Leadless cardiac ventricular pacing using helix fixation: Step‐by‐step guide to implantation

Introduction Leadless cardiac pacemakers are an alternative modality to traditional transvenous pacemaker systems. Recently receiving Food and Drug Administration approval, the AVEIR VR leadless pacemaker system provides a helix based active fixation leadless pacemaker system. This step‐by‐step revi...

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Veröffentlicht in:Journal of cardiovascular electrophysiology 2023-03, Vol.34 (3), p.748-759
Hauptverfasser: Laczay, Balint, Aguilera, Jose, Cantillon, Daniel J.
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container_title Journal of cardiovascular electrophysiology
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creator Laczay, Balint
Aguilera, Jose
Cantillon, Daniel J.
description Introduction Leadless cardiac pacemakers are an alternative modality to traditional transvenous pacemaker systems. Recently receiving Food and Drug Administration approval, the AVEIR VR leadless pacemaker system provides a helix based active fixation leadless pacemaker system. This step‐by‐step review will cover patient selection, preprocedural planning, device implantation technique, implant site evaluation, troubleshooting, short‐ and long‐term complications as well as future directions for leadless pacing. Methods We collected and reviewed cases from primary operators to provide a step‐by‐step review for implanters. Results Our paper provides a guide to patient selection, pre‐procedural planning, device im plantation technique, implant site evaluation, troubleshooting, short‐ and long‐term complications as well as future directions for leadless pacing. Conclusion The helix based active fixation leadless pacemaker system is a safe and efficacious way to provide pacing support to patients and provides an alternative to transvenous pacing systems. Our review provides a step‐by‐step guide to implantation.
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Recently receiving Food and Drug Administration approval, the AVEIR VR leadless pacemaker system provides a helix based active fixation leadless pacemaker system. This step‐by‐step review will cover patient selection, preprocedural planning, device implantation technique, implant site evaluation, troubleshooting, short‐ and long‐term complications as well as future directions for leadless pacing. Methods We collected and reviewed cases from primary operators to provide a step‐by‐step review for implanters. Results Our paper provides a guide to patient selection, pre‐procedural planning, device im plantation technique, implant site evaluation, troubleshooting, short‐ and long‐term complications as well as future directions for leadless pacing. Conclusion The helix based active fixation leadless pacemaker system is a safe and efficacious way to provide pacing support to patients and provides an alternative to transvenous pacing systems. 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Recently receiving Food and Drug Administration approval, the AVEIR VR leadless pacemaker system provides a helix based active fixation leadless pacemaker system. This step‐by‐step review will cover patient selection, preprocedural planning, device implantation technique, implant site evaluation, troubleshooting, short‐ and long‐term complications as well as future directions for leadless pacing. Methods We collected and reviewed cases from primary operators to provide a step‐by‐step review for implanters. Results Our paper provides a guide to patient selection, pre‐procedural planning, device im plantation technique, implant site evaluation, troubleshooting, short‐ and long‐term complications as well as future directions for leadless pacing. Conclusion The helix based active fixation leadless pacemaker system is a safe and efficacious way to provide pacing support to patients and provides an alternative to transvenous pacing systems. 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subjects arrhythmia
bradycardia
Cardiac Pacing, Artificial - methods
Equipment Design
Heart
Heart Ventricles
Humans
leadless cardiac pacemaker
Pacemaker, Artificial
Pacemakers
Treatment Outcome
Ventricle
title Leadless cardiac ventricular pacing using helix fixation: Step‐by‐step guide to implantation
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