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Evaluation of Atrial Electromechanical Delay to Predict Atrial Fibrillation in Hemodialysis Patients
Hakan Gunes1, Abdullah Sokmen2, Hakki Kaya3
1Department of Cardiology, Sutcu Imam University, 46040 Kahramanmaras, Turkey. drhakangunes83@hotmail.com.
Insights
Atrial electromechanical delay, a measure of how the atria conduct electrical impulses, is significantly longer in hemodialysis patients experiencing atrial fibrillation. This delay is an independent predictor of atrial fibrillation attacks in this population.
Area of Science:
- Cardiology
- Nephrology
- Electrophysiology
Background:
- Hemodialysis patients exhibit a higher prevalence of atrial fibrillation compared to the general population.
- Atrial electromechanical delay is a recognized predictor of atrial fibrillation.
Purpose of the Study:
- To investigate the relationship between atrial electromechanical delay and atrial fibrillation attacks in hemodialysis patients.
- To determine if atrial electromechanical delay can predict atrial fibrillation in this cohort.
Main Methods:
- Seventy-seven hemodialysis patients aged over 18 were enrolled.
- Patients were categorized into two groups based on 24-hour Holter ECG monitoring: those with and without atrial fibrillation episodes.
- Atrial conduction times and atrial electromechanical delays were measured using tissue Doppler echocardiography.
Main Results:
- Both intra- and interatrial electromechanical delays were significantly prolonged in patients with atrial fibrillation attacks (p=0.03 and p<0.001, respectively).
- An interatrial electromechanical delay cutoff of >21 ms demonstrated 73.7% sensitivity and 79.3% specificity for predicting atrial fibrillation (AUC 0.820).
- Multivariate analysis identified interatrial electromechanical delay (OR=1.230) and hypertension (OR=4.525) as independent predictors of atrial fibrillation.
Conclusions:
- Interatrial electromechanical delay is independently associated with atrial fibrillation attacks in hemodialysis patients.
- Tissue Doppler-derived interatrial electromechanical delay is a valuable predictor of atrial fibrillation in this high-risk population.
Abstract:
Background and objective: Prevalence of atrial fibrillation is higher in hemodialysis patients as compared to the general population. Atrial electromechanical delay is known as a significant predictor of atrial fibrillation. In this study, we aimed to reveal the relationship between atrial electromechanical delay and attacks of atrial fibrillation. Materials and methods: The study included 77 hemodialysis patients over 18 years of age giving written consent to participate in the study. The patients were divided into two groups based on the results of 24-h Holter Electrocardiogram (Holter ECG) as the ones having attacks of atrial fibrillation and the others without any attack of atrial fibrillation. Standard echocardiographic measurements were taken from all patients. Additionally, atrial conduction times were measured by tissue Doppler technique and atrial electromechanical delays were calculated. Results: Intra- and interatrial electromechanical delay were found as significantly lengthened in the group of patients with attacks of atrial fibrillation (p = 0.03 and p < 0.001 respectively). The optimal cut-off time for interatrial electromechanical delay to predict atrial fibrillation was >21 ms with a specificity of 79.3% and a sensitivity of 73.7% (area under the curve 0.820; 95% confidence interval (CI), 0.716⁻0.898). In the multivariate logistic regression model, interatrial electromechanical delay (odds ratio = 1.230; 95% CI, 1.104⁻1.370; p < 0.001) and hypertension (odds ratio = 4.525; 95% CI, 1.042⁻19.651; p = 0.044) were also associated with atrial fibrillation after adjustment for variables found to be statistically significant in univariate analysis and correlated with interatrial electromechanical delay. Conclusions: Interatrial electromechanical delay is independently related with the attacks of atrial fibrillation detected on Holter ECG records in hemodialysis patients.
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