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Updated: May 31, 2026

Three-Dimensional Printing of a Complex Aortic Anomaly
Published on: November 1, 2018
Anomalous Right Coronary Artery Intervention Guided by Patient-Specific 3-Dimensional Printed Modeling
Adrien Jossart1, Timothée Noterdaeme2, Olivier Gach2
1Department of Cardiology, Hôpital de Jolimont, La Louvière, Belgium.
Background:
Percutaneous coronary intervention (PCI) of an anomalous aortic origin of a coronary artery (AAOCA) is technically challenging given difficult engagement and poor support. While coronary computed tomography angiography aids planning, it lacks the tactile simulation provided by patient-specific 3-dimensional (3D) modeling.
Case Summary:
A 58-year-old woman presented with recurrent angina and an anomalous right coronary artery originating from the left sinus. After repeated failures using conventional catheter selection, a 1:1 scale 3D-printed model was used for bench testing. This enabled the selection of an EBU 3.0 guiding catheter, leading to a successful PCI with 2 drug-eluting stents.
Discussion:
This case demonstrates that 3D bench testing allows operators to anticipate support limitations and select optimal catheter geometry, potentially reducing procedure time and radiation. It highlights a structured alternative to empirical "trial-and-error" strategies in complex congenital anatomy.
Take-Home Message:
Patient-specific 3D modeling facilitates successful PCI in AAOCA by enabling precise preprocedural simulation and optimal guiding catheter selection.
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