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Computational Study of Cell Adhesion and Rolling in Flow Channel by Meshfree Method

机译:无网格法计算流道中细胞黏附和滚动的计算研究

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摘要

Tethering and rolling of circulating leukocytes on the surface of endothelium are critical steps during an inflammatory response. A soft solid cell model was proposed to study monocytes tethering and rolling behaviors on substrate surface in shear flow. The interactions between monocytes and micro-channel surface were modeled by a coarse-grained molecular adhesive potential. The computational model was implemented in a Lagrange-type meshfree Galerkin formulation to investigate the monocyte tethering and rolling process with different flow rates. From the simulation results, it was found that the flow rate has profound effects on the rolling velocity, contact area and effective stress of monocytes. As the flow rate increased, the rolling velocity would increase linearly, whereas the contact area and average effective stress in monocyte showed nonlinear increase.
机译:内皮表面上循环白细胞的束缚和滚动是炎症反应过程中的关键步骤。提出了一种软固体细胞模型来研究剪切流中单核细胞在基质表面的束缚和滚动行为。单核细胞和微通道表面之间的相互作用是通过一个粗糙的分子粘附电位来模拟的。计算模型以Lagrange型无网格Galerkin公式实现,以研究不同流速下的单核细胞束缚和滚动过程。从模拟结果发现,流速对单核细胞的滚动速度,接触面积和有效应力具有深远的影响。随着流速的增加,轧制速度将线性增加,而单核细胞的接触面积和平均有效应力则呈非线性增加。

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