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Flow of Red Blood Cells in Stenosed Microvessels

机译:狭窄的微血管中的红细胞流动

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摘要

A computational study is presented on the flow of deformable red blood cells in stenosed microvessels. It is observed that the Fahraeus-Lindqvist effect is significantly enhanced due to the presence of a stenosis. The apparent viscosity of blood is observed to increase by several folds when compared to non-stenosed vessels. An asymmetric distribution of the red blood cells, caused by geometric focusing in stenosed vessels, is observed to play a major role in the enhancement. The asymmetry in cell distribution also results in an asymmetry in average velocity and wall shear stress along the length of the stenosis. The discrete motion of the cells causes large time-dependent fluctuations in flow properties. The root-mean-square of flow rate fluctuations could be an order of magnitude higher than that in non-stenosed vessels. Several folds increase in Eulerian velocity fluctuation is also observed in the vicinity of the stenosis. Surprisingly, a transient flow reversal is observed upstream a stenosis but not downstream. The asymmetry and fluctuations in flow quantities and the flow reversal would not occur in absence of the cells. It is concluded that the flow physics and its physiological consequences are significantly different in micro- versus macrovascular stenosis.
机译:对狭窄的微血管中的可变形红细胞流动进行了计算研究。观察到由于狭窄的存在,Fahraeuus-Lindqvist效应显着增强。与未压紧的血管相比,观察到血液的表观粘度增加了几倍。观察到狭窄的血管中的几何聚焦引起的红细胞的不对称分布在增强中起主要作用。细胞分布的不对称还导致沿狭窄长度的平均速度和壁切应力的不对称。单元的离散运动导致流量特性随时间的大幅波动。流量波动的均方根可能比未压紧血管的均方根高一个数量级。在狭窄附近也观察到欧拉速度波动增加了几倍。令人惊讶地,在狭窄的上游观察到短暂的流动逆转,但在下游没有观察到。在没有隔室的情况下,不会发生流量的不对称性和波动以及逆流。结论是,在微血管狭窄和大血管狭窄中,流动物理学及其生理后果显着不同。

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