血小板的近墙的运动上的红血球的机械性质的效果数字地与沉浸的边界方法被学习。房间作为超膜用可以忽略的厚度包围的 viscous-fluid-filled 囊被建模。数字结果证明随分血器的增加,血小板的近墙的来临被提高,与哪个血小板展览它的近墙的踩坦克的运动的更大的变丑和取向角度,和把血小板推到墙的侧面的力量与更大的变化被增加振幅。同时,近墙的来临被增加红血球的僵硬减少。
The effect of mechanical properties of erythrocytes on the near-wall motion of platelets was numerically studied with the immersed boundary method. Cells were modeled as viscous-fluid-filled capsules surrounded by hyper-elastic membranes with negligible thickness. The numerical results show that with the increase of hematocrit, the near-wall approaching of platelets is enhanced, with which platelets exhibit larger deformation and orientation angle of its near-wall tank-treading motion, and the lateral force pushing platelets to the wall is increased with larger fluctuation amplitude. Meanwhile the near-wall approaching is reduced by increasing the stiffness of erythrocytes.