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A virtual size-variable pinhole for single photon confocal microscopy

机译:用于单光子共聚焦显微镜的虚拟尺寸变量针孔

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Pinhole is a critical device in single photon confocal microscopy (SPCM) owning to its ability to block the background noise scattered from back and forth of the focal plane. Without pinhole, the sectioning ability of SPCM will be degraded and many background noise signals will occurred together with useful signals, and sometimes these bad noises can submerge the details that we are interested in. However a pinhole with too small diameter will block both background noises and part of signals and decrease the intensity of the image. Therefore in many cases pinhole size should be selected carefully. Unfortunately because of constrains in mechanics, a pinhole that can change its size continuously, for example from 10 μm to 100 μm, is unavailable. For most commercial confocal microscopies, only several discrete pinhole sizes are provided, such as 10 μm, 30 μm, 60 μm etc. Things will be even harder for some imaging systems which use the input interface of a single mode fiber as the pinhole of SPCM, and then the pinhole size of these systems will be fixed, which far limit the optimization of systems' performance. In this paper, we design a size-variable pinhole setup that can offer a virtual pinhole with its diameter adjustable, which includes a physical pinhole (or single mode fiber) and a fine designed zoom relay (ZR) optical system. The magnification ratio of this ZR can vary smoothly while keeping the conjugation distance unchanged. The aberrations of the ZR are well balanced and diffraction-limited image performance are obtained so that the virtual pinhole can block background scattering noise and pass the in-focus signal effectively and accurately. Simulation results are also provided and discussed.
机译:针孔是单光子共聚焦显微镜(SPCM)中的关键装置,其能够阻止从焦平面的后退和散射散射的背景噪声。没有针孔,SPCM的切片能力将降低,并且许多背景噪声信号与有用的信号一起发生,有时这些坏噪声可以淹没我们感兴趣的细节。但是直径太小的针孔会阻挡背景噪音和一部分信号并降低图像的强度。因此,在许多情况下,应仔细选择针孔大小。不幸的是,由于机械结构,可以连续地改变其尺寸的针孔,例如10μm至100μm,是不可用的。对于大多数商业共聚焦显微镜,只提供几个离散的针孔尺寸,例如10μm,30μm,60μm等。一些成像系统更加难以使用单模光纤的输入接口作为SPCM的针孔然后,这些系统的针孔大小将被固定,远远限制了系统的性能的优化。在本文中,我们设计了一个尺寸变量针孔设置,可以提供具有其直径可调的虚拟针孔,其包括物理针孔(或单模光纤)和精细设计的变焦继电器(Zr)光学系统。该Zr的放大率可以平滑地变化,同时保持缀合距离不变。 Zr的像差是良好的平衡和衍射限制的图像性能,使得虚拟针孔可以阻挡背景散射噪声并有效且准确地通过焦点信号。还提供并讨论了仿真结果。

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