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April 6, 1990Science9,485 citations

Two-Photon Laser Scanning Fluorescence Microscopy

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WDWinfried DenkJanelia Research CampusJSJames H. StricklerCornell UniversityWWWatt W. WebbTata Institute of Fundamental Research

Key Points

  • The aim is to explore the capabilities of two-photon laser scanning fluorescence microscopy for high-resolution imaging.
  • Utilized subpicosecond pulses of red laser light to excite fluorophores
  • Employed fluorescence imaging to capture living cells and microscopic objects
  • Analyzed the intensity-dependent fluorescence emission in the focal plane
  • Fluorescence emission increased quadratically with excitation intensity, confirming two-photon excitation effects.
  • Photo-bleaching was effectively confined to the vicinity of the focal plane.
  • Demonstrated new capabilities for three-dimensional photochemical processes, including the release of caged effector molecules.

Abstract

Molecular excitation by the simultaneous absorption of two photons provides intrinsic three-dimensional resolution in laser scanning fluorescence microscopy. The excitation of fluorophores having single-photon absorption in the ultraviolet with a stream of strongly focused subpicosecond pulses of red laser light has made possible fluorescence images of living cells and other microscopic objects. The fluorescence emission increased quadratically with the excitation intensity so that fluorescence and photo-bleaching were confined to the vicinity of the focal plane as expected for cooperative two-photon excitation. This technique also provides unprecedented capabilities for three-dimensional, spatially resolved photochemistry, particularly photolytic release of caged effector molecules.

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Cite This Study

Denk et al. (1990) studied this question.

synapsesocial.com/papers/69d9024c183921ebcaae466ehttps://doi.org/10.1126/science.2321027
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