Bibliography

Export 14683 results:
Author Title Type [ Year(Asc)]
2013
Ravva, S.V., Sarreal, C.Z. and Mandrell, R.E. (2013). Altered Protozoan and Bacterial Communities and Survival of Escherichia coli O157:H7 in Monensin-Treated Wastewater from a Dairy Lagoon. PLoS ONE. 8, (Brown, S.Paul, ed.). pp. e54782. doi: 10.1371/journal.pone.0054782.
Stiegel, P.D., Mann, M. and Dalton, M. (2013). Alternate Indicator Organisms for Reclaimed Water in North Carolina. Proceedings of the Water Environment Federation. 2013, Water Environment Federation. pp. 107–114. doi: 10.2175/193864713813503558.
Fidjeland, J.., Lalander, C.., Jonsson, H.. and Vinneras, B.. (2013). Ammonia sanitisation of sewage sludge using urea. Water Science and TechnologyWater Science and TechnologyWater Sci Technol. 68, pp. 1866-1872.
Miller, C.., Heringa, S.., Kim, J.. and Jiang, X..P. (2013). Analyzing Indicator Microorganisms, Antibiotic Resistant Escherichia coli, and Regrowth Potential of Foodborne Pathogens in Various Organic Fertilizers. Foodborne Pathogens and DiseaseFoodborne Pathogens and DiseaseFoodborne Pathog Dis. 10, pp. 520-527.
Bond, T., Roma, E., Foxon, K.M., Templeton, M.R. and Buckley, C.A. (2013). Ancient water and sanitation systems – applicability for the contemporary urban developing world. Water Science and Technology. 67, pp. 935–941. doi: 10.2166/wst.2013.628.
Rector, A.. and Van Ranst, M.. (2013). Animal papillomaviruses. Virology. 445, pp. 213-223. doi: doi: 10.1016/j.virol.2013.05.007.
CDC (2013). Antibiotic Resistance Threats in the United States, 2013. U.S. Centers for Disease Control and Prevention.
Laxminarayan, R., Duse, A., Wattal, C., Zaidi, A.K.M., Wertheim, H.F.L., Sumpradit, N. et al. (2013). Antibiotic resistance—the need for global solutions. The Lancet infectious diseasesThe Lancet infectious diseases. 13, pp. 1057-1098.
Massow, A.. and Ebner, P.. (2013). Antimicrobial Resistance Trends in Denmark Following the Ban on Including Antimicrobials in Livestock Feeds. http://www.extension.purdue.edu/extmedia/ID/ID-420-W.pdf. Purdue Extension ID-420-W. Purdue University.
Secka, O., Berg, D.E., Antonio, M., Corrah, T., Tapgun, M., Walton, R. et al. (2013). Antimicrobial susceptibility and resistance patterns among helicobacter pylori strains from the gambia, west africa. Antimicrobial Agents and Chemotherapy. 57, pp. 1231–1237. doi: 10.1128/AAC.00517-12.
Secka, O., Berg, D.E., Antonio, M., Corrah, T., Tapgun, M., Walton, R. et al. (2013). Antimicrobial susceptibility and resistance patterns among helicobacter pylori strains from the gambia, west africa. Antimicrobial Agents and Chemotherapy. 57, pp. 1231–1237. doi: 10.1128/AAC.00517-12.
Staggs, S..E., Beckman, E..M., Keely, S..P., Mackwan, R.., Ware, M..W., Moyer, A..P. et al. (2013). The Applicability of TaqMan-Based Quantitative Real-Time PCR Assays for Detecting and Enumerating Cryptosporidium spp. Oocysts in the Environment. PLoS One. 2013/06/28 ed.8, pp. e66562.
Lalonde, L.F., Reyes, J. and Gajadhar, A.A. (2013). Application of a qPCR assay with melting curve analysis for detection and differentiation of protozoan oocysts in human fecal samples from Dominican Republic. The American Journal of Tropical Medicine and Hygiene. 89, pp. 892–898.
Cobo, F. (2013). Application of MALDI-TOF Mass Spectrometry in Clinical Virology: a Review. The Open Virology Journal. 27, pp. 84–90.
Machdar, E.., van der Steen, N.P.., Raschid-Sally, L.. and Lens, P.N.L.. (2013). Application of quantitative microbial risk assessment to analyze the public health risk from poor drinking water quality in a low income area in Accra, Ghana. Science of the Total Environment. 449, pp. 134–142.
Machdar, E.., van der Steen, N.P.., Raschid-Sally, L.. and Lens, P.N.L.. (2013). Application of quantitative microbial risk assessment to analyze the public health risk from poor drinking water quality in a low income area in Accra, Ghana. Science of the Total Environment. 449, pp. 134–142.
Qu, X.., Alvarez, P..J. and Li, Q.. (2013). Applications of nanotechnology in water and wastewater treatment. Water Res. 47, pp. 3931-46. doi: 10.1016/j.watres.2012.09.058.
Wu, C..J., Wang, H..C., Chen, P..L., Chang, M..C., Sun, S., Chou, P.H.. et al. (2013). AQU-1, a chromosomal class C β-lactamase, among clinical Aeromonas dhakensis isolates: distribution and clinical significance. International Journal of Antimicrobial Agents. 42, pp. 456-461. doi: 10.1016/j.ijantimicag.2013.08.002.
Sasi Jyothsna, T.S., Rahul, K., Ramaprasad, E.V.V., Sasikala, C. and Ramana, C.V. (2013). Arcobacter anaerophilus sp. nov., isolated from an estuarine sediment and emended description of the genus Arcobacter. International journal of systematic and evolutionary microbiology. 63, pp. 4619–4625.
Sasi Jyothsna, T.S., Rahul, K., Ramaprasad, E.V.V., Sasikala, C. and Ramana, C.V. (2013). Arcobacter anaerophilus sp. nov., isolated from an estuarine sediment and emended description of the genus Arcobacter. International Journal of Systematic and Evolutionary Microbiology. 63, pp. 4619–4625.
Levican, A., Collado, L. and Figueras, M.J. (2013). Arcobacter cloacae sp. nov. and Arcobacter suis sp. nov., two new species isolated from food and sewage. Systematic and Applied Microbiology. 36, pp. 22–27.
Levican, A., Collado, L. and Figueras, M.J. (2013). Arcobacter cloacae sp. nov. and Arcobacter suis sp. nov., two new species isolated from food and sewage. Systematic and Applied Microbiology. 36, pp. 22–27.
Revez, J., Huuskonen, M., Ruusunen, M., Lindström, M. and Hänninen, M.L. (2013). Arcobacter species and their pulsed-field gel electrophoresis genotypes in Finnish raw milk during summer 2011. Journal of food protection. 76, pp. 1630–1632.
Revez, J., Huuskonen, M., Ruusunen, M., Lindström, M. and Hänninen, M.L. (2013). Arcobacter species and their pulsed-field gel electrophoresis genotypes in Finnish raw milk during summer 2011. Journal of Food Protection. 76, pp. 1630–1632.
Van Stempvoort, D.R., Roy, J.W., Grabuski, J., Brown, S.J., Bickerton, G. and Sverko, E. (2013). An artificial sweetener and pharmaceutical compounds as co-tracers of urban wastewater in groundwater. Science of The Total Environment. 461, pp. 348-359.

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