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Published on: March 8, 2019
Baseline Diameter Does Not Predict Growth Rate in a Presurgical Ascending Thoracic Aortic Aneurysm Population
Prabhvir S Marway1, Nicasius Tjahjadi2, Carlos Alberto Campello Jorge1
1Department of Radiology University of Michigan Ann Arbor MI.
Insights
Maximal aortic diameter does not predict growth rate in ascending thoracic aortic aneurysms under 55 mm. Age, weight, and aortic valve insufficiency are key factors influencing aneurysm expansion.
Area of Science:
- Cardiovascular imaging
- Aortic disease research
- Biomechanical analysis
Background:
- Ascending thoracic aortic aneurysms require routine imaging surveillance.
- Aortic growth rate is crucial for surgical decisions, but its relationship with diameter is unclear.
- Vascular deformation mapping offers precise 3D growth assessment.
Purpose of the Study:
- To investigate the relationship between ascending thoracic aortic aneurysm diameter and growth rate.
- To determine predictors of aortic growth rate in patients with aneurysms.
- To utilize vascular deformation mapping for accurate growth analysis.
Main Methods:
- Retrospective analysis of adult patients with ascending aortic dilation (≥4.0 cm) and serial CT angiograms (≥2 years apart).
- Exclusion of patients with heritable thoracic aortic disease.
- Ascending growth rate quantified by 90th percentile radial wall deformation using vascular deformation mapping.
Main Results:
- No correlation found between growth rate and baseline diameter (r=0.02, P=0.74) or other size metrics.
- Mean baseline diameter was 46.3±3.6 mm; median growth rate was 0.21 mm/year.
- Age, weight, and moderate/severe aortic valve insufficiency independently predicted growth rate.
Conclusions:
- Maximal aortic diameter is not predictive of aortic growth rate in aneurysms <55 mm.
- Aortic growth is influenced by factors beyond maximal diameter.
- This study highlights the need for comprehensive assessment in aneurysm management.
Background:
Patients with ascending thoracic aortic aneurysm are recommended to undergo routine imaging surveillance. Although maximal diameter is the primary metric of disease severity, recent American College of Cardiology/American Heart Association guidelines emphasize the importance of aortic growth in determining surgical candidacy and risk. As diameter increases, it is assumed that aortic growth rate accelerates because of increased wall tension; however, this relationship is poorly studied. We aim to investigate the relationship between ascending thoracic aortic aneurysm diameter and growth rate using vascular deformation mapping, a validated technique for 3-dimensional growth mapping with submillimeter accuracy.
Methods And Results:
We retrospectively identified adult patients with ascending aortic dilation (≥4.0 cm) and serial gated computed tomography angiograms separated by ≥2 years, excluding confirmed heritable thoracic aortic disease. Ascending growth rate was defined as 90th percentile radial wall deformation by vascular deformation mapping. Maximal diameter measurements were derived from the baseline computed tomography angiogram, and aortic length and body size-adjusted indexes were calculated. Among 258 included patients (63.2% men; age of 63 years [interquartile range, 55-69 years]), mean±SD baseline diameter was 46.3±3.6 mm and median growth rate was 0.21 mm/year (interquartile range, 0.13-0.38 mm/year). No correlation was noted between growth rate and baseline diameter (r=0.02, P=0.74) or other aortic size metrics. On multivariate analysis, age was independently predictive of growth rate (β=-0.007, P=0.021), alongside weight (β=0.003, P=0.016) and the presence of moderate or severe aortic valve insufficiency (β=0.146, P=0.049).
Conclusions:
Maximal aortic diameter is not predictive of aortic growth rate, in this contemporary cohort of patients with sizes under current surgical thresholds (<55 mm).
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