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Unlabeled flow cellular deformation measurement based on digital holographic microscopy

机译:基于数字全息显微镜的未标记的流动蜂窝变形测量

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Living cells as phase objects require not only non-invasive measurement but also quantitative phase information during dynamic biopsy. Digital Holographic Microscopy (DHM), measuring three-dimensional morphology without changing the active condition of cells and in situ inspection, is becoming excellent tools for biology research. We have described a DHM method for quantitative, unlabeled observation of living cell subjected to fluid shear stress (FSS) in flowing fluid. The holographic recording system combined with the fluid shear system is improved. The numerical reconstruction technique firstly employed deep learning Convolutional Neural Network model filter, which achieved automatically processing large scale the spectrum of holograms immediately. Osteocytes as the experimental samples were observed and their morphological changes under the stimulation of FSS was successfully measured.
机译:活细胞作为相位对象不仅需要非侵入性测量,而且需要在动态活组织检查期间定量相位信息。数字全息显微镜(DHM),测量三维形态而不改变细胞的活跃条件和原位检查,正在成为生物学研究的优秀工具。我们已经描述了一种用于在流动流体中进行流体剪切应力(FSS)的活细胞的定量,未标记的活细胞的DHM方法。与流体剪切系统相结合的全息记录系统得到改善。数值重建技术首先采用了深度学习卷积神经网络模型滤波器,其立即自动处理大规模的全息图谱。观察到实验样品的骨细胞并成功测量了FSS刺激下的形态变化。

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