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IMAGING RED BLOOD CELL DYNAMICS BY QUANTITATIVE PHASE MICROSCOPY

机译:通过定量相显微镜对红色血液细胞动力学进行成像

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摘要

Red blood cells (RBCs) play a crucial role in health and disease, and structural and mechanical abnormalities of these cells have been associated with important disorders such as Sickle cell disease and hereditary cytoskeletal abnormalities. Although several experimental methods exist for analysis of RBC mechanical properties, optical methods stand out as they enable collecting mechanical and dynamic data from live cells without physical contact and without the need for exogenous contrast agents. In this report, we present quantitative phase microscopy techniques that enable imaging RBC membrane fluctuations with nanometer sensitivity at arbitrary time scales from milliseconds to hours. We further provide a theoretical framework for extraction of membrane mechanical and dynamical properties using time series of quantitative phase images. Finally, we present an experimental approach to extend quantitative phase imaging to 3-dimensional space using tomographic methods. By providing non-invasive methods for imaging mechanics of live cells, these novel techniques provide an opportunity for high-throughput analysis and study of RBC mechanical properties in health and disease.
机译:红细胞(RBC)在健康和疾病中起着至关重要的作用,这些细胞的结构和机械异常与重要疾病如镰状细胞病和遗传性细胞骨架异常有关。尽管存在几种用于分析RBC力学性能的实验方法,但光学方法却脱颖而出,因为它们能够从活细胞中收集机械和动态数据,而无需物理接触,也不需要外源性造影剂。在本报告中,我们介绍了定量相显微镜技术,该技术能够在从几毫秒到几小时的任意时间范围内以纳米灵敏度对RBC膜波动进行成像。我们进一步提供了使用定量相位图像的时间序列提取膜的机械和动力学性质的理论框架。最后,我们提出了一种使用断层摄影方法将定量相位成像扩展到3维空间的实验方法。通过提供用于活细胞成像力学的非侵入性方法,这些新技术为高通量分析和研究健康和疾病中的RBC力学特性提供了机会。

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