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Super-resolution Fluorescence Microscopy01:37

Super-resolution Fluorescence Microscopy

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 developed.
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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Two-Dimensional Microscopy in Microbiology

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Immunofluorescence Microscopy

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Related Experiment Video

Updated: May 24, 2026

Internalization and Observation of Fluorescent Biomolecules in Living Microorganisms via Electroporation
15:27

Internalization and Observation of Fluorescent Biomolecules in Living Microorganisms via Electroporation

Published on: February 8, 2015

Fluorescence cell imaging and manipulation using conventional halogen lamp microscopy.

Kazuo Yamagata1, Daisaku Iwamoto, Yukari Terashita

  • 1RIKEN Center for Developmental Biology, Kobe, Japan.

Plos One
|February 21, 2012
PubMed
Summary

A novel filter system enables fluorescent cell labeling using standard microscopes and halogen lamps, avoiding phototoxicity. This breakthrough allows detailed observation of cell structures and supports advanced cloning techniques affordably.

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Last Updated: May 24, 2026

Internalization and Observation of Fluorescent Biomolecules in Living Microorganisms via Electroporation
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Published on: February 8, 2015

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07:28

Live Cell Fluorescence Microscopy to Observe Essential Processes During Microbial Cell Growth

Published on: November 24, 2017

Area of Science:

  • Cell biology
  • Microscopy
  • Biotechnology

Background:

  • Fluorescent dyes are crucial for vital cell labeling.
  • High-intensity illumination required for fluorescence can damage cells and increase microscopy costs.

Purpose of the Study:

  • To develop a cost-effective method for exciting fluorescent dyes using conventional transmission microscopes.
  • To enable phototoxicity-free observation of cellular structures and support advanced cell manipulation techniques.

Main Methods:

  • Development of a specialized filter system for fluorescence excitation.
  • Utilizing a conventional transmission microscope equipped with a halogen lamp.
  • Application of the method in somatic cell cloning (bovine, porcine, mouse).

Main Results:

  • Successful excitation of fluorescent dyes without phototoxic damage.
  • Visualization of previously unobservable organelles, like the oocyte metaphase spindle.
  • Cellular health maintained during intensive manipulation, including nuclear transfer.

Conclusions:

  • The developed filter system provides a low-cost, phototoxicity-free alternative for fluorescence microscopy.
  • This technology democratizes advanced cell imaging and manipulation, potentially reducing the science gap.
  • Enables detailed study of cellular processes and supports applications like cloning.