Publication: Impact of the bicuspid aortic valve on aortic root haemodynamics: three-dimensional computed fluid dynamics simulation
Impact of the bicuspid aortic valve on aortic root haemodynamics: three-dimensional computed fluid dynamics simulation
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Berdajs, D., Mosbahi, S., Eckstein, F. S., Charbonnier, D., Ferrari, E., & von Segesser, L. K. (2018). Impact of the bicuspid aortic valve on aortic root haemodynamics: three-dimensional computed fluid dynamics simulation. Interactive Cardiovascular and Thoracic Surgery, 27, 446–454. https://doi.org/10.1093/icvts/ivy044
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OBJECTIVES The aim was to evaluate the impact of a bicuspid aortic valve (BAV) on local shear stress and on the pressure profile on the elements of the aortic root (AoR). METHODS The experiment setup included a BAV with aortic valve stenosis (n = 5 pigs, 67 ± 3.5 kg) and insufficiency (n = 5 pigs, 66.7 ± 4.4 kg). By implanting 6 high-fidelity microsonometric crystals in each AoR, we determined the 3-dimensional (3D) geometry of the AoR. Experimental and geometric data were used to create a 3D time- and pressure-dependent computed flui
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Berdajs, D., Mosbahi, S., Eckstein, F. S., Charbonnier, D., Ferrari, E., & von Segesser, L. K. (2018). Impact of the bicuspid aortic valve on aortic root haemodynamics: three-dimensional computed fluid dynamics simulation. Interactive Cardiovascular and Thoracic Surgery, 27, 446–454. https://doi.org/10.1093/icvts/ivy044