Modeling of Hemodynamics in a Vascular Bioprosthesis

Q3 Mathematics
P. Onishchenko, Yu. N. Zakharov, V. Borisov, K. Klyshnikov, E. Ovcharenko, Yu. Kudravceva, Y. Shokin
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引用次数: 1

Abstract

The study of blood flow in vascular bioprostheses is a rather complicated task, since the shape of the inner surface of the bioprosthesis is variable, due to xenogenic origin. Because of this, vortex zones can occur inside the vascular bioprosthesis. In addition, the flow structure may contain sections where the flow velocity is abnormally high. It is all the more difficult to assess the nature of the course when using this vascular bioprosthesis as a shunt. A numerical comparison of the blood flow in a bioprosthesis connected to the main vascular bed using the «end-to-end» and «end-to-side» methods (bypass) taking into account the heart rate and blood pressure was performed. It is shown that, due to the nonlinearity of the initial bioprosthesis geometry, the implantation method affects the blood flow. Because of this, vortex zones arise and, with certain combinations of parameters, the effects of «separation» of vortices.
血管生物假体的血流动力学建模
研究血管生物假体的血流是一项相当复杂的任务,因为生物假体的内表面形状是可变的,由于异种来源。因此,漩涡区可以在血管生物假体内部出现。此外,流动结构可能包含流速异常高的部分。当使用这种血管生物假体作为分流器时,评估过程的性质变得更加困难。在考虑心率和血压的情况下,采用“端到端”和“端到端”方法(旁路)对连接到主血管床的生物假体中的血流进行了数值比较。结果表明,由于初始生物假体几何形状的非线性,植入方法会影响血流。因此,出现了涡区,并且在某些参数的组合下,产生了涡的“分离”效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mathematical Biology and Bioinformatics
Mathematical Biology and Bioinformatics Mathematics-Applied Mathematics
CiteScore
1.10
自引率
0.00%
发文量
13
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