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空间复用干涉显微镜(SMIM):将标准显微镜转变为全息显微镜。

Spatially-multiplexed interferometric microscopy (SMIM): converting a standard microscope into a holographic one.

作者信息

Mico Vicente, Ferreira Carlos, Zalevsky Zeev, García Javier

出版信息

Opt Express. 2014 Jun 16;22(12):14929-43. doi: 10.1364/OE.22.014929.

Abstract

We report on an extremely simple, low cost and highly stable way to convert a standard microscope into a holographic one. The proposed architecture is based on a common-path interferometric layout where the input plane is spatially-multiplexed to allow reference beam transmission in a common light-path with the imaging branch. As consequence, the field of view provided by the layout is reduced. The use of coherent illumination (instead of the broadband one included in the microscope) and a properly placed one-dimensional diffraction grating (needed for the holographic recording) complete the experimental layout. The proposed update is experimentally validated in a regular Olympus BX-60 upright microscope showing calibration (USAF resolution test) as well as biological (red blood cells and sperm cells) images for different microscope objectives.

摘要

我们报告了一种将标准显微镜转换为全息显微镜的极其简单、低成本且高度稳定的方法。所提出的架构基于共光路干涉布局,其中输入平面进行空间复用,以允许参考光束在与成像支路的公共光路中传输。结果,该布局提供的视野减小。使用相干照明(而不是显微镜中包含的宽带照明)和适当放置的一维衍射光栅(用于全息记录)完善了实验布局。所提出的改进在常规的奥林巴斯BX - 60正立显微镜中通过实验验证,展示了针对不同显微镜物镜的校准(美国空军分辨率测试)以及生物(红细胞和精子细胞)图像。

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