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1 Verghese B, "comK prophage junction fragments as markers for Listeria monocytogenes genotypes unique to individual meat and poultry processing plants and a model for rapid niche-specific adaptation, biofilm formation, and persistence" 77 : 3279-3292, 2011
2 Haase JK, "The ubiquitous nature of Listeria monocytogenes clones: a large-scale Multilocus Sequence Typing study" 16 : 405-416, 2014
3 Stahlmann R, "Risks associated with the therapeutic use of fluoroquinolones" 12 : 497-505, 2013
4 Carpentier B, "Review--Persistence of Listeria monocytogenes in food industry equipment and premises" 145 : 1-8, 2011
5 Pouillot R, "Relative risk of listeriosis in Foodborne Diseases Active Surveillance Network (FoodNet) sites according to age, pregnancy, and ethnicity" 54 (54): S405-S410, 2012
6 Tappero JW, "Reduction in the incidence of human listeriosis in the United States. Effectiveness of prevention efforts? The Listeriosis Study Group" 273 : 1118-1122, 1995
7 Girard D, "Pregnancy-related listeriosis in France, 1984 to 2011, with a focus on 606 cases from 1999 to 2011" 19 : 2014
8 Awofisayo A, "Pregnancy-associated listeriosis in England and Wales" 143 : 249-256, 2015
9 Zunabovic M, "Practical relevance of methodologies for detecting and tracing of Listeria monocytogenes in ready-to-eat foods and manufacture environments - A review" 44 : 351-362, 2011
10 Jensen AK, "Molecular typing and epidemiology of human listeriosis cases, Denmark, 2002-2012" 22 : 625-633, 2016
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