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Quantitative phase imaging of cells in a flow cytometry arrangement utilizing Michelson interferometer-based off-axis digital holographic microscopy

机译:利用迈克森干涉仪的离轴数字全息显微镜的流式细胞术布置中细胞的定量相位成像

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摘要

We combined Michelson-interferometer-based off-axis digital holographic microscopy (DHM) with a common flow cytometry (FCM) arrangement. Utilizing object recognition procedures and holographic autofocusing during the numerical reconstruction of the acquired off-axis holograms, sharply focused quantitative phase images of suspended cells in flow were retrieved without labeling, from which biophysical cellular features of distinct cells, such as cell radius, refractive index and dry mass, can be subsequently retrieved in an automated manner. The performance of the proposed concept was first characterized by investigations on microspheres that were utilized as test standards. Then, we analyzed two types of pancreatic tumor cells with different morphology to further verify the applicability of the proposed method for quantitative live cell imaging. The retrieved biophysical datasets from cells in flow are found in good agreement with results from comparative investigations with previously developed DHM methods under static conditions, which demonstrates the effectiveness and reliability of our approach. Our results contribute to the establishment of DHM in imaging FCM and prospect to broaden the application spectrum of FCM by providing complementary quantitative imaging as well as additional biophysical cell parameters which are not accessible in current high-throughput FCM measurements.
机译:我们将基于Michelson-Tenferometer的脱轴数字全息显微镜(DHM)与共同的流式细胞术(FCM)排列组合。在获取的偏离轴全息图的数值重建期间利用物体识别程序和全息自动聚焦,检测到流动中悬浮细胞的急剧定量相位图像而不标记,不同细胞的生物物理细胞特征,例如细胞半径,折射率随后可以以自动方式检索干肿块。所提出的概念的性能首先是对用于测试标准的微球的研究表征。然后,我们分析了具有不同形态的两种类型的胰腺肿瘤细胞,以进一步验证所提出的定量活细胞成像方法的适用性。流量中的来自细胞的检索到的生物物理数据集与在静态条件下的先前开发的DHM方法的比较调查结果良好的一致性地发现了,这表明了我们方法的有效性和可靠性。我们的结果有助于在成像FCM中建立DHM,并通过提供互补定量成像来扩大FCM的应用谱,以及在目前的高通量FCM测量中无法访问的额外生物物理细胞参数。

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