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Methods in Molecular Biology (Clifton, N.J.)|May 9, 2007
Computational analysis of quantitative proteomics data using stable isotope labelingMichael J MacCoss, Christine C WuJournal of Proteome Research|September 4, 2014
Crux: rapid open source protein tandem mass spectrometry analysisSean McIlwain, Kaipo Tamura, Attila Kertesz-Farkas, et al.Journal of Proteome Research|August 18, 2010
Efficient marginalization to compute protein posterior probabilities from shotgun mass spectrometry dataOliver Serang, Michael J MacCoss, William Stafford NobleAnalytical Chemistry|September 2, 2020
Highly Multiplex Targeted Proteomics Enabled by Real-Time Chromatographic AlignmentPhilip M Remes, Ping Yip, Michael J MacCossProteomics|June 10, 2011
Comparison between procedures using SDS for shotgun proteomic analyses of complex samplesMichael S Bereman, Jarrett D Egertson, Michael J MacCossJournal of Proteome Research|July 28, 2021
Comparison of Unit Resolution Versus High-Resolution Accurate Mass for Parallel Reaction MonitoringLilian R Heil, Philip M Remes, Michael J MacCossAnalytical Chemistry|November 16, 2002
Probability-based validation of protein identifications using a modified SEQUEST algorithmMichael J MacCoss, Christine C Wu, John R YatesCurrent Protocols in Bioinformatics|March 6, 2012
Identification of peptide features in precursor spectra using Hardklör and KrönikMichael R Hoopmann, Michael J MacCoss, Robert L MoritzGenome Research|May 5, 2009
Proteomic discovery of previously unannotated, rapidly evolving seminal fluid genes in DrosophilaGeoffrey D Findlay, Michael J MacCoss, Willie J SwansonMethods in Molecular Biology (Clifton, N.J.)|April 30, 2013
Label-free differential analysis of murine postsynaptic densitiesScott P Goulding, Michael J Maccoss, Christine C WuPageof 32