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April 30, 2026European Heart Journal135 citationsOpen Access

Assessing aortic valve area in aortic stenosis by continuity equation: a novel approach using real-time three-dimensional echocardiography

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KPKian Keong PohRLRobert A. LevineJSJorge Solı́s

Key Result

Real-time three-dimensional echocardiography (RT3DE) calculation of aortic valve area showed modest correlation with 2DE in patients (r=0.71) and superior accuracy in a sheep model (r=0.96 vs r=0.71).

Study Design

Type

Observational (n=68)

Structured PICO

Does real-time three-dimensional echocardiography (RT3DE) improve the accuracy of aortic valve area calculation compared to 2D echocardiography in patients with aortic stenosis?

P
Population
68 patients with aortic stenosis (mean age 74 +/- 12 years) and an experimental sheep model with balloon inflation of the septum to mimic upper septal hypertrophy (USH).
I
Intervention
Real-time three-dimensional echocardiography (RT3DE) colour Doppler to directly measure LVOT stroke volume for aortic valve area (AVA) calculation.
C
Comparator
Two-dimensional echocardiographic (2DE) continuity-equation derived AVA.
O
Outcome
Accuracy and agreement of AVA calculation between RT3DE and 2DE, and validation against aortic flow probe in the sheep model.surrogate

RT3DE colour Doppler provides a more accurate calculation of aortic valve area than standard 2D echocardiography, particularly in patients with upper septal hypertrophy.

Abstract

AIMS: Two-dimensional echocardiographic (2DE) continuity-equation derived aortic valve area (AVA) in aortic stenosis (AS) relies on non-simultaneous measurement of left ventricular outflow tract (LVOT) velocity and geometric assumptions of LVOT area, which can amplify error, especially in upper septal hypertrophy (USH). We hypothesized that real-time three-dimensional echocardiography (RT3DE) can improve accuracy of AVA by directly measuring LVOT stroke volume (SV) in one window. METHODS AND RESULTS: RT3DE colour Doppler and 2DE were acquired in 68 AS patients (74 +/- 12 yrs) prospectively. SV was derived from flow obtained from a sampling curve placed orthogonal to LVOT (Tomtec Imaging). Agreement between continuity-equation derived AVA by RT3DE (AVA(3D-SV)) and 2DE (AVA(2D)) and predictors of discrepancies were analysed. Validation of LVOT SV was performed by aortic flow probe in a sheep model with balloon inflation of septum to mimic USH. There was only modest correlation between AVA(2D) and AVA(3D-SV) (r = 0.71, difference 0.11 +/- 0.23 cm(2)). The degree of USH was significantly associated with difference in AVA calculation (r = 0.4, P = 0.005). In experimentally distorted LVOT geometry in sheep, RT3DE correlated better with flow probe assessment (r = 0.96, P < 0.001) than 2DE (r = 0.71, P = 0.006). CONCLUSION: RT3DE colour Doppler-derived LVOT SV in the calculation of AVA by continuity equation is more accurate than 2D, including in situations such as USH, common in the elderly, which modify LVOT geometry.

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Cite This Study

Poh et al. (2008) conducted an observational in Aortic stenosis (n=68). Real-time three-dimensional echocardiography (RT3DE) vs. Two-dimensional echocardiography (2DE) was evaluated on Agreement between continuity-equation derived aortic valve area by RT3DE and 2DE. Real-time three-dimensional echocardiography (RT3DE) calculation of aortic valve area showed modest correlation with 2DE in patients (r=0.71) and superior accuracy in a sheep model (r=0.96 vs r=0.71).

synapsesocial.com/papers/69f2ca25a9949f73c77cb9c3https://doi.org/10.1093/eurheartj/ehn022
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