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一种新型的聚合物主动脉瓣设计。

A novel design of a polymeric aortic valve.

作者信息

Gharaie Saleh Hassanzadeh, Morsi Yos

机构信息

Faculty of Engineering and Industrial Sciences, Swinburne University of Technology, Hawthorn, Victoria - Australia.

出版信息

Int J Artif Organs. 2015 May;38(5):259-70. doi: 10.5301/ijao.5000413. Epub 2015 May 30.

Abstract

INTRODUCTION

In this paper we propose a novel method for developing a polymeric heart valve that could potentially offer an optimum solution for a heart valve substitute. The valve design proposed will provide superior hydrodynamic performance and excellent structural integrity. A full description of the design process is given together with an analysis of the hemodynamic performance using a 2-way strongly coupled Fluid Structure Interaction (FSI).

METHOD

A polymeric tri-leaflet heart valve is designed based on a patient's sinus of Valsalva (SOV) geometry. The design strategy aims to improve valve hemodynamic performance as well as valve durability by avoiding stress concentrations in the leaflets and reducing the maximum stress level. The valve dynamics and stress levels are also validated by comparing the predicted data to existing experimental and numerical data.

RESULTS

The stress distribution in the valve structure is fully characterized throughout the simulation and Von Mises stress is found to be up to 5.32 Mpa during diastole. The results show that an effective orifice area (EOA) and a pressure drop of 3.22 cm^2, and 3.52 mmHg, respectively, can be achieved using the proposed design.

CONCLUSIONS

The optimized valve demonstrates high hemodynamic performance with no sign of damaging stress concentration in the entire cardiac cycle.

摘要

引言

在本文中,我们提出了一种开发聚合物心脏瓣膜的新方法,该方法有可能为心脏瓣膜替代物提供最佳解决方案。所提出的瓣膜设计将提供卓越的流体动力学性能和出色的结构完整性。给出了设计过程的完整描述,并使用双向强耦合流固相互作用(FSI)对血流动力学性能进行了分析。

方法

基于患者的主动脉瓣窦(SOV)几何形状设计了一种聚合物三叶心脏瓣膜。设计策略旨在通过避免小叶中的应力集中并降低最大应力水平来提高瓣膜的血流动力学性能以及瓣膜耐久性。通过将预测数据与现有的实验和数值数据进行比较,也验证了瓣膜动力学和应力水平。

结果

在整个模拟过程中充分表征了瓣膜结构中的应力分布,并且在舒张期发现冯·米塞斯应力高达5.32兆帕。结果表明,使用所提出的设计分别可以实现有效瓣口面积(EOA)为3.22平方厘米和压力降为3.52毫米汞柱。

结论

优化后的瓣膜在整个心动周期中表现出高血流动力学性能,且无破坏性应力集中的迹象。

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