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A new morphological cell parameter based on optical phase for the evaluation of cell populations.

机译:一种基于光学阶段的新型形态细胞参数,用于评价细胞群。

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In this work, we introduce an opto-geometric parameter for the morphologic characterization of cell populations during their early adhesion process. Using measurements for a cell population of the maximal optical phase for each cell and its substrate-contact-surface, we show, experimentally, that a relationship exists between these variables. This connection is primarily associated with morphological cell characteristics. It is also shown that using the relationship obtained above, we can derive a morphological parameter, which, for the cell populations studied, results in a monodisperse Gaussian-size distribution, which would allow for the use of regular statistical variables. This result is in total contrast with the polydisperse distribution obtained if only the contact surface area between cell and substrate is used. In addition, optical phase measurements where accomplished by phase shifted interferometry using a Mirau-type interference microscope. The cellular system studied consisted of Osteoblast-like cells, plated on 316VM medical-grade stainless steel polished surfaces. These cell populations were studied within the same culture conditions of cell type, plating time and substrate roughness conditions. The existence of a relationship between maximal optical phase and substrate contact area agrees entirely with the accepted spreading model for cell adhesion; in particular, considering the close link between the optical phase time change and cell thickness reduction.
机译:在这项工作中,我们在早期粘附过程中介绍了用于细胞群的形态学特征的光学几何参数。使用测量对于每个电池的最大光学相的细胞群及其基材 - 接触表面,实验地显示这些变量之间存在关系。这种连接主要与形态细胞特征相关。还表明,使用上面获得的关系,我们可以导出用于所研究的细胞群体的形态参数,导致单分散高斯尺寸分布,这将允许使用常规统计变量。如果仅使用电池和衬底之间的接触表面区域,则该结果与获得的多分散分布总是对比度。另外,使用Mirau型干扰显微镜通过相移干涉测量完成的光学相位测量。研究的细胞系统由嵌入式细胞组成,镀在316VM医用级不锈钢抛光表面上。在相同的细胞类型,电镀时间和衬底粗糙度条件下研究了这些细胞群。最大光学相位和基板接触区域之间的关系的存在完全与用于细胞粘附的可接受的扩散模型一致;特别地,考虑到光学相位时间变化和细胞厚度减小之间的紧密联系。

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