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首页> 外文期刊>Journal of Biomechanics >Structural simulations of prosthetic tri-leaflet aortic heart valves.
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Structural simulations of prosthetic tri-leaflet aortic heart valves.

机译:人工三叶主动脉瓣的结构模拟。

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摘要

This study presents a combined computational and experimental approach for the nonlinear structural simulations of polymeric tri-leaflet aortic valves (PAVs). Nonlinear shell-based and quasi-static finite-element (FE) structural models are generated for a prosthetic valve geometry that includes the leaflets, stents and root materials, such as the bottom base and outside walls. The PAV structural model is subject to an ensemble averaged transvalvular pressure waveform measured from repeated in vitro tests conducted with a left heart simulator. High-resolution optical measurements are used to measure the in vitro kinematics of the leaflets and the stents. Qualitative and quantitative deformation measures are defined in order to compare the predicted kinematics from the PAV models with the in vitro measurements. Six new quantitative deformation metrics are introduced. They include three distances measuring the current PAV geometric center to the leaflet edges while additional three distances define the stent post-to-stent post (SPTSP) distances. The structural model is able to predict the kinematic deformation metrics with maximum errors around 10% especially in systole where the displacements are larger in magnitude. The combined structural modeling with experimental simulations along with the new proposed deformation metrics provide an effective way to study the PAV structural behavior and a path for improving the structural design of prosthetic valves.
机译:这项研究提出了一种计算和实验相结合的方法,用于聚合物三叶主动脉瓣(PAV)的非线性结构模拟。针对假体瓣膜几何结构生成了基于壳的非线性和准静态有限元(FE)结构模型,该结构模型包括小叶,支架和根部材料,例如底部底部和外壁。 PAV结构模型受整体平均跨瓣压力波形的影响,该波形是通过使用左心脏模拟器进行的重复体外测试测得的。高分辨率光学测量用于测量小叶和支架的体外运动学。定义了定性和定量变形量度,以便将PAV模型的预测运动学与体外测量结果进行比较。引入了六个新的定量变形指标。它们包括三个距离,用于测量当前PAV几何中心到小叶边缘的距离,而另外三个距离则定义了支架从支架到支架的距离(SPTSP)。结构模型能够预测运动学变形量度,最大误差在10%左右,特别是在位移较大的心脏收缩期。结构模型与实验模拟的结合以及新提出的变形指标为研究PAV的结构行为提供了有效的方法,并为改善人工瓣膜的结构设计提供了途径。

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