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Effects of red blood cell aggregation on the blood flow in a symmetrical stenosed microvessel

机译:红细胞聚集在对称截止型微血管中血流的影响

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In order to figure out whether red blood cell (RBC) aggregation is beneficial or deleterious for the blood flow through a stenosis, fluid mechanics of a microvascular stenosis was examined through simulating the dynamics of deformable red blood cells suspended in plasma using dissipative particle dynamics. The spatial variation in time-averaged cell-free layer (CFL) thickness and velocity profiles indicated that the blood flow exhibits asymmetry along the flow direction. The RBC accumulation occurs upstream the stenosis, leading to a thinner CFL and reduced flow velocity. Therefore, the emergence of stenosis produces an increased blood flow resistance. In addition, an enhanced Fahraeus-Lindqvist effect was observed in the presence of the stenosis. Finally, the effect of RBC aggregation combined with decreased stenosis on the blood flow was investigated. The findings showed that when the RBC clusters pass through the stenosis with a throat comparable to the RBC core in diameter, the blood flow resistance decreases with increasing intercellular interaction strength. But if the RBC core is larger and even several times than the throat, the blood flow resistance increases largely under strong RBC aggregation, which may contribute to the mechanism of the microthrombus formation.
机译:为了弄清楚红细胞(RBC)聚集是否有益或有害血流通过狭窄,通过模拟使用耗散粒子动力学悬浮在等离子体中可变形红细胞的动态来检查微血管狭窄的流体力学。时间平均无细胞层(CFL)厚度和速度分布的空间变化表明血液流动沿流动方向表现出不对称性。 RBC累积发生在狭窄的上游上游,导致CFL和减少的流速。因此,狭窄的出现产生增加的血流阻力。此外,在狭窄存在下观察到增强的Fahraeus-lindqvist效果。最后,研究了RBC聚集在血液流动上降低狭窄的影响。结果表明,当RBC簇通过直径与RBC芯相当的喉部穿过狭窄时,随着细胞间相互作用强度的增加而降低血流阻力。但是,如果RBC核心大于喉部的甚至数次,则血液流动性在很大程度上在强烈的RBC聚集下增加,这可能有助于微生物形成的机制。

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