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Aarestrup, F. M., Bager, F., Jensen, N. E., Madsen, M., Meyling, A., & Wegener, H. C. (1998). Surveillance of antimicrobial resistance in bacteria isolated from food animals to antimicrobial growth promoters and related therapeutic agents in Denmark. Apmis, 106(6), 606–622.
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Cundliffe, E., & McQuillen, K. (1967). Bacterial protein synthesis: the effects of antibiotics. J Mol Biol, 30(1), 137–146.
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Firsov, A. A., Strukova, E. N., Portnoy, Y. A., Shlykova, D. S., & Zinner, S. H. (2015). Bacterial antibiotic resistance studies using in vitro dynamic models: Population analysis vs. susceptibility testing as endpoints of mutant enrichment. Int J Antimicrob Agents, 46(3), 313–318.
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Kim, T., Bak, G., Lee, J., & Kim, K. - S. (2015). Systematic analysis of the role of bacterial Hfq-interacting sRNAs in the response to antibiotics. J Antimicrob Chemother, 70(6), 1659–1668.
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Mah, T. F., & O'Toole, G. A. (2001). Mechanisms of biofilm resistance to antimicrobial agents. Trends Microbiol, 9(1), 34–39.
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Poole, K. (2012). Stress responses as determinants of antimicrobial resistance in Gram-negative bacteria. Trends Microbiol, 20(5), 227–234.
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Walsh, F., Ingenfeld, A., Zampicolli, M., Hilber-Bodmer, M., Frey, J. E., & Duffy, B. (2011). Real-time PCR methods for quantitative monitoring of streptomycin and tetracycline resistance genes in agricultural ecosystems. J Microbiol Methods, 86(2), 150–155.
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Yasuyuki, M., Kunihiro, K., Kurissery, S., Kanavillil, N., Sato, Y., & Kikuchi, Y. (2010). Antibacterial properties of nine pure metals: a laboratory study using Staphylococcus aureus and Escherichia coli. Biofouling, 26(7), 851–858.
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