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Computer simulation and experimental analysis of LDL transport in the arteries

机译:动脉LDL运输的计算机模拟与实验分析

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Atherosclerosis develops from oxidized low-density lipoprotein molecules (LDL). When oxidized LDL evolves in plaque formations within an artery wall, a series of reactions occur to repair the damage to the artery wall caused by oxidized LDL. Macrophages accumulate inside arterial intima, they started to collect oxidized LDL and form foam cells. Smooth muscle cells accumulate in the atherosclerotic arterial intima, where they proliferate and secrete extracellular matrix to form a fibrous cap. In this study, experimental model of LDL transport on the isolated blood vessel from rabbit on high fat diet after 8 weeks is simulated numerically by using a specific model and histological data. The 3D blood flow is governed by the Navier-Stokes equations, together with the continuity equation. Mass transfer within the blood lumen and through the arterial wall is coupled with the blood flow by the convection-diffusion equation. LDL transport in lumen of the vessel is described by Kedem-Katchalsky equations. The inflammatory process is solved using three additional reaction-diffusion partial differential equations. Matching of histological rabbit data is performed using 3D histological image reconstruction and 3D deformation of elastic body. Computed concentrations of labeled LDL of 5.2 % and macrophages distribution of 4.2% inside the media are found to be in good agreement with experimental results. This simulation study provides a useful tool for understanding and prediction of LDL transport through the arterial wall and evolution of atherosclerotic plaques.
机译:动脉粥样硬化由氧化低密度脂蛋白分子(LDL)发育。当氧化LDL在动脉壁内的斑块形成时,发生一系列反应以修复由氧化LDL引起的动脉壁的损伤。巨噬细胞积聚在动脉内膜内,它们开始收集氧化的LDL并形成泡沫细胞。平滑肌细胞积聚在动脉粥样硬化动脉内膜中,在那里它们增殖和分泌细胞外基质以形成纤维状帽。在这项研究中,通过使用特定模型和组织学数据,在数值模拟8周后从兔子从兔子的分离血管上的LDL运输的实验模型。 3D血液流由Navier-Stokes方程管辖,以及连续性方程。通过对流扩散方程,血液内腔内和通过动脉壁的质量传递与血流相连。 KEDEM-KATCLALSKY方程描述了血管内腔中的LDL运输。使用三种附加的反作用 - 扩散部分微分方程来解决炎症过程。使用3D组织学图像重建和弹性体的3D变形来执行组织学兔数据的匹配。在培养基内,计算的标记LDL的浓度为5.2%,巨噬细胞分布为4.2%,与实验结果一致。该仿真研究提供了一种有用的工具,用于通过动脉壁和动脉粥样硬化斑块的动脉壁和演变来了解和预测LDL运输。

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