Leadless pacemaker through tricuspid bioprosthetic valve: Early experience
Abstract Background Leadless pacemaker (LP) therapy has been proved effective in cases where traditional transvenous right pacing (TRP) failed. TRP through a bioprosthetic tricuspid valve (BTV) has always been considered an unpreferable solution because of possible deleterious effect of permanent pa...
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doaj-727e602c3d5440ab80a2f7078430df7c2021-04-06T06:07:11ZengWileyJournal of Arrhythmia1880-42761883-21482021-04-0137241441710.1002/joa3.12478Leadless pacemaker through tricuspid bioprosthetic valve: Early experienceGiovanni Morani0Bruna Bolzan1Antonio Pepe2Flavio Luciano Ribichini3Division of Cardiology Department of Medicine University of Verona Verona ItalyDivision of Cardiology Department of Medicine University of Verona Verona ItalyDivision of Cardiology Department of Medicine University of Verona Verona ItalyDivision of Cardiology Department of Medicine University of Verona Verona ItalyAbstract Background Leadless pacemaker (LP) therapy has been proved effective in cases where traditional transvenous right pacing (TRP) failed. TRP through a bioprosthetic tricuspid valve (BTV) has always been considered an unpreferable solution because of possible deleterious effect of permanent pacing leads on BTV function and specifically on tricuspid regurgitation (TR). Very limited data exist about the feasibility and safety of LP implantation in this setting. Methods We describe two cases of LP implantation through BTV in patients with failure of epicardial pacemaker implanted after cardiac surgery. The focus is on technical description of the procedure and on electrical and echocardiographic evaluation at implantation and at the follow‐up. Results In both cases, skilled and careful handling of the delivery system as well as proper use of X‐ray oblique views was determinant for atraumatic successful valve crossing. Likewise, an accurate selection of the deployment site inside the right ventricle, far enough from the valve to avoid valvular dysfunction, was important for successful implantation. Electrical parameters of LP were satisfying at implantation and at the follow‐up. The echocardiogram after implantation and at the follow‐up showed no mechanical interference of LP with prosthetic valve, no significant TR, and absence of significant changes in the biventricular function. Conclusion Our data seem to support feasibility and safety of this type of procedure in skilled hands, allowing efficacious pacing without valvular dysfunction or right ventricular (RV) physiology impairment.https://doi.org/10.1002/joa3.12478bioprosthetic tricuspid valveleadless pacemakerMicra Transcatheter pacing systemtransvenous pacing failure |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Giovanni Morani Bruna Bolzan Antonio Pepe Flavio Luciano Ribichini |
spellingShingle |
Giovanni Morani Bruna Bolzan Antonio Pepe Flavio Luciano Ribichini Leadless pacemaker through tricuspid bioprosthetic valve: Early experience Journal of Arrhythmia bioprosthetic tricuspid valve leadless pacemaker Micra Transcatheter pacing system transvenous pacing failure |
author_facet |
Giovanni Morani Bruna Bolzan Antonio Pepe Flavio Luciano Ribichini |
author_sort |
Giovanni Morani |
title |
Leadless pacemaker through tricuspid bioprosthetic valve: Early experience |
title_short |
Leadless pacemaker through tricuspid bioprosthetic valve: Early experience |
title_full |
Leadless pacemaker through tricuspid bioprosthetic valve: Early experience |
title_fullStr |
Leadless pacemaker through tricuspid bioprosthetic valve: Early experience |
title_full_unstemmed |
Leadless pacemaker through tricuspid bioprosthetic valve: Early experience |
title_sort |
leadless pacemaker through tricuspid bioprosthetic valve: early experience |
publisher |
Wiley |
series |
Journal of Arrhythmia |
issn |
1880-4276 1883-2148 |
publishDate |
2021-04-01 |
description |
Abstract Background Leadless pacemaker (LP) therapy has been proved effective in cases where traditional transvenous right pacing (TRP) failed. TRP through a bioprosthetic tricuspid valve (BTV) has always been considered an unpreferable solution because of possible deleterious effect of permanent pacing leads on BTV function and specifically on tricuspid regurgitation (TR). Very limited data exist about the feasibility and safety of LP implantation in this setting. Methods We describe two cases of LP implantation through BTV in patients with failure of epicardial pacemaker implanted after cardiac surgery. The focus is on technical description of the procedure and on electrical and echocardiographic evaluation at implantation and at the follow‐up. Results In both cases, skilled and careful handling of the delivery system as well as proper use of X‐ray oblique views was determinant for atraumatic successful valve crossing. Likewise, an accurate selection of the deployment site inside the right ventricle, far enough from the valve to avoid valvular dysfunction, was important for successful implantation. Electrical parameters of LP were satisfying at implantation and at the follow‐up. The echocardiogram after implantation and at the follow‐up showed no mechanical interference of LP with prosthetic valve, no significant TR, and absence of significant changes in the biventricular function. Conclusion Our data seem to support feasibility and safety of this type of procedure in skilled hands, allowing efficacious pacing without valvular dysfunction or right ventricular (RV) physiology impairment. |
topic |
bioprosthetic tricuspid valve leadless pacemaker Micra Transcatheter pacing system transvenous pacing failure |
url |
https://doi.org/10.1002/joa3.12478 |
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