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Journal of Food Protection|March 6, 2010
Evaluation of antimicrobial resistance phenotypes for predicting multidrug-resistant Salmonella recovered from retail meats and humans in the United StatesJean M Whichard, Felicita Medalla, Robert M Hoekstra, et al.Journal of Clinical Microbiology|October 6, 2006
Comparison of subtyping methods for differentiating Salmonella enterica serovar Typhimurium isolates obtained from food animal sourcesSteven L Foley, David G White, Patrick F McDermott, et al.The Journal of Infectious Diseases|March 29, 2002
Ciprofloxacin resistance in Campylobacter jejuni evolves rapidly in chickens treated with fluoroquinolonesPatrick F McDermott, Sonya M Bodeis, Linda L English, et al.Emerging Infectious Diseases|June 21, 2005
Free-living Canada geese and antimicrobial resistanceDana Cole, David J V Drum, David E Stalknecht, et al.Journal of Bacteriology|May 24, 2011
Comparative genomics of 28 Salmonella enterica isolates: evidence for CRISPR-mediated adaptive sublineage evolutionW Florian Fricke, Mark K Mammel, Patrick F McDermott, et al.Journal of Bacteriology|June 2, 2009
Comparative genomics of the IncA/C multidrug resistance plasmid familyW Florian Fricke, Timothy J Welch, Patrick F McDermott, et al.Veterinary Microbiology|May 3, 2005
Antimicrobial susceptibility and molecular characterization of avian pathogenic Escherichia coli isolatesShaohua Zhao, John J Maurer, Susannah Hubert, et al.Journal of Food Protection|October 17, 2009
A rapid screen of broth enrichments for Salmonella enterica serovars enteritidis, Hadar, Heidelberg, and Typhimurium by Using an allelotyping multiplex PCR that targets O- and H-antigen allelesYang Hong, Tongrui Liu, Margie D Lee, et al.BMC Microbiology|October 11, 2008
Rapid screening of Salmonella enterica serovars Enteritidis, Hadar, Heidelberg and Typhimurium using a serologically-correlative allelotyping PCR targeting the O and H antigen allelesYang Hong, Tongrui Liu, Margie D Lee, et al.Emerging Infectious Diseases|December 25, 2002
Antimicrobial resistance of Escherichia coli O26, O103, O111, O128, and O145 from animals and humansCarl M Schroeder, Jianghong Meng, Shaohua Zhao, et al.Pageof 6