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Fast widefield techniques for fluorescence and phase endomicroscopy.

机译:用于荧光和相位内窥镜检查的快速宽场技术。

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摘要

Endomicroscopy is a recent development in biomedical optics which gives researchers and physicians microscope-resolution views of intact tissue to complement macroscopic visualization during endoscopy screening. This thesis presents HiLo endomicroscopy and oblique back-illumination endomicroscopy, fast wide-field imaging techniques with fluorescence and phase contrast, respectively.;Fluorescence imaging in thick tissue is often hampered by strong out-of-focus background signal. Laser scanning confocal endomicroscopy has been developed for optically-sectioned imaging free from background, but reliance on mechanical scanning fundamentally limits the frame rate and represents significant complexity and expense. HiLo is a fast, simple, widefield fluorescence imaging technique which rejects out-of-focus background signal without the need for scanning. It works by acquiring two images of the sample under uniform and structured illumination and synthesizing an optically sectioned result with real-time image processing.;Oblique back-illumination microscopy (OBM) is a label-free technique which allows, for the first time, phase gradient imaging of sub-surface morphology in thick scattering tissue with a reflection geometry. OBM works by back-illuminating the sample with the oblique diffuse reflectance from light delivered via off-axis optical fibers. The use of two diametrically opposed illumination fibers allows simultaneous and independent measurement of phase gradients and absorption contrast. Video-rate single-exposure operation using wavelength multiplexing is demonstrated.
机译:内窥镜检查是生物医学光学领域的最新进展,它为研究人员和医师提供了完整组织的显微镜分辨率视图,以补充内窥镜检查过程中的宏观可视化。本文介绍了HiLo内窥镜和斜背照明内窥镜,分别是具有荧光和相衬的快速广域成像技术。厚组织中的荧光成像常常受到强烈的离焦背景信号的阻碍。激光扫描共聚焦内窥镜已经被开发用于无背景的光学切片成像,但是对机械扫描的依赖从根本上限制了帧速率并代表了显着的复杂性和费用。 HiLo是一种快速,简单的宽视场荧光成像技术,无需扫描即可拒绝散焦的背景信号。它的工作原理是在均匀和结构化的照明下获取样品的两张图像,并通过实时图像处理合成光学切片的结果。斜背照明显微镜(OBM)是一种无标签技术,首次允许厚散射组织中具有反射几何形状的亚表面形态的相位梯度成像。 OBM的工作原理是:通过偏轴光纤发出的光产生的倾斜漫反射反射光对样品进行反向照明。使用两条完全相反的照明光纤可以同时独立测量相位梯度和吸收对比度。对使用波长复用的视频速率单曝光操作进行了说明。

著录项

  • 作者

    Ford, Tim N.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Engineering Biomedical.;Health Sciences Radiology.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 187 p.
  • 总页数 187
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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