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Oksana Klueva

from Pittsburgh, PA
Age ~52

Oksana Klueva Phones & Addresses

  • 7142 Michigan Ave, Pittsburgh, PA 15218
  • 823 Smokey Wood Dr, Pittsburgh, PA 15218
  • 7070 Forward Ave, Pittsburgh, PA 15217
  • Bloomfield, PA
  • 257 Roanoke St, Woodbridge, NJ 07095
  • Metuchen, NJ
  • Edison, NJ
  • 4332 Murray Ave, Pittsburgh, PA 15217

Resumes

Resumes

Oksana Klueva Photo 1

Consultant

Location:
Pittsburgh, PA
Industry:
Medical Devices
Work:
ChemImage Corp since Jan 2004
Senior Scientist
Education:
Boston University 1994 - 2000
Ph.D., Physical Chemistry; Organic Chemistry
Moskovskij Gosudarstvennyj Universitet im. M.V. Lomonosova 1989 - 1994
M.Sc., Org Phys Chemistry
Skills:
Spectroscopy
Raman
Chemistry
Fluorescence
Analytical Chemistry
Organic Chemistry
Uv/Vis
Fluorescence Spectroscopy
R&D
Optics
Characterization
Ir
Materials Science
Polymers
Laboratory
Microscopy
Image Processing
Nir Spectroscopy
Digital Imaging
Image Analysis
Physics
Ir Spectroscopy
Optical Microscopy
Uv
Assay Development
Hyperspectral Imaging
Life Sciences
Interests:
Science and Technology
Education
Arts and Culture
Children
Languages:
Russian
Oksana Klueva Photo 2

Oksana Klueva

Business Records

Name / Title
Company / Classification
Phones & Addresses
Oksana Klueva
Senior Scientist
ChemImage Corporation
Research · Mfg Analytical Instruments
7301 Penn Ave, Pittsburgh, PA 15208
(412) 241-7335

Publications

Us Patents

Automation Of Ingredient-Specific Particle Sizing Employing Raman Chemical Imaging

US Patent:
8374801, Feb 12, 2013
Filed:
Jan 8, 2010
Appl. No.:
12/684495
Inventors:
Michael Fuhrman - Pittsburgh PA, US
Ryan Priore - Wexford PA, US
Oksana Olkhovyk - Pittsburgh PA, US
Oksana Klueva - Pittsburgh PA, US
Assignee:
ChemImage Corporation - Pittsburgh PA
International Classification:
G01N 31/00
US Classification:
702 28
Abstract:
A system and method for determining at least one geometric property of a particle in a sample. A sample is irradiated to thereby generate Raman scattered photons. These photons are collected to generate a Raman chemical image. A first threshold is applied wherein the first threshold is such that all particles in the sample are detected. A particle in the sample is selected and a second threshold is applied so that at least one geometric property of the selected particle can be determined. At least one spectrum representative of the selected particle is analyzed to determine whether or not it is a particle of interest. The step of determining a second threshold may be iterative and automated via software so that candidate second thresholds are applied until a satisfactory result is achieved.

Hyperspectral Visible Absorption Imaging Of Molecular Probes And Dyes In Biomaterials

US Patent:
20070019198, Jan 25, 2007
Filed:
Sep 26, 2006
Appl. No.:
11/527112
Inventors:
David Tuschel - Monroeville PA, US
Arjun Bangalore - Monroeville PA, US
Oksana Klueva - Pittsburgh PA, US
Assignee:
Chemimage Corporation - Pittsburgh PA
International Classification:
G01N 21/00
US Classification:
356432000
Abstract:
A system and method for obtaining hyperspectral visible absorption images. The system includes a light source which illuminates a sample containing light absorbing material, a platform, an optical lens, a detector. The platform has a section for placement of the sample and a section devoid of sample. The transmitted photons produced by the sample and collected by the optical lens are separated into a plurality of wavelength bands using a filter or a fiber array spectral translator coupled to a spectrometer. The system includes a programmable code for operating in a sample mode or background mode and calculating an absorption image. In the background mode, the platform motion is controlled so the optical lens collects transmitted photons from the, portion of the platform devoid of sample to generate a background transmission image. In the sample mode, the platform motion is controlled so the optical lens collects transmitted photons from the sample to generate a sample transmission image. The sample transmission image and the background transmission image are used to generate a photon absorption image of the sample.

System And Method For The Assessment Of Biological Particles In Exhaled Air

US Patent:
20120252058, Oct 4, 2012
Filed:
Mar 28, 2012
Appl. No.:
13/432938
Inventors:
Jeffrey Cohen - Pittsburgh PA, US
Shona Stewart - Pittsburgh PA, US
Oksana Klueva - Pittsburgh PA, US
Assignee:
ChemImage Corporation - Pittsburgh PA
International Classification:
G01N 21/64
C12M 1/34
US Classification:
435 34, 4352887
Abstract:
A system and method for the deposition and analysis of a sample comprising exhaled particles. The sample may be deposited on a substrate and regions of interest comprising exhaled particles may be targeted using autofluorescence. Regions of interest comprising exhaled particles may then be interrogated to thereby generate a spectroscopic data set. This spectroscopic data set may be compared to a reference data set associated with at least one of the following: a known disease state, a known metabolic state, a known inflammatory state, a known immunologic state, a known infectious state, and combinations thereof.

Automation Of Ingredient-Specific Particle Sizing Employing Raman Chemical Imaging

US Patent:
20130218480, Aug 22, 2013
Filed:
Feb 11, 2013
Appl. No.:
13/764374
Inventors:
Ryan Priore - Wexford PA, US
Oksana Olkhovyk - Pittsburgh PA, US
Oksana Klueva - Pittsburgh PA, US
Assignee:
Chemimage Corporation - Pittsburgh PA
International Classification:
G01N 15/02
US Classification:
702 29
Abstract:
A system and method for determining at least one geometric property of a particle in a sample. A sample is irradiated to thereby generate Raman scattered photons. These photons are collected to generate a Raman chemical image. A first threshold is applied wherein the first threshold is such that all particles in the sample are detected. A particle in the sample is selected and a second threshold is applied so that at least one geometric property of the selected particle can be determined. At least one spectrum representative of the selected particle is analyzed to determine whether or not it is a particle of interest. The step of determining a second threshold may be iterative and automated via software so that candidate second thresholds are applied until a satisfactory result is achieved.

System And Method For Conformal Vision

US Patent:
20200229703, Jul 23, 2020
Filed:
Jul 24, 2018
Appl. No.:
16/650310
Inventors:
- Pittsburgh PA, US
Thomas VOIGT - Export PA, US
Maxxwell CHATSKO - Pittsburgh PA, US
Patrick TREADO - Pittsburgh PA, US
Rebecca SCHULER - Pittsburgh PA, US
Shona STEWART - Pittsburgh PA, US
James MCGLONE - Newtown Square PA, US
Oksana KLUEVA - Pittsburgh PA, US
Nathaniel GOMER - Pittsburgh PA, US
International Classification:
A61B 5/00
G01J 3/02
G01J 3/26
G01J 3/447
G01N 21/31
A61B 5/0205
Abstract:
Conformal vision with enhanced image processing of the outputted image is incorporated into novel applications. The conformal vision provides enhanced contrast by the combined inclusion of tunable filters and processing of the images that are generated by the detector. Furthermore, novel uses and applications of the conformal vision enable users to make determinations related to their health and wellness utilizing information provided by the conformal vision.
Oksana Klueva from Pittsburgh, PA, age ~52 Get Report