首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Enhanced Fresnel zone plate coded microscopy of large-size objects
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Enhanced Fresnel zone plate coded microscopy of large-size objects

机译:大型物体的增强菲涅耳波带片编码显微镜

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摘要

A scheme for microscopy of relatively large-size objects by using Fresnel zone plate (FZP) coded imaging (FZPCI) is digitally demonstrated. The limit on the source size in zone-plate-based microscopy comes from interference of out-of-focus multidiffraction orders of the FZP with the focused-order image. From the study of the angular spectrum of the coded image, it is shown that noise contribution from higher orders to a lower-order image can be digitally suppressed by selective propagation of spatial frequencies. Similarly, noise from aliasing and noise from lower orders to a higher-order image can be reduced by spatially limiting the coded image. To my knowledge for the first time, the results of digitally performed FZPCI-based microscopy of an object that is three times larger than the first zone of the FZP with a resolution better than 2 μm are presented and discussed.
机译:数字显示了通过使用菲涅耳波带片(FZP)编码成像(FZPCI)显微镜对较大尺寸物体进行显微镜观察的方案。在基于区板的显微镜中,光源尺寸的限制来自FZP的散焦离焦多衍射阶数与聚焦阶图像的干扰。从对编码图像的角谱的研究表明,可以通过空间频率的选择性传播来数字地抑制从高阶到低阶图像的噪声贡献。类似地,可以通过在空间上限制编码图像来减少来自混叠的噪声和从低阶到高阶图像的噪声。据我所知,首次提出并讨论了以数字方式执行的基于FZPCI的物体显微镜的结果,该物体比FZP的第一区域大三倍,分辨率优于2μm。

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