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In Search for a Better Stent: Surrogate based Multi-Objective Optimization of Stent Design under Influence of Vessel Wall Deformation

机译:在寻求更好的支架:基于代理基于血管壁变形的支架设计的多目标优化

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Stenting is known as one of the main treatment procedure for some intravascular abnormalities such as stenosis and aneurysm. In recent years, stent optimization has been conducted by several research groups in order to increase its treatment efficacy. If we can observe post-deployment behavior on the blood vessel with respect to different stent designs, this observation will be useful in the design process. Kriging surrogate model based on fluid flow simulation on a deformed vessel wall was developed in order to observe this behavior. Multi-objectives optimization was performed with configurations of gap and size as design variables. In this research, percentage of low wall shear stress (WSS) area and average mechanical stress along the deployment area were set as the objective functions. We can recommend that strut with medium size around 100 - 250 micron with a relatively big inter-strut gap is suitable for achieving the optimize criteria. This is because on this range, acceptable optimized value of both objectives functions are successfully obtained.
机译:支架术是已知的作为用于某些血管内异常如狭窄和动脉瘤的主要治疗过程中的一个。近年来,支架优化已经被几个研究小组,以提高其疗效进行。如果我们能够观察血管相对于不同的支架设计部署后的行为,这种观察会在设计过程中非常有用。克里格基于对变形的血管壁的流体流动模拟替代模型是为了观察此行为的发展。多目标优化与间隙和尺寸设计变量配置执行。在这项研究中,低壁剪切应力(WSS)面积和平均机械应力沿着部署面积的百分比被设定为目标函数。我们可以推荐具有中等大小围绕支杆100 - 250微米用一个比较大的间支柱间隙是适于实现优化标准。这是因为,在该范围内,被成功地获得的两个目标功能上可接受的优化值。

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