Towards an integrated platform for hemodynamics investigation in thoracic aorta: UQ in simulations and experiments
ORAL
Abstract
We focus herein on the inlet boundary condition. Stochastic analyses are performed to evaluate how uncertainties in the flow rate waveform and in the distribution in space of the inlet velocity affect the main hemodynamic indicators in simulations and experiments, by considering both healthy and pathologic geometries. We use the open-source software SimVascular to carry out the simulations, whereas for the experiments we have developed a fully controlled and sensorized circulatory mock loop able to reproduce the fluid dynamic physiological conditions for 3D-printed aortic models. Among the selected input parameters, the stroke volume and the cardiac cycle period have the highest influence. A general increase of wall shear stresses is found with increasing the stroke volume.
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Publication: 1) Boccadifuoco, A., Mariotti, A., Celi, S., Martini, N., Salvetti, M.V. (2018) Impact of uncertainties in outflow boundary conditions on the predictions of hemodynamic simulations of ascending thoracic aortic aneurysms. Computers and Fluids, 165, 96--115.<br>2) Boccadifuoco, A., Mariotti, A., Capellini, K., Celi, S., Salvetti, M.V. (2018) Validation of numerical simulations of thoracic aorta hemodynamics: comparison with in-vivo measurements and stochastic sensitivity analysis. Cardiovasc. Eng. Techn., 9, 688--706.<br>3) Mariotti, A., Vignali, E., Gasparotti, E., Capellini, K., Celi, S., Salvetti, M.V. (2020) Comparison between numerical and MRI data of ascending aorta hemodynamics in a circulatory mock loop. Lecture Notes in Mechanical Engineering, 898—907 <br>4) M.N. Antonuccio, A. Mariotti, B.M. Fanni, K. Capellini, C. Capelli, E. Sauvage, S. Celi, (2021) Effects of uncertainty of outlet boundary conditions in a patient specific case of aortic coarctation, Annals of Biomedical Engineering, Article in Press<br>
Presenters
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Alessandro Mariotti
Pisa Univ
Authors
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Alessandro Mariotti
Pisa Univ
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Emanuele Vignali
BioCardioLab - Bioengineering Unit, Ospedale del Cuore, Fondazione CNR - Regione Toscana G. Monasterio, Massa, Italia
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Emanuele Gasparotti
BioCardioLab - Bioengineering Unit, Ospedale del Cuore, Fondazione CNR - Regione Toscana G. Monasterio, Massa, Italia
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Simona Celi
BioCardioLab - Bioengineering Unit, Ospedale del Cuore, Fondazione CNR - Regione Toscana G. Monasterio, Massa, Italia
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Maria V Salvetti
Pisa Univ