Related Experiment Video
Updated: Jan 19, 2026

Using High Resolution Computed Tomography to Visualize the Three Dimensional Structure and Function of Plant Vasculature
Published on: April 5, 2013
Calculation of the aortic arch angles from three-dimensional reconstructions of computed tomography scans: Comparison
Julien Gaudric1, María Teresa Politi2, Juan Manuel Fernández2
1Service de Chirurgie Vasculaire, Hôpitaux Universitaires La Pitié-Salpêtrière, 47-83 Bd del'Hôpital, 75013, Paris, France; Sorbonne Université, UPMC UnivParis06, CNRS, UMR7190, Institut Jean Le Rond d'Alembert, 75005, Paris, France.
Background:
The curvature of the aortic arch is associated with the risk of endoleak formation after thoracic endovascular aortic repair (TEVAR). However, the adequate assessment of the angles of the aorta continues to represent a major difficulty. We developed a new program based on three-dimensional (3D) reconstructions of computed tomography (CT) scans to objectively identify the location of the aortic points of maximum curvature, and to automatically calculate the main aortic arch angles, comparing final values with visual assessment methods.
Methods:
This is a cross-sectional validation study of a convenience sample of subjects with multislice CT angiography scans of the thoracic aorta from an institutional imaging database. The center lumen line (CLL) of the aorta was determined semi-automatically using Endosize software. The points of maximum curvature on the CLL were determined by two methods: visually by two physicians and through a custom program.
Results:
The study enrolled 9 subjects: 4 with thoracic aneurysms and 5 with normal aortas. The inter-observer and inter-method correlation, agreement and reliability for each of the 3D spatial coordinates of the points of maximum curvature were appropriate. However, the aortic angles determined by visual assessment showed a very low to moderate correlation and reliability with those determined by our custom program.
Conclusion:
An automated custom program can reflect clinician's intuitive assessment of the location of points of maximum curvature and translate it into aortic angles with an apparently higher precision, reducing potential error and user time.
Related Concept Videos
11:49Using High Resolution Computed Tomography to Visualize the Three Dimensional Structure and Function of Plant Vasculature
10:02Visualization and Analysis of Pharyngeal Arch Arteries using Whole-mount Immunohistochemistry and 3D Reconstruction
04:40Identifying Coronary Artery Calcification on Non-gated Computed Tomography Scans
11:45Generation and 3-Dimensional Quantitation of Arterial Lesions in Mice Using Optical Projection Tomography
03:40Three-Dimensional Printing of a Complex Aortic Anomaly
10:24Neutron Radiography and Computed Tomography of Biological Systems at the Oak Ridge National Laboratory's High Flux Isotope Reactor

