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内皮损伤和血压升高对动脉壁白蛋白积聚的影响:一项数值研究。

Effect of endothelial injury and increased blood pressure on albumin accumulation in the arterial wall: a numerical study.

作者信息

Karner G, Perktold K

机构信息

Institute of Mathematics, Technical University Graz, Graz, Austria.

出版信息

J Biomech. 2000 Jun;33(6):709-15. doi: 10.1016/s0021-9290(99)00226-2.

Abstract

The present study investigates the influence of endothelial damage and of blood pressure on albumin accumulation in the arterial wall. For this purpose a numerical model for the coupled mass transport processes in the arterial lumen and in the various layers of the arterial wall is developed. The model considers the transport in the endothelium, intima, internal elastic lamina (IEL) and media of a straight axisymmetric arterial segment. In the arterial lumen fully developed stationary blood flow is assumed, the filtration velocity in the wall layers is calculated applying Darcy's law. The description of the luminal mass transport uses the stationary convection-diffusion equation, the transport in the porous intima and media is modelled applying the volume-averaged stationary convection-diffusion-reaction equation. The transport processes in the lumen, intima and media are coupled by the flux across the endothelium and IEL, which is mathematically described using the Kedem-Katchalsky equations. The numerical solution of the transport equations applies the finite element method. The results demonstrate a high resistance of the healthy endothelium to macromolecule exchange between blood and the artery wall. The reduced resistance of an injured endothelium causes an increased mass flux into the wall which results in higher concentration levels within the wall. The effect of the blood pressure on the wall concentration level is different for a helathy and an injured endothelium. In the case of a healthy endothelium a blood pressure increase causes a decrease of the intimal concentration and an increase of the medial concentration, whereas in the case of an injured endothelium an increased blood pressure results in higher concentration levels within the intima and media.

摘要

本研究调查了内皮损伤和血压对动脉壁中白蛋白积聚的影响。为此,建立了一个用于动脉腔和动脉壁各层中耦合质量传输过程的数值模型。该模型考虑了直轴对称动脉段的内皮、内膜、内弹性膜(IEL)和中膜中的传输。在动脉腔中,假设血流充分发展且稳定,壁层中的过滤速度根据达西定律计算。管腔质量传输的描述使用稳态对流扩散方程,多孔内膜和中膜中的传输通过应用体积平均稳态对流扩散反应方程进行建模。管腔、内膜和中膜中的传输过程通过跨内皮和IEL的通量耦合,这在数学上使用凯德姆 - 凯查尔斯基方程进行描述。传输方程的数值解采用有限元法。结果表明,健康内皮对血液与动脉壁之间的大分子交换具有高抗性。受损内皮的抗性降低导致进入壁内 的质量通量增加,从而导致壁内浓度升高。健康内皮和受损内皮情况下,血压对壁浓度水平的影响不同。在健康内皮的情况下,血压升高导致内膜浓度降低和中膜浓度升高,而在受损内皮的情况下,血压升高导致内膜和中膜内的浓度水平更高。

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