A method for the approximate determination of microparticle amount and mass in biological mixtures using a fractionation process in a centrifugal force field

A. Górka
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Abstract

The paper presents a simplified method of estimating the amount and specific mass of microparticles in complex biological mixtures using the fractionation process in the field of centrifugal forces. In the presented method, using the heaviest blood cells – erythrocytes – as an example, a geometric model of a binary fraction in a borderline equilibrium state formed in the process of blood fractionation was used. In this model, an approximated shape of the erythrocyte and a sample normal distribution of the size and number of microparticles in the examined model fraction filled with erythrocytes were used. Based on publicly available blood data, it has been shown that it is possible to estimate the amount and specific weight of microparticles. The accuracy of such estimation generally depends on the precision of representation of shapes, the degree of filling the fraction with microparticles and on the individual quantitative and dimensional distribution of these particles in the examined fraction. The above conclusions, which determine the accuracy of the method presented, were verified in the paper with the use of rheological blood data, commonly available in literature for various types of measuring containers, which affect the level of filling of a given fraction with microparticles. Keywords: fractionation of biological mixtures, fractionation of blood components, erythrocyte model, erythrocyte shape, blood components
一种在离心力场中使用分馏过程近似测定生物混合物中微粒数量和质量的方法
本文提出了一种利用离心力分馏过程估计复杂生物混合物中微粒数量和比质量的简化方法。在本方法中,以最重的血细胞——红细胞为例,利用血液分馏过程中形成的处于边缘平衡状态的二元分数的几何模型。在这个模型中,红细胞的近似形状和被检查的充满红细胞的模型分数中微粒的大小和数量的样本正态分布被使用。根据可公开获得的血液数据,已经表明可以估计微粒的数量和比重。这种估计的准确性通常取决于形状表示的精度,微粒填充分数的程度以及这些微粒在被检查分数中的单个数量和尺寸分布。上述结论决定了所提出方法的准确性,并在本文中使用流变血液数据进行了验证,流变血液数据通常在文献中可用于各种类型的测量容器,这些测量容器会影响给定分数与微粒的填充水平。关键词:生物混合物分离,血液成分分离,红细胞模型,红细胞形状,血液成分
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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