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P
Kay, D., Jones F., Wyer MD., Fleisher JM., Salmon RL., Godfree AF., et al. (1994).  Predicting likelihood of gastroenteritis from sea bathing: results from randomised exposure. The lancet. 344, 905–909.
Kay, D., Fleisher J. M., Godfree A. F., Jones F., Salmon R. L., Shore R., et al. (1994).  Predicting likelihood of gastroenteritis from sea bathingresults from randomised exposure. Lancet. 344,
Glass, R. I., Holmgren J., Haley C. E., Khan M. R., Svennerholm A. M., Stoll B. J., et al. (1985).  Predisposition for cholera of individuals with O blood group. Possible evolutionary significance. American Journal of Epidemiology. 121,
Shrivastava, S., & Goyal G. (2007).   Preparation of paneer—A Review..
Correia, A. M., Ferreira J. S., Borges V., Nunes A., Gomes B., Capucho R., et al. (2016).  Probable person-to-person transmission of Legionnaires’ disease. New England Journal of Medicine. 374, 497–498.
Correia, A. M., Ferreira J. S., Borges V., Nunes A., Gomes B., Capucho R., et al. (2016).  Probable person-to-person transmission of Legionnaires’ disease. New England Journal of Medicine. 374, 497–498.
Couch, R.. B., Cate T.. R., Gerone P.. J., Fleet W.. F., Lang D.. J., Griffith W.. R., et al. (1965).  Production of Illness with a Small-Particle Aerosol of Coxsackie A21*. Journal of Clinical Investigation. 44, 4.
Couch, R.. B., Cate T.. R., Gerone P.. J., Fleet W.. F., Lang D.. J., Griffith W.. R., et al. (1965).  Production of Illness with a Small-Particle Aerosol of Coxsackie A21*. Journal of Clinical Investigation. 44, 4.
Lathem, W. W., Crosby S. D., Miller V. L., & Goldman W. E. (2005).  Progression of primary pneumonic plague: A mouse model of infection, pathology, and bacterial transcriptional activity. Proceedings of the National Academy of Sciences of the United States of America. 102, 17786-17791.
Lathem, W. W., Crosby S. D., Miller V. L., & Goldman W. E. (2005).  Progression of primary pneumonic plague: a mouse model of infection, pathology, and bacterial transcriptional activity. Proceedings of the National Academy of Sciences. 102, 17786–17791.
Q
Lélu, M., Villena I., Dardé M. L., Aubert D., Geers R., Dupuis E., et al. (2012).  Quantitative estimation of the viability of Toxoplasma gondii oocysts in soil. Applied and Environmental Microbiology. 78,
Lélu, M., Villena I., Dardé M. L., Aubert D., Geers R., Dupuis E., et al. (2012).  Quantitative estimation of the viability of Toxoplasma gondii oocysts in soil. Applied and Environmental Microbiology. 78,
Lélu, M., Villena I., Dardé M. L., Aubert D., Geers R., Dupuis E., et al. (2012).  Quantitative estimation of the viability of Toxoplasma gondii oocysts in soil. Applied and Environmental Microbiology. 78,
Haas, C. N., Rose J. B., & Gerba C. P. (1999).  Quantitative microbial risk assessment.
Haas, C. N., Rose J. B., & Gerba C. P. (2014).  Quantitative Microbial Risk Assessment.
Haas, C. N., Rose J. B., & Gerba C. P. (1999).  Quantitative microbial risk assessment.
Haas, C. N., Rose J. B., & Gerba C. P. (1999).  Quantitative microbial risk assessment.
Haas, C. N., Rose J. B., & Gerba C. P. (2014).  Quantitative Microbial Risk Assessment, Second Edition.
Haas, CN., Rose JB., & Gerba CP. (2014).  Quantitative Microbial Risk Assessment: Second Edition.
Brotherston, J. G., Gilmour N. J., & Samuel J. (1961).  Quantitative studies of Mycobacterium johnei in the tissues of sheep. Journal of Comparative Pathology. 71, 286.
Nisbet, D. I., Gilmour N. J., & Brotherston J. G. (1962).  Quantitative studies of Mycobacterium johnei in tissues of sheep. III. Intestinal histopathology. Journal of comparative pathology. 72, 80.