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二尖瓣的三维不对称建模:一项具有动态边界的有限元研究

Three-dimensional asymmetrical modeling of the mitral valve: a finite element study with dynamic boundaries.

作者信息

Lim Khee Hiang, Yeo Joon Hock, Duran Carlos M G

机构信息

Nanyang Technological University, School of Mechanical and Aerospace Engineering, Singapore.

出版信息

J Heart Valve Dis. 2005 May;14(3):386-92.

Abstract

BACKGROUND AND AIM OF THE STUDY

Previous computational studies of the normal mitral valve have been limited because they assumed symmetrical modeling and artificial boundary conditions. The study aim was to model the mitral valve complex asymmetrically with three-dimensional (3-D) dynamic boundaries obtained from in-vivo experimental data.

METHODS

Distance tracings between ultrasound crystals placed in the sheep mitral valve were converted into 3-D coordinates to reconstruct an initial asymmetric mitral model and subsequent dynamic boundary conditions. The non-linear, real-time left ventricular and aortic pressure loads were acquired synchronously. A quasi-static solution was applied over one cardiac cycle.

RESULTS

The mitral valve leaflet stress was heterogeneous. The trigones experienced highest stresses, while the mid-anterior annulus between trigones experienced low stress. High leaflet stress was observed during peak pressure loading. During isovolumic relaxation, the leaflets were highly stretched between the anterolateral trigone and the posteromedial commissure, resulting in a prominent secondary leaflet stress re-increment. This has not been observed previously, as symmetric models with artificial boundary conditions were studied only in the ejection phase.

CONCLUSION

Here, the first asymmetrical mitral valve model synchronized with 3-D dynamic boundaries and non-linear pressure loadings over the whole cardiac cycle based on in vivo experimental data is described. Despite its limitations, this model provides new insights into the distribution of leaflet stress in the mitral valve.

摘要

研究背景与目的

以往对正常二尖瓣的计算研究存在局限性,因为这些研究采用了对称建模和人工边界条件。本研究的目的是利用从体内实验数据获得的三维(3-D)动态边界对二尖瓣复合体进行非对称建模。

方法

将置于羊二尖瓣中的超声晶体之间的距离追踪数据转换为三维坐标,以重建初始非对称二尖瓣模型及后续动态边界条件。同步采集非线性实时左心室和主动脉压力负荷。在一个心动周期内应用准静态解。

结果

二尖瓣小叶应力不均匀。三角区承受的应力最高,而三角区之间的前环中部承受的应力较低。在压力负荷峰值期间观察到较高的小叶应力。在等容舒张期,小叶在前外侧三角区和后内侧连合之间被高度拉伸,导致小叶应力显著再次增加。此前未观察到这种情况,因为仅在射血期研究了具有人工边界条件的对称模型。

结论

本文描述了首个基于体内实验数据、在整个心动周期内与三维动态边界和非线性压力负荷同步的非对称二尖瓣模型。尽管存在局限性,但该模型为二尖瓣小叶应力分布提供了新的见解。

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