SBIR-STTR Award

A Versatile Standard For Quantitative Light Microscopy
Award last edited on: 8/31/04

Sponsored Program
SBIR
Awarding Agency
NIH : NIGMS
Total Award Amount
$609,932
Award Phase
2
Solicitation Topic Code
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Principal Investigator
Robert A Ross

Company Information

Virginia Technologies Inc (AKA: VA Techs Inc~VTI)

660 Hunters Place Suite 102
Charlottesville, VA 22911
   (434) 970-2200
   N/A
   www.vatechnologies.com
Location: Single
Congr. District: 05
County: Albemarle

Phase I

Contract Number: 1R43GM062671-01
Start Date: 00/00/00    Completed: 00/00/00
Phase I year
2001
Phase I Amount
$99,803
Quantitative light microscopy is a valuable technique for studies of cellular function. New data concerning interactions of intracellular proteins, ion concentrations, membrane potential and additional forms of cellular activity are obtained from quantitative measurement of light from exogenous and endogenous optical probes. The accuracy of these measurements relies heavily on well calibrated and characterized microscope light detection systems. This proposal describes the development of a versatile calibration standard for quantitative light microscopy. A reliable and easily used high precision standard is not commercially available and would greatly facilitate reproducible measurements. Technologies currently used as light standards for microscopy present some practical difficulties. The calibrated light output of these devices is affected by illuminator lamp noise and aging. The light output of the electronic standard described in this proposal is independent of the microscope's illuminator output. It provides repeatable flat-field illumination at multiple user selectable wavelengths and illumination levels from a single aperture. Additionally, the instrument can be used to monitor and record the intensity level of the microscope's illuminator. The instrument is uniquely versatile, having operating modes unavailable in any competing product. This technology represents a significant technical innovation in the field of light microscopy. PROPOSED COMMERCIAL APPLICATIONS: The versatile electronic standard described in this proposal represents a new approach for the calibration of light microscopy equipment. It has significant advantages compared to competing technologies, such as neutral density filters or fluorescent beads. Because of these advantages, this technology could capture a significant portion of the $50 million microscope calibration accessory market.

Phase II

Contract Number: 2R44GM062671-02
Start Date: 00/00/00    Completed: 00/00/00
Phase II year
2003
(last award dollars: 2004)
Phase II Amount
$510,129

Quantitative light microscopy is a valuable technique for studies of cellular function. New data concerning interactions of intracellular proteins, ion concentrations, membrane potential and additional forms of cellular activity are obtained from quantitative measurement of light from exogenous and endogenous optical probes. The accuracy of these measurements relies heavily on well calibrated and characterized microscope light detection systems. This proposal describes the commercial development of three instruments to benefit quantitative microscopy. The first instrument, Benchmark TM, is a versatile standard for quantitative light microscopy. A reliable and easily used high precision standard is not commercially available and would greatly facilitate reproducible measurements. Technologies currently used as light standards for microscopy present some practical difficulties. The calibrated light output of these devices is affected by illuminator lamp noise and aging. The light output of the electronic standard described in this proposal is independent of the microscope's illuminator output. Benchmark TM provides repeatable fiat-field illumination at multiple user selectable wavelengths and illumination levels from a single aperture. The second instrument, ilium TM can be used to monitor and record the intensity level of the microscope's illuminator. The third instrument, RatioLite TM, will provide dual wavelength emission for ratiometric recording of fluorescent dyes. These instruments are uniquely versatile, having operating modes unavailable in any competing product. This technology represents a significant technical innovation in the field of light microscopy.

Thesaurus Terms:
biomedical equipment development, light intensity, light microscopy, measurement, optics light emission, light scattering bioimaging /biomedical imaging