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Design and function of a structured illumination system for use in an AO microscope.

机译:用于AO显微镜的结构化照明系统的设计和功能。

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摘要

The design and function of a Structured Illumination system for use as part of an Adaptive Optics Structured Illumination Microscope (AOSIM) is presented. After successful implementation of AO in a standard widefield microscope, our lab wanted to apply the technology to a more advanced imaging modality that has a lot to gain from the AO system. SIM allows us to reconstruct an image with resolution beyond the Rayleigh limit of the optics, called a super-resolution image, by aliasing high spatial frequencies, outside the limit of the optics, to lower frequencies within the system pass band. The aliasing is accomplished by spatially modulating the illumination at a frequency near the cutoff frequency of the system. These aliased frequencies are superimposed on the lower spatial frequencies of the object in our image. Using multiple images and an inverse algorithm, we separate the aliased and normal frequencies, restore them to their original frequency positions, and recreate the original spectrum of the object. This allows us to recreate a super-resolution image of the object. We show that our SIM system creates images that are a higher resolution than a standard wide-field microscope.
机译:介绍了结构照明系统的设计和功能,该系统用作自适应光学结构照明显微镜(AOSIM)的一部分。在标准宽视野显微镜中成功实施AO之后,我们的实验室希望将该技术应用于更先进的成像方式,而该方式将从AO系统中获益匪浅。 SIM使我们能够通过将超出光学系统限制的高空间频率混叠到系统通带内的较低频率,来重建分辨率超过光学系统的瑞利极限的图像(称为超分辨率图像)。通过以接近系统截止频率的频率对照明进行空间调制来实现混叠。这些混叠频率叠加在图像中对象的较低空间频率上。使用多幅图像和逆算法,我们将混叠和正常频率分开,将它们恢复到原始频率位置,并重新创建对象的原始频谱。这使我们可以重新创建对象的超分辨率图像。我们证明了我们的SIM系统创建的图像比标准的宽视野显微镜具有更高的分辨率。

著录项

  • 作者

    Kissel, Matthew.;

  • 作者单位

    University of California, Santa Cruz.;

  • 授予单位 University of California, Santa Cruz.;
  • 学科 Electrical engineering.;Optics.
  • 学位 M.S.
  • 年度 2014
  • 页码 25 p.
  • 总页数 25
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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