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Nosocomial Transmission of Carbapenem-Resistant Pseudomonas aeruginosa among Burn Patients

Published online by Cambridge University Press:  10 May 2016

Mylène Maillet*
Affiliation:
Infectious Diseases Department, Grenoble University Hospital, Grenoble, France
Isabelle Pelloux
Affiliation:
Microbiology Department, Grenoble University Hospital, Grenoble, France
Alexandra Forli
Affiliation:
Hand and Burn Department, Grenoble University Hospital, Grenoble, France
Karen Vancoetsem
Affiliation:
Hygiene Unit, Public Health Department, Grenoble University Hospital, Grenoble, France
Jacqueline Shum Cheong Sing
Affiliation:
Hygiene Unit, Public Health Department, Grenoble University Hospital, Grenoble, France
Sylvie Marfaing
Affiliation:
Hygiene Unit, Public Health Department, Grenoble University Hospital, Grenoble, France
Sébastien Ducki
Affiliation:
Hygiene Unit, Public Health Department, Grenoble University Hospital, Grenoble, France
Pierre Batailler
Affiliation:
Hygiene Unit, Public Health Department, Grenoble University Hospital, Grenoble, France
Marie-Reine Mallaret
Affiliation:
Hygiene Unit, Public Health Department, Grenoble University Hospital, Grenoble, France
*
Infectious Diseases Department, CHU de Grenoble, BP 218, 38 043 Grenoble cedex 9, France ([email protected])
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Abstract

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Type
Letters to the Editor
Copyright
Copyright © The Society for Healthcare Epidemiology of America 2014

References

1. Taneja, N, Chari, P, Singh, M, Singh, G, Biswal, M, Sharma, M. Evolution of bacterial flora in burn wounds: key role of environmental disinfection in control of infection. Int J Burns Trauma 2013;3(2)102107.Google ScholarPubMed
2. Raz-Pasteur, A, Hussein, K, Finkelstein, R, Ullmann, Y, Egozi, D. Blood stream infections (BSI) in severe burn patients—early and late BSI: a 9-year study. Burns 2013;39(4)636642.CrossRefGoogle Scholar
3. Guggenheim, M, Zbinden, R, Handschin, AE, Gohritz, A, Altintas, MA, Giovanoli, P. Changes in bacterial isolates from burn wounds and their antibiograms: a 20-year study (1986–2005). Burns 2009;35(4)553560.CrossRefGoogle ScholarPubMed
4. Wang, Y, Tang, HT, Xia, ZF, et al. Factors affecting survival in adult patients with massive burns. Burns 2010;36(l)5764.CrossRefGoogle ScholarPubMed
5. Hsueh, PR, Teng, LJ, Yang, PC, Chen, YC, Ho, SW, Luh, KT. Persistence of a multidrug-resistant Pseudomonas aeruginosa clone in an intensive care burn unit. J Clin Microbiol 1998;36(5)13471351.CrossRefGoogle Scholar
6. Aloush, V, Navon-Venezia, S, Seigman-Igra, Y, Cabili, S, Carmeli, Y. Multidrug-resistant Pseudomonas aeruginosa: risk factors and clinical impact. Antimicrob Agents Chemother 2006;50(l)4348.CrossRefGoogle ScholarPubMed
7. Ferreira, AC, Gobara, S, Costa, SE, et al. Emergence of resistance in Pseudomonas aeruginosa and Acinetobacter species after the use of antimicrobials for burned patients. Infect Control Hosp Epidemiol 2004;25(10)868872.CrossRefGoogle ScholarPubMed
8. Moore, JE, Heaney, N, Millar, BC, Crowe, M, Elborn, JS. Incidence of Pseudomonas aeruginosa in recreational and hydrotherapy pools. Commun Dis Public Health 2002;5(l)2326.Google ScholarPubMed