Device Longevity in a Contemporary Cohort of ICD/CRT-D Patients Undergoing Device Replacement
Francesco Zanon1, Cristian Martignani2, Ernesto Ammendola3
1Arrhythmia and Electrophysiology Unit, Cardiology Department, Santa Maria Della Misericordia Hospital, Rovigo, Italy.
Insights
The longevity of implantable cardioverter-defibrillators (ICDs) varies by manufacturer and device type. Factors like CRT-D, system failures, and pacing percentage impact ICD service life, with significant differences observed between brands.
Area of Science:
- Cardiology
- Biomedical Engineering
- Medical Device Technology
Background:
- The service life of implantable cardioverter-defibrillators (ICDs) is critical for patient care and healthcare economics.
- Understanding factors influencing ICD longevity is essential for optimizing device management and replacement strategies.
Purpose of the Study:
- To investigate the reasons for ICD replacement.
- To determine the service life of explanted ICDs.
- To identify factors associated with shorter ICD service life.
Main Methods:
- Analysis of consecutive patients undergoing ICD replacement across 36 Italian centers from March 2013 to May 2015.
- Collection of data on replaced devices, including reasons for replacement and device longevity.
- Multivariate analysis to identify factors associated with device replacement.
Main Results:
- Battery depletion was the primary reason for replacement (85%).
- Median service life was 5.9 years for single/dual-chamber ICDs and 4.9 years for CRT-Ds.
- CRT-D devices, Biotronik ICDs, higher ventricular pacing percentages, and system failures were linked to shorter service life, while Boston Scientific devices showed longer longevity.
Conclusions:
- Factors such as CRT-D configuration, system failures, and pacing percentage significantly influence ICD longevity.
- Substantial variations in device longevity exist among different manufacturers, highlighting the need for individualized replacement planning.
Introduction:
The longevity of defibrillators (ICD) is extremely important from both a clinical and economic perspective. We studied the reasons for device replacement, the longevity of removed ICD, and the existence of possible factors associated with shorter service life.
Methods And Results:
Consecutive patients who underwent ICD replacement from March 2013 to May 2015 in 36 Italian centers were included in this analysis. Data on replaced devices were collected. A total of 953 patients were included in this analysis. In 813 (85%) patients the reason for replacement was battery depletion, while 88 (9%) devices were removed for clinical reasons and the remaining 52 because of system failure (i.e., lead or ICD generator failure or a safety advisory indication). The median service life was 5.9 years (25th-75th percentile, 4.9-6.9) for single- and dual-chamber ICD and 4.9 years (25th-75th percentile, 4.0-5.7) for CRT-D. On multivariate analysis, the factors CRT-D device, SC/DC ICD generator from Biotronik, percentage of ventricular pacing, and the occurrence of a system failure were positively associated with a replacement procedure. By contrast, the device from Boston Scientific was an independent protective factor against replacement. Considerable differences were seen in battery duration in both ICD and CRT-D. Specifically, Biotronik devices showed the shortest longevity among ICD and Boston Scientific showed the longest longevity among CRT-D (log-rank test, P < 0.001 for pairwise comparisons).
Conclusion:
Several factors were associated with shorter service life of ICD devices: CRT-D, occurrence of system failure and percentage of ventricular pacing. Our results confirmed significant differences among manufacturers.
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