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Image Formation of Volume Holographic Microscopy Using Point Spread Functions

机译:使用点传播功能的体积全息显微镜图像形成

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We present a theoretical formulation to quantify the imaging properties of volume holographic microscopy (VHM). Volume holograms are formed by exposure of a photosensitive recording material to the interference of two mutually coherent optical fields. Recently, it has been shown that a volume holographic pupil has spatial and spectral sectioning capability for fluorescent samples. Here, we analyze the point spread function (PSF) to assess the imaging behavior of the VHM with a point source and detector. The coherent PSF of the VHM is derived, and the results are compared with those from conventional microscopy, and confocal microscopy with point and slit apertures. According to our analysis, the PSF of the VHM can be controlled in the lateral direction by adjusting the parameters of the VH. Compared with confocal microscopes, the performance of the VHM is comparable or even potentially better, and the VHM is also able to achieve real-time and three-dimensional (3D) imaging due to its multiplexing ability.
机译:我们介绍了理论制剂,以量化体积全息显微镜(VHM)的成像性质。通过将光敏记录材料暴露于两个相互相干的光学场的干扰来形成体积全息图。最近,已经表明,体积全息瞳孔具有用于荧光样品的空间和光谱切片能力。在这里,我们分析点扩展功能(PSF)以评估VHM与点源和检测器的成像行为。衍生VHM的相干PSF,并将结果与​​来自常规显微镜的结果进行比较,以及具有点和狭缝孔的共聚焦显微镜。根据我们的分析,通过调整VH的参数,可以在横向方向上控制VHM的PSF。与共聚焦显微镜相比,VHM的性能相当或甚至可能更好,并且VHM也能够通过其复用能力实现实时和三维(3D)成像。

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