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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Fluid-wall modelling of mass transfer in an axisymmetric stenosis: effects of shear-dependent transport properties.
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Fluid-wall modelling of mass transfer in an axisymmetric stenosis: effects of shear-dependent transport properties.

机译:轴对称狭窄中传质的流体壁建模:剪切依赖性传输特性的影响。

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摘要

Mechanical forces, such as low wall shear stress (WSS), are implicated in endothelial dysfunction and atherogenesis. The accumulation of low density lipoprotein (LDL) and hypoxia are also considered as main contributing factors in the development of atherosclerosis. The objective of this study was to investigate the influences of WSS on arterial mass transport by modelling the flow of blood and solute transport in the lumen and arterial wall. The Navier-Stokes equations and Darcy's Law were used to describe the fluid dynamics of the blood in the lumen and wall respectively. Convection-diffusion-reaction equations were used to model LDL and oxygen transport. The coupling of fluid dynamics and solute dynamics at the endothelium was achieved by the Kedem-Katchalsky equations. A shear-dependent hydraulic conductivity relation extracted from experimental data in the literature was employed for the transport of LDL and a shear-dependent permeability was used for oxygen. The integrated fluid-wall model was implemented in Comsol Multiphysics 3.2 and applied to an axisymmetric stenosis. The results showed elevated LDL concentration and reduced oxygen concentration in the subendothelial layer of the arterial wall in areas where WSS is low, suggesting that low WSS might be responsible for lipid accumulation and hypoxia in the arterial wall.
机译:诸如低壁切应力(WSS)之类的机械力与内皮功能障碍和动脉粥样硬化发生有关。低密度脂蛋白(LDL)的积累和缺氧也被认为是动脉粥样硬化发展的主要促成因素。这项研究的目的是通过对管腔和动脉壁中的血流和溶质运输进行建模,研究WSS对动脉质量运输的影响。 Navier-Stokes方程和达西定律分别用来描述内腔和壁中血液的流体动力学。对流-扩散-反应方程用于模拟低密度脂蛋白和氧气的传输。通过Kedem-Katchalsky方程实现了内皮中流体动力学和溶质动力学的耦合。从文献中的实验数据中提取的与剪切有关的水力传导率关系用于LDL的传输,而与剪切有关的渗透率用于氧。集成的流体壁模型在Comsol Multiphysics 3.2中实现,并应用于轴对称狭窄。结果表明,在WSS较低的区域,动脉壁的内皮下层的LDL浓度升高,而氧气浓度降低,这表明低WSS可能是脂质在动脉壁积聚和缺氧的原因。

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