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血小板在带有障碍物的流动腔室壁上的黏附。

Platelet adhesion onto the wall of a flow chamber with an obstacle.

作者信息

Lee D, Chiu Y L, Jen C J

机构信息

Institute of Aeronautics and Astronautics, College of Medicine, National Cheng Kung University, Tainan, Taiwan, Republic of China.

出版信息

Biorheology. 1997 Mar-Apr;34(2):111-26. doi: 10.1016/S0006-355X(97)00008-5.

Abstract

In the present study, the data of the initial adhesion of platelets onto the wall of a flow chamber with an obstacle in steady human blood flows were obtained. The flowfields and the distribution of stress-related factors were simulated numerically by a finite volume method and the fluid dynamic effect on the platelet adhesion is discussed. In addition to the wall shear effect, the normal stress effect was also taken into account. A parameter Vn/[Vt] was devised to assess the combined effect of both shear and normal forces in platelet adhesion. It was found that the peak adhesion occurred next to, but not on, the impingement point on the obstacle where the value of Vn/[Vt] was negative. In these regions, direct impact played a major role in platelet adhesion. On the other hand, near the separation point before the obstacle where Vn/[Vt] was insignificant, the mechanism was believed to be different from that in the direct impact region. Denser adhesion there might be caused by the accumulation and frequent collision of particles due to flow retardation and/or detour of the flow path. Interestingly, relatively low adhesion was found inside the recirculation regions. These results show that the normal stress effect (impingement) should be considered in platelet adhesion in addition to the shear effect.

摘要

在本研究中,获取了在稳定的人体血流中血小板在带有障碍物的流动腔室壁上的初始黏附数据。采用有限体积法对流场和应力相关因素的分布进行了数值模拟,并讨论了流体动力学对血小板黏附的影响。除了壁面剪切效应外,还考虑了法向应力效应。设计了一个参数Vn/[Vt]来评估剪切力和法向力在血小板黏附中的综合作用。研究发现,峰值黏附发生在障碍物上撞击点旁边而非撞击点处,此处Vn/[Vt]的值为负。在这些区域,直接撞击在血小板黏附中起主要作用。另一方面,在障碍物之前分离点附近,Vn/[Vt]不显著,其机制被认为与直接撞击区域不同。此处较高的黏附可能是由于流动路径的阻滞和/或迂回导致颗粒的积累和频繁碰撞引起的。有趣的是,在再循环区域内发现黏附相对较低。这些结果表明,除了剪切效应外,在血小板黏附中还应考虑法向应力效应(撞击)。

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