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瓣叶设计对生物人工心脏瓣膜跨瓣压差的影响。

Effects of Leaflet Design on Transvalvular Gradients of Bioprosthetic Heart Valves.

作者信息

Dabiri Yaghoub, Ronsky Janet, Ali Imtiaz, Basha Ameen, Bhanji Alisha, Narine Kishan

机构信息

Libin Cardiovascular Institute of Alberta, Health Research Innovation Centre (HRIC), University of Calgary, 3280 Hospital Drive NW, Calgary, AB, T2N 4Z6, Canada.

Schulich School of Engineering, University of Calgary, Calgary, Canada.

出版信息

Cardiovasc Eng Technol. 2016 Dec;7(4):363-373. doi: 10.1007/s13239-016-0279-5. Epub 2016 Aug 29.

Abstract

Bioprosthetic aortic valves (BAVs) are becoming the prostheses of choice in heart valve replacement. The objective of this paper is to assess the effects of leaflet geometry on the mechanics and hemodynamics of BAVs in a fluid structure interaction model. The curvature and angle of leaflets were varied in 10 case studies whereby the following design parameters were altered: a circular arch, a line, and a parabola for the radial curvature, and a circular arch, a spline, and a parabola for the circumferential curvature. Six different leaflet angles (representative of the inclination of the leaflets toward the surrounding aortic wall) were analyzed. The 3-dimensional geometry of the models were created using SolidWorks, Pointwise was used for meshing, and Comsol Multiphysics was used for implicit finite element calculations. Realistic loading was enforced by considering the time-dependent strongly-coupled interaction between blood flow and leaflets. Higher mean pressure gradients as well as von Mises stresses were obtained with a parabolic or circular curvature for radial curvature or a parabolic or spline curvature for the circumferential curvature. A smaller leaflet angle was associated with a lower pressure gradient, and, a lower von Mises stress. The leaflet curvature and angle noticeably affected the speed of valve opening, and closing. When a parabola was used for circumferential or radial curvature, leaflets displacements were asymmetric, and they opened and closed more slowly. A circular circumferential leaflet curvature, a linear leaflet radial curvature, and leaflet inclination toward the surrounding aortic wall were associated with superior BAVs mechanics.

摘要

生物人工主动脉瓣(BAV)正成为心脏瓣膜置换术中的首选假体。本文的目的是在流固相互作用模型中评估瓣叶几何形状对BAV力学和血流动力学的影响。在10个案例研究中改变了瓣叶的曲率和角度,从而改变了以下设计参数:径向曲率采用圆拱、直线和抛物线,圆周曲率采用圆拱、样条曲线和抛物线。分析了六种不同的瓣叶角度(代表瓣叶向周围主动脉壁的倾斜度)。使用SolidWorks创建模型的三维几何形状,使用Pointwise进行网格划分,并使用Comsol Multiphysics进行隐式有限元计算。通过考虑血流和瓣叶之间随时间变化的强耦合相互作用来施加实际载荷。对于径向曲率采用抛物线或圆曲率,或对于圆周曲率采用抛物线或样条曲线曲率时,可获得更高的平均压力梯度以及冯·米塞斯应力。较小的瓣叶角度与较低的压力梯度以及较低的冯·米塞斯应力相关。瓣叶曲率和角度显著影响瓣膜的开启和关闭速度。当圆周或径向曲率采用抛物线时,瓣叶位移不对称,开启和关闭更慢。圆周瓣叶曲率为圆形、瓣叶径向曲率为线性以及瓣叶向周围主动脉壁倾斜与更好的BAV力学性能相关。

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