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Dive into the research topics where George Golda is active.

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Featured researches published by George Golda.


Nature Biotechnology | 2000

Gene expression analysis by massively parallel signature sequencing (MPSS) on microbead arrays

Sydney Brenner; Maria Johnson; John Bridgham; George Golda; David H. Lloyd; Davida Johnson; Shujun Luo; Sarah N. McCurdy; Michael F. Foy; Mark Ewan; Rithy Roth; Dave George; Sam Eletr; Glenn Albrecht; Eric Vermaas; Steven R. Williams; Keith Moon; Timothy Burcham; Michael C. Pallas; Robert B. Dubridge; James J. Kirchner; Karen L. Fearon; Jen-I Mao; Kevin Corcoran

We describe a novel sequencing approach that combines non-gel-based signature sequencing with in vitro cloning of millions of templates on separate 5 μm diameter microbeads. After constructing a microbead library of DNA templates by in vitro cloning, we assembled a planar array of a million template-containing microbeads in a flow cell at a density greater than 3 × 106 microbeads/cm2. Sequences of the free ends of the cloned templates on each microbead were then simultaneously analyzed using a fluorescence-based signature sequencing method that does not require DNA fragment separation. Signature sequences of 16–20 bases were obtained by repeated cycles of enzymatic cleavage with a type IIs restriction endonuclease, adaptor ligation, and sequence interrogation by encoded hybridization probes. The approach was validated by sequencing over 269,000 signatures from two cDNA libraries constructed from a fully sequenced strain of Saccharomyces cerevisiae, and by measuring gene expression levels in the human cell line THP-1. The approach provides an unprecedented depth of analysis permitting application of powerful statistical techniques for discovery of functional relationships among genes, whether known or unknown beforehand, or whether expressed at high or very low levels.


Archive | 1992

Automated molecular biology laboratory

G. Richard Cathcart; Thomas Brennan-Marquez; John Bridgham; George Golda; Harry Guiremand; Marianne Hane; Louis B. Hoff; Eric Lachenmeier; Melvyn N. Kronick; Douglas H. Keith; Paul Mayrand; Michael Metzker; William Mordan; Lincoln Mcbride; John Shigeura; Chen Hanson Ting; Norman M. Whiteley


Archive | 2002

Planar arrays of microparticle-bound polynucleotides

John Bridgham; Kevin P. Corcoran; George Golda; Michael C. Pallas; Sydney Brenner


Archive | 2013

Wearable cardiac monitor

George Golda; Daniel Van Zandt Moyer; Mark P. Marriott; Sam Eletr; Bruce O'Neil


Archive | 2014

HEALTH MONITORING SYSTEMS AND METHODS

George Golda; Daniel Van Zandt Moyer; Mark P. Marriott; Sam Eletr; Bruce O'Neil


Archive | 1991

Automatisiertes labor für molekularbiologie

Guy Richard Cathcart; Thomas Brennan-Marquez; John Bridgham; George Golda; Harry Guiremand; Marianne Hane; Louis B. Hoff; Eric Lachenmeier; Melvyn N Kronick; Douglas H. Keith; Paul Mayrand; Michael Metzker; William Mordan; Lincoln Mcbride; John Shigeura; Chen Ting; Norman M. Whiteley


Archive | 1998

System und gerät zur sequentiellen behandlung von analyten

Sydney Brenner; John Bridgham; Kevin P. Corcoran; George Golda; Michael C. Pallas


Archive | 1998

Systeme et appareil destines au traitement sequentiel des analytes

Michael C. Pallas; Sydney Brenner; John Bridgham; Kevin P. Corcoran; George Golda


Archive | 1991

Automatisiertes labor für molekularbiologie Automated laboratory for molecular biology

Guy Richard Cathcart; Thomas Brennan-Marquez; John Bridgham; George Golda; Harry Guiremand; Marianne Hane; Louis B. Hoff; Eric Lachenmeier; Melvyn N Kronick; Douglas H. Keith; Paul Mayrand; Michael Metzker; William Mordan; Lincoln Mcbride; John Shigeura; Chen Ting; Norman M. Whiteley


Archive | 1991

Laboratoire de biologie moleculaire automatise

G. Richard Cathcart; Thomas Brennan-Marquez; John Bridgham; George Golda; Harry Guiremand; Marianne Hane; Louis B. Hoff; Eric Lachenmeier; Melvyn N Kronick; Douglas H. Keith; Paul Mayrand; Michael Metzker; William Mordan; Lincoln Mcbride; John Shigeura; Chen Hanson Ting; Norman M. Whiteley

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