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二尖瓣腱索对左心室血流的影响。

Effects of mitral chordae tendineae on the flow in the left heart ventricle.

作者信息

Meschini Valentina, de Tullio Marco D, Verzicco Roberto

机构信息

Gran Sasso Science Institute, Viale Francesco Crispi 7, 67100, L'Aquila, Italy.

Politecnico di Bari, Via Re David, 200, 70125, Bari, Italy.

出版信息

Eur Phys J E Soft Matter. 2018 Feb 28;41(2):27. doi: 10.1140/epje/i2018-11634-7.

Abstract

In this paper a computational model for the ventricular flow with a mitral valve and modeled chordae tendineae is presented. The results are compared with an analogous case in which the chordae are not included and their presence is replaced by kinematic boundary conditions. The problem is studied using direct numerical simulation of the Navier-Stokes equations, two-way coupled with a structural solver for the ventricle and mitral valve dynamics. An experimental validation of the model is performed by a comparison of the results with a companion dedicated experiment. It is found that the inclusion of the chordae tendineae makes the model self-consistent thus avoiding the use of ad hoc kinematic constraints to mimic their effect. In this way it is possible to simulate the correct system dynamics without user-defined parameters. More in detail, the results have shown that the mitral valve dynamics can be described also without chordae with the help of ad hoc kinematic constrains, whereas the changes produced in the intra-ventricular flow need the explicit consideration of the chordae in the model. On the other hand, the computational load increases owing to the presence of additional structures that, being thin filaments, are also demanding for the spatial resolution requirements. Since the presence of the chordae tendineae produces only specific differences in the overall flow structure, we conclude that their explicit modeling should be limited to those cases in which their presence is unavoidable.

摘要

本文提出了一种带有二尖瓣和模拟腱索的心室流动计算模型。将结果与一个类似案例进行了比较,在该案例中未包含腱索,而是用运动学边界条件代替了它们的存在。使用纳维 - 斯托克斯方程的直接数值模拟来研究这个问题,该模拟与用于心室和二尖瓣动力学的结构求解器进行双向耦合。通过将结果与一个配套的专门实验进行比较,对模型进行了实验验证。研究发现,包含腱索使模型具有自洽性,从而避免了使用特设运动学约束来模拟其效果。通过这种方式,可以在不使用用户定义参数的情况下模拟正确的系统动力学。更详细地说,结果表明,借助特设运动学约束,也可以在不考虑腱索的情况下描述二尖瓣动力学,而心室内流动产生的变化则需要在模型中明确考虑腱索。另一方面,由于存在额外的结构(这些结构是细丝状,对空间分辨率要求也很高),计算负荷增加。由于腱索的存在仅在整体流动结构中产生特定差异,我们得出结论,它们的显式建模应仅限于那些不可避免存在腱索的情况。

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