Richard Shimkets - Guilford CT, US Michael Braverman - New Haven CT, US
International Classification:
C12Q001/68 G06F019/00 G01N033/48 G01N033/50
US Classification:
435006000, 702020000
Abstract:
A new method for genomic analysis, termed “Sequence-Based Karyotyping,” is described. Sequence-Based Karyotyping methods for the detection of genomic abnormalities, for diagnosis of hereditary disease, or for diagnosis of spontaneous genomic mutations are also described.
System And Method For Identification Of Individual Samples From A Multiplex Mixture
Michael S. Braverman - New Haven CT, US Jan Fredrik Simons - San Francisco CA, US Maithreyan Srinivasan - Mountain View CA, US Gregory S. Turenchalk - New Haven CT, US
International Classification:
G01N 33/48
US Classification:
702 19
Abstract:
An embodiment of an identifier element for identifying an origin of a template nucleic acid molecule is described that comprises a nucleic acid element comprising a sequence composition that enables detection of an introduced error in sequence data generated from the nucleic acid element and correction of the introduced error, where the nucleic acid element is constructed to couple with the end of a template nucleic acid molecule and identifies an origin of the template nucleic acid molecule.
System And Method For Identification Of Individual Samples From A Multiplex Mixture
Michael S. Braverman - New Haven CT, US Jan Fredrik Simons - San Francisco CA, US Maithreyan Srinivasan - Mountain View CA, US Gregory S. Turenchalk - New Haven CT, US
International Classification:
C12Q 1/68 G06F 19/00
US Classification:
435 6, 702 19
Abstract:
An embodiment of an identifier element for identifying an origin of a template nucleic acid molecule is described that comprises a nucleic acid element comprising a sequence composition that enables detection of an introduced error in sequence data generated from the nucleic acid element and correction of the introduced error, where the nucleic acid element is constructed to couple with the end of a template nucleic acid molecule and identifies an origin of the template nucleic acid molecule.
System And Method For Improved Processing Of Nucleic Acids For Production Of Sequencable Libraries
Gianni Calogero Ferreri - Northford CT, US Jan F. Simons - San Francisco CA, US Michael Todd Ronan - New York NY, US Michael Egholm - Madison CT, US Brian C. Godwin - North Haven CT, US David Roderick Riches - Hamden CT, US Stephen Kyle Hutchison - Branford CT, US Michael S. Braverman - New Haven CT, US Melinda D. Palmer - Hamden CT, US Jeffrey Jeddeloh - Verona WI, US Jacob Kitzman - Seattle WA, US Thomas J. Albert - Verona WI, US
An embodiment of an adaptor element for efficient target processing is described that comprises a semi-complementary double stranded nucleic acid adaptor comprising a non-complementary region and a complementary region, where the non-complementary region comprises a first amplification primer site and a second amplification primer site and the complementary region comprises a sequencing primer site and one or more inosine species.
Name / Title
Company / Classification
Phones & Addresses
Michael H. Braverman Principal
Michael H. Braverman, M.D Business Services at Non-Commercial Site
1544 Cole St, San Francisco, CA 94117
Michael H. Braverman President
MICHAEL H. BRAVERMAN, M. D., A MEDICAL CORPORATION
2320 Sutter St #203, San Francisco, CA 94115
Isbn (Books And Publications)
Independent Random Variables and Rearrangement Invariant Spaces
Dr. Braverman graduated from the New York University School of Medicine in 1980. He works in Boston, MA and specializes in Psychiatry. Dr. Braverman is affiliated with Whidden Memorial Hospital.
Software Development Algorithms Project Management Software Bioinformatics Applied Mathematics Genomics Dna Sequencing Sequencing Biotechnology Computational Biology Genetics Lifesciences Dna Drug Discovery Sequence Analysis Systems Biology Statistics Perl Cancer Data Analysis Informatics Life Sciences Linux Molecular Biology
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