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几何形状对先天性二叶式主动脉瓣模拟模型中叶瓣应力的影响。

Effect of Geometry on the Leaflet Stresses in Simulated Models of Congenital Bicuspid Aortic Valves.

作者信息

Jermihov Paul N, Jia Lu, Sacks Michael S, Gorman Robert C, Gorman Joseph H, Chandran Krishnan B

机构信息

Department of Biomedical Engineering, 1402 SC, College of Engineering, University of Iowa, Iowa City, IA 52245, USA.

出版信息

Cardiovasc Eng Technol. 2011 Mar;2(1):48-56. doi: 10.1007/s13239-011-0035-9.

Abstract

The aim of the study was to assess the effect of geometric variations on the stresses developed in the leaflets of congenital bicuspid aortic valves (CBAV). We developed a model for the human tri-leaflet aortic valve based on the geometry and dimensions published in the literature. We also developed simulated CBAV geometry based on the most common geometry present in patients with CBAV that is published in the literature. We employed a constitutive relationship for the leaflet material from the previously published experimental data of fresh porcine aortic valve leaflet specimens for the analysis. We performed dynamic finite element (FE) structural analysis of the valves in the aortic position in order to compute the strain and stress distribution on the leaflets of the tri-leaflet valve and the CBAV models. Our results showed that large changes in the computed in-plane leaflet strain and stress occurred with variations in the geometry of the simulated CBAV whereas changes due to alterations in material constants were correspondingly less. The valve orifice area in the fully open position was significantly reduced in CBAV compared to that for the tri-leaflet valve. The changes in geometry of CBAV resulted in large changes in in-plane strain and stress and our results suggest that geometrical variations may be a potential risk factor inducing calcific aortic stenosis frequently present in patients with CBAV.

摘要

本研究的目的是评估几何形状变化对先天性二叶式主动脉瓣(CBAV)瓣叶中产生的应力的影响。我们基于文献中公布的几何形状和尺寸,建立了人类三叶式主动脉瓣模型。我们还根据文献中公布的CBAV患者中最常见的几何形状,建立了模拟的CBAV几何形状。我们采用了先前发表的新鲜猪主动脉瓣叶标本实验数据中的瓣叶材料本构关系进行分析。我们对处于主动脉位置的瓣膜进行了动态有限元(FE)结构分析,以计算三叶式瓣膜和CBAV模型瓣叶上的应变和应力分布。我们的结果表明,随着模拟CBAV几何形状的变化,计算得到的瓣叶面内应变和应力发生了很大变化,而材料常数改变引起的变化相应较小。与三叶式瓣膜相比,CBAV在完全打开位置的瓣膜开口面积显著减小。CBAV几何形状的变化导致面内应变和应力发生很大变化,我们的结果表明,几何形状变化可能是导致CBAV患者中经常出现的钙化性主动脉瓣狭窄的一个潜在风险因素。

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