Craig James Obergfell

age ~45

from San Diego, CA

Also known as:
  • Craig J Obergfell
  • Craig L
Phone and address:
4552 Georgia St UNIT 7, San Diego, CA 92116

Craig Obergfell Phones & Addresses

  • 4552 Georgia St UNIT 7, San Diego, CA 92116
  • Manchester, CT
  • Vernon, CT
  • Kensington, CT
  • Milford, CT
  • Glastonbury, CT
  • Hartford, CT
  • Vernon Rockvl, CT

Work

  • Company:
    Thermo fisher scientific
    May 1, 2015 to Jan 2016
  • Position:
    Scientist iii , molecular biology lead, enterprise genomic solutions

Education

  • Degree:
    Bachelors, Bachelor of Science
  • School / High School:
    Rutgers University
    1997 to 2001

Skills

Pcr • Molecular Biology • Qpcr • Dna Sequencing • Cell Culture • Dna • Cell • Dna Extraction • Gel Electrophoresis • Fluorescence • Microsoft Office • Analysis • Photoshop • Endnote • Affymetrix Gene Chip and Gene Atlas Assa... • Real Time Pcr • Taq Man • In Vitro Dna Lipid Transfection • Fluorescence In Situ Hybridization • Fluorescence Microscopy and Digital Imag... • Abi 3130 Dna Sequencing and Analysis • Chemiluminescence Assays • Small Animal Breeding and Tissue Harvest... • Advanced Technique Course Design and Ins... • Data Storage Organization and Management • Microsoft Office 95 Xp • Adobe Photoshop • Galaxy Ngs Pipeline • Product Support • Engineering

Industries

Research

Resumes

Craig Obergfell Photo 1

Staff Scientist, Product Applications

view source
Location:
San Diego, CA
Industry:
Research
Work:
Thermo Fisher Scientific May 1, 2015 - Jan 2016
Scientist Iii , Molecular Biology Lead, Enterprise Genomic Solutions

Thermo Fisher Scientific May 1, 2015 - Jan 2016
Staff Scientist, Product Applications

Thermo Fisher Scientific Jan 2015 - May 2015
Scientist Iii, Research and Development, Next Generation Sequencing

Thermo Fisher Scientific May 2013 - Jan 2015
Scientist Ii, Ion Torrent Research and Development

University of Connecticut Jun 2012 - Apr 2013
Instructional Specialist
Education:
Rutgers University 1997 - 2001
Bachelors, Bachelor of Science
Skills:
Pcr
Molecular Biology
Qpcr
Dna Sequencing
Cell Culture
Dna
Cell
Dna Extraction
Gel Electrophoresis
Fluorescence
Microsoft Office
Analysis
Photoshop
Endnote
Affymetrix Gene Chip and Gene Atlas Assays and Analysis
Real Time Pcr
Taq Man
In Vitro Dna Lipid Transfection
Fluorescence In Situ Hybridization
Fluorescence Microscopy and Digital Imaging Analysis
Abi 3130 Dna Sequencing and Analysis
Chemiluminescence Assays
Small Animal Breeding and Tissue Harvesting
Advanced Technique Course Design and Instruction
Data Storage Organization and Management
Microsoft Office 95 Xp
Adobe Photoshop
Galaxy Ngs Pipeline
Product Support
Engineering

Us Patents

  • Multiplex Nucleic Acid Amplification

    view source
  • US Patent:
    20150361481, Dec 17, 2015
  • Filed:
    Jun 11, 2015
  • Appl. No.:
    14/736509
  • Inventors:
    - Carlsbad CA, US
    Chieh-Yuan LI - El Cerrito CA, US
    Brian REED - Woodbridge CT, US
    Craig OBERGFELL - San Diego CA, US
    Devin DRESSMAN - Pittsburgh PA, US
    Abraham ROSENBAUM - Waterbury CT, US
    Scott BENSON - Alameda CA, US
    Andi BROKA - Carlsbad CA, US
  • International Classification:
    C12Q 1/68
  • Abstract:
    In some embodiments, the disclosure relates generally to compositions, comprising a single reaction mixture containing a plurality of different populations of discrete supports, and a plurality of different populations of target nucleic acids. The single reaction mixture can contain a first population of beads; a second population of beads; a first population of target nucleic acids, where at least two different target nucleic acids in the first population of target nucleic acids can bind to a bead in the first population of beads; and a second population of target nucleic acids, where at least two different target nucleic acids in the second population of target nucleic acids can bind to a bead in the second population of beads. The single reaction mixture can be employed to monoclonally amplify the first target nucleic acids on the first beads, and monoclonally amplify the second target nucleic acids on the second beads.

Googleplus

Craig Obergfell Photo 2

Craig Obergfell

Work:
University of Connecticut
Craig Obergfell Photo 3

Craig Obergfell


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