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Numerical Study on Flows of Red Blood Cells With Liposome-Encapsulated Hemoglobin at Microvascular Bifurcation

机译:脂质体包裹的血红蛋白在微血管分叉处的红细胞流动的数值研究

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摘要

Flow analysis at microvascular bifurcation after partial replacement of red blood cell (RBC) with liposome-encapsulated hemoglobin (LEH) was performed using the lattice Boltzmann method. A two-dimensional symmetric Y bifurcation model with a parent vessel diameter of 20 μm and daughter branch diameters of 20 μm was considered, and the distributions of the RBC, LEH, and oxygen fluxes were calculated. When only RBCs flow into the daughter branches with unevenly distributed flows, plasma separation occurred and the RBC flow to the lower-flow branch was disproportionately decreased. On the other hand, when half of RBC are replaced by LEH, the biasing of RBC flow was enhanced whereas LEH flowed favorably into the lower-flow branch, because many LEH within the parent vessel are suspended in the plasma layer, where no RBCs exist. Consequently, the branched oxygen fluxes became nearly proportional to flows. These results indicate that LEH facilitates oxygen supply to branches that are inaccessible to RBCs.
机译:使用格子玻尔兹曼方法对脂质体包裹的血红蛋白(LEH)部分置换红细胞(RBC)后的微血管分叉处的血流进行了分析。考虑母血管直径为20μm,子支直径为20μm的二维对称Y分叉模型,并计算RBC,LEH和氧气通量的分布。当只有RBC流入子支流且分布不均匀时,会发生血浆分离,并且流入低流量支流的RBC会成比例地减少。另一方面,当一半的RBC被LEH取代时,RBC流量的偏向性得到增强,而LEH则有利地流入较低流量的分支,这是因为母体血管内的许多LEH悬浮在血浆层中,在该血浆层中不存在RBC。 。因此,支化的氧气流量几乎与流量成比例。这些结果表明,LEH促进了红细胞无法进入的分支的氧气供应。

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