首页> 外文期刊>Journal of Biological Physics >Dynamics of blood flow: modeling of Fahraeus and Fahraeus-Lindqvist effects using a shear-induced red blood cell migration model
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Dynamics of blood flow: modeling of Fahraeus and Fahraeus-Lindqvist effects using a shear-induced red blood cell migration model

机译:血流动力学:使用剪切诱导的红细胞迁移模型建模Fahraeus和Fahraeus-Lindqvist效应

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摘要

Blood flow in micro capillaries of diameter approximately 15-500 mu m is accompanied with a lower tube hematocrit level and lower apparent viscosity as the diameter decreases. These effects are termed the Fahraeus and Fahraeus-Lindqvist effects, respectively. Both effects are linked to axial accumulation of red blood cells. In the present investigation, we extend previous works using a shear-induced model for the migration of red blood cells and adopt a model for blood viscosity that accounts for the suspending medium viscosity and local hematocrit level. For fully developed hematocrit profiles (i.e., independent of axial location), the diffusion fluxes due to particle collision frequency and viscosity gradients are of equal magnitude and opposite directions. The ratio of the diffusion coefficients for the two fluxes affects both the Fahraeus and Fahraeus-Lindqvist effects and is found related to the capillary diameter and discharge hematocrit using a well-known data-fit correlation for apparent blood viscosity. The velocity and hematocrit profiles were determined numerically as functions of radial coordinate, tube diameter, and discharge hematocrit. The velocity profile determined numerically is consistent with the derived analytical expression and the results are in good agreement with published numerical results and experimental data for hematocrit ratio and hematocrit and velocity profiles.
机译:微毛细血管直径约15-500μm的血流伴随着较低管血细胞比容水平,并且随着直径降低,表观粘度降低。这些效果分别称为Fahraeus和Fahraeus-Lindqvist效应。两种效果都与红细胞的轴向积累相关联。在本研究中,我们使用剪切诱导的红细胞迁移模型扩展以前的作品,并采用血液粘度模型,占悬浮中粘度和局部血细胞比容水平。对于完全开发的血细胞比容曲线(即,独立于轴向位置),由于颗粒碰撞频率和粘度梯度引起的扩散通量具有相等的幅度和相反的方向。两种通量的扩散系数的比例影响Fahraeus和Fahraeus-lindqvist效应,并使用众所周知的数据拟合相关性与表观血液粘度相关的毛细管直径和放电血细胞比容有关。速度和血细胞比容曲线以径向坐标,管直径和排出血细胞比容的函数确定。确定数值确定的速度分布与衍生的分析表达一致,结果与出版的数值结果和血细胞比容和血细胞比容和速度谱的实验数据一致。

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