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首页> 外文期刊>American Journal of Physiology >Computational modeling of coupled blood-wall mass transport of LDL: effects of local wall shear stress.
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Computational modeling of coupled blood-wall mass transport of LDL: effects of local wall shear stress.

机译:LDL耦合的血壁传质的计算模型:局部壁剪切应力的影响。

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摘要

The work herein represents a novel approach for the modeling of low-density lipoprotein (LDL) transport from the artery lumen into the arterial wall, taking into account the effects of local wall shear stress (WSS) on the endothelial cell layer and its pathways of volume and solute flux. We have simulated LDL transport in an axisymmetric representation of a stenosed coronary artery, where the endothelium is represented by a three-pore model that takes into account the contributions of the vesicular pathway, normal junctions, and leaky junctions also employing the local WSS to yield the overall volume and solute flux. The fraction of leaky junctions is calculated as a function of the local WSS based on published experimental data and is used in conjunction with the pore theory to determine the transport properties of this pathway. We have found elevated levels of solute flux at low shear stress regions because of the presence of a larger number of leaky junctions compared with high shear stress regions. Accordingly, we were able to observe high LDL concentrations in the arterial wall in these low shear stress regions despite increased filtration velocity, indicating that the increase in filtration velocity is not sufficient for the convective removal of LDL.
机译:考虑到局部壁切应力(WSS)对内皮细胞层及其通路的影响,本文的工作代表了一种新方法,用于建模低密度脂蛋白(LDL)从动脉腔进入动脉壁的过程。体积和溶质通量。我们在狭窄的冠状动脉的轴对称表示中模拟了LDL转运,其中内皮由三孔模型表示,该模型考虑了囊泡途径,正常连接和渗漏连接的影响,也使用局部WSS产生总体积和溶质通量。根据已发布的实验数据,根据本地WSS计算泄漏连接的分数,并将其与孔隙理论一起用于确定该路径的传输特性。我们发现,与高剪切应力区域相比,由于存在大量泄漏连接,在低剪切应力区域的溶质通量水平升高。因此,尽管过滤速度增加,我们仍能在这些低剪切应力区域观察到动脉壁中高的LDL浓度,这表明过滤速度的增加不足以对流去除LDL。

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