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Titlebook: Cardiac Pacing for the Clinician; Fred M. Kusumoto,Nora F. Goldschlager Book 2008Latest edition Springer-Verlag US 2008 Defibrillator.Impl

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Pacing Leadsction is to interface the power source and sophisticated electronics of the pulse generator with the heart. The pacemaker lead plays a critical role in delivering both the output pulse from the pulse generator to the myocardium and the intracardiac electrogram from the myocardium to the sensing circuit of the pulse generator.
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https://doi.org/10.1007/978-3-322-95933-1ction is to interface the power source and sophisticated electronics of the pulse generator with the heart. The pacemaker lead plays a critical role in delivering both the output pulse from the pulse generator to the myocardium and the intracardiac electrogram from the myocardium to the sensing circuit of the pulse generator.
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Fred M. Kusumoto,Nora F. GoldschlagerDiscusses the "nuts and bolts" of cardiac devices.Primer for the clinical cardiologist that is interested in device implantation.Includes supplementary material:
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https://doi.org/10.1007/978-3-322-95933-1ction is to interface the power source and sophisticated electronics of the pulse generator with the heart. The pacemaker lead plays a critical role in delivering both the output pulse from the pulse generator to the myocardium and the intracardiac electrogram from the myocardium to the sensing circ
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https://doi.org/10.1007/978-3-322-85575-6 has, however, been an interesting parallel in the development of their methods of implantation (1). This has largely been driven by the dramatic advances in technology. In 1958, Seymour Furman and J.B. Schwedel passed the first transvenous endocardial electrode for prolonged cardiac pacing (2). Alm
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