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Long-term follow-up, computed tomography, and computational fluid dynamics of the Cabrol procedure
Joseph Knight1, Stephan Baumüller, Vartan Kurtcuoglu
1Laboratory of Thermodynamics in Emerging Technologies, Department of Mechanical and Process Engineering, ETH Zurich, Switzerland.
Insights
The Cabrol procedure for coronary artery bypass may lead to low blood flow, especially in the right coronary artery graft. This reduced flow correlates with a higher rate of graft occlusion over time.
Area of Science:
- Cardiovascular Surgery
- Medical Imaging
- Biomedical Engineering
Background:
- The Cabrol procedure involves aortic composite grafting with coronary artery reimplantation.
- Long-term outcomes and hemodynamics of the Cabrol procedure require further investigation.
Purpose of the Study:
- To report long-term clinical and computed tomographic (CT) findings after the Cabrol procedure.
- To evaluate blood flow dynamics within Cabrol grafts using computational fluid dynamics (CFD).
Main Methods:
- Review of clinical data and dual-source CT angiography in 7 patients with 12 Cabrol grafts.
- CFD analysis of a patient's Cabrol graft, compared to a Valsalva graft and healthy aortic root.
- Assessment of graft patency and flow parameters.
Main Results:
- CT revealed occlusions in 14% of left main and 40% of right coronary artery Cabrol grafts.
- Low flow rates and a spiraling flow pattern were observed in the right Cabrol graft.
- Direct reattachment of the right coronary artery to the aortic graft showed patent outcomes.
Conclusions:
- Low flow in right-sided Cabrol grafts is associated with increased occlusion rates.
- Findings highlight potential hemodynamic limitations of the Cabrol procedure, particularly for the right coronary artery.
Objectives:
The Cabrol procedure is characterized by insertion of an ascending aortic composite graft with reimplantation of the coronary arteries by the interposition of a graft tube. Our purpose is to report the clinical long-term follow-up and computed tomographic findings in patients having undergone the Cabrol procedure and to determine blood flow in the Cabrol graft using computational fluid dynamics.
Methods:
Clinical follow-up (76.6 +/- 16.6 months) and dual-source computed tomographic angiography data of 7 patients (all men, mean age 54.9 +/- 9.6 years) with 12 Cabrol grafts (left main coronary artery, n = 7; right coronary artery, n = 5) were reviewed. In 2 patients, the right coronary artery was directly reattached to the aortic graft. Computational fluid dynamics were calculated using computed tomographic data of a patient with the Cabrol procedure and compared with those in a Valsalva graft and a healthy aortic root.
Results:
Computed tomography showed Cabrol graft occlusions to 1 of 7 (14%) left main and of 2 of 5 (40%) right coronary arteries. Six grafts to the left main and 3 to the right coronary artery were fully patent, similar to the 2 directly reattached right coronary arteries to the aortic graft. Computational fluid dynamics results show similar blood flow parameters into the coronaries for the healthy aortic root and Valsalva graft. In the Cabrol graft, a spiraling flow pattern with low flow into the right coronary artery was found (right coronary artery = 1 mL/min at both systole and diastole).
Conclusions:
Our study indicates low flow rates particularly in the right Cabrol graft correlating with a higher incidence of occlusions of the right as compared with the left Cabrol graft at long-term follow-up.
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