Oscillating shear index, time averaged wall shear index, relative residence time analysis in 3D structured analytical artery

E. Aribas, M. S. Çelebi
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Abstract

This study investigates the bio-mechanics of one main artery model in a three dimensional analytical cylindrical generated geometry based on a real human artery. Structured geometry is a medium large (celiac) artery. Constant and sinus velocity profile is applied as an interpolated input. Non-Newtonian Carreau viscosity model and fluid-structure interaction (FSI) is applied numerically. Oscillating Shear Index (OSI), Time Averaged Wall Shear Stress Index (TAWSSI) and Relative Residence Time (RRE) as well as velocity, pressure and pressure are studied. As an example, stenosed areas can be studied with the help of the model. Then these values are compared and presented for their importance.
三维结构分析动脉振荡剪切指数、时间平均壁剪切指数、相对停留时间分析
本研究在真实人体动脉的基础上,以三维解析圆柱生成的几何图形研究了一个大动脉模型的生物力学。结构几何为一条大中型(腹腔)动脉。采用恒速和窦速剖面作为插值输入。应用非牛顿卡罗黏度模型和流固耦合(FSI)进行了数值计算。研究了振荡剪切指数(OSI)、时间平均壁面剪切应力指数(TAWSSI)和相对停留时间(RRE)以及速度、压力和压力。作为一个例子,该模型可以帮助研究狭窄区域。然后对这些值进行比较,并说明它们的重要性。
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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