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使用流固耦合模拟评估血管移植物的力学性能和各向异性超弹性主动脉模型对改良布莱洛克-陶西格分流术期间局部血流动力学的影响。

The Effects of the Mechanical Properties of Vascular Grafts and an Anisotropic Hyperelastic Aortic Model on Local Hemodynamics during Modified Blalock-Taussig Shunt Operation, Assessed Using FSI Simulation.

作者信息

Kuchumov Alex G, Khairulin Aleksandr, Shmurak Marina, Porodikov Artem, Merzlyakov Andrey

机构信息

Department of Computational Mathematics, Mechanics, and Biomechanics, Faculty of Applied Mathematics and Mechanics, Perm National Research Polytechnic University, 614990 Perm, Russia.

Federal Center of Cardiovascular Surgery, 614990 Perm, Russia.

出版信息

Materials (Basel). 2022 Apr 7;15(8):2719. doi: 10.3390/ma15082719.

Abstract

Cardiovascular surgery requires the use of state-of-the-art artificial materials. For example, microporous polytetrafluoroethylene grafts manufactured by Gore-Tex are used for the treatment of cyanotic heart defects (i.e., modified Blalock-Taussig shunt). Significant mortality during this palliative operation has led surgeons to adopt mathematical models to eliminate complications by performing fluid-solid interaction (FSI) simulations. To proceed with FSI modeling, it is necessary to know either the mechanical properties of the aorta and graft or the rheological properties of blood. The properties of the aorta and blood can be found in the literature, but there are no data about the mechanical properties of Gore-Tex grafts. Experimental studies were carried out on the mechanical properties vascular grafts adopted for modified pediatric Blalock-Taussig shunts. Parameters of two models (the five-parameter Mooney-Rivlin model and the three-parameter Yeoh model) were determined by uniaxial experimental curve fitting. The obtained data were used for patient-specific FSI modeling of local blood flow in the "aorta-modified Blalock-Taussig shunt-pulmonary artery" system in three different shunt locations: central, right, and left. The anisotropic model of the aortic material showed higher stress values at the peak moment of systole, which may be a key factor determining the strength characteristics of the aorta and pulmonary artery. Additionally, this mechanical parameter is important when installing a central shunt, since it is in the area of the central anastomosis that an increase in stress on the aortic wall is observed. According to computations, the anisotropic model shows smaller values for the displacements of both the aorta and the shunt, which in turn may affect the success of preoperative predictions. Thus, it can be concluded that the anisotropic properties of the aorta play an important role in preoperative modeling.

摘要

心血管手术需要使用最先进的人工材料。例如,由戈尔公司生产的微孔聚四氟乙烯移植物用于治疗紫绀型心脏缺陷(即改良布莱洛克-陶西格分流术)。这种姑息性手术期间的高死亡率促使外科医生采用数学模型,通过进行流固相互作用(FSI)模拟来消除并发症。要进行FSI建模,有必要了解主动脉和移植物的力学性能或血液的流变学性能。主动脉和血液的性能可以在文献中找到,但关于戈尔公司生产的聚四氟乙烯移植物的力学性能却没有相关数据。针对用于改良小儿布莱洛克-陶西格分流术的血管移植物的力学性能开展了实验研究。通过单轴实验曲线拟合确定了两种模型(五参数穆尼-里夫林模型和三参数杨模型)的参数。所获得的数据被用于在三个不同分流位置(中央、右侧和左侧)对“主动脉-改良布莱洛克-陶西格分流术-肺动脉”系统中的局部血流进行患者特异性FSI建模。主动脉材料的各向异性模型在收缩期峰值时刻显示出更高的应力值,这可能是决定主动脉和肺动脉强度特征的关键因素。此外,在安装中央分流器时,这个力学参数很重要,因为正是在中央吻合区域观察到主动脉壁上的应力增加。根据计算,各向异性模型显示主动脉和分流器的位移值较小,这反过来可能会影响术前预测的成功率。因此,可以得出结论,主动脉的各向异性特性在术前建模中起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7563/9026531/64834626782f/materials-15-02719-g001.jpg

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