueries@tandf.co.uk; TEXT_AND_DATA_MINING_PROHIBITED_03
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VerlagTaylor & Francis Ebooks
EinbandPDF
Erscheinungsjahr2009
Seitenangabe288 S.
AusgabekennzeichenEnglisch
Masse9'616 KB
Auflage09002 A. 2. Auflage
PlattformPDF
AutorFurse, Cynthia / Christensen, Douglas A. / Durney, Carl H.

Über den Autor Cynthia Furse

Professor Cynthia Furse is a full Professor in Electrical and Computer Engineering at the Univ. of Utah. She has published over 200 publications, and has done extensive research in the field of bioelectromagnetism. Professor Carl Durney is an Emeritus Professor in Electrical Engineering at the Univ. of Utah, with extensive publications and a number of patents in bioelectromagnetism. Professor Douglas Christiansen is affiliated with the Department of Bioengineering at the Univ. of Utah and specializes in ultrasound and optical applications. Dr James Nagel is a Research Associate at the Univ. of Utah, where he studies eddy current separation of scrap metals and alloys.

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