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Robotic Ablation of Atrial Fibrillation
Published on: May 29, 2015
Practice Variation in Anticoagulation Prescription and Outcomes After Device-Detected Atrial Fibrillation
Alexander C Perino1,2, Jun Fan2, Mariam Askari2
1Department of Medicine, Stanford University School of Medicine, CA (A.C.P., P.A.H., M.P.T.).
Insights
Oral anticoagulation (OAC) is underutilized for device-detected atrial fibrillation (AF), despite its association with reduced stroke risk. Higher AF burden, particularly over 24 hours, showed the strongest stroke reduction with OAC.
Area of Science:
- Cardiology
- Medical Devices
- Public Health
Background:
- Device-detected atrial fibrillation (AF) increases stroke risk, but clear guidelines for initiating oral anticoagulation (OAC) based on AF burden are lacking.
- Understanding OAC prescription patterns after device-detected AF is crucial for optimizing stroke prevention strategies.
Purpose of the Study:
- To investigate variations in OAC prescription practices following new device-detected AF.
- To examine the association between OAC initiation and stroke risk across different thresholds of AF burden.
Main Methods:
- Retrospective cohort study using Veterans Health Administration data linked to remote monitoring.
- Included patients with cardiac implantable electronic devices and AF burden data (2011-2014).
- Analyzed OAC prescription within 90 days of AF detection and its association with stroke using Cox regression.
Main Results:
- Device-detected AF was common, with significant AF burden observed in a substantial proportion of patients.
- OAC prescription rates increased with AF burden but remained low overall (13% for >6 min to 27% for >24 hours).
- Substantial site-level variation in OAC prescription was noted; OAC initiation after >24 hours of AF was associated with a significant reduction in stroke risk.
Conclusions:
- Device-detected AF is prevalent in veterans with cardiac implantable electronic devices.
- Significant practice variation exists in OAC initiation, with low overall treatment rates, even for prolonged AF episodes.
- Further randomized trials are warranted to confirm the stroke-reducing benefits of OAC in device-detected AF.
Background:
Device-detected atrial fibrillation (AF) is associated with increased risk of stroke; however, there are no clearly defined thresholds of AF burden at which to initiate oral anticoagulation (OAC). We sought to describe OAC prescription practice variation in response to new device-detected AF and the association with outcomes.
Methods:
We performed a retrospective cohort study using data from the Veterans Health Administration linked to remote monitoring data that included day-level AF burden. We included patients with cardiac implantable electronic devices and remote monitoring from 2011 to 2014, CHA2DS2-VASc score ≥2, and no prior stroke or OAC receipt in the preceding 2 years. We determined the proportion of patients prescribed OAC within 90 days after new device-detected AF across a range of AF thresholds (≥6 minutes to >24 hours) and examined site variation in OAC prescription. We used multivariable Cox proportional hazards regressions to determine the association of OAC prescription with stroke by device-detected AF burden.
Results:
Among 10 212 patients with cardiac implantable electronic devices, 4570 (45%), 3969 (39%), 3263 (32%), and 2469 (24%) had device-detected AF >6 minutes, >1 hour, >6 hours, and >24 hours, respectively. For device-detected AF >1 hour, 1712 patients met inclusion criteria (72±10 years; 1.5% female; CHA2DS2-VASc score 4.0±1.4; HAS-BLED score 2.6±1.1). The proportion receiving OAC varied based on device-detected AF burden (≥6 minutes: 272/2101 [13%]; >1 hour: 273/1712 [16%]; >6 hours: 263/1279 [21%]; >24 hours: 224/818 [27%]). Across 52 sites (N=1329 patients), there was substantial site-level variation in OAC prescription after device-detected AF >1 hour (median, 16%; range, 3%-67%; median odds ratio, 1.56 [95% credible interval, 1.49-1.71]). In adjusted models, OAC prescription after device-detected AF >24 hours was associated with reduced stroke risk (hazard ratio, 0.28; 95% CI, 0.10-0.81; P=0.02), although the propensity-adjusted model was significant when AF lasted at least 6 minutes.
Conclusions:
Among veterans with cardiac implantable electronic devices, device-detected AF is common. There is large practice variation in 90-day OAC initiation after new device-detected AF, with low rates of treatment overall, even for episodes that last >24 hours. The strongest association of OAC with reduction in stroke was observed after device-detected AF >24 hours. Randomized trials are needed to confirm these observational findings.
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