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Published on: July 20, 2022
Three dimensional left atrial volume index is correlated with P wave dispersion in elderly patients with sinus rhythm
Tolga Ozyigit1, Onur Kocas2, Berrin Karadag2
1Department of Cardiology, American Hospital, Istanbul, Turkey.
Insights
In elderly patients, 3D echocardiography of left atrial volume index correlates better with P wave dispersion. This may help identify individuals at higher risk for atrial fibrillation.
Area of Science:
- Cardiology
- Medical Imaging
Background:
- P wave dispersion is a noninvasive electrocardiographic predictor of atrial fibrillation.
- Left atrial volume index (LAVI) is a key indicator of left atrial size and function.
Purpose of the Study:
- To investigate the relationship between left atrial volume index, assessed by 3D echocardiography, and P wave dispersion in elderly patients.
- To determine if LAVI can predict prolonged P wave dispersion.
Main Methods:
- Seventy-three elderly patients (>65 years) were included.
- P wave dispersion was calculated as the difference between maximum and minimum P wave durations.
- Left atrial volume index was measured using 2D and 3D echocardiography.
Main Results:
- Prolonged P wave dispersion was more common in patients with enlarged left atria.
- P wave dispersion significantly correlated with both 2D (r=0.600) and 3D LAVI (r=0.688).
- A 3D LAVI ≥ 25 mL/m² identified patients with prolonged P wave dispersion with 82.2% sensitivity and 67.9% specificity.
Conclusions:
- 3D LAVI demonstrates a stronger correlation with P wave dispersion in the elderly compared to 2D.
- 3D LAVI may serve as a valuable tool for identifying elderly patients with prolonged P wave dispersion, potentially indicating a higher risk for atrial fibrillation.
Background:
P wave dispersion is a noninvasive electrocardiographic predictor for atrial fibrillation. The aim of the study was to explore relation between left atrial volume index assessed by 3-dimensional echocardiography and P wave dispersion in elderly patients.
Methods:
Seventy-three consecutive patients over the age of 65 (mean age: 75 ± 7 years, 17 men) were included. P wave dispersion is calculated as the difference between maximum and minimum P wave durations. Left atrial volume index was measured by both 2-dimensional and 3-dimensional echocardiography and categorized as normal (≤ 34 mL/m(2)) or increased (mild, 35-41 mL/m(2); moderate, 42-48 mL/m(2); severe, ≥ 49 mL/m(2)).
Results:
Thirty-one patients had normal left atrium while 24 patients had mildly enlarged, nine had moderately enlarged, and nine had severely enlarged left atrium. Prolongation of P wave dispersion was more prevalent in patients with dilated left atrium. P wave dispersion was significantly correlated with both 2-dimensional (r = 0.600, p < 0.001) and 3-dimensional left atrial volume index (r = 0.688, p < 0.001). Both left atrial volume indexes were associated with prolonged P wave dispersion when adjusted for age, sex, presence of hypertension, and left ventricular mass index. Receiver-operator characteristic (ROC) analysis revealed that a 3-dimensional left atrial volume index ≥ 25 mL/m(2) separated patients with prolonged P wave dispersion with a sensitivity of 82.2 %, specificity of 67.9 %, positive predictive value of 80.4 %, and negative predictive value of 70.4 %.
Conclusion:
In elderly patients, 3-dimensional left atrial volume index showed a better correlation with P wave dispersion and might be helpful in discriminating patients with prolonged P wave dispersion, who might be prone to atrial fibrillation.
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