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Influence of cell shape and aggregate formation on the optical properties of flowing whole blood

机译:细胞形状和聚集体形成对流动的全血光学特性的影响

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We studied the influence of shape and secondary, or intercellular, organization on the absorption and scattering properties of red blood cells to determine whether these properties are of any practical significance for optical evaluation of whole blood and its constituents. A series of measurements of transmittance and reflectance of light from bovine blood in a flow cuvette was conducted with a 650-900-nm integrating sphere at shear rates of 0-1600 s~(-1), from which the influence of cell orientation, elongation, and aggregate formation on the absorption (μ_(a)) and the reduced scattering (μ_(s)~(′)) coefficients could be quantified. Aggregation was accompanied by a decrease of 4% in μ_(s)~(′) compared with the value in randomly oriented single cells. Increasing the degree of cell alignment and elongation as a result of increasing shear rate reduced μ_(s)~(′) by 6% and μ_(a) by 3%, evaluated at a shear rate of 1600 s~(-1). Comparison with T-matrix computations for oblate- and prolate-shaped cells with corresponding elongation and orientation indicates that the optical properties of whole blood are determined by those of its individual cells, though influenced by a collective scattering factor that depends on the cell-to-cell organization. We demonstrate that cell morphological changes must be taken into consideration when one is conducting whole blood spectroscopy.
机译:我们研究了形状和二级组织或细胞间组织对红细胞吸收和散射特性的影响,以确定这些特性对于全血及其成分的光学评估是否具有任何实际意义。用650-900-nm积分球以0-1600 s〜(-1)的剪切速率对流动比色杯中牛血光的透射率和反射率进行了一系列测量,从中可以看出细胞取向的影响,可以量化伸长率和聚集体在吸收系数(μ_(a))和减小的散射系数(μ_(s)〜('))上的形成。与随机定向的单个细胞中的值相比,聚集伴随着μ_(s)〜(')的下降4%。在1600 s〜(-1)的剪切速率下评估,由于剪切速率的增加,增加了细胞排列和伸长的程度,μ_(s)〜(')降低了6%,μ_(a)降低了3%。与具有相应的伸长率和方向的扁圆形和扁圆形细胞的T矩阵计算比较表明,全血的光学特性由其单个细胞的光学特性决定,尽管受取决于细胞到细胞的集体散射因子的影响单元组织。我们证明当进行全血光谱检查时必须考虑细胞形态变化。

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    《Applied optics》 |2003年第7期|共11页
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  • 正文语种 eng
  • 中图分类 光学;
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