Key result
Long-term continuous electrocardiographic monitoring with insertable cardiac monitors was superior to all simulated intermittent monitoring strategies for detecting atrial fibrillation (p<0.001).
Why the study?
Does long-term continuous monitoring with an insertable cardiac monitor improve the detection of atrial fibrillation compared to intermittent monitoring strategies in patients with cryptogenic stroke?
Cohort (n=168)
Does long-term continuous monitoring with an insertable cardiac monitor improve the detection of atrial fibrillation compared to intermittent monitoring strategies in patients with cryptogenic stroke?
p-value: p=<0.001
Long-term continuous electrocardiographic monitoring with insertable cardiac monitors is significantly more effective than simulated intermittent monitoring strategies for identifying atrial fibrillation in patients with previous cryptogenic stroke.
May support ICM use in cryptogenic stroke; leaves open impact on recurrent events and optimal duration.
Ischemic stroke cause remains undetermined in 30% of cases, leading to a diagnosis of cryptogenic stroke. Paroxysmal atrial fibrillation (AF) is a major cause of ischemic stroke but may go undetected with short periods of ECG monitoring. The Cryptogenic Stroke and Underlying Atrial Fibrillation trial (CRYSTAL AF) demonstrated that long-term electrocardiographic monitoring with insertable cardiac monitors (ICM) is superior to conventional follow-up in detecting AF in the population with cryptogenic stroke. We evaluated the sensitivity and negative predictive value (NPV) of various external monitoring techniques within a cryptogenic stroke cohort. Simulated intermittent monitoring strategies were compared to continuous rhythm monitoring in 168 ICM patients of the CRYSTAL AF trial. Short-term monitoring included a single 24-hour, 48-hour, and 7-day Holter and 21-day and 30-day event recorders. Periodic monitoring consisted of quarterly monitoring through 24-hour, 48-hour, and 7-day Holters and monthly 24-hour Holters. For a single monitoring period, the sensitivity for AF diagnosis was lowest with a 24-hour Holter (1.3%) and highest with a 30-day event recorder (22.8%). The NPV ranged from 82.3% to 85.6% for all single external monitoring strategies. Quarterly monitoring with 24-hour Holters had a sensitivity of 3.1%, whereas quarterly 7-day monitors increased the sensitivity to 20.8%. The NPVs for repetitive periodic monitoring strategies were similar at 82.6% to 85.3%. Long-term continuous monitoring was superior in detecting AF compared to all intermittent monitoring strategies evaluated (p <0.001). Long-term continuous electrocardiographic monitoring with ICMs is significantly more effective than any of the simulated intermittent monitoring strategies for identifying AF in patients with previous cryptogenic stroke.
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Choe et al. (2015) conducted a cohort in Cryptogenic stroke (n=168). Long-term continuous rhythm monitoring with insertable cardiac monitors vs. Simulated intermittent monitoring strategies was evaluated on Detection of atrial fibrillation (p=<0.001). Long-term continuous electrocardiographic monitoring with insertable cardiac monitors was superior to all simulated intermittent monitoring strategies for detecting atrial fibrillation (p<0.001).
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