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Animal Waste, Water Quality and Human Health

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100<strong>Animal</strong> <strong>Waste</strong>, <strong>Water</strong> <strong>Quality</strong> <strong>and</strong> <strong>Human</strong> <strong>Health</strong>Atwill, E. R., Harp, J. A., Jones, T., Jardon, P. W., Checel, S. <strong>and</strong> Zylstra, M. (1998).Evaluation of periparturient dairy cows <strong>and</strong> contact surfaces as a reservoir ofCryptosporidium parvum for calfhood infection. Am. J. Vet. Res., 59, 1116–1121.Atwill, E. R., Johnson, E., Klingborg, D. J., Veserat, G. M., Markegard, G., Jensen, W. A.,Pratt, D. W., Delmas, R. E., George, H. A., Forero, L. C., Phillips, R. L., Barry, S. J.,McDougald, N. K., Gildersleeve, R. R. <strong>and</strong> Frost, W. E. (1999). Age, geographic, <strong>and</strong>temporal distribution of faecal shedding of Cryptosporidium parvum oocysts incow-calf herds. Am. J. Vet. Res., 60, 420–425.Atwill, E. R., McDougald, N. K. <strong>and</strong> Perea, L. (2000). Cross-sectional study of faecalshedding of Giardia sp. <strong>and</strong> Cryptosporidium parvum among packstock in theSierra Nevada Range, California, U.S.A. Equine Veterinary Journal, 32, 247–252.Atwill, E. R., Hoar, B., Pereira, M. D. G. C., Tate, K. W., Rulofson, F. <strong>and</strong> Nader, G. (2003).Improved quantitative estimates of low environmental loading <strong>and</strong> sporadicperiparturient shedding of Cryptosporidium parvum in adult beef cattle. Appl.Environ. Microbiol., 69, 4604–4610.Atwill, E. R. <strong>and</strong> Pereira, M. D. G. C. (2003). Lack of detectable shedding ofCryptosporidium parvum oocysts by periparturient dairy cattle. J. Parasitol., 89,1234–1236.Atwill, E. R., Phillips, R., Pereira das Graças, M. C., Li, X. <strong>and</strong> McCowan, B. (2004).Seasonal shedding of multiple Cryptosporidium genotypes in California groundsquirrels (Spermophilus beecheyi). Appl. Environ. Microbiol., 70, 6748–6752.Atwill, E. R., Pereira, M. D., Alonso, L. H., Elmi, C., Epperson, W. B., Smith, R., Riggs, W.,Carpenter, L. V., Dargatz, D. A. <strong>and</strong> Hoar, B. (2006). Environmental load ofCryptosporidium parvum oocysts from cattle manure in feedlots from the central<strong>and</strong> western United States. J. Environ. Qual., 35, 200–206.Auld, H., MacIver, D. <strong>and</strong> Klaassen, J. (2004). Heavy rainfall <strong>and</strong> waterborne diseaseoutbreaks: the Walkerton example. J. Toxicol. Environ. <strong>Health</strong> A., 67, 1879–1887.Bae, W., Kaya, K. N., Hancock, D. D., Call, D. R., Park, Y. H. <strong>and</strong> Besser, T. E. (2005).Prevalence <strong>and</strong> antimicrobial resistance of thermophilic Campylobacter spp. fromcattle farms in Washington State. Appl. Environ. Microbiol., 71, 169–174.Bahnson, P. B., Fedorka-Cray, P. J., Ladely, S. R. <strong>and</strong> Mateus-Pinilla, N. E. (2006).Herd-level risk factors for Salmonella enterica subsp. enterica in U.S. market pigs.Prev. Vet. Med., 76, 249–262.Belongia, E. A., Chyou, P. H., Greenlee, R. T., Perez-Perez, G., Bibb, W. F. <strong>and</strong> DeVries, E.O. (2003). Diarrhoea incidence <strong>and</strong> farm-related risk factors for Escherichia coli O157:H7 <strong>and</strong> Campylobacter jejuni antibodies among rural children. J. Infect. Dis., 187,1460–1468.Besser, T. E., Hancock, D. D., Pritchett, L. C., McRae, E. M., Rice, D. H. <strong>and</strong> Tarr, P. I.(1997). Duration of detection of faecal excretion of Escherichia coli O157:H7 incattle. J. Infec. Dis., 175, 726–729.Besser, T. E., Lejeune, J. T., Rice, D. H., Berg, J., Stilborn, R. P., Kaya, K., Bae, W. <strong>and</strong>Hancock, D. D. (2005). Increasing prevalence of Campylobacter jejuni in feedlotcattle through the feeding period. Appl. Environ. Microbiol., 71(10), 5752–5758.

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