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Accurate quantitative phase digital holographic microscopy with single- and multiple-wavelength telecentric and nontelecentric configurations

机译:精确定量相位数字全息显微镜,具有单波长和多波长远心和Nontelecentric配置

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摘要

In this work, we investigate, both theoretically and experimentally, single-wavelength and multiwavelength digital holographic microscopy (DHM) using telecentric and nontelecentric configurations in transmission and reflection modes. A single-wavelength telecentric imaging system in DHM was originally proposed to circumvent the residual parabolic phase distortion due to the microscope objective (MO) in standard nontelecentric DHM configurations. However, telecentric configurations cannot compensate for higher order phase aberrations. As an extension to the telecentric and nontelecentric arrangements in single-wavelength DHM (SW-DHM), we propose multiple-wavelength telecentric DHM (MW-TDHM) in reflection and transmission modes. The advantages of MW-TDHM configurations are to extend the vertical measurement range without phase ambiguity and optically remove the parabolic phase distortion caused by the MO in traditional MW-DHM. These configurations eliminate the need for a second reference hologram to subtract the two-phase maps and make digital automatic aberration compensation easier to apply compared to nontelecentric configurations. We also discuss a reconstruction algorithm that eliminates the zero-order and virtual images using spatial filtering and another algorithm that minimizes the intensity of fluctuations using apodization. In addition, we employ two polynomial models using 2D surface fitting to compensate digitally for chromatic aberration (in the multiwavelength case) and for higher order phase aberrations. A custom-developed user-friendly graphical user interface is employed to automate the reconstruction processes for all configurations. Finally, TDHM is used to visualize cells from the highly invasive MDA-MB-231 cultured breast cancer cells. (C) 2016 Optical Society of America
机译:在这项工作中,我们在理论上和实验,单波长和多波长数字全息显微镜(DHM)中使用传输和反射模式中的远心和NontelecEntric配置进行调查。最初提出了DHM中的单波长远心成像系统,以规避由于标准NontelecEntric DHM配置中显微镜物镜(MO)引起的残留抛物相位失真。但是,远心配置不能补偿更高阶相位像差。作为对单波长DHM(SW-DHM)中的远心和非线性布置的延伸,我们在反射和传输模式下提出多波长远心DHM(MW-TDHM)。 MW-TDHM配置的优点是在没有相位模糊的情况下延长垂直测量范围,并光学地去除由传统MW-DHM中的MO引起的抛物线相失真。这些配置消除了对第二参考全息图的需要,以减去两相映射并使数字自动像差补偿更容易与非线性配置相比施加。我们还讨论了一种重建算法,其使用空间滤波和另一种算法消除零阶和虚拟映像,其最小化使用停止的波动强度。另外,我们使用两个多项式模型,使用2D表面配件,以便以数字方式进行数字,用于色差(在多波长箱中)和更高阶相位像差。采用自定义开发的用户友好的图形用户界面来自动执行所有配置的重建过程。最后,TDHM用于从高度侵袭性MDA-MB-231培养的乳腺癌细胞中可视化细胞。 (c)2016年美国光学学会

著录项

  • 来源
    《Applied optics》 |2016年第21期|共18页
  • 作者单位

    Catholic Univ Amer Elect Engn &

    Comp Sci Washington DC 20064 USA;

    Catholic Univ Amer Elect Engn &

    Comp Sci Washington DC 20064 USA;

    Catholic Univ Amer Biomed Engn Washington DC 20064 USA;

    Catholic Univ Amer Elect Engn &

    Comp Sci Washington DC 20064 USA;

    Oblon 1940 Duke St Alexandria VA 22314 USA;

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  • 正文语种 eng
  • 中图分类 应用;
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