Safety and Efficacy of Magnet Use to Temporarily Inhibit Inappropriate Subcutaneous Implantable Cardioverter Defibrillator Therapy in Emergency Situations: A Case Report

Author:

Santomauro Maurizio1,Riganti Carla2,Santomauro Mario Alberto3,Viggiano Aniello1,Castellano Gaetano4,Iovino Gianluigi1,Rapacciuolo Antonio5,Fiore Francesco6,Cacciatore Francesco6,Esposito Giovanni5

Affiliation:

1. Department of Translational Medical Sciences and Department of Cardiovascular Emergency, Internal Medicine and Geriatrics , Federico II University of Naples , Italy

2. General Direction, Medical School , Federico II University of Naples , Italy

3. Department of Clinical Medicine and Surgery , Medical School, Federico II University of Naples , Italy

4. Department of Anesthesia and Intensive care , Gemelli Molise Hospital , Campobasso , Italy

5. Department of Advanced Biomedical Sciences , Federico II University of Naples , Italy

6. Department of Translational Medical Sciences , Federico II University of Naples , Italy

Abstract

Abstract Introduction: The subcutaneous implantable cardioverter defibrillator (S-ICD) represents a major advancement in ICD technology. Inappropriate shocks (IAS) occur in more than 3.1% of the population with S-ICD each year and are usually followed by admission to the emergency department (ED). In this setting, the disabling of IAS is mandatory during a pseudo-electrical storm (ES). This report describes the strategies that can be followed in order to temporarily inhibit IAS in critical care settings with the use of magnets. Case presentation: An S-ICD was implanted more than 6 weeks prior to presentation in a 68-year-old man with hypertrophic cardiomyopathy. In the ED, the patient experienced 3 IAS in the last hour. A Medtronic magnet was applied to stop IAS, as the specific programmer was not available. The maneuver interrupted the IAS. In order to verify the universal magnetic response of the S-ICD, six different magnets and one smartphone with MagSafe technology were tested. All magnet models suspended arrhythmia detection and IAS, while the smartphone did not cause magnet interferences. Conclusions: This report demonstrates the safety and efficacy of all clinical magnet models in inhibiting IAS. In case of pseudo-ES, any type of magnet allows ED providers to easily and rapidly disable the functionality of the devices when appropriate.

Publisher

Walter de Gruyter GmbH

Subject

Automotive Engineering

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