Open Access
Issue
E3S Web Conf.
Volume 111, 2019
CLIMA 2019 Congress
Article Number 04046
Number of page(s) 7
Section High Energy Performance and Sustainable Buildings, Simulation models and predictive tools for the buildings HVAC, IEQ and energy
DOI https://doi.org/10.1051/e3sconf/201911104046
Published online 13 August 2019
  1. A. Cassini, D. Plachouras, T. Eckmanns, M. Abu Sin, H-P. Blank, T. Ducomble et al. Burden of Six Healthcare-Associated Infections on European Population Health: Estimating Incidence Based Disability-Adjusted Life Years through a Population Prevalence-Based Modelling Study, PLoS Med. 13 (2016) [Google Scholar]
  2. T.C. Horan, M Andrus, M.A. Dudeck, CDC/NHSN surveillance definition of health care-associated infection and criteria for specific types of infections in the acute care setting. AJIC, vol. 36, nr5, (2008), [Google Scholar]
  3. Non-Manual Room Disinfection Techniques for Infection Prevention in Healthcare Facilities: A Review of the Clinical Effectiveness, Cost- Effectiveness, and Guidelines, Canadian Agency for Drugs and Technologies in Health, (2015), [Google Scholar]
  4. S.J. Dancer, Controlling hospital-acquired infection: focus on the role of the environment and new technologies for decontamination, Clin Microbiol Rev., vol. 27, 4, (2014), [CrossRef] [Google Scholar]
  5. L. Sánchez-Prado, M. Llompart, M. Lores, M. Fernández-Alvarez, C. García-Jares, R. Cela, Further research on the photo-SPME of triclosan, Anal. Bioanal. Chem., 384 (2006), [Google Scholar]
  6. K.Page, M. Wilson, I.P. Parkin, Antimicrobial surfaces and their potential in reducing the role of the inanimate environment in the incidence of hospital-acquired infections, J. Mater. Chem., 19, (2009), [Google Scholar]
  7. D. Lindsay, A. von Holy, Bacterial biofilms within the clinical setting: what healthcare professionals should know, Journal of Hospital Infection, 64, (2006), [Google Scholar]
  8. J.D. Siegel, E. Rhinehart, M. Jackson, Guideline for Isolation Precautions: Preventing Transmission of Infectious Agents in Healthcare Settings, HIPAC, (2007), [Google Scholar]
  9. S.J. Dancer, Hospital cleaning in the 21st century Eur J Clin Microbiol Infect Dis (2011), [Google Scholar]
  10. T. Schettler, Antimicrobials in Hospital Furnishings: Do They Help Reduce Healthcare- Associated Infections (2016), [Google Scholar]
  11. B.D. Andrea, A. Hontela, Triclosan: environmental exposure, toxicit and mechanisms of action, Journal of Applied Toxicology, 31, (2011), [Google Scholar]
  12. O.E. Mohamd, R.V. Miller, Study of the Response of a Biofilm Bacterial Community to UV Radiation, American Society for Microbiology, vol. 65, nr 5 (1999), [Google Scholar]
  13. J.T. Madsen, K.E. Andersen, Contact allergy to 1,2- benzisothiazolin-3-one, Jhon Wileys&Sons, nr 75 (2016), [Google Scholar]
  14. M. Jamal, W. Ahmad, F. Jalil, S. Andleeb, Bacterial biofilm and associated infections, Journal of the Chinese Medical Association, 81, (2018), [Google Scholar]
  15. M.D. Macia, E.R. Molinero, A. Oliver, Antimicrobial susceptibility testing in biofilmgrowing bacteria, Clin Microbial Infect, 20, (2014), [Google Scholar]
  16. G. Batoni, G. Maisetta, S, Esrin, Antimicrobial peptides and their interaction with biofilms of medically relevant bacteria, BBA, 1858,(2016) [Google Scholar]
  17. E. Babapour, A. Hadadi, R. Mirnejad, Biofilm formation in clinical isolates of nosocomial Acinetobacter baumannii and its relationship with multidrug resistance, Asian Pac J Trop Biomed, 6, (2016) [Google Scholar]
  18. R. Wolcotl, J.W. Casterton, D. Raoult, S.J. Cutler, The polymicrobial nature of biofilm infection, Clin Microbial Infect, 19,(2013) [Google Scholar]
  19. T. Seko, T. Tachi, N. Kawashima, T. Maeda, M. Yasuda, Economic Evaluation of Infection Control Activities, Journal of Hospital Infection, (2017), [Google Scholar]
  20. C. Bruhwasser, H.Heinrich, C. Lass-Flo, A. Mayr, Self-disinfecting surfaces and activity against Staphyloccocus aureus ATCC 6538 under real-life conditions, Journal of Hospital Infection, (2017), [Google Scholar]
  21. A. Fujishima, X. Zhang, D.A. Tryk, TiO2 Photocatalysis and Related Surface Phenomena, Surface Science Reports, 63, (2003), [Google Scholar]
  22. A.L. Linsebigler, G. Lu, J.T. Yates, Photocatalysis on TiO2 Surfaces: Principles, Mechanisms, and Selected Results, Chem Rew., 95, (1995), [Google Scholar]
  23. R.K. Dutta, B.P. Nenavathu, M.K. Gangishetty Correlation between defects in capped ZnO nanoparticles and their antibacterial activity, J.Photochem.photobiol., B, 126, (2013) (274) [Google Scholar]
  24. T. Verdier, M. Coutand, A. Bertron, C. Roques, Antibacterial Activity of TiO2 Photocatalyst Alone or in Coatings on E. coli: The Influence of Methodological Aspects, Journal Coatings, (2014), [Google Scholar]
  25. M.G. Nair, M. Nirmala, K, Rekha, A. Anukaliani, Structural, optical, photo catalytic and antibacterial activity of ZnO and Co doped ZnO nanoparticles, Materials Letters, 66, (2011), [Google Scholar]
  26. S. Neatu, B. Cojocaru, V.I. Parvaluescu, V. Somoghi, Visible-light C – heteroatom bond cleavage and detoxification of chemical warfare agents using titania-supported gold nanoparticles as photocatalys, J. Mater. Chem. C., 20, (2010), [Google Scholar]
  27. R. Fagan, D.E. McCornack, D.D. Dionysiou, S.C. Pillai, A review of solar and visible light active TiO2 photocatalysis for treating bacteria, cyanotoxins and contaminants of emerging, Mater.Sci.Semicond.Process, (2015), [Google Scholar]
  28. A. Sirelkhatim, S. Mahmud, A. Seeni, H. Hasan et all, Review on Zinc Oxide Nanoparticles: Antibacterial Activity and Toxicity Mechanism, Nano-Micro, 7, (2015), [Google Scholar]
  29. K.A. Korte, L. Ackermann, R. Jolanki, 1,2- Benzisothiazolin-3-one in disposable polyvinyl chloride gloves for medical use, Journal compilation, 57, (2007), [Google Scholar]
  30. J. A. Otter, K.Vickery, J. T. Walker, E. de Lancey Pulcini, P. Stoodley, S. D. Goldenberg, J. Chewins, S. Yezli, J. D. Edgeworth, Surface-attached cells, biofilms and biocide susceptibility: implications for hospital cleaning and disinfection, Journal of Hospital Infection, 89, (2015), [Google Scholar]
  31. N. Heiby, C. Moser, C. Imbert, C Williams et all, ESCMID guideline for the diagnosis and treatment of biofilm infections, Clinical Microbiology and Infection, vol 21, (2015), [Google Scholar]
  32. J. Hurlow, K Couch, K. Laforet, L. Bolton, Clinical Biofilms: A Challenging Frontier in Wound Care, (2014), [Google Scholar]
  33. R.M. Donlan, Biofilms: Microbial Life on Surfaces, Emerging infectious Diseases, vol 8, nr 9, (2002) [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.