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Published on: November 28, 2018
Transvalvular jet velocity, aortic valve area, mortality, and cardiovascular outcomes
Blanca Alcón1, Pablo Martínez-Legazpi2, Simon Stewart3
1Department of Cardiology, Hospital General Universitario Gregorio Marañón, Facultad de Medicina, Universidad Complutense de Madrid, Instituto de Investigación Sanitaria Gregorio Marañón, and CIBERCV, Dr. Esquerdo 46, 28007 Madrid, Spain.
Insights
Aortic stenosis (AS) significantly increases mortality and cardiovascular events, even in mild cases. Peak jet velocity (Vmax) and aortic valve area (AVA) are mismatched for predicting these outcomes.
Area of Science:
- Cardiology
- Echocardiography
- Clinical Outcomes Research
Background:
- The relationship between aortic stenosis (AS) severity, cardiovascular events, and mortality is not fully understood.
- Echocardiographic indices for predicting outcomes across the full spectrum of AS severity require further investigation.
Purpose of the Study:
- To investigate the association between echocardiographic indices of aortic stenosis (AS) and cardiovascular outcomes.
- To compare the predictive capabilities of peak jet velocity (Vmax) and aortic valve area (AVA) in patients with AS.
Main Methods:
- Prospective calculation of Vmax and AVA in 5994 adult subjects.
- Linking ultrasound data with 5-year mortality and clinical events from electronic medical records.
- Utilizing adjusted proportional-hazard and negative binomial regression models.
Main Results:
- A strong linear relationship was observed between Vmax and all-cause mortality, cardiovascular events, and heart failure (HF).
- Significant risks were detected even at Vmax values of 150-200 cm/s, with risk curves separating early.
- Vmax and AVA criteria for grading AS showed mismatched outcome predictions, even in mild disease.
Conclusions:
- Aortic stenosis is strongly linked to increased all-cause mortality, cardiovascular mortality, and cardiac events, particularly heart failure.
- Risks escalate with the degree of outflow obstruction and are evident early in mild AS.
- Current grading criteria for AS using Vmax and AVA are mismatched regarding outcome prediction.
Aims:
The interplay between aortic stenosis (AS), cardiovascular events, and mortality is poorly understood. In addition, how echocardiographic indices compare for predicting outcomes remains unexplored for the full range of AS severity.
Methods And Results:
We prospectively calculated peak jet velocity (Vmax) and aortic valve area (AVA) in 5994 adult subjects with and without AS. We linked ultrasound data to 5-year mortality and clinical events obtained from electronic medical records. Proportional-hazard and negative binomial regression models were adjusted for relevant covariables such as age, sex, comorbidities, stroke-volume, LV ejection fraction, left valve regurgitation, aortic valve sclerosis or calcification, and valve replacement. We observed a strong linear relationship between Vmax and all-cause mortality (hazard ratio: 1.26, 95% confidence interval: 1.19-1.33 per 100 cm/s), cardiovascular events, as well as incidental and recurrent heart failure (HF). Adjusted risks were highly significant even at Vmax values in the range of 150-200 cm/s, risk curves separating very early after the index exam. Vmax was not associated with coronary, arrhythmic, cerebrovascular, or non-cardiovascular events. Although risks were confirmed when AVA was entered in place of Vmax, the risks estimated for categories based on the two indices were mismatched, even in patients with normal flow. An external cohort comprising 112 690 patients confirmed augmented risks of all-cause and cardiovascular mortality starting at values of Vmax and AVA in the range of mild AS.
Conclusions:
Aortic stenosis is strongly associated to all-cause mortality, cardiovascular mortality, and cardiac events, specifically HF. Risks increase in parallel to the degree of outflow obstruction but are apparent very early in patients with mild disease. Criteria for grading AS based on Vmax and AVA are mismatched in terms of outcomes.
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