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Thoracic Aortic Diameter and Cardiovascular Events and Mortality among Women and Men
Oscar L Rueda-Ochoa1, Lidia R Bons1, Fang Zhu1
1From the Departments of Epidemiology (O.L.R.O., F.Z., M.K.I., M.W.V., O.H.F., D.B., M.K.), Cardiology (L.R.B., S.R., K.E.G., J.W.D., J.W.R.H.), Radiology and Nuclear Medicine (R.P.J.B., M.W.V., A.v.d.L., D.B.), and Neurology (M.K.I.), Erasmus MC, University Medical Center Rotterdam, PO Box 2040, 3000 CA Rotterdam, the Netherlands.
Insights
Larger thoracic aortic diameters, especially when indexed by body mass index, predict increased cardiovascular mortality and stroke risk in both men and women. This finding highlights aortic size as a key biomarker for adverse cardiovascular events.
Area of Science:
- Cardiovascular Imaging
- Epidemiology
- Biomarkers
Background:
- Thoracic aortic diameter is a potential biomarker for major adverse cardiovascular events.
- Understanding sex-specific associations is crucial for risk stratification.
Purpose of the Study:
- To evaluate sex-specific associations between ascending (AA) and descending (DA) thoracic aortic diameters and risks of stroke, coronary heart disease, heart failure, cardiovascular mortality, and all-cause mortality.
Main Methods:
- Population-based Rotterdam Study participants (n=2178) underwent multidetector-row CT.
- Cox proportional hazard models assessed associations of BMI-indexed and non-indexed AA and DA diameters with outcomes.
- Hazard ratios were calculated per standard deviation increase in aortic diameters.
Main Results:
- Larger BMI-indexed AA diameter increased cardiovascular mortality risk by 33% in women.
- Larger BMI-indexed DA diameter increased stroke risk by 38% and cardiovascular mortality by 46% in women.
- Increased BMI-indexed AA and DA diameters were linked to higher all-cause mortality in both sexes.
Conclusions:
- Larger ascending and descending thoracic aortic diameters, indexed by BMI, are associated with increased risks of adverse cardiovascular outcomes and mortality in both men and women.
- Aortic diameter serves as a significant imaging biomarker for cardiovascular risk assessment.
Abstract:
Background Thoracic aortic diameter may have a role as a biomarker for major adverse cardiovascular events. Purpose To evaluate the sex-specific association of the diameters of the ascending (AA) and descending (DA) thoracic aorta with risk of stroke, coronary heart disease, heart failure, cardiovascular mortality, and all-cause mortality. Materials and Methods Study participants from the population-based Rotterdam Study who underwent multidetector-row CT between 2003 and 2006 were evaluated. Cox proportional hazard models were conducted to evaluate the associations of AA and DA diameters indexed and not indexed for body mass index (BMI) with cardiovascular events and mortality for men and women. Hazard ratios (HRs) were calculated per 1-unit greater SD of aortic diameters. Results A total of 2178 participants (mean age, 69 years; 55% women) were included. Mean follow-up was 9 years. Each 0.23-mm/(kg/m2) larger BMI-indexed AA diameter was associated with a 33% higher cardiovascular mortality risk in women (HR, 1.33; 95% CI: 1.03, 1.73). Each 0.16-mm/(kg/m2) larger BMI-indexed DA diameter was associated with a 38% higher risk of stroke (HR, 1.38; 95% CI: 1.07, 1.78) and with a 46% greater risk of cardiovascular mortality (HR, 1.46; 95% CI: 1.10, 1.94) in women. Larger BMI-indexed AA and DA diameters were associated with greater risk of all-cause mortality in both sexes. Conclusion Larger ascending and descending thoracic aortic diameters indexed by body mass index were associated with greater risk of adverse cardiovascular outcomes and mortality in women and men. Clinical trial registration no. NTR6831 © RSNA, 2022 Online supplemental material is available for this article. See also the editorial by Williams in this issue.
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