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Light scattering spectroscopy of cells: a study based on Mie and fractal models

机译:细胞的光散射光谱:基于米氏和分形模型的研究

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The changes in light scattering induced by acetic acid in cervical cancer cell suspensions and the attached monolayer cells were studied using elastic light scattering spectroscopy. The results show that Mie scattering is dominant in small forward scattering angles ( < 10.0 degrees). However Mie fitting was found not to be able to provide a satisfactory interpretation of the scattering spectral signals in the large scattering angles. This creates challenge to extract accurate information on the refractive index of cellular organelles. The internal structures in the cells do not make appreciable contribution to light scattering in the small scattering angles while these structures show up and dominate the light scattering in larger angles. The fractal mechanism captures these internal structures. After applying acetic acid solution to the cells, it was found that the volume fraction of the small size scatterers increases and the largest scatterer size decreases. Meanwhile, the fluctuation amplitude of intracellular refractive index increases. Overall, the results provide the evidence that small-sized organelles are the major contributors to the acetowhitening effect.
机译:用弹性光散射光谱法研究了乙酸引起的宫颈癌细胞悬浮液和附着的单层细胞中光散射的变化。结果表明,Mie散射在较小的前向散射角(<10.0度)中占主导地位。然而,发现米氏拟合不能提供大散射角下的散射光谱信号的令人满意的解释。这对提取有关细胞器的折射率的准确信息提出了挑战。在小散射角下,单元的内部结构对光散射没有明显的贡献,而这些结构在较大角度下显示并支配了光散射。分形机制捕获了这些内部结构。将乙酸溶液施加到细胞后,发现小尺寸散射体的体积分数增加而最大散射体尺寸减小。同时,细胞内折射率的波动幅度增加。总体而言,结果提供了证据,证明小型细胞器是乙酰美白作用的主要贡献者。

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