Engineering in Medicine
Springer-Verlag Berlin and Heidelberg GmbH & Co. K
978-3-540-07360-4 (ISBN)
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The experience discussed covers the principles and main methods of pacing using implantable and external, fixed rate, R-wave or P-wave triggered pacemakers with electrodes placed in the myocardium either surgically or transvenously, and powered by zinc-mercury oxide or rechargeable batteries. Particular emphasis was put on problems of pressing importance at the present time, such as the increase of pacemaker longevity with lithium- iodide and nuclear-powered batteries or improved electrodes, as well as the postoperative management of a steadily increasing number of pacemaker patients.
1 Principles and Techniques of Cardiac Pacing.- Clinical Requirements for Pacemaker Therapy.- Electrophysiological Aspects of Cardiac Stimulation.- Techniques of Permanent Pacemaker Implantation.- Pacemaker Electronic Circuits.- 2 Clinical Experience with Various Pacing Techniques.- Results of Permanent Cardiac Stimulation Therapy.- Myocardial and Endocardial Pacing Systems - An Appraisal.- Transvenous Atrial Synchronized Pacing.- Pacemaker Therapy as a New Possibility for the Diagnosis and Treatment of Carotid Sinus Syncope.- Temporary Cardiac Pacing.- Problems with Temporary and Permanent Pacing for Cardiac Arrhythmias without AV-Block.- Clinical Complications Due to Pacemaker System Failures and Their Management.- 3 Patient Management.- Transtelephone Pacemaker Monitoring.- Long-Term Cardiological Follow-Up Results.- Computer Applications for Monitoring of Pacemaker Patients.- 4 Stimulation Electrodes.- Engineering Concepts of Pacemaker Electrodes.- The Significance of the Tissue Reaction around the Electrode on the Late Myocardial Threshold.- Studies of Short- and Long-Term Threshold Changes.- Electrochemical Aspects of Pacing Electrodes.- Endocardial Electrograms and Pacer Sensing.- 5 Longevity and Pacemaker Power Sources.- Long-Life Pacemakers.- Electrochemical and Radioactive Power Sources for Cardiac Pacemakers.- The Statistical Reliability of Lithium-Iodine Batteries.- A Long-Lived, Reliable, Rechargeable Cardiac Pacemaker.- Promethium and Plutonium as Fuels for Pacemaker Power Sources.- The Betavoltaic Pacemaker Power Source.- Design Criteria for Betavoltaic Nuclear Batteries.- Thermoelectric Conversion Systems for Nuclear-Powered Pacemakers.- Interpretation and Implementation of International Radiation Protection Standards for Cardiac Pacemakers in the USA.- 6 Clinical Experience with Long-Life Pacemakers.- Progress in Pulse Generator Longevity Preliminary Results of the CPI Lithium Iodide Unit.- Clinical Experience with Nuclear-Powered Pacemakers (Plutonium-238).- Clinical Experience with Nuclear-Powered Pacemakers (Promethium-147).- Initial U. S. Experience with Promethium-147 Fueled Cardiac Pacemakers.- Benefits and Risks of Promethium Battery-Powered Pacemakers.
Mitarbeit |
Assistent: F. Hein, Roger Thull |
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Verlagsort | Berlin |
Sprache | englisch |
Gewicht | 1240 g |
Themenwelt | Medizin / Pharmazie ► Allgemeines / Lexika |
Medizin / Pharmazie ► Physiotherapie / Ergotherapie ► Orthopädie | |
Technik ► Medizintechnik | |
ISBN-10 | 3-540-07360-4 / 3540073604 |
ISBN-13 | 978-3-540-07360-4 / 9783540073604 |
Zustand | Neuware |
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