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Quantification of stored red blood cell fluctuations by time-lapse holographic cell imaging

机译:通过延时全息细胞成像对储存的红细胞波动进行量化

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摘要

We propose methods to quantitatively calculate the fluctuation rate of red blood cells with nanometric axial and millisecond temporal sensitivity at the single-cell level by using time-lapse holographic cell imaging. For this quantitative analysis, cell membrane fluctuations (CMFs) were measured for RBCs stored at different storage times. Measurements were taken over the whole membrane for both the ring and dimple sections separately. The measurements show that healthy RBCs that maintain their discocyte shape become stiffer with storage time. The correlation analysis demonstrates a significant negative correlation between CMFs and the sphericity coefficient, which characterizes the morphological type of erythrocyte. In addition, we show the correlation results between CMFs and other morphological properties such as projected surface area, surface area, mean corpuscular volume, and mean corpuscular hemoglobin.
机译:我们提出了使用时移全息细胞成像技术在单细胞水平上定量计算具有纳米轴向和毫秒时间敏感性的红细胞波动率的方法。对于此定量分析,测量在不同存储时间存储的RBC的细胞膜涨落(CMF)。分别在整个膜上对环形和凹痕部分进行测量。测量结果表明,保持其盘状细胞形状的健康RBC随着储存时间的延长而变硬。相关分析表明,CMF与球形度系数之间存在显着的负相关,这是红细胞形态类型的特征。此外,我们显示了CMF与其他形态特性之间的相关性结果,例如投影表面积,表面积,平均红细胞体积和平均红细胞血红蛋白。

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