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Evaluation of an aortic valve prosthesis: Fluid-structure interaction or structural simulation?

机译:主动脉瓣假体的评估:流体-结构相互作用或结构模拟?

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摘要

Bio-inspired polymeric heart valves (PHVs) are excellent candidates to mimic the structural and the fluid dynamic features of the native valve. PHVs can be implanted as prosthetic alternative to currently clinically used mechanical and biological valves or as potential candidate for a minimally invasive treatment, like the transcatheter aortic valve implantation. Nevertheless, PHVs are not currently used for clinical applications due to their lack of reliability. In order to investigate the main features of this new class of prostheses, pulsatile tests in an in-house pulse duplicator were carried out and reproduced in silico with both structural Finite-Element (FE) and Fluid-Structure interaction (FSI) analyses. Valve kinematics and geometric orifice area (GOA) were evaluated to compare the in vitro and the in silico tests. Numerical results showed better similarity with experiments for the FSI than for the FE simulations. The maximum difference between experimental and FSI GOA at maximum opening time was only 5%, as compared to the 46.5% between experimental and structural FE GOA. The stress distribution on the valve leaflets clearly reflected the difference in valve kinematics. Higher stress values were found in the FSI simulations with respect to those obtained in the FE simulation. This study demonstrates that FSI simulations are more appropriate than FE simulations to describe the actual behaviour of PHVs as they can replicate the valve-fluid interaction while providing realistic fluid dynamic results.
机译:受生物启发的聚合物心脏瓣膜(PHV)是模仿天然瓣膜的结构和流体动力学特征的绝佳候选者。 PHV可以作为目前临床上使用的机械瓣膜和生物瓣膜的替代物进行植入,也可以作为微创治疗的潜在候选物进行植入,例如经导管主动脉瓣膜植入。尽管如此,由于PHV缺乏可靠性,目前还没有用于临床。为了研究这种新型假体的主要特征,在内部脉冲复制器中进行了脉冲测试,并通过结构有限元(FE)和流固耦合(FSI)分析在计算机上进行了复制。评估了阀的运动学和几何孔面积(GOA),以比较体外和计算机测试。数值结果与FSI的实验相比,与FE模拟的实验结果具有更好的相似性。实验和FSI GOA在最大打开时间之间的最大差异仅为5%,而实验和结构FE GOA之间的最大差异仅为46.5%。瓣膜小叶上的应力分布清楚地反映了瓣膜运动学的差异。在FSI仿真中发现的应力值要比在FE仿真中获得的应力值高。这项研究表明,FSI仿真比FE仿真更适合描述PHV的实际行为,因为它们可以复制阀-流体相互作用,同时提供逼真的流体动力学结果。

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