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Published on: February 26, 2013
Performance of Atrial Fibrillation Burden Trends for Stroke Risk Stratification
Jonathan P Piccini1, Evan J Stanelle2, Cody C Johnson3
1Division of Cardiology, Duke Clinical Research Institute, Duke University Medical Center, Durham, NC (J.P.P.).
Insights
Atrial fibrillation burden trends, measured by insertable cardiac monitors, can predict stroke risk. These trends offer valuable insights beyond traditional methods for managing atrial fibrillation (AF).
Area of Science:
- Cardiology
- Medical Informatics
- Predictive Analytics
Background:
- Atrial fibrillation (AF) significantly increases stroke risk, but conventional monitoring limits understanding of AF burden thresholds.
- Continuous AF burden monitoring and predictive algorithms show promise for improved stroke prediction.
- Insertable cardiac monitors (ICMs) offer a platform for continuous AF burden assessment.
Purpose of the Study:
- To evaluate the performance of temporal AF burden trends derived from ICM data as predictors of stroke.
- To assess the incremental prognostic value of AF burden trends compared to conventional stroke risk factors.
Main Methods:
- Utilized deidentified data from a large cohort (n=5013) with ICMs, linked to claims data.
- Calculated daily AF burden, transformed into simple moving averages (SMAs), and defined temporal trends by comparing SMA pairs.
- Employed classification trees to predict ischemic stroke and quantified AF burden significance using bootstrapped mean variable importance.
Main Results:
- Prior stroke/transient ischemic attack was the leading predictor, followed by no prior AF diagnosis and AF burden trends.
- AF burden trends demonstrated a variable importance of 2.59 in predicting stroke.
- Combined baseline characteristics and AF burden trends achieved an AUC of 0.73, specificity of 0.70, and relative risk of 5.00.
Conclusions:
- Temporal AF burden trends from ICMs provide incremental prognostic value for stroke risk prediction.
- AF burden trends serve as leading indicators of stroke risk, potentially improving upon conventional risk stratification schemes.
- The findings support the integration of continuous AF burden monitoring into stroke risk assessment protocols.
Background:
Atrial fibrillation (AF) is associated with an increased risk of stroke, yet the limitations of conventional monitoring have restricted our understanding of AF burden risk thresholds. Predictive algorithms incorporating continuous AF burden measures may be useful for predicting stroke. This study evaluated the performance of temporal AF burden trends as predictors of stroke from a large cohort with insertable cardiac monitors.
Methods:
Using deidentified data from Optum Clinformatics Data Mart (2007-2019) linked with the Medtronic CareLink insertable cardiac monitor database, we identified patients with an insertable cardiac monitor for AF management (n=1197), suspected AF (n=1611), and cryptogenic stroke (n=2205). Daily AF burden was transformed into simple moving averages, and temporal AF burden trends were defined as the comparison of unique simple moving average pairs. Classification trees were used to predict ischemic stroke, and AF burden significance was quantified using bootstrapped mean variable importance.
Results:
Of 5013 patients (age, 69.2±11.7 years; 50% male; CHA2DS2-VASc, 3.7±1.9) who met inclusion criteria, 869 had an ischemic stroke over 2 409 437 days total follow-up. Prior stroke or transient ischemic attack (variable importance, 13.13) was the number 1 predictor of future stroke followed by no prior diagnosis of AF (7.35) and AF burden trends in follow-up (2.59). Temporal proximity of AF and risk of stroke differed by device indication (simple moving averages: AF management, <8 days and suspected AF and cryptogenic stroke, 8-21 days). Together, baseline characteristics and AF burden trends performed optimally for the area under the receiver operating characteristic curve (0.73), specificity (0.70), and relative risk (5.00).
Conclusions:
AF burden trends may provide incremental prognostic value as leading indicators of stroke risk compared with conventional schemes.
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