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FLOW SIMULATION OF NEUTROPHILS IN CAPILLARY NETWORK (EFFECT OF CAPILLARY GEOMETRY ON TRANSIT TIME OF CELLS THROUGH NETWORK)

机译:毛细管网络中性粒子的流动模拟(毛细管几何形状对通过网络的细胞迁移时间的影响)

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The concentration of neutrophils in the pulmonary microvasculature is higher than in systemic large vessels. It is thought that this high concentration of neutrophils facilitates their effective recruitment to sites of inflammation. Thus, it is important to clarify the flow characteristics of neutrophils in the pulmonary microvasculature to understand their functions and behavior in the immune system in lungs. For that purpose, authors investigated the flow characteristics of single neutrophil in a capillary segment to develop a mathematical model to predict the transit time of the cell through the segment. This model was then extended for application to simulate the flow of neutrophils in a capillary network, and we investigated the effect of cell stiffness on the transit time of the cells through a simple lattice capillary network. In this study, similar lattice network was introduced and the effect of geometry of capillary segments on the transit time of neutrophils through the network was investigated. Finally, it was shown that average transit time of the cells through the network and the coefficient of variation increase as the capillary segments become steep or tight. Relationship between the rise in the concentration of the cells and segment geometry was also presented.
机译:肺微血管中嗜中性粒细胞的浓度高于全身大血管中的嗜中性粒细胞的浓度。认为中性粒细胞的这种高浓度有助于它们有效地募集到炎症部位。因此,阐明中性粒细胞在肺微脉管系统中的流动特性以了解其在肺部免疫系统中的功能和行为非常重要。为此,作者研究了单个嗜中性粒细胞在毛细管段中的流动特性,以建立数学模型来预测细胞通过该段的转运时间。然后将该模型扩展为应用,以模拟毛细血管网络中嗜中性粒细胞的流动,并且我们研究了细胞刚度对细胞通过简单晶格毛细血管网络通过时间的影响。在这项研究中,引入了类似的晶格网络,并研究了毛细管段的几何形状对嗜中性粒细胞通过网络的传播时间的影响。最后,结果表明,随着毛细管段的变陡或变紧,细胞通过网络的平均通过时间和变异系数会增加。还提出了细胞浓度的增加与节段几何形状之间的关系。

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