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Titlebook: Bioelectricity; A Quantitative Appro Robert Plonsey,Roger C. Barr Textbook 20002nd edition Springer Science+Business Media New York 2000 br

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期刊全称Bioelectricity
期刊简称A Quantitative Appro
影响因子2023Robert Plonsey,Roger C. Barr
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图书封面Titlebook: Bioelectricity; A Quantitative Appro Robert Plonsey,Roger C. Barr Textbook 20002nd edition Springer Science+Business Media New York 2000 br
影响因子In the first edition of .Bioelectricity., Plonsey and Barrprovided an introduction to electrophysiology following a quantitativeapproach. In this second edition they address new discoveries in thefield of ion channels. The text is an introduction toelectrophysiology utilizing a quantitative approach. It describes theprinciples of electrical fields, using basic principles from scienceand engineering while taking the biological applications intoconsideration. The book thus provides an introduction to thequantitative description of underlying electrophysiology withillustrative application to cardiac electrophysiology and functionalelectrical stimulation. The book can be used as a bridge to moreadvanced texts, particularly those that stress a quantitativeapproach.
Pindex Textbook 20002nd edition
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书目名称Bioelectricity网络公开度




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书目名称Bioelectricity被引频次




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书目名称Bioelectricity年度引用




书目名称Bioelectricity年度引用学科排名




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书目名称Bioelectricity读者反馈学科排名




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Electrical Stimulation of Excitable Tissue,The response of excitable cells to naturally occurring or artificial stimuli is a subject of great importance in understanding natural function of nerve and muscle and in designing systems for interventional activation. Electric and magnetic field stimulation arises in research investigations and in clinical diagnosis, therapy, and rehabilitation.
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Skeletal Muscle,The goal of the material in this chapter is to provide a very brief introduction to ., its structure, and its electrophysiological and contractile properties. For the interested reader, further information could be sought in Refs. 1–3. These References were the main sources for the following material.
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https://doi.org/10.1007/978-1-4757-3152-1bridge; electricity; electrophysiology; engine; muscle; physiology; science; skeletal muscle; stress; tissue
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Springer Science+Business Media New York 2000
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