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Effect of plasma viscosity on blood flow behaviors in microvessels

机译:血浆粘度对微血管血流行为的影响

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摘要

To pursue a better understanding of the counterintuitive observations of plasma viscosity effects on microscopic blood flows, we have numerically simulated the red blood cell dynamics in shear and channel flows and multiple cell flow behaviors in straight microvessels. Our simulations indicate that, in a high-viscosity suspending medium, red blood cells appear more deformable, and this enhances the cell migration in straight microvessels. Also the cell free layer change with plasma viscosity might be helpful to interpret the increase in functional capillary density observed in hemodilution experiments with high-viscosity plasma expanders. Such information could be important to relevant biomedical applications.
机译:为了更好地理解血浆粘度对微观血流的影响的反直觉观察,我们通过数值模拟了剪切和通道血流中的红细胞动力学以及直线微血管中的多细胞血流行为。我们的模拟表明,在高粘度的悬浮介质中,红细胞似乎更易变形,这增强了笔直微血管中的细胞迁移。同样,无细胞层随血浆粘度的变化可能有助于解释在使用高粘度血浆膨胀剂进行血液稀释实验中观察到的功能性毛细血管密度的增加。这样的信息对于相关的生物医学应用可能是重要的。

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