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P-wave signal-averaged electrocardiogram for predicting atrial arrhythmia after cardiac surgery
Nobuhiko Hayashida1, Takahiro Shojima, Yoshinori Yokokura
1Department of Surgery, Kurume University, Kurume, Japan. nobuhiko@med.kurume-u.ac.jp
Insights
Prolonged P-wave duration, advanced age, and enlarged left atrium predict atrial fibrillation (AF) after heart surgery. Identifying these risk factors can help prevent AF in patients.
Area of Science:
- Cardiology
- Cardiac Surgery
- Electrophysiology
Background:
- Atrial arrhythmias (AF) are common post-cardiac surgery.
- P-wave signal-averaged electrocardiogram (SAECG) assesses atrial conduction delay.
- SAECG can identify patients at risk for AF during sinus rhythm.
Purpose of the Study:
- To evaluate P-wave SAECG as a predictor of postoperative AF.
- To identify risk factors for AF following cardiac surgery.
Main Methods:
- Ninety-five patients undergoing coronary artery bypass grafting or aortic valve replacement were studied.
- Preoperative P-wave duration and voltage were recorded using SAECG.
- Postoperative AF was defined as episodes lasting longer than 1 hour.
Main Results:
- Twenty-nine percent of patients developed AF post-surgery.
- Prolonged P-wave duration (≥135 ms) was significantly associated with AF (p=0.002).
- Advanced age (≥70 years) and larger left atrial dimension (≥35 mm) also predicted AF.
- A model combining these three factors predicted AF with 75% sensitivity and 76% specificity.
Conclusions:
- P-wave duration, advanced age, and left atrial enlargement are independent predictors of AF after cardiac surgery.
- Patients with these risk factors may benefit from prophylactic antiarrhythmic treatment.
Background:
Atrial arrhythmias (AF) are usually benign, but occur frequently after cardiac surgery. P-wave signal-averaged electrocardiogram has been used to characterize atrial conduction delay as a marker of risk of AF during sinus rhythm.
Methods:
Ninety-five patients undergoing either primary isolated coronary artery bypass grafting or aortic valve replacement were enrolled. The duration and the root mean square voltage for the last 20 ms of filtered (40 to 300 Hz) P-wave of the spatial magnitude were recorded before surgery. Any episode of postoperative atrial fibrillation, atrial flutter, or paroxysmal atrial fibrillation lasting longer than 1 hour was considered as AF.
Results:
Twenty-eight patients (29%) exhibited AF 3.0 +/- 2.3 days after surgery. The P-wave duration recorded with P-wave signal-averaged electrocardiogram was significantly prolonged in patients with AF (135 +/- 14 ms versus 127 +/- 9 ms; p = 0.002). Patients with AF more often had dilated left atrium (p = 0.003), left ventricular hypertrophy (p = 0.03), and advanced age (p = 0.02). Logistic regression analysis identified the following three variables as predictive of AF: P-wave duration of 135 ms or greater (p = 0.02; odds ratio, 3.5), patients 70 years of age and older (p = 0.03; odds ratio, 3.2), and left atrial dimension of 35 mm or greater (p = 0.03; odds ratio, 3.2). If a patient had two or more of these three risk factors, the occurrence of AF was predicted with a sensitivity of 75%, specificity of 76%, positive predictive accuracy of 57%, and negative predictive accuracy of 88%.
Conclusions:
The prolonged P-wave duration recorded with P-wave signal-averaged electrocardiogram, together with advanced age and left atrial enlargement, is a potent and independent predictor of AF after cardiac surgery. Patients with these risk factors may benefit from prophylactic antiarrhythmic treatment.
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