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Development and evaluation of realistic optical cell models for rapid and label-free cell assay by diffraction imaging

机译:通过衍射成像的快速和无标记电池测定的现实光学电池模型的开发与评价

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Methods for rapid and label-free cell assay are highly desired in life science. Single-shot diffraction imaging presents strong potentials to achieve this goal as evidenced by past experimental results using methods such as polarization diffraction imaging flow cytometry. We present here a platform of methods toward solving these problems and results of optical cell model (OCM) evaluations by calculations and analysis of cross-polarized diffraction image (p-DI) pairs. Four types of realistic OCMs have been developed with two prostate cell structures and adjustable refractive index (RI) parameters to investigate the effects of cell morphology and index distribution on calculated p-DI pairs. Image patterns have been characterized by a gray-level co-occurrence matrix (GLCM) algorithm and four GLCM parameters and linear depolarization ratio (L) have been selected to compare calculated against measured data of prostate cells. Our results show that the irregular shapes of and heterogeneity in RI distributions for organelles play significant roles in the spatial distribution of scattered light by cells in comparison to the average RI values and their differences among the organelles. Discrepancies in GLCM and (L) parameters between calculated and measured p-DI data provide useful insight for understanding light scattering by single cells and improving OCM.
机译:在生命科学中,非常需要快速和无标记细胞测定方法。单次衍射成像具有强大的潜力,以实现这种目标,其使用诸如偏振衍射成像流式细胞仪等方法的过去的实验结果证明。我们在这里介绍了通过计算和分析交叉极化衍射图像(P-DI)对来解决这些问题和光学电池模型(OCM)评估的方法的方法。已经开发了四种类型的现实OCM,具有两个前列腺细胞结构和可调节的折射率(RI)参数,以研究细胞形态和指数分布对计算P-DI对的影响。已经通过灰度级共出矩阵(GLCM)算法表征了图像图案,并且已经选择了四个GLCM参数和线性去极化比(L)以比较计算出的前列腺细胞的测量数据。我们的研究结果表明,对于细胞的平均Ri值及其在细胞器之间的差异,CONERELES的RI分布中的不规则形状和异质性在散射光的空间分布中起显着的作用。计算和测量的P-DI数据之间的GLCM和(L)参数的差异提供了用于通过单个细胞和改进OCM的光散射的有用洞察力。

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