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Animal Waste, Water Quality and Human Health

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Indicators, sanitary surveys <strong>and</strong> source attribution techniques 345Bartram, J., & Rees, G. (eds.). (2000a). Factors affecting recreational water quality. In:Monitoring Bathing <strong>Water</strong>s, a Practical Guide to the Design <strong>and</strong> Implementation ofAssessments <strong>and</strong> Monitoring Programmes. Published on behalf of the USEPA,WHO, <strong>and</strong> Commission of European Communities. London <strong>and</strong> New York: E &FN Spon Publishing Co, pp. 4–5.Bartram, J., & Rees, G. (eds.). (2000b). Sanitary inspection <strong>and</strong> microbiological waterquality. In: Monitoring bathing waters, a practical guide to the design <strong>and</strong>implementation of assessments <strong>and</strong> monitoring programmes. Published on behalf ofthe USEPA, WHO, <strong>and</strong> Commission of European Communities. London <strong>and</strong> NewYork: E & FN Spon Publishing Co., pp. 113–167.BBC News, Wednesday, 25 June 2008 18:54 United Kingdom.Beaudeau, P., Kerebel, D., Jestin, E., & Basille, M. (2002). Are the viral indicators a tool forthe follow-up of the quality of recreational water? Techniques Sci. Methods, 1,30–38.Bernhard, A., & Field, K. (2000a). A PCR assay to discriminate human <strong>and</strong> ruminate feceson the basis of host differences in Bacteroides-Prevotella genes encoding 16S rRNA.Appl. Environ. Microbiol., 66, 4571–4574.Bernhard, A., & Field, K. (2000b). Identification of nonpoint sources of faecal pollution incoastal waters by using host-specific 16S ribosomal DNA genetic markers from faecalanaerobes. Appl. Environ. Microbiol., 66, 1587–1594.Bertr<strong>and</strong>, I., & Schwartzbrod, J. (2007). Detection <strong>and</strong> genotyping of Giardia duodenalis inwastewater: relation between assemblages <strong>and</strong> faecal contamination origin. Wat. Res.,41, 3675–3682.Bisson, J., & Cabelli, V. (1980). Clostridium perfringens as a water pollution indicator.J. Wat. Pollut. Control Fed., 52(2), 241–8248.Boehm, A., Fuhrman, J., Mrse, R., & Grant, S. (2003). Tiered approach for identification of ahuman faecal pollution source at a recreational beach: case study at Avalon Bay,Catalina Isl<strong>and</strong>, California. Environ. Sci. Technol., 37, 673–680.Bower, P., Scopel, C., Jensen, E., Depas, M., & McLellan, S. (2005). Detection of geneticmarkers of faecal indicator bacteria in Lake Michigan <strong>and</strong> determination of theirrelationship to Escherichia coli densities using st<strong>and</strong>ard microbiological methods.Appl. Environ. Microbiol., 71, 8305–8313.Brown, E., Caraco, D., & Pitt, R. (2004). Illicit discharge detection <strong>and</strong> elimination: aguidance manual for programme development <strong>and</strong> technical assessments. Preparedfor: <strong>Water</strong> Permits Division Office of <strong>Water</strong> <strong>and</strong> <strong>Waste</strong>water U.S. EnvironmentalProtection Agency. Center for <strong>Water</strong>shed Protection, Ellicott City, MD, US,Washington, D.C..Brownell, M., Harwood, V., Kurz, R., McQuaig, S., Lukasik, J., & Scott, T. (2007).Confirmation of putative stormwater impact on water quality at a Florida beach bymicrobial source tracking methods <strong>and</strong> structure of indicator organism populations.Wat. Res., 41, 3747–3757.Bruesch, M., & Biedrzycki, P.. (2002). Preliminary comparative analysis of two modelsused to predict E. coli levels in recreational water in Milwaukee. Presented at the2nd annual Great Lakes Beach Association conference, 30 October 2002, Chicago, IL.

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