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Investigation of morphometric parameters for granulocytes and lymphocytes as applied to a solution of direct and inverse light-scattering problems

机译:研究粒细胞和淋巴细胞的形态计量学参数,以解决正向和反向光散射问题

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摘要

Quantitative data on cell structure, shape, and size distribution are obtained by optical measurement of normal peripheral blood granulocytes and lymphocytes in a cell suspension. The cell nuclei are measured in situ. The distribution laws of the cell and nuclei sizes are estimated. The data gained are synthesized to construct morphometric models of a segmented neutrophilic granulocyte and a lymphocyte. Models of interrelation between the cell and nucleus metric characteristics for granulocyte and lymphocyte are obtained. The discovered interrelation decreases the amount of cellnucleus size combinations that have to be considered under simulation of cell scattering patterns. It allows faster analysis of light scattering to discriminate cells in a real-time scale. Our morphometric data meet the requirements of scanning flow cytometry dealing with the high rate analysis of cells in suspension. Our findings can be used as input parameters for the solution of the direct and inverse lightscattering problems in scanning flow cytometry, dispensing with a costly and time-consuming immunophenotyping of the cells, as well as in turbidimetry and nephelometry. The cell models developed can ensure better interpretations of scattering patterns for an improvement of discriminating capabilities of immunophenotyping-free scanning flow cytometry.
机译:细胞结构,形状和大小分布的定量数据是通过光学测量正常悬浮细胞中的外周血粒细胞和淋巴细胞获得的。细胞核是原位测量的。估计细胞的分布规律和细胞核大小。合成获得的数据以构建分段的嗜中性粒细胞和淋巴细胞的形态计量模型。获得了粒细胞和淋巴细胞的细胞和细胞核特征之间的相互关系模型。发现的相互关系减少了在细胞散射模式的模拟下必须考虑的细胞核大小组合的数量。它允许更快地分析光散射,从而实时区分细胞。我们的形态数据满足扫描流式细胞仪处理悬浮细胞高速率分析的要求。我们的发现可以用作输入参数,以解决扫描流式细胞术中正向和反向光散射问题,省去昂贵且费时的细胞免疫表型以及比浊法和浊度法。开发的细胞模型可以确保更好地解释散射模式,从而提高无免疫表型扫描流式细胞仪的识别能力。

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