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Journal of Chromatography. B, Analytical Technologies in the Biomedical and Life Sciences
|
February 17, 2009
Automated metal-free multiple-column nanoLC for improved phosphopeptide analysis sensitivity and throughput
Rui Zhao, Shi-Jian Ding, Yufeng Shen, et al.
Genome Research
|
December 6, 2002
A scalable high-throughput chemical synthesizer
Eric A Livesay, Ying-Horng Liu, Kevin J Luebke, et al.
Analytical Chemistry
|
July 20, 2007
Capillary LC coupled with high-mass measurement accuracy mass spectrometry for metabolic profiling
Jie Ding, Christina M Sorensen, Qibin Zhang, et al.
Analytical Chemistry
|
May 14, 2005
Automated 20 kpsi RPLC-MS and MS/MS with chromatographic peak capacities of 1000-1500 and capabilities in proteomics and metabolomics
Yufeng Shen, Rui Zhang, Ronald J Moore, et al.
Journal of Proteome Research
|
December 31, 2009
Novel Ser/Thr protein phosphatase 5 (PP5) regulated targets during DNA damage identified by proteomics analysis
Bryan M Ham, Hemalatha Jayachandran, Feng Yang, et al.
Genome Research
|
January 27, 2007
Spatial mapping of protein abundances in the mouse brain by voxelation integrated with high-throughput liquid chromatography-mass spectrometry
Vladislav A Petyuk, Wei-Jun Qian, Mark H Chin, et al.
Plos One
|
December 15, 2010
Phosphoproteomics profiling of human skin fibroblast cells reveals pathways and proteins affected by low doses of ionizing radiation
Feng Yang, Katrina M Waters, John H Miller, et al.
Journal of Proteome Research
|
April 17, 2008
The influence of sample preparation and replicate analyses on HeLa Cell phosphoproteome coverage
Bryan M Ham, Feng Yang, Hemalatha Jayachandran, et al.
Analytical Chemistry
|
November 30, 2007
Fully automated four-column capillary LC-MS system for maximizing throughput in proteomic analyses
Eric A Livesay, Keqi Tang, Beverley K Taylor, et al.
Journal of Proteome Research
|
December 17, 2009
An LC-IMS-MS platform providing increased dynamic range for high-throughput proteomic studies
Erin Shammel Baker, Eric A Livesay, Daniel J Orton, et al.
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of 1
Search research articles
Search
Showing results (1-10 of 10) with videos related to
Sort By:
Page
of 1
Journal of Chromatography. B, Analytical Technologies in the Biomedical and Life Sciences
|
February 17, 2009
Automated metal-free multiple-column nanoLC for improved phosphopeptide analysis sensitivity and throughput
Rui Zhao, Shi-Jian Ding, Yufeng Shen, et al.
Genome Research
|
December 6, 2002
A scalable high-throughput chemical synthesizer
Eric A Livesay, Ying-Horng Liu, Kevin J Luebke, et al.
Analytical Chemistry
|
July 20, 2007
Capillary LC coupled with high-mass measurement accuracy mass spectrometry for metabolic profiling
Jie Ding, Christina M Sorensen, Qibin Zhang, et al.
Analytical Chemistry
|
May 14, 2005
Automated 20 kpsi RPLC-MS and MS/MS with chromatographic peak capacities of 1000-1500 and capabilities in proteomics and metabolomics
Yufeng Shen, Rui Zhang, Ronald J Moore, et al.
Journal of Proteome Research
|
December 31, 2009
Novel Ser/Thr protein phosphatase 5 (PP5) regulated targets during DNA damage identified by proteomics analysis
Bryan M Ham, Hemalatha Jayachandran, Feng Yang, et al.
Genome Research
|
January 27, 2007
Spatial mapping of protein abundances in the mouse brain by voxelation integrated with high-throughput liquid chromatography-mass spectrometry
Vladislav A Petyuk, Wei-Jun Qian, Mark H Chin, et al.
Plos One
|
December 15, 2010
Phosphoproteomics profiling of human skin fibroblast cells reveals pathways and proteins affected by low doses of ionizing radiation
Feng Yang, Katrina M Waters, John H Miller, et al.
Journal of Proteome Research
|
April 17, 2008
The influence of sample preparation and replicate analyses on HeLa Cell phosphoproteome coverage
Bryan M Ham, Feng Yang, Hemalatha Jayachandran, et al.
Analytical Chemistry
|
November 30, 2007
Fully automated four-column capillary LC-MS system for maximizing throughput in proteomic analyses
Eric A Livesay, Keqi Tang, Beverley K Taylor, et al.
Journal of Proteome Research
|
December 17, 2009
An LC-IMS-MS platform providing increased dynamic range for high-throughput proteomic studies
Erin Shammel Baker, Eric A Livesay, Daniel J Orton, et al.
Page
of 1