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相关概念视频

Super-resolution Fluorescence Microscopy01:37

Super-resolution Fluorescence Microscopy

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Super-resolution fluorescence microscopy (SRFM) provides a better resolution than conventional fluorescence microscopy by reducing the point spread function (PSF). PSF is the light intensity distribution from a point that causes it to appear blurred. Due to PSF, each fluorescing point appears bigger than its actual size, and it is the PSF interference of nearby fluorophores that causes the blurred image. Various approaches to achieving higher resolution through SRFM have recently been...
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Confocal Fluorescence Microscopy01:16

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Confocal microscopy is an advanced microscopic technique. The prime advantage of the confocal microscope over other microscopy techniques is its ability to block the out-of-focus light from the illuminated samples using pinholes. It is widely used with fluorescence optics to obtain high-resolution, sharp contrast images. Unlike optical microscopes, confocal microscopes use a focused beam of light laser to scan the entire sample surface at different z-planes. These microscopes are, therefore,...
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相关实验视频

Updated: Jun 21, 2025

Highly Resolved Intravital Striped-illumination Microscopy of Germinal Centers
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Highly Resolved Intravital Striped-illumination Microscopy of Germinal Centers

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[发展双光子超高分辨率显微镜]

Motosuke Tsutsumi1, Hirokazu Ishii, Tomomi Nemoto

  • 1Biophotonics Research Group, Exploratory Research Center on Life and Living Systems, National Institutes of Natural Sciences.

Brain and nerve = Shinkei kenkyu no shinpo
|July 6, 2024
PubMed
概括

双光子显微镜在体内提供深层组织成像,但具有低分辨率. 新的超高分辨率技术可以更详细地增强对生物的成像.

科学领域:

  • 生物医学光学 生物医学光学
  • 显微镜技术 显微镜技术
  • 神经科学成像 图像学

背景情况:

  • 双光子激发显微镜 (TPEM) 对于体内深层组织成像至关重要,因为它具有很高的组织透性和最小侵入性.
  • 在生命科学,特别是神经科学中,TPEM被广泛应用,用于可视化生物体内深层组织.
  • TPEM的一个主要局限性是其相对较低的空间分辨率,这是由于长波长激发光引起的更大的聚焦点大小造成的.

研究的目的:

  • 为了解决两光子激发显微镜的空间分辨率限制.
  • 探索超分辨率显微镜技术,以提高生物体的体内成像.
  • 提出新的光学和图像分析方法,以实现高分辨率的深层组织成像.

主要方法:

  • 超分辨率显微镜技术应用于双光子激发显微镜.
  • 使用光学方法:双光子刺激辐射耗尽 (TP-STED) 显微镜.
  • 采用图像分析方法:两个光子超分辨率的辐射波动 (TP-SRF).

主要成果:

  • 证明了应用超分辨率技术来增强TPEM的可行性.
  • 与传统的TPEM相比,在体内深层组织成像中实现了更高的空间分辨率.
  • 介绍了TP-STED和TP-SRF的成功实施,以改善成像.

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相关实验视频

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结论:

  • 超分辨率显微镜显著提高了两光子激发显微镜的空间分辨率.
  • 这些先进的技术使得在自然状态下对生物体进行更详细的可视化.
  • 开发的光学和图像分析方法代表了神经科学及其他领域深层组织体内成像的重大进步.