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Mayon-White, RT., & Frankenberg RA. (1989).  Boil the water. The Lancet. 334, 216.
McBride, GB., Stott R., Miller W., Bambic D., & Wuertz S. (2013).  Discharge-based QMRA for estimation of public health risks from exposure to stormwater-borne pathogens in recreational waters in the United States.
McBride, GB. (2013).  Discharge -based QMRA for estimation of public health risks from exposure to stormwater -borne pathogens in recreational waters in the United States.
McCaul, T. F., & Williams J. C. (1981).  Developmental cycle of Coxiella burnetii: Structure and morphogenesis of vegetative and sporogenic differentiations. Journal of Bacteriology. 147(3), 
McClellan, R. O. (1995).  Concepts in inhalation toxicology.
McCullough, N. B., & C. Eisele W. (1951).  Experimental human salmonellosis: III. Pathogenicity of strains of Salmonella newport, Salmonella derby, and Salmonella bareilly obtained from spray-dried whole egg. The Journal of infectious diseases :. 209-213.
McCullough, NB. (1951).  Experimental human salmonellosis I. Pathogenicity of strains of Salmonella meleagridis and Salmonella anatum obtained from spray dried whole egg.
McCullough, N.. B., & Eisele C.. W. (1951).  Experimental human salmonellosis. II. Immunity studies following experimental illness with Salmonella meleagridis and Salmonella anatum. Journal of immunology. 66, 595-608.
McCullough, NB., & Elsele CW. (1951).  Experimental Human Salmonellosis: I. Pathogenicity of Strains of Salmonella Meleagridis and Salmonella Anatum Obtained from Spray-Dried Whole Egg. Oxford Journal of Infectious Diseases. 88(3), 
McCullough, NB., & Elsele CW. (1951).  Experimental human salmonellosis: I. Pathogenicity of strains of Salmonella meleagridis and Salmonella anatum obtained from spray-dried whole egg. Oxford Journal of Infectious Diseases. 88(3), 
McCullough, NB. (1951).  Experimental human salmonellosis. IV. Pathogenicity of strains of Salmonella pullorum obtained from spray-dried whole egg.
McDade, J.. E., & Newhouse V.. F. (1986).  Natural history of Rickettsia rickettsii. Annu. Rev. Microbiol.. 40, 287-309.
McQuaig, S., Griffith J., & Harwood V. J. (2012).  Association of fecal indicator bacteria with human viruses and microbial source tracking markers at coastal beaches impacted by nonpoint source pollution. Applied and environmental microbiology. 78, 6423–6432.
McQUISTON, J.. H., Holman R.. C., McCALL C.. L., Childs J.. E., Swerdlow D.. L., & Thompson H.. A. (2006).  National Surveillance and the Epidemiology of Human Q Fever in the United States, 1978-2004. The American Journal of Tropical Medicine and Hygiene. 1, 36-40.
Mead, P., Slutsker L., Dietz V., & McCaig L. (1999).  Food-related illness and death in the United States.
Medema, GJ., Teunis PFM., Havelaar AH., & Haas CN. (1996).  Assessment of the dose-response relationship of Campylobacter jejuni. International journal of food microbiology. 30, 101–111.
Medema, G. (1998).  Sedimentation of Free and AttachedCryptosporidium Oocysts and Giardia Cysts in Water.
Medema, G. J., & Schijven J. F. (2001).  Modelling the sewage discharge and dispersion of cryptosporidium and giardia in surface water. Water Research. 35(18), 
Medema, G.. J., Teunis P.. F., Havelaar A.. H., & Haas C.. N. (1996).  Assessment of the Dose-Response Relationship of Campylobacter jejuni. International Journal of Food Microbiology. 1, 101-111.
Mehta, R. T. (1996).  Liposome encapsulation of clofazimine reduces toxicity in vitro and in vivo and improves therapeutic efficacy in the beige mouse model of disseminated Mycobacterium avium-M. intracellulare complex infection. Antimicrobial Agents and Chemotherapy. 40, 1893-1902.
Mena, KD. (2009).  Risk assessment in Pseudomonas aeruginosa in water.
Meschke, J. S., & Kissel J. C. (2007).  Quantitative Assessment of Acceptable Levels of Virus Discharge from Cruise Ships in Puget Sound.
Messner, M. J., Chappell C. L., & Okhuysen P. C. (2001).  Risk Assessment for Cryptosporidium: A Hierarchical Bayesian Analysis of Human Dose Response Data. Water Research. 35, 16.
Messner, MJ. (2014).  Fractional Poisson—A Simple Dose -Response Model for Human Norovirus. Risk Analysis.
Meynell, G., & Meynell W. (1958).  The growth of micro-organisms in vivo with particular reference to the relation between dose and latent period.