Microbiological Risk Assessment Associated with the Food Processing and Distribution Chain. Jeanne-Marie Membre. Читать онлайн. Newlib. NEWLIB.NET

Автор: Jeanne-Marie Membre
Издательство: John Wiley & Sons Limited
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Жанр произведения: Техническая литература
Год издания: 0
isbn: 9781119986973
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      AFNOR (2011). Norme NF V08-602 – Microbiologie des aliments – Dénombrement des spores dans les produits alimentaires avant traitement d’appertisation par comptage des colonies. AFNOR Store Publishing, Paris.

      Anderson, N.M., Larkin, J.W., Cole, M.B., Skinner, G.E., Whiting, R.C., Gorris, L.G.M., Rodriguez, A., Buchanan, R., Stewart, C.M., Hanlin, J.H., Keener, L., Hall, P.A. (2011). Food Safety Objective approach for controlling Clostridium botulinum growth and toxin production in commercially sterile foods. Journal of Food Protection, 74(11), 1956–1989.

      ANSES (2017a). Attribution des sources des maladies infectieuses d’origine alimentaire. Partie 1 : Revue des méthodes et inventaire des données [Online]. Available at: https://www.anses.fr/fr/system/files/BIORISK2015SA0162Ra.pdf.

      ANSES (2017b). INCA 3 : Evolution des habitudes et modes de consommation, de nouveaux enjeux en matière de sécurité sanitaire et de nutrition Anses – Agence nationale de sécurité sanitaire de l’alimentation, de l’environnement et du travail [Online]. Available at: https://www.anses.fr/fr/content/inca-3-evolution-des-habitudes-et-modes-de-consommation-de-nouveaux-enjeux-en-mati%C3%A8re-de.

      ANSES (2018). Avis et rapport de l’Anses relatif à l’attribution des sources des maladies infectieuses d’origine alimentaire. Partie 2 : Analyse des données épidémiologiques [Online]. Available at: https://www.anses.fr/fr/system/files/BIORISK2015SA0162Ra-2.pdf.

      Asakura, H., Boisen, N., Chinen, I., Cook, R., Dallman, T., Devleesschauwer, B., Feng, P., Franz, E., Fratamico, P., Gill, A., Griffin, P., Keddy, K., Mainda, G., Majowicz, S., Pires, S.M., Ogunrinola, Y., Scheutz, F., Srimanote, P., Alvarez, R.V., Esteban, E., Lejeune, J., Mylrea, G., Moreira, D., Shaw, W.K., Cahill, S., Ouattara, B., Desmarchelier, P., Nakagawa, R., Zhou, K., Grp, F.W.S.E. (2019). Hazard identification and characterization: Criteria for categorizing Shiga toxin-producing escherichia coli on a risk basis. Journal of Food Protection, 82(1), 7–21.

      Augustin, J.-C., Kooh, P., Bayeux, T., Guillier, L., Meyer, T., Jourdan-Da Silva, N., Villena, I., Sanaa, M., Cerf, O., Blanchemanche, S., Bonnaud, L., Gautier, M., Gauchard, F., Nabec, L., Soler, L.-G., ANSES Working Group (2020). Contribution of foods and poor food-handling practices to the burden of foodborne infectious diseases in France. Foods, 9(11), 1644–1661.

      Borch, E., Nesbakken, T., Christensen, H. (1996). Hazard identification in swine slaughter with respect to foodborne bacteria. International Journal of Food Microbiology, 30(1–2), 9–25.

      Carrascosa, C., Millan, R., Saavedra, P., Jaber, J.R., Raposo, A., Sanjuan, E. (2016). Identification of the risk factors associated with cheese production to implement the hazard analysis and critical control points (HACCP) system on cheese farms. Journal of Dairy Science, 99(4), 2606–2616.

      Cartron, F. and Fichet, J.-L. (2020). Vers une alimentation durable : un enjeu sanitaire, social, territorial et environnemental majeur pour la France. Report, Sénat, Paris.

      Davies, R.H. and Wray, C. (1994). An approach to reduction of Salmonella infection in broiler chicken flocks through intensive sampling and identification of cross-contamination hazards in commercial hatcheries. International Journal of Food Microbiology, 24(1–2), 147–160.

      Detmer, A. and Glenting, J. (2006). Live bacterial vaccines – A review and identification of potential hazards. Microbial Cell Factories, 5, 23–34.

      European Commission (2016). Food 2030 – European R&I for Food and Nutrition Security [Online]. Available at: https://doi.org/doi:10.2777/069319.

      Eygue, M., Richard-Forget, F., Cappelier, J.-M., Pinson-Gadais, L., Membré, J.-M. (2020). Development of a risk-ranking framework to evaluate simultaneously biological and chemical hazards related to food safety: Application to emerging dietary practices in France. Food Control, 115, 107279.

      Fach, P., Micheau, P., Mazuet, C., Perelle, S., Popoff, M. (2009). Development of real-time PCR tests for detecting botulinum neurotoxins A, B, E, F producing Clostridium botulinum, Clostridium baratii and Clostridium butyricum. Journal of Applied Microbiology, 107, 465–473.

      FAO and WHO (2020). Public consultation for draft guidance of microbiological risk assessment for food [Online]. Available at: https://www.who.int/news-room/articles-detail/public-consultation-for-draft-guidance-of-microbiological-risk-assessment-for-food [Accessed 15 June 2020].

      Feliciano, R.J., Boué, G., Membré, J.-M. (2020). Overview of the potential impacts of climate change on the microbial safety of the dairy industry. Foods, 9(12), 1794.

      Franz, E., Van Hoek, A.H.A.M., Wuite, M., Van Der Wal, F.J., De Boer, A.G., Bouw, E.I., Aarts, H.J.M. (2015). Molecular hazard identification of non-O157 Shiga toxin-producing Escherichia coli (STEC). PloS One, 10(3).

      Frazier, W.C. (1967). Food Microbiology. McGraw-Hill Inc., New York.

      Gould, G.W. (1999). Sous vide foods: Conclusions of an ECFF Botulinum working party. Food Control, 10(1), 47–51.

      Haddad, N. (2022). Hazards in the Food Processing and Distribution Chain. ISTE Ltd, London and Wiley, New York.

      Hauschild, A.H.W., Hilsheimer, R., Jarvis, G., Raymond, D.P. (1982). Contribution of nitrite to the control of Clostridium botulinum in liver sausage. Journal of Food Protection, 45(6), 500–506.

      ICMSF (2005). Micro-organisms in Foods 6: Microbiological Ecology of Food Commodities, 2nd edition. Kluwer Academic and Plenum Publishers, New York.

      INVS (2013). Caractéristiques épidémiologiques du botulisme humain [Online]. Available at: http://www.invs.sante.fr/Dossiers-thematiques/Maladies-infectieuses/Risques-infectieux-d-origine-alimentaire/Botulisme/Donnees-epidemiologiques [Accessed 06 August 2014].

      Jimenez, S.M., Salsi, M.S., Tiburzi, M.C., Pirovani, M.E. (2002). A comparison between broiler chicken carcasses with and without visible faecal contamination during the slaughtering process on hazard identification of Salmonella spp. Journal of Applied Microbiology, 93(4), 593–598.

      Kleter, G.A. and Marvin, H.J.P. (2009). Indicators of emerging hazards and risks to food safety. Food and Chemical Toxicology, 47(5), 1022–1039.

      Kouame-Sina, S.M., Makita, K., Costard, S., Grace, D., Dadie, A., Dje, M., Bonfoh, B. (2012). Hazard identification and exposure assessment for bacterial risk assessment of informally marketed milk in Abidjan, Cote d’Ivoire. Food and Nutrition Bulletin, 33(4), 223–234.

      Lammerding, A.M. and Fazil, A. (2000). Hazard identification and exposure assessment for microbial food safety risk assessment. International Journal of Food Microbiology, 58(3), 147–157.

      Lateef, A., Davies, T.E., Adelekan, A., Adelere, I.A., Adedeji, A.A., Fadahunsi, A.H. (2010). Akara ogbomoso: Microbiological examination and identification of hazards and critical control points. Food Science and Technology International, 16(5), 389–400.

      Lund, B.M. (1993). Quantification of factors affecting the probability of development of pathogenic