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Nature methods

Showing results (1061-1070 of 3,365) with videos related to

Pageof 337
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Nature Methods|March 23, 2010
Direct determination of molecular haplotypes by chromosome microdissectionLi Ma, Yan Xiao, Hui Huang, et al.
Nature Methods|August 25, 2005
Comparative evaluation of mass spectrometry platforms used in large-scale proteomics investigationsJoshua E Elias, Wilhelm Haas, Brendan K Faherty, et al.
Nature Methods|August 25, 2005
A microfluidic chemostat for experiments with bacterial and yeast cellsAlex Groisman, Caroline Lobo, HoJung Cho, et al.
Nature Methods|June 24, 2005
Tag-based approaches for transcriptome research and genome annotationMatthias Harbers, Piero Carninci
Nature Methods|June 24, 2005
Multiphoton excitation-evoked chromophore-assisted laser inactivation using green fluorescent proteinTakuji Tanabe, Masahito Oyamada, Katsumasa Fujita, et al.
Nature Methods|April 23, 2005
Monitoring macromolecular complexes involved in the chaperonin-assisted protein folding cycle by mass spectrometryEsther van Duijn, Patrick J Bakkes, Ron M A Heeren, et al.
Nature Methods|March 23, 2005
Exploiting the 21st amino acid-purifying and labeling proteins by selenolate targetingLinda Johansson, Chunying Chen, Jan-Olov Thorell, et al.
Nature Methods|March 23, 2005
Using protein-DNA chimeras to detect and count small numbers of moleculesIan Burbulis, Kumiko Yamaguchi, Andrew Gordon, et al.
Nature Methods|March 23, 2005
Identifying and quantifying in vivo methylation sites by heavy methyl SILACShao-En Ong, Gerhard Mittler, Matthias Mann
Nature Methods|March 23, 2005
A FlAsH-based FRET approach to determine G protein-coupled receptor activation in living cellsCarsten Hoffmann, Guido Gaietta, Moritz Bünemann, et al.
Pageof 337

Showing results (1061-1070 of 3,365) with videos related to

Sort By:
Pageof 337
Nature Methods|March 23, 2010
Direct determination of molecular haplotypes by chromosome microdissectionLi Ma, Yan Xiao, Hui Huang, et al.
Nature Methods|August 25, 2005
Comparative evaluation of mass spectrometry platforms used in large-scale proteomics investigationsJoshua E Elias, Wilhelm Haas, Brendan K Faherty, et al.
Nature Methods|August 25, 2005
A microfluidic chemostat for experiments with bacterial and yeast cellsAlex Groisman, Caroline Lobo, HoJung Cho, et al.
Nature Methods|June 24, 2005
Tag-based approaches for transcriptome research and genome annotationMatthias Harbers, Piero Carninci
Nature Methods|June 24, 2005
Multiphoton excitation-evoked chromophore-assisted laser inactivation using green fluorescent proteinTakuji Tanabe, Masahito Oyamada, Katsumasa Fujita, et al.
Nature Methods|April 23, 2005
Monitoring macromolecular complexes involved in the chaperonin-assisted protein folding cycle by mass spectrometryEsther van Duijn, Patrick J Bakkes, Ron M A Heeren, et al.
Nature Methods|March 23, 2005
Exploiting the 21st amino acid-purifying and labeling proteins by selenolate targetingLinda Johansson, Chunying Chen, Jan-Olov Thorell, et al.
Nature Methods|March 23, 2005
Using protein-DNA chimeras to detect and count small numbers of moleculesIan Burbulis, Kumiko Yamaguchi, Andrew Gordon, et al.
Nature Methods|March 23, 2005
Identifying and quantifying in vivo methylation sites by heavy methyl SILACShao-En Ong, Gerhard Mittler, Matthias Mann
Nature Methods|March 23, 2005
A FlAsH-based FRET approach to determine G protein-coupled receptor activation in living cellsCarsten Hoffmann, Guido Gaietta, Moritz Bünemann, et al.
Pageof 337