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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Computer modeling of cardiovascular fluid-structure interactions with the deforming-spatial-domain/stabilized space-time formulation
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Computer modeling of cardiovascular fluid-structure interactions with the deforming-spatial-domain/stabilized space-time formulation

机译:变形空间域/稳定时空公式的心血管流体结构相互作用的计算机建模

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Hemodynamic factors such as the wall shear stress are believed to affect a number of cardiovascular diseases including atherosclerosis and aneurysm. Since resolving phenomena in a living human body is currently beyond the capabilities of in vivo measurement techniques, computer modeling is expected to play an important role in gaining a better understanding of the relationship between the cardiovascular diseases and the hemodynamic factors. We have developed a computer modeling technique for cardiovascular hemodynamic simulations. With this modeling technique, patient-specific 3D geometry of an artery can be analyzed. We take into account some of the important factors in human body for the purpose of demonstrating in vivo situations in a virtual world. The interaction between the blood flow and the deformation of the arterial walls is a factor that we are specifically focusing on. For such fluid-structure interactions, we have developed a computer modeling tool based on the deforming-spatial-domain/stabilized space-time (DSD/SST) formulation. This simulation tool is applied to a patient-specific model under pulsatile blood flow conditions. The simulations show that the flow behavior with compliant arterial walls is different from what we see with rigid arterial walls. Consequently, the distribution of the wall shear stress on the compliant arterial walls is significantly different from that on the rigid arterial walls. We deduce that the compliance of the arterial walls needs to be taken into account in cardiovascular hemodynamic simulations, and the computer modeling tool we have developed can be effective in investigation of cardiovascular diseases.
机译:诸如壁切应力的血液动力学因素被认为影响许多心血管疾病,包括动脉粥样硬化和动脉瘤。由于目前解决活体人体中的现象超出了体内测量技术的能力,因此计算机模型有望在更好地了解心血管疾病与血液动力学因素之间的关系方面发挥重要作用。我们已经开发了一种用于心血管血液动力学模拟的计算机建模技术。通过这种建模技术,可以分析患者特定于动脉的3D几何形状。为了演示虚拟世界中的体内情况,我们考虑了人体中的一些重要因素。血流和动脉壁变形之间的相互作用是我们特别关注的一个因素。对于这种流体-结构相互作用,我们基于变形空间域/稳定时空(DSD / SST)公式开发了一种计算机建模工具。该仿真工具可在脉动血流条件下应用于特定于患者的模型。仿真表明,顺应性动脉壁的流动行为与我们看到的刚性动脉壁的流动行为不同。因此,顺应性动脉壁上的壁切应力的分布与刚性动脉壁上的壁切应力的分布明显不同。我们得出结论,在心血管血流动力学模拟中需要考虑动脉壁的顺应性,并且我们开发的计算机建模工具可以有效地研究心血管疾病。

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