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Imaging Biological Samples with Optical Microscopy01:18

Imaging Biological Samples with Optical Microscopy

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Optical microscopy uses optic principles to provide detailed images of samples. Antonie van Leeuwenhoek designed the first compound optical microscope in the 17th century to visualize blood cells, bacteria, and yeast cells. In 1830, Joseph Jackson Lister created an essentially modern light microscope. The 20th century saw the development of microscopes with enhanced magnification and resolution.
In optical microscopy, the specimen to be viewed is placed on a glass slide and clipped on the stage...
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Transmission Electron Microscopy01:15

Transmission Electron Microscopy

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In 1931, physicist Ernst Ruska—building on the idea that magnetic fields can direct an electron beam just as lenses can direct a beam of light in an optical microscope—developed the first prototype of the electron microscope. This development led to the development of the field of electron microscopy. In the transmission electron microscope (TEM), electrons are produced by a hot tungsten element and accelerated by a potential difference in an electron gun, which gives them up to 400...
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相关实验视频

Updated: May 22, 2025

Video-rate Scanning Confocal Microscopy and Microendoscopy
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Video-rate Scanning Confocal Microscopy and Microendoscopy

Published on: October 20, 2011

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基于模型的偏差校正显微镜在玻璃管内.

Daniël W S Cox1, Tom Knop1, Ivo M Vellekoop1

  • 1Biomedical Photonic Imaging Group, Faculty of Science and Technology, University of Twente, Enschede, The Netherlands.

Journal of microscopy
|March 17, 2025
PubMed
概括

这项研究提出了一种用于预计算光学校正的新方法,显著改善了非标准显微镜几何形状的高分辨率成像. 该技术增强了图像对比度,而不需要实时反信号.

关键词:
2PEFEF 2PEF是指PEF的使用情况.一个先验的先验.偏差纠正 偏差纠正数字双胞胎数字双胞胎是什么意思光是一种光.激光扫描扫描 激光扫描卢门 (Lumen) 是一种光线.显微镜 显微镜是一种微观的仪器.基于模型的模型.不线性的非线性.器官在芯片上的器官射线追踪 (ray tracing) 是一种光线追踪技术.空间光调节器空间光调节器管道 管道 管道 管道两个光子的两个光子.波浪前线的塑造

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Single Plane Illumination Module and Micro-capillary Approach for a Wide-field Microscope
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Single Plane Illumination Module and Micro-capillary Approach for a Wide-field Microscope

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Author Spotlight: Advancing Knowledge in Far-From-Equilibrium Materials Through Light-Sheet Microscopy

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相关实验视频

Last Updated: May 22, 2025

Video-rate Scanning Confocal Microscopy and Microendoscopy
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Author Spotlight: Advancing Knowledge in Far-From-Equilibrium Materials Through Light-Sheet Microscopy
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科学领域:

  • 光学和光子学 在光学和光子学.
  • 显微镜的使用方法
  • 图像处理 图像处理

背景情况:

  • 显微镜的目标需要特定的条件来实现最佳性能.
  • 非标准的几何形状,如厚厚的盖子或曲的表面会引起严重的偏差,阻碍高分辨率成像.
  • 传统的自适应光学与强度偏差作斗争,或要求广泛的反,消耗宝贵的光子预算.

研究的目的:

  • 在具有挑战性几何形状的高分辨率成像中演示光学校正的预计算.
  • 为了克服标准适应光学对于强度偏差的局限性.
  • 只使用先验信息来实现偏差校正.

主要方法:

  • 开发了一种基于射线追踪的方法来纠正偏差.
  • 使用先验信息来预先计算必要的光学校正.
  • 将该方法应用于玻璃管环境中的成像.

主要成果:

  • 在图像对比度上达到一个数量级的增加.
  • 在没有反信号的情况下成功纠正了严重的偏差.
  • 启用了非标准几何形状的高分辨率成像.

结论:

  • 预计算光学校正是高分辨率成像在具有挑战性的环境中的可行策略.
  • 这种方法绕过了需要反依赖的自适应光学.
  • 该方法可显著改善图像对比度和成像能力.