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. 2014 Apr 24;11(4):588E. doi: 10.2903/sp.efsa.2014.EN-588

Drivers of emerging risks and their interactions in the domain of biological risks to animal, plant and public health: a pilot study

European Food Safety Authority (EFSA)
PMCID: PMC7163721

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European Food Safety Authority , 2014; Drivers of emerging risks and their interactions in the domain of biological risks to animal, plant and public health: a pilot study. EFSA Supporting Publication 2014; 11(4):EN‐588. 44 pp. doi: 10.2903/sp.efsa.2014.EN-588

Published date: 24 April 2014

Question number: EFSA‐Q‐2014‐00077

References

  1. Armstrong JS, 2001. Principles of forecasting: a handbook for researchers and practitioners. London, Kluwer Academic. [Google Scholar]
  2. Baker MG, Kvalsvig A, Zhang J, Lake R, Sears A, Wilson N. Declining Guillain‐Barre syndrome after campylobacteriosis control, New Zealand, 1988–2010. Emerg Infect Dis. 2012;18(2):226–33. [DOI] [PMC free article] [PubMed] [Google Scholar]
  3. Bitler EJ, Matthews JE, Dickey BW, Eisenberg JNS and Leon JS. Norovirus outbreaks: a systematic review of commonly implicated transmission routes and vehicles. Epidemiology & Infection 2013,141:1563–1571 [DOI] [PMC free article] [PubMed] [Google Scholar]
  4. Butzler JP, Skirrow MB. Campylobacter enteritis. Acta paediatrica Belgica. 1979;32(2):89–94. [PubMed] [Google Scholar]
  5. Cao S, 2008. Why large‐scale afforestation efforts in China have failed to solve the desertification problem. Environ. Sci. Technol. 42: 1826–31. [DOI] [PubMed] [Google Scholar]
  6. Cole A, 2006. The Influence Matrix Methodology: a technical report.
  7. Dekeyser P, Gossuin‐Detrain M, Butzler JP, Sternon J. Acute enteritis due to related vibrio: first positive stool cultures. J Infect Dis. 1972;125(4):390–2. [DOI] [PubMed] [Google Scholar]
  8. Desneux N, Wajnberg E, Wyckhuys KAG, Burgio G, Arpaia S, Narváez‐Vasquez CA, González‐Cabrera J, Catalán Ruescas D, Tabone E, Frandon J, Pizzol J, Poncet C, Cabello T, Urbaneja A. 2010. Biological invasion of European tomato crops by Tuta absoluta: ecology, geographic expansion and prospects for biological control. Journal of Pest Science 83: 197–215. [Google Scholar]
  9. Doorduyn Y, Van Den Brandhof WE, Van Duynhoven YT, Breukink BJ, Wagenaar JA, Van Pelt W. Risk factors for indigenous Campylobacter jejuni and Campylobacter coli infections in The Netherlands: a case‐control study. Epidemiol Infect. 2010;138(10):1391–404. [DOI] [PubMed] [Google Scholar]
  10. EFSA (European Food Safety Authority) , 2011a. Scientific Colloquium 16, Emerging Risks in Plant Health: from plant pest interactions to global change: Summary Report 9‐10 June 2011, Parma, Italy. http://www.efsa.europa.eu/en/efsajournal/doc/199e.pdf
  11. EFSA (European Food Safety Authority) , 2011b. Expert Database 2010 Annual Report of Activities [14 pp.]. http://www.efsa.europa.eu/it/supporting/doc/161e.pdf
  12. EFSA (European Food Safety Authority) , 2012. European Food Safety Authority; Towards a methodological framework for emerging risk identification. Supporting Publications 2012:EN‐243.
  13. EFSA (European Food Safety Authority) , 2013. Statement of EFSA on host plants, entry and spread pathways and risk reduction options for Xylella fastidiosa Wells et al. EFSA Journal 2013;11(11):3468, 50 pp. [Google Scholar]
  14. EFSA (European Food Safety Authority) , 2014; A systematic procedure for the identification of emerging chemical risks in the food and feed chain. EFSA supporting publication 2014:EN‐547. 40 pp.
  15. EFSA (European Food Safety Authority) and ECDC (European Centre for Disease Prevention and Control) , 2014. The European Union Summary Report on Trends and Sources of Zoonoses, Zoonotic Agents and Food‐borne Outbreaks in 2012. EFSA Journal 2014;12(2):3547, 312 pp. [Google Scholar]
  16. EFSA AHAW Panel (EFSA Panel on Animal Health and Welfare) , 2011. Scientific Opinion on bluetongue serotype 8. EFSA Journal 2011;9(5):2189. [51 pp.] [Google Scholar]
  17. EFSA AHAW Panel (EFSA Panel on Animal Health and Welfare) , 2012a. Guidance on risk assessment for animal welfare. EFSA Journal 2012;10(1):2513. 30 pp. [Google Scholar]
  18. EFSA AHAW Panel (EFSA Panel on Animal Health and Welfare) , 2012b. Scientific Opinion on infectious salmon anaemia. EFSA Journal 2012;10(11):2971.[22 pp.] [Google Scholar]
  19. EFSA AHAW Panel (EFSA Panel on Animal Health and Welfare) , 2013a; Scientific Opinion on Rift Valley fever. EFSA Journal 2013;11(4):3180. [48 pp.] [Google Scholar]
  20. EFSA AHAW Panel (EFSA Panel on Animal Health and Welfare) , 2013b. Scientific Opinion on the risk of entry of Aethina tumida and Tropilaelaps spp. in the EU. EFSA Journal 2013;11(3):3128. [127 pp.] [Google Scholar]
  21. EFSA BIOHAZ Panel (EFSA Panel on Biological Hazards) , 2010. Scientific Opinion on monitoring and assessment of the public health risk of ‘Salmonella Typhimurium‐like’ strains. EFSA Journal 2010;8(10):1826, 48 pp. [Google Scholar]
  22. EFSA BIOHAZ Panel (EFSA Panel on Biological Hazards) , 2011a. Scientific opinion on the risk posed by Shiga toxin‐producing Escherichia coli (STEC) and other pathogenic bacteria in seeds and sprouted seeds (EFSA Journal 2011;9(11):2424. [101 pp.] [Google Scholar]
  23. EFSA BIOHAZ Panel (EFSA Panel on Biological Hazards) , 2011b. Scientific Opinion on An update on the present knowledge on the occurrence and control of foodborne viruses. EFSA Journal 2011;9(7):2190. [96 pp.] [DOI] [PMC free article] [PubMed] [Google Scholar]
  24. EFSA BIOHAZ Panel (EFSA Panel on Biological Hazards) , 2013a. Scientific Opinion on Carbapenem resistance in food animal ecosystems. EFSA Journal 2013;11(12):3501, 70 pp. doi:10.2903/j.efsa.2013.3501. [Google Scholar]
  25. EFSA BIOHAZ Panel (EFSA Panel on Biological Hazards) , 2013b. Scientific Opinion on VTEC‐seropathotype and scientific criteria regarding pathogenicity assessment. EFSA Journal 2013;11(4):3138. [106 pp.] [Google Scholar]
  26. EFSA BIOHAZ Panel (EFSA Panel on Biological Hazards) , 2013c. Scientific opinion on the risk posed by pathogens in food of non‐animal origin. Part 1 (outbreak data analysis and risk ranking of food/pathogen combinations). EFSA Journal 2013;11(1):3025. [138 pp.] [Google Scholar]
  27. EFSA GMO and AHAW Panels (EFSA Panel on genetically Modified Organisms and EFSA Panel on Animal Health and Welfare) , 2012. Scientific Opinion on the Guidance on the risk assessment of food and feed from genetically modified animals and animal health and welfare aspects. EFSA Journal 2012;10(1):2501. [43pp.] [Google Scholar]
  28. EFSA PLH Panel (EFSA Panel on Plant Health) , 2014a. Scientific Opinion on the risk of Phyllosticta citricarpa (Guignardia citricarpa) for the EU territory with identification and evaluation of risk reduction options. EFSA Journal 2014;12(2):3557, 243 pp. [Google Scholar]
  29. EFSA PLH Panel (EFSA Panel on Plant Health) , 2014b. Scientific Opinion on the risk to plant health of Xanthomonas citri pv. citri and Xanthomonas citri pv. aurantifolii for the EU territory. EFSA Journal 2014;12(2):3556, 178 pp. [Google Scholar]
  30. Engering A, Hogerwerf L and Slingenbergh J, 2013. Pathogen‐host‐environment interplay and disease emergence. Emerging Microbes & Infections (2013) 2, e5; [DOI] [PMC free article] [PubMed] [Google Scholar]
  31. Escherich T. 1886. Beitrage zur Kenntniss der Darmbacterien. III. Über das Vorkommen von Vibrionen in Darmcanal unde den Stuhlgängen der Säuglinge. Münch Med Wochenschr. 181;33:815–7. [Google Scholar]
  32. FAO (Food and Agriculture Organization) , 2009. International standards for phytosanitary measures: revision of ISPM No. 15, regulation of wood packaging material in international trade, United Nations, Rome, Italy.
  33. Gao R, Qin X, Chen D and Chen W, 1993. A study on the damage to poplar caused by Anoplophora glabripennis. For. Res. 6:189–93. [Google Scholar]
  34. Haack R, Hérard F, Sun J and Turgeon JJ, 2010. Managing invasive populations of Asian longhorned beetle and citrus longhorned beetle: a worldwide perspective. Annual Review of Entomology 55: 521–46. [DOI] [PubMed] [Google Scholar]
  35. Heuts F and Mol A, 2013. What Is a Good Tomato? A Case of Valuing in Practice. Valuation Studies 1(2) 2013: 125–146. [Google Scholar]
  36. Jore S, Viljugrein H, Brun E, Heier BT, Borck B, Ethelberg S, et al. 2010. Trends in Campylobacter incidence in broilers and humans in six European countries, 1997–2007. Prev Vet Med.; 93(1):33–41. [DOI] [PubMed] [Google Scholar]
  37. MacLeod A, Evans HF and Baker RHA, 2002. An analysis of pest risk from an Asian longhorn beetle (Anoplophora glabripennis) to hardwood trees in the European community. Crop Prot. 21: 635–45 [Google Scholar]
  38. Mattison K, 2011. Norovirus as a foodborne disease hazard. Advances in Food & Nutrition Research; 62: 1–39. [DOI] [PubMed] [Google Scholar]
  39. Mughini Gras L, Smid JH, Wagenaar JA, de Boer AG, Havelaar AH, Friesema IH, et al. 2012. Risk factors for campylobacteriosis of chicken, ruminant, and environmental origin: a combined case‐control and source attribution analysis. PLoS One. 7(8):e42599. [DOI] [PMC free article] [PubMed] [Google Scholar]
  40. Olson CK, Ethelberg S, Van Pelt W and Tauxe RV, 2008. Epidemiology of Campylobacter jejuni infections in industrialized nations. In: Nachamkin I, Szymanski CM, Blaser MJ, editors. Campylobacter. Third ed. Washington DC: ASM Press; pp. 163–89. [Google Scholar]
  41. Rimstad E, Dale OB, Dannevig BH and Falk K, 2011. Infectious salmon anaemia. In: Woo PTK, Bruno DW. (eds), Fish Diseases and Disorders. Volume 3: Viral, Bacterial and Fungal Infections. CABI, Wallingford, pp. 143–165. [Google Scholar]
  42. Ritchey T, 2006. Problem structuring using computer‐aided morphological analysis. Journal of the Operational Research Society 57, 792–801. [Google Scholar]
  43. Robinson T, Altieri A, Chiusolo A, Dorne JL, Goumperis T, Rortais A, Deluyker H, Silano V and Liem D, 2012. EFSA's approach to identifying emerging risks in food and feed: taking stock and looking forward. EFSA Journal,10(10)):s1015. [8 pp.] [Google Scholar]
  44. Rowe G, 2007. A guide to Delphi. Foresight: The International Journal of Applied Forecasting 8: 11–16. [Google Scholar]
  45. Sears A, Baker MG, Wilson N, Marshall J, Muellner P, Campbell DM, et al. 2011. Marked campylobacteriosis decline after interventions aimed at poultry, New Zealand. Emerg Infect Dis.;17(6):1007–15. [DOI] [PMC free article] [PubMed] [Google Scholar]
  46. Skirrow MB, 1977. Campylobacter enteritis: a “new” disease. Br Med J.; 2(6078):9–11. [DOI] [PMC free article] [PubMed] [Google Scholar]
  47. Skirrow MB, Jones DM, Sutcliffe E and Benjamin J, 1993. Campylobacter bacteraemia in England and Wales, 1981‐91. Epidemiology and Infection.; 110(3):567–73. [DOI] [PMC free article] [PubMed] [Google Scholar]
  48. Strachan NJ, Rotariu O, Macrae M, Sheppard SK, Smith‐Palmer A, Cowden J, et al 2013a. Operationalising factors that explain the emergence of infectious diseases: a case study of the human campylobacteriosis epidemic. PLoS One. 2013;8(11):e79331. [DOI] [PMC free article] [PubMed] [Google Scholar]
  49. Strachan NJ, Rotariu O, Smith‐Palmer A, Cowden J, Sheppard SK, O'Brien SJ, et al. 2013b. Identifying the seasonal origins of human campylobacteriosis. Epidemiol Infect. 2013;141(6):1267–75. [DOI] [PMC free article] [PubMed] [Google Scholar]
  50. Taketani A, 2001. The control of longicorn beetles damaging the “Great Green Wall Project” in the Three Norths region of China. Trop. For. 52: 32–41. [Google Scholar]
  51. Tait J, Meagher L, Lyall C and Suk, J , 2006. Foresight. Infectious Diseases: preparing for the future. Risk Analysis. Office of Science and Innovation, London. [Google Scholar]
  52. Tustin J, Laberge K, Michel P, Reiersen J, Dadadottir S, Briem H, et al., 2011. A national epidemic of campylobacteriosis in Iceland, lessons learned. Zoonoses Public Health; 58(6):440–7. [DOI] [PubMed] [Google Scholar]
  53. Van Der Gaag DJ, Ciampitti M, Cavagna B, Maspero M and Hérard F, 2008. Pest Risk Analysis for Anoplophora chinensis. Plant Prot. Serv., Wageningen, the Netherlands. [Google Scholar]
  54. WHO (World Health Organization) , 2001. The increasing incidence of human campylobacteriosis: Report and proceedings of a WHO consultation of experts. Copenhagen, Denmark: World Health Organization, WHO/CDS/CSR/APH 2001.7. [Google Scholar]
  55. Wilson DJ, Gabriel E, Leatherbarrow AJ, Cheesbrough J, Gee S, Bolton E, et al. 2008. Tracing the source of campylobacteriosis. PLoS Genet.; 4(9):e1000203. [DOI] [PMC free article] [PubMed] [Google Scholar]
  56. Zheng DP, Ando T, Fankhauser RL, Beard RS, Glass RI, and Monroeet SS, 2006. Norovirus classification and proposed strain nomenclature. Virology; 346: 312–323. [DOI] [PubMed] [Google Scholar]

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