Multidetector Computed Tomography and Aortic Stenosis: The Emerging Potential of Bridging Morphology and Severity
Gabriele Cordoni1, Diana Di Paolantonio1, Maria Teresa Savo1
1Cardiology Unit, Cardio-Thoracic-Vascular and Public Health Department, Padova University Hospital, 35128 Padova, Italy.
Insights
A new hybrid method using multidetector computed tomography (MDCT) and echocardiography for aortic valve area (AVA) calculation improves diagnostic agreement in aortic stenosis (AS) patients. Left ventricular outflow tract (LVOT) size impacts grading accuracy.
Area of Science:
- Cardiovascular Imaging
- Cardiac Surgery
- Interventional Cardiology
Background:
- Echocardiography is the standard for aortic stenosis (AS) grading but shows discordant results in up to 40% of patients.
- Multidetector computed tomography (MDCT)-derived aortic valve area (AVA) methods may enhance diagnostic concordance.
- The diagnostic performance, hemodynamic validation, and LVOT morphology influence of MDCT-derived AVA require further investigation.
Purpose of the Study:
- To evaluate the diagnostic performance and concordance of MDCT-derived AVA methods compared to echocardiography.
- To validate MDCT-derived AVA against invasive hemodynamics in patients with calcific AS.
- To assess the impact of left ventricular outflow tract (LVOT) morphology on AS severity grading.
Main Methods:
- Retrospective analysis of 307 patients with normal-flow, high-gradient calcific AS undergoing echocardiography, MDCT, and cardiac catheterization.
- Calculation of AVA using echocardiographic LVOT diameter, hybrid Doppler-MDCT planimetric LVOT area, and corrected echocardiographic LVOT diameter.
- Assessment of agreement, correlation, and diagnostic performance using Bland-Altman, Pearson correlation, ROC analysis, and McNemar's test.
Main Results:
- Hybrid AVA demonstrated strong correlation with echocardiographic AVA (r = 0.749) and similar relationships with hemodynamic markers.
- The hybrid method increased concordant classification of severe AS by 8% when combined with echocardiography.
- LVOT size significantly influenced AVA variability and Doppler velocity index, independent of flow status.
Conclusions:
- Hybrid MDCT-derived AVA offers diagnostic performance equivalent to echocardiography and improves concordance in select AS patients.
- LVOT size is a critical factor influencing echocardiographic parameters and may necessitate tailored diagnostic thresholds for AS grading.
Abstract:
Background/Objectives: Echocardiography is the reference standard for grading aortic stenosis (AS); however, it yields discordant severity estimates in up to 40% of patients. Multidetector computed tomography (MDCT)-derived methods for calculating aortic valve area (AVA) may improve diagnostic concordance, but their diagnostic performance, validation against invasive hemodynamics, and the influence of left ventricular outflow tract (LVOT) morphology on severity grading remain insufficiently investigated. Methods: We retrospectively analyzed 307 patients with normal-flow, high-gradient calcific AS who underwent echocardiography, MDCT, and cardiac catheterization. AVA was calculated using (1) echocardiographic LVOT diameter, (2) hybrid Doppler-MDCT planimetric LVOT area, and (3) corrected echocardiographic LVOT diameter (×1.13). Agreement, correlation, and diagnostic performance were assessed using Bland-Altman analysis, Pearson correlation, ROC analysis, and McNemar's test. Subgroups defined by diagnostic concordance and MDCT-derived LVOT size were compared using ANOVA. Results: Hybrid AVA showed a strong correlation with echocardiographic AVA (r = 0.749, p < 0.001), with a mean difference of +0.11 ± 0.15 cm2. Both methods demonstrated similar relationships with invasive and non-invasive hemodynamic markers of AS severity. When combined with echocardiography, the hybrid method increased concordant classification of severe AS by 8%. In contrast, corrected AVA performed significantly worse, leading to more discordant classifications. LVOT size was significantly associated with variability in AVA and Doppler velocity index, independent of flow status. Conclusions: Hybrid MDCT-derived AVA provides diagnostic performance equivalent to echocardiography and improves concordance in selected patients. LVOT size influences key echocardiographic parameters and may warrant tailored diagnostic thresholds.
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