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先天性二叶式主动脉瓣的收缩期流固耦合模型:建模要求评估

Systolic fluid-structure interaction model of the congenitally bicuspid aortic valve: assessment of modelling requirements.

作者信息

Kuan May Y S, Espino Daniel M

机构信息

a School of Mechanical Engineering, University of Birmingham , Birmingham B15 2TT , UK.

出版信息

Comput Methods Biomech Biomed Engin. 2015;18(12):1305-20. doi: 10.1080/10255842.2014.900663. Epub 2014 Mar 25.

Abstract

A transient fluid-structure interaction (FSI) model of a congenitally bicuspid aortic valve has been developed which allows simultaneous calculation of fluid flow and structural deformation. The valve is modelled during the systolic phase (the stage when blood pressure is elevated within the heart to pump blood to the body). The geometry was simplified to represent the bicuspid aortic valve in two dimensions. A congenital bicuspid valve is compared within the aortic root only and within the aortic arch. Symmetric and asymmetric cusps were simulated, along with differences in mechanical properties. A moving arbitrary Lagrange-Euler mesh was used to allow FSI. The FSI model requires blood flow to induce valve opening and induced strains in the region of 10%. It was determined that bicuspid aortic valve simulations required the inclusion of the ascending aorta and aortic arch. The flow patterns developed were sensitive to cusp asymmetry and differences in mechanical properties. Stiffening of the valve amplified peak velocities, and recirculation which developed in the ascending aorta. Model predictions demonstrate the need to take into account the category, including any existing cusp asymmetry, of a congenital bicuspid aortic valve when simulating its fluid flow and mechanics.

摘要

已经开发出一种先天性二叶式主动脉瓣的瞬态流固耦合(FSI)模型,该模型能够同时计算流体流动和结构变形。该瓣膜在收缩期(心脏内血压升高以将血液泵送到身体的阶段)进行建模。几何形状被简化以二维形式表示二叶式主动脉瓣。仅在主动脉根部和主动脉弓内对先天性二叶式瓣膜进行比较。模拟了对称和不对称的瓣叶,以及力学性能的差异。使用移动的任意拉格朗日 - 欧拉网格来实现流固耦合。该流固耦合模型要求血流诱导瓣膜打开并在该区域产生约10%的诱导应变。已确定二叶式主动脉瓣模拟需要纳入升主动脉和主动脉弓。所形成的流动模式对瓣叶不对称性和力学性能差异敏感。瓣膜变硬会放大峰值速度以及升主动脉中出现的再循环。模型预测表明,在模拟先天性二叶式主动脉瓣的流体流动和力学时,需要考虑其类别,包括任何现有的瓣叶不对称性。

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