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PUBMED FOR HANDHELDS

Journal Abstract Search


552 related items for PubMed ID: 17195840

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  • 3. Using cross-correlation normalized for peptide length to optimize peptide identification in shotgun proteomics.
    Yang B, Ying W, Gong Y, Zhang Y, Cai Y, Dong H, Qian X.
    Rapid Commun Mass Spectrom; 2005; 19(20):2983-5. PubMed ID: 16178048
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  • 8. Comparative evaluation of mass spectrometry platforms used in large-scale proteomics investigations.
    Elias JE, Haas W, Faherty BK, Gygi SP.
    Nat Methods; 2005 Sep; 2(9):667-75. PubMed ID: 16118637
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  • 12. Isotope-coded N-terminal sulfonation of peptides allows quantitative proteomic analysis with increased de novo peptide sequencing capability.
    Lee YH, Han H, Chang SB, Lee SW.
    Rapid Commun Mass Spectrom; 2004 Sep; 18(24):3019-27. PubMed ID: 15536630
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  • 14. Latest developments in sample treatment for 18O-isotopic labeling for proteomics mass spectrometry-based approaches: a critical review.
    Capelo JL, Carreira RJ, Fernandes L, Lodeiro C, Santos HM, Simal-Gandara J.
    Talanta; 2010 Feb 15; 80(4):1476-86. PubMed ID: 20082805
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  • 15. Computational protein profile similarity screening for quantitative mass spectrometry experiments.
    Kirchner M, Renard BY, Köthe U, Pappin DJ, Hamprecht FA, Steen H, Steen JA.
    Bioinformatics; 2010 Jan 01; 26(1):77-83. PubMed ID: 19861354
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  • 17. pFind 2.0: a software package for peptide and protein identification via tandem mass spectrometry.
    Wang LH, Li DQ, Fu Y, Wang HP, Zhang JF, Yuan ZF, Sun RX, Zeng R, He SM, Gao W.
    Rapid Commun Mass Spectrom; 2007 Jan 01; 21(18):2985-91. PubMed ID: 17702057
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  • 19. Peak bagging for peptide mass fingerprinting.
    He Z, Yang C, Yu W.
    Bioinformatics; 2008 May 15; 24(10):1293-9. PubMed ID: 18397892
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