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Characterization Method for 3D Substructure of Nuclear Cell Based on Orthogonal Phase Images

机译:基于正交相位图像的核细胞3D亚结构表征方法

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摘要

A set of optical models associated with blood cells are introduced in this paper. All of these models are made up of different parts possessing symmetries. The wrapped phase images as well as the unwrapped ones from two orthogonal directions related to some of these models are obtained by simulation technique. Because the phase mutation occurs on the boundary between nucleus and cytoplasm as well as on the boundary between cytoplasm and environment medium, the equation of inflexion curve is introduced to describe the size, morphology, and substructure of the nuclear cell based on the analysis of the phase features of the model. Furthermore, a mononuclear cell model is discussed as an example to verify this method. The simulation result shows that characterization with inflexion curve based on orthogonal phase images could describe the substructure of the cells availably, which may provide a new way to identify the typical biological cells quickly without scanning.
机译:本文介绍了一组与血细胞有关的光学模型。所有这些模型都由具有对称性的不同部分组成。通过仿真技术获得了与这些模型中的一些模型有关的来自两个正交方向的包裹相位图像和未包裹相位图像。由于相变发生在细胞核与细胞质之间的边界以及细胞质与环境介质之间的边界上,因此基于弯曲分析,引入了弯曲曲线方程式来描述核细胞的大小,形态和亚结构。模型的相位特征。此外,以单核细胞模型为例来验证该方法。仿真结果表明,基于正交相位图像的屈曲曲线表征可以有效描述细胞的亚结构,为快速识别典型生物细胞而无需扫描提供了新途径。

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