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首页> 外文期刊>The Journal of heart valve disease >Flat or curved pericardial aortic valve cusps: a finite element study.
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Flat or curved pericardial aortic valve cusps: a finite element study.

机译:平坦或弯曲的心包主动脉瓣尖:有限元研究。

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BACKGROUND AND AIM OF THE STUDY: The finite element method (FEM) has frequently been used to investigate the behavior of the aortic valve, but studies on the performance and behavior of free-hand autologous pericardial aortic valves reconstructed using specially designed valve molds have not been performed. The study aim was to demonstrate the effectiveness of a three-dimensional (3-D) cusp of the authors' design (H-Mold) versus a two-dimensional (2-D) (flat) cusp using a FEM to compare stress distribution and leaflet contact properties. METHODS: Solid models of the aortic root and valve cusps were constructed using a computer-aided design package. All models had different free edge lengths and surface areas, but a constant leaflet attachment length corresponding to a 19 mm annulus diameter. A static pressure of 80 mmHg was applied to all models. RESULTS: The maximum von Mises stress value in the H-Mold at the cusp commissure was 34.5% lower than the stress value in the flat leaflet, while the contact area in the H-Mold leaflet was 85.7% greater than that of the flat leaflet. The length of leaflet free edge greatly influenced maximum von Mises stress intensity at the commissures, and the contact area between leaflets was mainly affected by the geometric shape of the leaflet and its surface area. CONCLUSION: 3-D leaflet geometry was found positively to influence leaflet stress distribution and coaptation. This geometry should have a significant impact on the reliability and long-term durability of pericardial aortic valve reconstruction.
机译:研究背景和目的:有限元方法(FEM)经常被用来研究主动脉瓣的行为,但是对使用专门设计的瓣膜模具重建的徒手自体心包主动脉瓣的性能和行为的研究却还没有。被执行。研究目的是通过有限元法比较应力分布的作者设计的三维(3-D)尖角(H-Mold)与二维(2-D)(扁平)尖角的有效性和传单的接触特性。方法:使用计算机辅助设计软件包构建主动脉根和瓣尖的实体模型。所有模型的自由边缘长度和表面积均不同,但是恒定的小叶附着长度对应于19 mm的环直径。 80 mmHg的静压力应用于所有模型。结果:尖瓣连合处H型模具的最大von Mises应力值比扁平小叶的应力值低34.5%,而H型模具的接触面积比扁平小叶的接触面积大85.7% 。小叶自由边缘的长度极大地影响了合缝处的最大冯·米塞斯应力强度,小叶之间的接触面积主要受小叶的几何形状及其表面积影响。结论:3-D小叶的几何形状对小叶的应力分布和适应具有积极影响。这种几何形状应该对心包主动脉瓣重建的可靠性和长期耐用性产生重大影响。

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