首页> 外文会议>ASME Joint US-European Fluids Engineering Division summer meeting;FEDSM2010 >MODELING DRUG ELUTING STENTS FOR CORONARY ARTERY BIFURCATION CONSIDERING NON-NEWTONIAN EFFECTS
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MODELING DRUG ELUTING STENTS FOR CORONARY ARTERY BIFURCATION CONSIDERING NON-NEWTONIAN EFFECTS

机译:考虑非牛顿效应的冠状动脉分叉药物洗脱时间建模

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Drug Eluting Stents (DES) are commonly used for the treatment of stenotic arteries. Restenosis can be treated by delivering anti-thrombotic and anti-proliferative drugs to the arterial wall. The main mechanism of the drug eluting stent is to allow diffusion of the drug from the coating on the stent, into the arterial wall over a prolonged period of time. Investigation of blood flow hemodynamics and shear stress are of great importance in understanding the transport of drugs through the circulatory systems and predicting the performance of drug eluting stents.While drug eluting stent effectively reduces restenosis rate, the conventional drug eluting stent should be optimized to be used in the bifurcation stenting. Various flow patterns due to specific designs of drug eluting stent influence drug delivery. Numerical simulation techniques are appropriate approaches to study such phenomena which can be used to optimize the design of drug eluting stents for bifurcations. In this paper, the complexity of drug eluting stent function in the bifurcation is presented by employing computational fluid dynamics analysis for various stent strut designs. Drug transportation through the '. lumen and determination of local drug concentrations in arterial wall is carried out for both Newtonian and non-Newtonian flowconditions. It is, to the author's best knowledge, the first investigation of drug dispersion in arterial bifurcation considering the effects of both the blood rheological properties and stent strut design.
机译:药物洗脱支架(DES)通常用于治疗狭窄动脉。再狭窄可以通过向动脉壁输送抗血栓和抗增殖药物来治疗。药物洗脱支架的主要机制是允许药物在较长的时间内从支架上的涂层扩散到动脉壁中。血流动力学和剪切应力的研究对于理解药物通过循环系统的运输以及预测药物洗脱支架的性能非常重要。 虽然药物洗脱支架可有效降低再狭窄率,但常规药物洗脱支架应进行优化以用于分叉支架。由于药物洗脱支架的特殊设计而导致的各种流动模式会影响药物的输送。数值模拟技术是研究此类现象的合适方法,可用于优化分叉药物洗脱支架的设计。在本文中,通过对各种支架支撑设计采用计算流体动力学分析,提出了药物洗脱支架在分支中的功能的复杂性。通过'药物运输。牛顿和非牛顿血流的流明和动脉壁局部药物浓度的测定 情况。据作者所知,这是首次考虑血液流变学特性和支架支撑设计对动脉分叉中药物分散的研究。

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