首页> 外文期刊>Journal of Biomechanics >The effect of shape on the margination dynamics of non-neutrally buoyant particles in two-dimensional shear flows.
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The effect of shape on the margination dynamics of non-neutrally buoyant particles in two-dimensional shear flows.

机译:形状对二维剪切流中非中性浮力颗粒的边缘动力学的影响。

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The margination dynamics of microparticles with different shapes has been analyzed within a laminar flow mimicking the hydrodynamic conditions in the microcirculation. Silica spherical particles, quasi-hemispherical and discoidal silicon particles have been perfused in a parallel plate flow chamber. The effect of the shape and density on their margination propensity has been investigated at different physiologically relevant shear rates S. Simple scaling laws have been derived showing that the number n of marginating particles scales as S(-0.63) for the spheres; S(-0.85) for discoidal and S(-1) for quasi-hemispherical particles, regardless of their density and size. Within the range considered for the shear rate, discoidal particles marginate in a larger number compared to quasi-hemispherical and spherical particles. These results may be of interest in drug delivery and bio-imaging applications, where particles are expected to drift towards and interact with the walls of the blood vessels.
机译:在模拟微循环中流体动力学条件的层流中,分析了具有不同形状的微粒的边缘动力学。二氧化硅球形颗粒,准半球形和盘状硅颗粒已在平行板流动室中灌注。在不同的生理相关剪切速率S下,研究了形状和密度对其边缘化倾向的影响。已得出简单的定标律,表明球形的边缘化粒子的数量n缩放为S(-0.63)。盘状粒子的S(-0.85)和准半球形粒子的S(-1),无论其密度和大小如何。在考虑剪切速率的范围内,与准半球形和球形颗粒相比,盘状颗粒边缘化的数量更多。这些结果在药物输送和生物成像应用中可能会令人感兴趣,在这些应用中,预计颗粒会向血管壁漂移并与血管壁相互作用。

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