We provide a computational comparison of the performance of stentless and stented aortic prostheses, in terms of aortic root displacements and internal stresses. To this aim, we consider three real patients; for each of them, we draw the two prostheses configurations, which are characterized by different mechanical properties and we also consider the native configuration. For each of these scenarios, we solve the fluid-structure interaction problem arising between blood and aortic root, through Finite Elements. In particular, the Arbitrary Lagrangian-Eulerian formulation is used for the numerical solution of the fluid-dynamic equations and a hyperelastic material model is adopted to predict the mechanical response of the aortic wall and the two prostheses. The computational results are analyzed in terms of aortic flow, internal wall stresses and aortic wall/prosthesis displacements; a quantitative comparison of the mechanical behavior of the three scenarios is reported. The numerical results highlight a good agreement between stentless and native displacements and internal wall stresses, whereas higher/non-physiological stresses are found for the stented case.

Computational comparison of aortic root stresses in presence of stentless and stented aortic valve bio-prostheses / M.G.C. Nestola, E. Faggiano, C. Vergara, R.M. Lancellotti, S. Ippolito, C. Antona, S. Filippi, A. Quarteroni, R. Scrofani. - In: COMPUTER METHODS IN BIOMECHANICS AND BIOMEDICAL ENGINEERING. - ISSN 1476-8259. - 20:2(2017 Jan 25), pp. 171-181. [10.1080/10255842.2016.1207171]

Computational comparison of aortic root stresses in presence of stentless and stented aortic valve bio-prostheses

S. Ippolito;C. Antona;
2017

Abstract

We provide a computational comparison of the performance of stentless and stented aortic prostheses, in terms of aortic root displacements and internal stresses. To this aim, we consider three real patients; for each of them, we draw the two prostheses configurations, which are characterized by different mechanical properties and we also consider the native configuration. For each of these scenarios, we solve the fluid-structure interaction problem arising between blood and aortic root, through Finite Elements. In particular, the Arbitrary Lagrangian-Eulerian formulation is used for the numerical solution of the fluid-dynamic equations and a hyperelastic material model is adopted to predict the mechanical response of the aortic wall and the two prostheses. The computational results are analyzed in terms of aortic flow, internal wall stresses and aortic wall/prosthesis displacements; a quantitative comparison of the mechanical behavior of the three scenarios is reported. The numerical results highlight a good agreement between stentless and native displacements and internal wall stresses, whereas higher/non-physiological stresses are found for the stented case.
stentless aortic prosthesis; finite elements analysis; fluid–structure interaction; geometry deflation
Settore MED/23 - Chirurgia Cardiaca
25-gen-2017
26-lug-2016
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Computer Methods in Biomechanics & Biomedical Engineering Volume issue 2016 [doi 10.1080%2F10255842.2016.1207171] Nestola, M. G. C.; Faggiano, E.; Vergara, C.; Lancellotti, R. M. -- Computational comp.pdf

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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/453033
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