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Light scattering by aggregated red blood cells

机译:聚集的红细胞对光的散射

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In low flow rates, red blood cells (RBCs) fasten together along their axis of symmetry and form a so-called rouleaux. The scattering of He-Ne laser light by a rouleau consisting of n (2 less than or equal to n less than or equal to 8) average-sized RBCs is investigated. The interaction problem is treated numerically by means of an advanced axisymmetric boundary element-fast Fourier transform methodology. The scattering problem of one RBC was solved first, and the results showed that the influence of the RBC's membrane on the scattering patterns is negligible. Thus the rouleau is modeled as an axisymmetric, homogeneous, low-contrast dielectric cylinder, on the surface of which appears, owing to aggregated RBCs, a periodic roughness along the direction of symmetry. The direction of the incident laser light is considered to be perpendicular to the scatterer's axis of symmetry. The differential scattering cross sections in both perpendicular and parallel scattering planes and for all the scattering angles are calculated and presented in detail. (C) 2002 Optical Society of America. [References: 28]
机译:在低流速下,红细胞(RBC)沿其对称轴固定在一起,形成所谓的rouleaux。研究了由n个(2个小于或等于n小于或等于n小于或等于8个)平均大小的RBC组成的rouleau对He-Ne激光的散射。相互作用问题通过先进的轴对称边界元-快速傅立叶变换方法进行了数值处理。首先解决了一个红细胞的散射问题,结果表明,红细胞膜对散射模式的影响可以忽略不计。因此,将圆模模型建模为轴对称,均匀,低对比度的电介质圆柱体,由于聚集了红细胞,在其表面上出现了沿对称方向的周期性粗糙度。入射激光的方向被认为垂直于散射体的对称轴。计算并详细介绍了垂直和平行散射平面以及所有散射角的差分散射截面。 (C)2002年美国眼镜学会。 [参考:28]

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