首页> 外文会议>Three-dimensional and multidimensional microscopy: Image acquisition and processing XVII >LABEL-FREE CLASSIFICATION OF CELL TYPES BY IMAGING OF CELL MEMBRANE FLUCTUATIONS USING LOW-COHERENT FULL-FIELD QUANTITATIVE PHASE MICROSCOPY
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LABEL-FREE CLASSIFICATION OF CELL TYPES BY IMAGING OF CELL MEMBRANE FLUCTUATIONS USING LOW-COHERENT FULL-FIELD QUANTITATIVE PHASE MICROSCOPY

机译:利用低相干全场定量相显微镜成像细胞膜波动,对细胞类型进行无标签分类

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摘要

Cell membrane motions of living cells are quantitatively measured in nanometer resolution by low-coherent full-field quantitative phase microscopy. Our setup is based on a full-field phase shifting interference microscope with a very low-coherent light source. The reflection mode configuration and the low-coherent illumination make it possible to differentiate the weak reflection light from the cell membrane from the strong reflection from the glass substrate. Two cell populations are quantitatively assessed by the power spectral density of the cell surface motion and show different trends.
机译:通过低相干全场定量相显微镜,以纳米分辨率定量测量活细胞的细胞膜运动。我们的设置基于具有非常低相干光源的全场相移干涉显微镜。反射模式配置和低相干照明使得可以将来自细胞膜的弱反射光与来自玻璃基板的强反射区分开。通过细胞表面运动的功率谱密度定量评估两个细胞群,并显示不同的趋势。

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