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Infection and Immunity|May 1, 1984
Characterization of the mechanism of action of Escherichia coli heat-stable enterotoxinL A Dreyfus, L Jaso-Friedmann, D C RobertsonProgress in Food & Nutrition Science|January 1, 1983
Chemical and immunological properties of Escherichia coli heat-stable enterotoxinD C Robertson, L A Dreyfus, J C FrantzAnalytical Chemistry|July 25, 2000
Intensities of E. coli nucleic acid Raman spectra excited selectively from whole cells with 251-nm lightQ Wu, W H Nelson, S Elliot, et al.The Journal of Clinical Investigation|April 1, 1991
Enteroaggregative Escherichia coli elaborate a heat-stable enterotoxin demonstrable in an in vitro rabbit intestinal modelS J Savarino, A Fasano, D C Robertson, et al.Infection and Immunity|September 1, 1981
Subunit number and arrangement in Escherichia coli heat-labile enterotoxinD M Gill, J D Clements, D C Robertson, et al.Infection and Immunity|May 1, 1977
Responsiveness of rabbit spleen and appendix cells to bacterial mitogensJ W Scheffel, D L Kreutzer, D C Robertson, et al.American Journal of Veterinary Research|December 1, 1992
Effect of age on activation of porcine intestinal guanylate cyclase and binding of Escherichia coli heat-stable enterotoxin (STa) to porcine intestinal cells and brush border membranesL Jaso-Friedmann, L A Dreyfus, S C Whipp, et al.Applied Optics|March 10, 2010
Measured and predicted atmospheric transmission in the 4.0-5.3-microm region, and the contribution of continuum absorption CO(2) and N(2)L S Bernstein, D C Robertson, J A Conant, et al.Infection and Immunity|March 1, 1977
Mitogenic activity of cell wall components from smooth and rough strains of Brucella abortusD L Kreutzer, J W Scheffel, L R Draper, et al.Applied Optics|March 25, 2010
5-cm(-1) band model option to LOWTRAN5D C Robertson, L S Bernstein, R Haimes, et al.Pageof 7