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Holographic Digital Fourier Microscopy for Selective Imaging of Biological Tissue

机译:全息数字傅里叶显微镜用于生物组织的选择性成像

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We present an application of digital Fourier holography for selective imaging of scatterers with different sizes in turbid media such as biological tissues. A combination of Fourier holography and high-resolution digital recording, digital Fourier microscopy (DFM) permits crucial flexibility in applying filtering to highlight scatterers of interest in the tissue. The high-resolution digital hologram is a result of the collation of Fourier holographic frames to form a large-size composite hologram. It is expected that DFM has an improved signal-to-noise ratio as compared to conventional direct digital imaging, e.g., phase microscopy, as applied to imaging of small-size objects. The demonstration of the Fourier filtering capacity of DFM using a biological phantom represents the main focus of this article.
机译:我们提出了数字傅里叶全息技术在不同介质(例如生物组织)中具有不同尺寸的散射体选择性成像的应用。傅里叶全息术和高分辨率数字记录相结合,数字傅里叶显微镜(DFM)在应用过滤以突出显示组织中感兴趣的散射体时具有关键的灵活性。高分辨率数字全息图是通过傅立叶全息帧整理形成大尺寸复合全息图的结果。期望与用于小尺寸物体成像的常规直接数字成像(例如相位显微镜)相比,DFM具有改进的信噪比。使用生物体模演示DFM的傅立叶过滤能力是本文的重点。

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