Download Color Atlas and Synopsis of Electrophysiology by Emile Daoud, Steven Kalbfleisch PDF

By Emile Daoud, Steven Kalbfleisch

A textual content and atlas beneficial to all cardiologists despite specialty

Over the earlier decade, with the arrival of modalities reminiscent of MR, CT, and nuclear drugs, cardiology has turn into essentially the most visible of all specialties, and this can be the 1st textual content to handle that truth. Color Atlas and Synopsis of Electrophysiology is a different blend atlas and textual content that provides step by step administration assistance for sufferers present process electrophysiology experiences, plus hundreds of thousands of cutting-edge scientific, diagnostic, and interventional photographs that hide the full spectrum of electrophysiology.

Color Atlas and Synopsis of Electrophysiology is principally designed for busy clinicians who desire concise sufferer administration guidance and a complete choice of photographs in a constant find-it-now presentation. every one subject starts with a case situation that offers concerns a scientific, real-world point of view and contains proof rankings from the mixed ACC/AHA guidelines.

  • Both authors, Dr. Daoud and Dr. Kalbfleisch, have been integrated on America’s most sensible surgeon list in 2009
  • Companion DVD includes the entire photographs present in the e-book
  • Includes greater than 500 images

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Additional info for Color Atlas and Synopsis of Electrophysiology

Sample text

ELECTROANATOMIC MAPPING SYSTEM: ST. JUDE MEDICAL ENSITE NAVX The St. Jude Medical EnSite NavX system is a 3-dimensional impedance-based mapping system that allows the user to nonfluoroscopically locate electrodes in the human body. The NavX system uses constant current over a set of six patches (anterior-posterior, side-to-side, cranial-caudal) (Figure 2-4) and Ohm舗s law to create an impedance gradient across the thorax. When an electrode is placed inside this established impedance gradient, NavX measures the local impedance and calculates the position along that plane.

If phrenic nerve capture was absent, radiofrequency current was applied using a 4-millimeter irrigated catheter at a maximum power of 35 watts. The arrhythmia terminated at the site of radiofrequency ablation between the superior margin of the posterior intercaval incision (blue circles represent site of termination; brown circles represent additional ablation sites). ŠŠ The use of an electroanatomic mapping system was essential to create a virtual recreation of the atrial anatomy, mark anatomic sites of importance, and to guide catheter ablation lesions.

Since the target for ablation in AVNRT is the slow pathway, there is a risk for inadvertent heart block if lesions are delivered close to the compact AV node. A 3-D mapping system is helpful to provide a high-resolution detailed map of the cardiac anatomy including the location the coronary sinus os, which is a marker for location of the slow pathway and the atrioventricular node. Utilization of the 舠shadow舡 feature allowed for the display of the exact positioning of the catheter location where His potentials could be reliably recorded.

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