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Published on: December 11, 2017
Strategies for Aortic Root Measurement in Patients Undergoing Surveillance for Thoracic Aortic Disease
Asama Rana1, Irbaz Hameed1, Sedem Dankwa1
1Division of Cardiac Surgery, Department of Surgery, Yale School of Medicine, New Haven, CT 06510, USA.
Insights
The novel Laplace diameter method provides a more accurate aortic root size measurement than the conventional sinus-to-sinus method. This improved sizing could expand surgical eligibility for patients with aortic root dilation.
Area of Science:
- Cardiovascular Imaging
- Medical Measurement Techniques
- Aortic Root Anatomy
Background:
- Aortic root geometry is often non-circular, posing challenges for accurate measurement.
- Conventional sinus-to-sinus diameter may underestimate aortic root size.
- The Laplace diameter metric accounts for the aortic root's cloverleaf shape.
Purpose of the Study:
- To compare the conventional sinus-to-sinus diameter with the novel Laplace diameter method for aortic root sizing.
- To assess the impact of these measurements on surgical decision-making based on current guidelines.
Main Methods:
- Computed tomography (CT) scans of 530 patients with various aortic root morphologies were analyzed.
- Aortic root diameters were measured using both sinus-to-sinus and Laplace methods.
- Statistical comparisons included paired t-tests and Spearman rank correlation.
Main Results:
- Laplace diameter measurements were significantly larger than sinus-to-sinus diameters across all patient groups (p < 0.0001).
- The Laplace method identified an additional 21% of patients meeting surgical thresholds compared to the sinus-to-sinus method.
- While correlated, the relationship between the two methods was non-linear (R² = 0.492).
Conclusions:
- The Laplace diameter offers a more comprehensive assessment of aortic root size, averaging 3 mm larger than sinus-to-sinus diameter.
- Utilizing the Laplace diameter could lead to earlier surgical intervention for a significant proportion of patients.
- This method enhances the accuracy of aortic root assessment for surgical planning.
Abstract:
Objectives: Several measurement techniques have been proposed to address the non-circular geometry of the aortic root. The Laplace diameter metric incorporates the cloverleaf anatomy of the aortic root and is derived via measurement of sinus-to-commissure lengths with subsequent doubling of the largest radius from the center. This study compares the conventional sinus-to-sinus with the novel Laplace method for sizing the aortic root and quantifying its implication on surgical decision-making. Methods: Patients undergoing surveillance at a high-volume aortic center were categorized by aortic root morphology as nondilated, non-syndromic dilated, bicuspid aortic valve and Marfan syndrome. Aortic root diameters by sinus-to-sinus and Laplace diameter methods were measured on computed tomography, compared using paired t-tests, and correlated using Spearman rank coefficients. Results: Of the 1297 patients assessed, 530 were included in the final analysis (nondilated n = 113, non-syndromic dilated n = 347, bicuspid aortic valve n = 50, Marfan syndrome n = 17). Aortic root diameters were significantly larger by Laplace than sinus-to-sinus diameter across all groups (sinus-to-sinus: 1.9 ± 5.5 mm; Laplace: 44.9 ± 7.0 mm; 95% confidence interval 2.72-3.34; p < 0.0001). Although Laplace and sinus-to-sinus diameter were correlated (Spearman r = 0.6789, 95% CI 0.6-0.7; p < 0.0001), the relationship was non-linear (R2 = 0.492). Laplace diameter increased the proportion of patients meeting surgical thresholds (2022 AHA/ACC guidelines) versus sinus-to-sinus: nondilated 0% vs. 1.77%, non-syndromic dilated 4.9% vs. 25.1%, bicuspid aortic valve 10.0% vs. 26.0%, and Marfan syndrome 23.5% vs. 52.9%. Conclusions: On average, Laplace diameter exceeded sinus-to-sinus diameter by 3 mm and would extend surgical eligibility to an additional 21% of patients under current guidelines.
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