Biosecurity measures in French poultry farms are associated with farm type and location

Preventive Veterinary Medicine - Tập 195 - Trang 105466 - 2021
Mattias Delpont1, Claire Guinat1, Jean-Luc Guérin1, Eric Le leu2, Jean-Pierre Vaillancourt3, Mathilde C. Paul1
1IHAP, Université de Toulouse, INRAE, ENVT, Toulouse, France
2Direction régionale de l'Alimentation, de l'Agriculture et de la Forêt de Bretagne, Rennes, France
3Department of Clinical Sciences, Faculty of Veterinary Medicine, Université de Montréal, St-Hyacinthe, QC, Canada

Tài liệu tham khảo

Artois, 2009, Outbreaks of highly pathogenic avian influenza in Europe: the risks associated with wild birds, Rev. Sci. Tech. Int. Off. Epizoot., 28, 69, 10.20506/rst.28.1.1854 Bonney, 2018, Spatial transmission of H5N2 highly pathogenic avian influenza between Minnesota poultry premises during the 2015 outbreak, PLoS One, 13, 10.1371/journal.pone.0204262 Bouwstra, 2017, Risk for low pathogenicity avian influenza virus on poultry farms, the Netherlands, 2007–2013, Emerg. Infect. Dis., 23, 1510, 10.3201/eid2309.170276 Briand, 2017, Emerging highly pathogenic H5 avian influenza viruses in France during winter 2015/16: phylogenetic analyses and markers for zoonotic potential, Eurosurveillance, 22 Briand, 2018, Emergence and multiple reassortments of French 2015–2016 highly pathogenic H5 avian influenza viruses, Infect. Genet. Evol., 61, 208, 10.1016/j.meegid.2018.04.007 British Lion Code of Practice [WWW Document], n.d. URL https://www.egginfo.co.uk/british-lion-code-practice (accessed 7.7.20). Cui, 2019, Determinants of highly pathogenic avian influenza outbreak information sources, risk perception and adoption of biosecurity behaviors among poultry farmers in China, Prev. Vet. Med., 167, 25, 10.1016/j.prevetmed.2019.03.018 Delpont, 2018, Biosecurity practices on foie gras duck farms, Southwest France, Prev. Vet. Med., 158, 78, 10.1016/j.prevetmed.2018.07.012 Delpont, 2020, Determinants of biosecurity practices in French duck farms after a H5N8 Highly Pathogenic Avian Influenza epidemic: the effect of farmer knowledge, attitudes and personality traits, Transbound. Emerg. Dis., 51 Dewulf, 2018 DGAl, 2019 DGAl, 2016 DGAl, 2016 DGAl, 2017, Instruction technique Dohoo, 1997, An overview of techniques for dealing with large numbers of independent variables in epidemiologic studies, Prev. Vet. Med., 29, 221, 10.1016/S0167-5877(96)01074-4 Dorea, 2010, Survey of biosecurity protocols and practices adopted by growers on commercial poultry farms in Georgia, U. S, A. Avian Dis., 54, 1007, 10.1637/9233-011210-Reg.1 Eurostat, 2019 FAOSTAT, 2018 Fernandez, 1995 FranceAgriMer, 2015, Les mutations des filières avicoles européennes depuis 2000 Franzo, 2020, Phylodynamic analysis and evaluation of the balance between anthropic and environmental factors affecting IBV spreading among Italian poultry farms, Sci. Rep., 10, 7289, 10.1038/s41598-020-64477-4 Garber, 2016, Factors associated with highly pathogenic avian influenza H5N2 infection on table-egg layer farms in the Midwestern United States, 2015, Avian Dis., 60, 460, 10.1637/11351-121715-Reg Garforth, 2015, Livestock keepers’ reasons for doing and not doing things which governments, vets and scientists would like them to do, Zoonoses Public Health, 62, 29, 10.1111/zph.12189 Gelaude, 2014, Biocheck.UGent: a quantitative tool to measure biosecurity at broiler farms and the relationship with technical performances and antimicrobial use, Poult. Sci., 93, 2740, 10.3382/ps.2014-04002 Gonzales, 2017, Risk factors of primary introduction of highly pathogenic and low pathogenic avian influenza virus into European poultry holdings, considering at least material contaminated by wild birds and contact with wild birds, EFSA Support. Publ., 14, 1282E Guinat, 2018, Spatio-temporal patterns of highly pathogenic avian influenza virus subtype H5N8 spread, France, 2016 to 2017, Eurosurveillance, 23 Guinat, 2020, Biosecurity risk factors for highly pathogenic avian influenza (H5N8) virus infection in duck farms, France. Transbound. Emerg. Dis., 67, 2961, 10.1111/tbed.13672 Hernández-Jover, 2012, Pig producers’ perceptions of the Influenza Pandemic H1N1/09 outbreak and its effect on their biosecurity practices in Australia, Prev. Vet. Med., 106, 284, 10.1016/j.prevetmed.2012.03.008 Huang, 2016, Factors affecting Chinese broiler farmers’ main preventive practices in response to highly pathogenic avian influenza, Prev. Vet. Med., 134, 153, 10.1016/j.prevetmed.2016.10.013 Huang, 2017, Adoption of HPAI biosecurity measures: the Chinese broiler industry, J. Integr. Agric., 16, 181, 10.1016/S2095-3119(16)61511-3 Husson, 2017 Koutsoumanis, 2020, Update and review of control options for Campylobacter in broilers at primary production, EFSA J., 18 Le, 2008, FactoMineR: a package for multivariate analysis, J. Stat. Softw., 25, 1, 10.18637/jss.v025.i01 Millman, 2017, “Catch 22”: biosecurity awareness, interpretation and practice amongst poultry catchers, Prev. Vet. Med., 141, 22, 10.1016/j.prevetmed.2017.04.002 Napp, 2018, Emergence and spread of highly pathogenic avian influenza A(H5N8) in Europe in 2016-2017, Transbound. Emerg. Dis., 65, 1217, 10.1111/tbed.12861 Nespeca, 1997, Validation of a poultry biosecurity survey, Prev. Vet. Med., 31, 73, 10.1016/S0167-5877(96)01122-1 Niemi, 2016, Farm characteristics and perceptions regarding costs contribute to the adoption of biosecurity in Finnish pig and cattle farms, Rev. Agric. Food Environ. Stud., 97, 215, 10.1007/s41130-016-0022-5 NPIP Animal Health [WWW Document], n.d. URL http://www.poultryimprovement.org/default.cfm (accessed 7.7.20). R Core Team, 2011 Racicot, 2011, Description of 44 biosecurity errors while entering and exiting poultry barns based on video surveillance in Quebec, Canada. Prev. Vet. Med., 100, 193, 10.1016/j.prevetmed.2011.04.011 Roche, 2019, Exploring dairy producer and veterinarian perceptions of barriers and motivators to adopting on-farm management practices for Johne’s disease control in Ontario, Canada, J. Dairy Sci., 102, 4476, 10.3168/jds.2018-15944 Scott, 2018, Biosecurity practices on Australian commercial layer and meat chicken farms: performance and perceptions of farmers, PLoS One, 13 Snow, 2010, Investigation of risk factors for Salmonella on commercial egg-laying farms in Great Britain, 2004–2005, Vet. Rec., 166, 579, 10.1136/vr.b4801 Tanquilut, 2020, Biosecurity assessment of layer farms in Central Luzon, Philippines. Prev. Vet. Med., 175 Tanquilut, 2020, Quantitative assessment of biosecurity in broiler farms using Biocheck.UGent in Central Luzon, Philippines. Poult. Sci., 99, 3047, 10.1016/j.psj.2020.02.004 Van Limbergen, 2018, Scoring biosecurity in European conventional broiler production, Poult. Sci., 97, 74, 10.3382/ps/pex296 Van Steenwinkel, 2011, Assessing biosecurity practices, movements and densities of poultry sites across Belgium, resulting in different farm risk-groups for infectious disease introduction and spread, Prev. Vet. Med., 98, 259, 10.1016/j.prevetmed.2010.12.004 Volkova, 2012, Factors associated with introduction of infectious laryngotracheitis virus on broiler farms during a localized outbreak, Avian Dis., 56, 521, 10.1637/10046-122111-Reg.1 Wiseman, 2018, Risk factors for Newcastle disease in broiler farms in Israel, Prev. Vet. Med., 149, 92, 10.1016/j.prevetmed.2017.11.009