Wie-Tec | Refurbished CompuCyte LSC with Olympus BX50 Microscope

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Wie-Tec | Refurbished CompuCyte LSC with Olympus BX50 Microscope


SKU: 1180


Description:
The refurbished CompuCyte LSC with Olympus BX50 Microscope is a powerful analysis tool for cellular investigations. With a variety of equipment features, it offers precise measurements and flexible imaging for a wide range of applications.

Equipment:

Components
Olympus BX50F4 Microscope
Objective UPlanFL 40x/0.75
Objective UPlanFL 20x/0.50
Objective UPlanFL 10x/0.30
Eyepieces WH10x/22
Top Lamp U-ULS100HG
Olympus BH2-RFL-T2 Preamp
Bottom Lamp U-LH100
Camera Dampisha XC-003 3CCD
Laser Power Supply JDS Uniphase 2114B-20SLCT
Motorized Stage
PC with WinCyte Software Version 3.7
2 Flat Screens
etc.


The CompuCyte LSC utilizes the proprietary core technology Laser Scanning Cytometry (LSC), which combines laser-based optoelectronics and automated analysis capabilities to simultaneously and rapidly measure biochemical constituents and evaluate cell morphologies. The LSC technology provides a measure of precision and visualization, combined with flexibility that is available in no other cellular analysis system.

Though LSC technology has a flow cytometry heritage, it is not limited to analyzing cells in fluids. Instead, the technology allows automated analysis of solid-phase samples, including adherent cultured cells, tissue sections, cancer tissue imprints, and cytology smears, preserving the sample along with the exact position of each measured sample. This important feature allows the researcher to automatically return to, visually inspect, and interrogate specific cells having defined genetic, biochemical, or morphological properties; or to remeasure specimens after treating them with reagents or drugs.


Laser Scanning Cytometry allows users to:

  • Generate stoichiometric data and analyze heterogeneous cell populations.
  • Visualize specimens conventionally with either powerful laser-scanning imaging techniques or with a microscope.
  • View any number of individual events in the population data.
  • Reanalyze the same cells under varying conditions.
  • Measure and localize cellular constituents.
  • Detect molecular constituents in the surrounding environment and correlate their presence to cell processes.
  • Simultaneously study cultured cells at the individual and colony level.
  • Perform automated analysis on tissue sections and tissue microarrays.


The device is used and partially tested.

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