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Common-path digital holographic microscopy based on a beam displacer unit

机译:基于光束移位器单元的共通径数字全息显微镜

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Digital holographic microscopy (DHM) has become a novel tool with advantages of full field, non-destructive, high-resolution and 3D imaging, which captures the quantitative amplitude and phase information of microscopic specimens. It's a well-established method for digital recording and numerical reconstructing the full complex field of wavefront of the samples with a diffraction-limited lateral resolution down to 0.3 μm depending on the numerical aperture of microscope objective. Meanwhile, its axial resolution through axial direction is less than 10 nrn due to the interferometric nature in phase imaging. Compared with the typical optical configurations such as Mach-Zehnder interferometer and Michelson interferometer, the common-path DHM has the advantages of simple and compact configuration, high stability, and so on. Here, a simple, compact, and low-cost common-path DHM based on a beam displacer unit is proposed for quantitative phase imaging of biological cells. The beam displacer unit is completely compatible with commercial microscope and can be easily set up in the output port of the microscope as a compact independent device. This technique can be used to achieve the quantitative phase measurement of biological cells with an excellent temporal stability of 0.51 nm, which makes it having a good prospect in the fields of biological and medical science. Living mouse osteoblastic cells are quantitatively measured with the system to demonstrate its capability and applicability.
机译:数字全息显微镜(DHM)已成为一种新颖的工具,具有全视野,无损,高分辨率和3D成像的优点,可捕获显微镜标本的定量振幅和相位信息。这是一种行之有效的数字记录和数值重构样品波前完整复数场的方法,其衍射极限横向分辨率低至0.3μm(取决于显微镜物镜的数值孔径)。同时,由于相位成像中的干涉特性,其通过轴向的轴向分辨率小于10 nrn。与典型的光学配置如Mach-Zehnder干涉仪和Michelson干涉仪相比,共通DHM具有结构简单紧凑,稳定性高等优点。在此,提出了一种基于光束移位器单元的简单,紧凑且低成本的共模DHM,用于生物细胞的定量相位成像。光束移位器单元与商用显微镜完全兼容,并且可以作为紧凑的独立设备轻松地安装在显微镜的输出端口中。该技术可用于实现生物细胞的定量相测量,具有0.51 nm的出色的时间稳定性,这使其在生物和医学领域具有良好的前景。用该系统定量测量活小鼠成骨细胞,以证明其功能和适用性。

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