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首页> 外文期刊>Biophysical Journal >Platelet adhesion from shear blood flow is controlled by near-wall rebounding collisions with erythrocytes.
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Platelet adhesion from shear blood flow is controlled by near-wall rebounding collisions with erythrocytes.

机译:来自剪切血流的血小板粘附是通过与红细胞的近壁反弹碰撞来控制的。

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The efficacy of platelet adhesion in shear flow is known to be substantially modulated by the physical presence of red blood cells (RBCs). The mechanisms of this regulation remain obscure due to the complicated character of platelet interactions with RBCs and vascular walls. To investigate this problem, we have created a mathematical model that takes into account shear-induced transport of platelets across the flow, platelet expulsion by the RBCs from the near-wall layer of the flow onto the wall, and reversible capture of platelets by the wall and their firm adhesion to it. This model analysis allowed us to obtain, for the first time to our knowledge, an analytical determination of the platelet adhesion rate constant as a function of the wall shear rate, hematocrit, and average sizes of platelets and RBCs. This formula provided a quantitative description of the results of previous in vitro adhesion experiments in perfusion chambers. The results of the simulations suggest that under a wide range of shear rates and hematocrit values, the rate of platelet adhesion from the blood flow is mainly limited by the frequency of their near-wall rebounding collisions with RBCs. This finding reveals the mechanism by which erythrocytes physically control platelet hemostasis.
机译:已知剪切流中血小板粘附的功效基本上由红细胞(RBC)的物理存在来调节。由于血小板与红细胞和血管壁相互作用的复杂性,该调节机制仍然不清楚。为了研究这个问题,我们创建了一个数学模型,该模型考虑了剪切诱导的血小板在整个血流中的运输,RBC从血流的近壁层驱逐到壁上以及血小板对血流的可逆捕获。墙及其牢固的附着力。这种模型分析使我们首次获得了对血小板粘附率常数的分析测定结果,该常数取决于壁切率,血细胞比容以及血小板和RBC的平均大小。该公式定量描述了先前在灌注室中进行的体外粘附实验的结果。模拟结果表明,在较大的剪切速率和血细胞比容值范围内,来自血流的血小板粘附速率主要受其与RBC的近壁回弹碰撞频率的限制。这一发现揭示了红细胞物理上控制血小板止血的机制。

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