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首页> 外文期刊>Journal of Computational and Applied Research in Mechanical Engineering (JCARME) >An advection-diffusion multi-layer porous model for stent drug delivery in coronary arteries
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An advection-diffusion multi-layer porous model for stent drug delivery in coronary arteries

机译:冠状动脉支架药物递送的平流扩散多层多孔模型

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Arterial drug concentration distribution determines local toxicity. The safety issues dealt with Drug-Eluting Stents (DESs) reveal the needs for investigation about the effective factors contributing to fluctuations in arterial drug uptake. The current study focused on the importance of hypertension as an important and controversial risk factor among researchers on the efficacy of Heparin-Eluting Stents (HES). For this purpose, the effect of blood pressure is systematically investigated in certain cardiac cycle modes. A comprehensive study is conducted on two classes, pulsatile (time-dependent), to have a more realistic simulation, and non-pulsatile (time-independent) blood flow, each one in four modes. The governing equations applied to drug release dynamics are obtained based on porous media theory. The equations are solved numerically using Finite Volume Method (FVM). Results reveal that there is a significant difference when the plasma flow considered and when it is neglected (regardless of time dependency). Moreover, the concentration level is more decreased in pulsatile blood flow rather than the non-pulsatile blood flow, although the penetration depth for pressure and concentration are nearly 20% and 5% of the wall thickness, respectively. In other words, the mass experienced by the arterial wall is lower in pulsatile blood flow in comparison to non-pulsatile blood flow. As a consequence, the risk of toxicity is declined as the blood pressure increases. Also, it can be seen that the polymer is diffusion-dominated so that no significant changes in the release characteristics are observed in the presence of the plasma filtration.
机译:动脉药物浓度分布决定了局部毒性。涉及毒品洗脱支架(DESS)的安全问题揭示了对有助于动脉吸毒中波动的有效因素的调查需求。目前的研究侧重于高血压的重要性,作为肝素洗脱支架(HES)疗效研究人员的重要且争议的危险因素。为此目的,在某些心脏循环模式下系统地研究了血压的效果。在两类脉冲(时间依赖)上进行了一个综合研究,以具有更现实的模拟和非脉动(时间无关)血流,每一个以四种模式。基于多孔介质理论获得应用于药物释放动力学的控制方程。使用有限体积法(FVM)数值求解方程。结果表明,当考虑等离子体流动时,当被忽略时存在显着差异(无论时间依赖性如何)。此外,在脉动血流中浓度水平更低,而不是非脉动血流,尽管压力和浓度的渗透深度分别是壁厚的近20%和5%。换句话说,与非脉动血流相比,动脉壁所经历的质量在脉动血流中较低。因此,随着血压的增加,毒性的风险被拒绝。而且,可以看出聚合物的扩散束缚,使得在存在血浆过滤存在下没有观察到释放特性的显着变化。

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