FV1000 MPE
Olympus FV1000 MPE Multiphoton Microscope



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Olympus FluoView FV1000-MPE Multiphoton Microscope Specifications

A Multiphoton* Laser Scanning Microscope excellent for deep tissue imaging.

Olympus' Fluoview FV1000-MPE, a multiphoton laser scanning microscope that allows fluorescence imaging deep within specimens. Utilizing pulsed IR lasers, the Olympus Fluoview MPE is able to image hundreds of microns into a specimen thanks to the penetration of IR light and our long working distance objectives. The Fluoview-MPE provides cutting-edge technology for various areas of scientific research such as neuroscience and cell biology.

FV1000-MPE System Configurations and Capabilities Basic

Designed for the researcher who wants to image deep into thick specimens

  • Attenuation via ½ wave plate + Glen Thompson Prism
  • Switching speed 10ms (mechanical shutter )
  • Simple optical system
  • 2-Channel Non-Descanned Detector

AOM – Fast Switching and ROI

Designed for the researcher who wants to conduct an experiment using Region of Interests

  • Attenuation via our AOM (Acoustic Optical Modulator)
  • Switching speed 10usec
  • ROI scanning possible
  • Automatic blinking
  • Negative Chirp beam conditioning optics for high efficiency 2 photon excitation
  • 2-Channel Non-Descanned Detector

SIM/Imaging - Dual Scan Set

Designed for the researcher that needs the ultimate in multiphoton microscopy.

  • Attenuation: AOM (A.A.) for Imaging Scan Unit and SIM scanner
  • Negative Chirp beam conditioning for both Imaging & SIM lasers
  • High efficiency 2 photon excitation
  • IR pulse laser for SIM scanner
  • Two photon stimulation while simultaneously collecting a two photon image
  • 2-Channel Non-Descanned Detector

* The use of lasers with a SUB-PICOSECOND pulse for two-photon microscopy is protected by U.S. and Canada Patent No. 5,034,613. This technology was integrated in Olympus laser scanning microscopy, Models FV1000-MPE, under a license from Carl Zeiss MicroImaging GmbH and Cornell Research Foundation Inc."

 


 

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