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Pupil segmentation in the light-field camera and its relation to 3D object positions and the reconstructed depth of field

机译:光场相机中的瞳孔分割及其与3D对象位置的关系和重建景深

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摘要

A ray-trace simulation of the light-field camera is used to calculate point source responses as a function of 3D source positions. Each point source location yields a unique and well-determined segmented-pupil pattern in the lenslet array's focal plane, with lateral object offsets changing the pattern's location and symmetry, and defocus distances altering the pattern's diameter. Segmented-pupil images can thus be used to infer point sources' 3D locations. Numerical simulations show that the centroids and widths of segmented pupil images can be used to deduce lateral image positions to the size a detector pixel, and image defocus to the accuracy of the lenslet focal length. In sparse-source cases, such as, e.g., fluorescence microscopy or particle tracking, 3D point-source locations can thus be accurately determined from the observed point source response patterns. The degree of pupil segmentation also directly constrains the ability to refocus light-field images-for image defocus distances large enough that the number of pupil segments exceeds the number of pixels within a "whole" pupil behind a single lenslet, the image can no longer be brought to focus numerically, thus defining the light-field camera's depth of field. This constraint implies a depth of field larger than the usual imaging depth of focus by a factor of the number of detector pixels per lenslet, consistent with the general expectation. (C) 2019 Optical Society of America
机译:光场摄像机的射线仿真用于计算点源响应作为3D源位置的函数。每个点源位置在透镜阵列的焦平面中产生独特且良好的分段瞳孔图案,横向对象偏移改变图案的位置和对称性,以及改变图案直径的散焦距离。因此可以使用分段 - 瞳孔图像来推断点源的3D位置。数值模拟表明,分段瞳孔图像的质心和宽度可用于将横向图像位置推向尺寸检测器像素,图像散焦与透镜焦距的准确性。在稀疏源情况下,例如,例如,荧光显微镜或粒子跟踪,因此可以从观察到的点源响应模式精确地确定3D点源位置。瞳孔分割的程度也直接限制了重新聚焦光场图像的能力 - 对于图像散焦距离足够大,使得瞳孔段的数量超过单个透镜后面的“整个”瞳孔中的像素内的像素的数量,图像不再要在数值上集中注意力,从而定义轻场相机的景深。该约束意味着一个比通常的镜头数量的焦点的景深大,其每小放的探测器像素的数量一致,与一般期望一致。 (c)2019年光学学会

著录项

  • 来源
    《Applied optics》 |2019年第5期|共10页
  • 作者

    Serabyn E.;

  • 作者单位

    CALTECH Jet Prop Lab Pasadena CA 91109 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
  • 关键词

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