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Numerical Methods for Fluid-Structure Interaction Models of Aortic Valves

机译:主动脉瓣流固耦合模型的数值方法

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In the recent years, fluid structure interaction (FSI) models of the aortic valve and root have become increasingly common for two main reasons. The medical reason is that millions of patients suffer from aortic valve disorders. The second reason is that this challenging problem combines several fields of computational mechanics. The key motive for these modeling attempts is their potential to shed light on phenomena that cannot be captured in experiments or in simplified models of solely hemodynamics or structural mechanics. The aim of this paper is to review the state-of-the-art FSI methods in general and their application to the aortic valve in particular. A brief overview of the medical background is provided. The numerical methods and appropriate assumptions are then presented with examples of previous aortic valve models, followed by a discussion of the limitation of current models and recommendations for overcoming them in future research. The methods presented in this paper could help readers to choose the modelling approach and assumptions that are most suitable for their goals.
机译:近年来,由于两个主要原因,主动脉瓣和根部的流体结构相互作用(FSI)模型变得越来越普遍。医学上的原因是数百万患者患有主动脉瓣疾病。第二个原因是这个具有挑战性的问题结合了计算力学的多个领域。这些建模尝试的主要动机在于,它们有可能揭示出在实验中或仅在血液动力学或结构力学的简化模型中无法捕获的现象。本文的目的是回顾一下最新的FSI方法,尤其是它们在主动脉瓣中的应用。提供了医学背景的简要概述。然后用先前的主动脉瓣模型的示例介绍了数值方法和适当的假设,然后讨论了当前模型的局限性,并提出了在未来研究中克服它们的建议。本文介绍的方法可以帮助读者选择最适合其目标的建模方法和假设。

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