Bioelectromagnetism Principles and Applications of Bioelectric and Biomagnetic Fields

by ;
Format: Hardcover
Pub. Date: 1995-07-27
Publisher(s): Oxford University Press
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Summary

This book provides a general view of bioelectromagnetism and describes it as an independent discipline. It begins with an historical account of the many innovations and innovators on whose work the field rests. This is accompanied by a discussion of both the theories and experiments which werecontributed to the development of the field. The physiological origin of bioelectric and biomagnetic signal is discussed in detail. The sensitivity in a given measurement situation, the energy distribution in stimulation with the same electrodes, and the measurement of impedance are related anddescribed by the electrode lead field. It is shown that, based on the reciprocity theorem, these are identical and further, that these procedures apply equally well for biomagnetic considerations. The difference between corresponding bioelectric and biomagnetic methods is discussed. The book shows,that all subfields of bioelectromagnetism obey the same basic laws and they are closely tied together through the principle of reciprocity. Thus the book helps the reader to understand the properties of existing bioelectric and biomagnetic measurements and stimulation methods and to design newsystems. The book includes about 300 carefully drawn illustrations and 500 references. It can be used as a textbook for third or fourth year university students and as a source of reference.

Table of Contents

Introduction
Anatomical and Physiological Basis of Bioelectromagnetism
Anatomy and Physiology of Nerve and Muscle Cells
Subthreshold Membrane Phenomena
Active Behavior of the Membrane
The Anatomy and Physiology of the Synapse, Receptor Cells and Brain
The Anatomy, Physiology, and Bioelectric Behavior of the Heart
Bioelectric Sources and Conductors and their Modelling
Volume Source and Volume Conductor
Source-Field Models
Biodomain Model of Multicellular Volume Conductors
Electronic Neuron Models
Theoretical Methods in Bioelectromagnetism
Theoretical Methods for Analyzing Volume Sources and Volume Conductors
Theory of Biomagnetic Measurements
Electric and Magnetic Measurement of the Electric Activity of Neural Tissue
Electroencephalography
Magnetoencephalography
Electric and Magnetic Measurement of the Electric Activity of the Heart
12-Lead ECG-System
Vectorcardiographic Lead Systems
Other ECG Lead Systems
Distortion Factors in the ECG
The Basis of ECG Diagnosis
Magnetocardiography
Electric and Magnetic Stimulation of Neural Tissue
Functional Electrical Stimulation
Magnetic Stimulation of Neural Tissue
Electric and Magnetic Stimulation of the Heart
Cardiac Pacing
Cardiac Defibrillation
Measurement of the Intrinsic Electric Properties of Biological Tissues
Bioelectric Basis of Impedance Plethysmography
Impedance Tomography
The Electrodermal Response
Other Bioelectromagnetic Phenomena
The Electrical Signals Originating in the Eye
Consistent System of Rectangular and Magnetocardiography
The Application of Maxwell's Equations in Bioelectromagnetism
Table of Contents provided by Publisher. All Rights Reserved.

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