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Utility of Functional and Volumetric Left Atrial Parameters Derived From Preprocedural Cardiac CTA in Predicting
Gilberto J Aquino1, Josua A Decker1,2, U Joseph Schoepf1
1Department of Radiology and Radiological Science, Division of Cardiovascular Imaging, Medical University of South Carolina, 25 Courtenay Dr, Ashley River Tower, Charleston, SC 29425-2260.
Insights
Left atrial emptying fraction (LAEF) from cardiac CTA independently predicts mortality in severe aortic stenosis patients undergoing transcatheter aortic valve replacement (TAVR). This finding aids in pre-TAVR risk assessment and post-TAVR surveillance.
Area of Science:
- Cardiology
- Radiology
- Medical Imaging
Background:
- Cardiac computed tomography angiography (CTA) is crucial for preprocedural assessment before transcatheter aortic valve replacement (TAVR).
- Left atrial (LA) functional parameters can be derived from cardiac CTA.
- Assessing LA function may offer prognostic value in patients with severe aortic stenosis (AS).
Purpose of the Study:
- To evaluate the predictive utility of functional and volumetric LA parameters from cardiac CTA for mortality in severe AS patients undergoing TAVR.
- To determine if LA parameters improve risk stratification beyond existing clinical scores.
Main Methods:
- Retrospective analysis of 175 severe AS patients undergoing pre-TAVR cardiac CTA.
- Calculation of maximum and minimum LA volumes indexed to body surface area (LAVImax, LAVImin) and LA emptying fraction (LAEF).
- Cox regression analysis and C-index assessment for mortality prediction over 24 months; interobserver agreement assessed via ICC.
Main Results:
- Thirty-eight deaths (21.7%) occurred within a median 21-month follow-up.
- LAVImax, LAVImin, and LAEF were univariably associated with mortality.
- LAEF independently predicted mortality after adjusting for clinical factors (HR, 0.97; p = .02).
- Incorporating LA parameters improved the C-index of the STS-PROM score.
Conclusions:
- Left atrial emptying fraction derived from preprocedural cardiac CTA is an independent predictor of mortality in severe AS patients undergoing TAVR.
- Cardiac CTA-derived LA function assessment can enhance pre-TAVR risk stratification and post-TAVR surveillance.
Abstract:
BACKGROUND. Cardiac CTA is required for preprocedural workup before transcatheter aortic valve replacement (TAVR) and can be used to assess functional parameters of the left atrium (LA). OBJECTIVE. We aimed to evaluate the utility of functional and volumetric LA parameters derived from cardiac CTA to predict mortality in patients with severe aortic stenosis (AS) undergoing TAVR. METHODS. This retrospective study included 175 patients with severe AS (92 men, 83 women; median age, 79.0 years) who underwent cardiac CTA for clinical pre-TAVR assessment. A postdoctoral research fellow calculated maximum and minimum LA volumes using biplane area-length measurements; these values were indexed to body surface area, and maximum and minimum LA volume index (LAVImax and LAVImin, respectively) values were calculated. The LA emptying fraction (LAEF) was automatically calculated. All-cause mortality within a 24-month follow-up period after TAVR was recorded. To identify parameters predictive of mortality, Cox regression analysis was performed, and results were summarized by hazard ratio (HR) and 95% CI. The Harrell C-index was used to assess model performance. A radiology resident repeated the measurements in a random sample of 20% (n = 35) of the cases, and interobserver agreement was computed using the intraclass correlation coefficient (ICC). RESULTS. Thirty-eight deaths (21.7%) were recorded within a median follow-up of 21 months. LAVImax (HR, 1.02 [95% CI, 1.01-1.04]; p = .01), LAVImin (HR, 1.02 [95% CI, 1.01-1.04]; p < .001), and LAEF (HR, 0.97 [95% CI, 0.95-0.99]; p = .002) were predictive of mortality in univariable analysis. After adjusting for clinical parameters, only LAEF (HR, 0.97 [95% CI, 0.94-0.99]; p = .02) independently predicted mortality. The C-index of the Society of Thoracic Surgeons Predicted Risk of Mortality (STS-PROM) significantly increased from 0.636 to 0.683, 0.694, and 0.700 when incorporating into the model LAVImax, LAVImin, and LAEF, respectively. The ICC for maximum and minimum LA volumes and LAEF ranged from 0.94 to 0.99. CONCLUSION. LAEF derived from preprocedural cardiac CTA independently predicts mortality in patients with severe AS undergoing TAVR. CLINICAL IMPACT. Cardiac CTA-derived LA function, evaluated during pre-TAVR workup, can be used to assess preprocedural risk and may improve risk stratification in post-TAVR surveillance.
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