Leadless pacemaker perforations: Clinical consequences and related device and user problems
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Summary
The consequences of Micra pacemaker perforations and related device and operator use problems based on information the manufacturer has submitted to the Food and Drug Administration are reported.
- Type
- article
- Published
- 2021-12-25
- Cited by
- 39
- References
- 18
- Access
- Open access
- OpenAlex
- https://openalex.org/W4200161135
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:245497925
Keywords
Medicine, Food and drug administration, Perforation, Cardiac pacemaker, Intervention (counseling)
References
- The rationale and design of the Micra Transcatheter Pacing Study: safety and efficacy of a novel miniaturized pacemaker.
- A Leadless Intracardiac Transcatheter Pacing System.
- Percutaneous Implantation of an Entirely Intracardiac Leadless Pacemaker.
- How to Implant a Leadless Pacemaker With a Tine‐Based Fixation
- A leadless pacemaker in the real-world setting: The Micra Transcatheter Pacing System Post-Approval Registry.
- Primary safety results from the LEADLESS Observational Study
- Updated performance of the Micra transcatheter pacemaker in the real-world setting: A comparison to the investigational study and a transvenous historical control.
- The learning curve associated with the implantation of the Nanostim leadless pacemaker
- Leadless pacing using the transcatheter pacing system (Micra TPS) in the real world: initial Swiss experience from the Romandie region
- Determinants of the difficulty of leadless pacemaker implantation
- Leadless pacemaker implantation quality: importance of the operator's experience.
- Comparison between leadless and transvenous single-chamber pacemaker therapy in a referral centre for lead extraction
- Major Adverse Clinical Events Associated with the Implantation of a Leadless Intracardiac Pacemaker.
- A leadless pacemaker in the real‐world setting: Patient profile and performance over time
- Contemporaneous Comparison of Outcomes Among Patients Implanted With a Leadless vs Transvenous Single-Chamber Ventricular Pacemaker
Cited by
- Leadless pacemaker implantation complications and the denominator problem
- Real-World use of Leadless Pacing: Lessons Learned.
- Periprocedural anticoagulation therapy in patients undergoing Micra leadless pacemaker implantation.
- Echocardiogram-Guided Leadless Pacemaker Implantation.
- How to Implant Leadless Pacemakers and Mitigate Major Complications.
- Strategies for Safe Implantation and Effective Performance of Single-Chamber and Dual-Chamber Leadless Pacemakers
- Anatomical location of leadless pacemaker and the risk of pacing‐induced cardiomyopathy
- Endocardial versus epicardial pacing in pacemaker-dependent patients after device extraction: a meta-analysis
- Cardioneuroablation for pediatric patients with functional sinus node dysfunction and paroxysmal atrioventricular block
- A case of endocardial dissection caused by Micra implantation
- Cardiac Implantable Electronic Devices.
- A PARYLENE-BASED MEMS INTRAVASCULAR IMPLANT FOR WIRELESS CARDIAC PACING
- Safety and performance of a novel subxiphoidal pacemaker system.
- Assessing the Reproducibility of Research Based on the Food and Drug Administration Manufacturer and User Facility Device Experience Data
- Machine learning-based analysis of adverse events in mesh implant surgery reports
- Leadless Pacemakers: Where Are We?
- First-in-man clinical implantation and acute pacing performance of a novel subxiphoidal pacemaker system.
- Chronic clinical performance of a novel subxiphoidal pacemaker system: Early feasibility study design
- Trends in adoption of extravascular cardiac implantable electronic devices: the Dutch cohort
- Emerging Cardiac Implantable Electronic Device Technologies.
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