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Improved quantitative phase contrast in self-interference digital holographic microscopy and sensing dynamic refractive index changes of the cytoplasm using internalized microspheres as probes

机译:改进自干扰数字全息显微镜中的定量相对比度,并使用内化微球的感测细胞质的动态折射率变化作为探针

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In self-interference digital holographic microscopy (DHM), scattering patterns that are induced by coherent laser light affect the resolution for the detection of optical path length changes. We present a simple and efficient approach for the reduction of coherent disturbances in quantitative DHM phase images by amplitude and phase modulation of the sample illumination. The performance of the method in quantitative phase imaging of living cells is illustrated. Moreover, the application of self-interference DHM for sensing of dynamic refractive index changes of adherent cells is demonstrated. Therefore, silica microspheres are used in living cells as optical probes to determine the refractive index of the cytoplasm from single quantitative phase images.
机译:在自干扰数字全息显微镜(DHM)中,由相干激光引起的散射图案影响用于检测光路长度变化的分辨率。我们通过样品照明的幅度和相位调制,提出了一种简单有效的方法,用于通过样品照明的幅度和相位调制来减少定量DHM相位图像中的相干扰动。示出了在活细胞的定量相位成像中的方法的性能。此外,证明了自干扰DHM对粘附细胞动态折射率变化的感测的应用。因此,二氧化硅微球用于活细胞作为光学探针,以确定来自单个定量相位图像的细胞质的折射率。

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