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Numerical Simulation of Fluid-Structure Interaction Method on Dynamic Movement of Leukocyte in Flow Chamber

机译:流动结构中白细胞动态运动的流固耦合数值模拟

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Biomechanical properties of cells play a very important role in regulating cells function. Experimental studies found that when Leukocytes move near the vessel wall, the phenomena such as rolling, jumping and adhesion will appear. Based on the non-linear fluid-structure interaction theory, leukocyte’s tiny jumping mechanism and rolling phenomenon were studied. The results were: 1) The choice of time step of leukocyte had a great influence on the movement of leukocyte. Instead of landing on the bottom of flow chamber, leukocyte jumped to a certain height and then moved periodically toward the bottom of the flow chamber again. Leukocyte had the biggest deformation when jumping; 2) Adhesion and rolling along the bottom of the flow chamber appeared in the process of moving forward, the scrolling speed was greater than that of pure rolling. Leukocytes’ movement in blood vessels was closely related with body physiological and pathological characteristics. The study of dynamic movement of leukocyte provided theoretical basis for clinical medicine.
机译:细胞的生物力学特性在调节细胞功能中起着非常重要的作用。实验研究发现,当白细胞在​​血管壁附近移动时,会出现诸如滚动,跳跃和粘附的现象。基于非线性流固耦合理论,研究了白细胞的微小跳跃机制和滚动现象。结果是:1)白细胞时间步长的选择对白细胞运动有很大影响。白细胞不是降落在流动室的底部,而是跳到一定的高度,然后周期性地再次向流动室的底部移动。跳跃时白细胞变形最大。 2)在向前移动的过程中出现了沿流动室底部的粘附和滚动,滚动速度大于纯滚动。白细胞在血管中的运动与人体生理和病理特征密切相关。白细胞动态运动的研究为临床医学提供了理论依据。

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