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Investigative Radiology|June 1, 1991
Expert learning system network for diagnosis of breast calcificationsE A Patrick, M Moskowitz, V T Mansukhani, et al.Journal of Proteome Research|June 22, 2010
Quantitative proteomic profiling of matched normal and tumor breast tissuesChris W Sutton, Nitin Rustogi, Cemal Gurkan, et al.Annals of the New York Academy of Sciences|June 16, 2005
Recent progress in relaxin-3-related researchChanglu Liu, Pascal Bonaventure, Steven W Sutton, et al.Journal of Biotechnology|January 29, 2019
N-Alkyl-α-amino acids in Nature and their biocatalytic preparationJulia F Hyslop, Sarah L Lovelock, Allan J B Watson, et al.Clinical Proteomics|November 16, 2023
Comparison of in-gel and in-solution proteolysis in the proteome profiling of organ perfusion solutionsCorinna M Snashall, Chris W Sutton, Letizia Lo Faro, et al.Pharmacological Reviews|March 13, 2015
International Union of Basic and Clinical Pharmacology. XCV. Recent advances in the understanding of the pharmacology and biological roles of relaxin family peptide receptors 1-4, the receptors for relaxin family peptidesMichelle L Halls, Ross A D Bathgate, Steve W Sutton, et al.Southern Medical Journal|September 1, 1984
Endoscopic variceal sclerotherapy: experience with 30 patientsW McGrew, W Sutton, S S Madhavan, et al.Current Molecular Pharmacology|July 16, 2014
Involvement of β-arrestin-2 and clathrin in agonist-mediated internalization of the human cannabinoid CB2 receptorXiaopan Chen, Congxia Zheng, Jing Qian, et al.Electrophoresis|March 1, 1997
The analysis of myocardial proteins by infrared and ultraviolet laser desorption mass spectrometryC W Sutton, C H Wheeler, U Sally, et al.Neuroendocrinology|January 29, 2005
Distribution of G-protein-coupled receptor (GPCR)135 binding sites and receptor mRNA in the rat brain suggests a role for relaxin-3 in neuroendocrine and sensory processingSteven W Sutton, Pascal Bonaventure, Chester Kuei, et al.Pageof 17