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Dir.: One Health, 1\nFulham, 2022, Carriage of antibiotic resistant bacteria in endangered and declining Australian pinniped pups, PLoS One, 17, 10.1371\u002Fjournal.pone.0258978\nMcDougall, 2022, High prevalence of beta-lactam resistant Escherichia coli in South Australian grey-headed flying fox pups (Pteropus poliocephalus), Microorg., 10, 1589, 10.3390\u002Fmicroorganisms10081589\nSmith, 2022, Presence and antimicrobial resistance profiles of Escherichia coli, Enterococcus spp. and Salmonella sp. in 12 species of Australian shorebirds and terns, Zoonoses Public Health, 69, 615, 10.1111\u002Fzph.12950\nMcDougall, 2021, Characterization of beta-lactam-resistant Escherichia coli from Australian fruit bats indicates anthropogenic origins, Microb. Genomics, 7, 10.1099\u002Fmgen.0.000571\nMukerji, 2019, Resistance to critically important antimicrobials in Australian silver gulls (Chroicocephalus novaehollandiae) and evidence of anthropogenic origins, J. Antimicrob. 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Health, 4, 83, 10.1016\u002Fj.cegh.2016.01.003\nNVRI\nMshelbwala\nTierkel, 1973, Laboratory techniques in rabies: rapid microscopic examination for Negri bodies and preparation of specimens for biological test, Monogr. Ser. World Health Organization., 23, 41\nOIE\nBaba, 1999, Detection of rabies virus RNA and antigen in tissues from naturally infected Nigerian dogs: in situ hybridization and, Pathol. Infect., 52, 85\nworldpop\nCastillo-Neyra, 2017, Spatial association of Canine rabies outbreak and ecological urban corridors, Arequipa, Peru, Trop. Med. Infect. Dis., 2, 38, 10.3390\u002Ftropicalmed2030038\nReilly, 2017, Geographical clusters and predictors of rabies in three southeastern states, Vector Borne Zoonot. Dis., 17, 432, 10.1089\u002Fvbz.2016.2061\nTatem, 2013\nBosco, 2017, Exploring the high-resolution mapping of gender-disaggregated development indicators, J. R. Soc. 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Vet. Med., 54, 79, 10.1016\u002FS0167-5877(01)00273-2\nAwogbade, 1979, Fulani pastoralism and the problems of the Nigerian veterinary service, Afr. Aff., 78, 493, 10.1093\u002Foxfordjournals.afraf.a097147\nKingsley, 2015, Inscrutable medicines and marginal markets: tackling substandard veterinary drugs in Nigeria, Pastoralism, 5, 1, 10.1186\u002Fs13570-014-0021-6\nOIE, 2010\nWaziri, 2014, Participatory methods in the profiling of livestock diseases in the Jos-plateau, Nigeria, Anim. Vet. Sci., 2, 154, 10.11648\u002Fj.avs.20140205.15\nIdowu, 2010, Animal health management perspectives of rural livestock farmers in Southwest Nigeria: the place of community based animal health workers, Niger. Vet. J., 31, 26\nLeonard, 2002, Community-based animal health workers and the veterinary profession in the context of African privatization\nSen, 2003, Privatization of veterinary Services in developing countries: a review, Trop. Anim. 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Sci., 372, 10.1098\u002Frstb.2016.0164\nBinot, 2015, A framework to promote collective action within the One Health community of practice: using participatory modelling to enable interdisciplinary, cross-sectoral and multi-level integration, One Health, 1, 44, 10.1016\u002Fj.onehlt.2015.09.001\nKarimuribo, 2012, Towards one health disease surveillance: the Southern African Centre for Infectious Disease Surveillance approach: proceeding, Onderstepoort J. Vet. Res., 79, 1, 10.4102\u002Fojvr.v79i2.454\nMangesho, 2017, Exploring local knowledge and perceptions on zoonoses among pastoralists in northern and eastern Tanzania, PLoS Negl. Trop. Dis., 11, 10.1371\u002Fjournal.pntd.0005345\nCatley, 2002\nCatley, 2001, Participatory diagnosis of a chronic wasting disease in cattle in southern Sudan, Prev. Vet. Med., 51, 161, 10.1016\u002FS0167-5877(01)00240-9\nGoldman, 2007, Tracking wildebeest, locating knowledge: Maasai and conservation biology understandings of wildebeest behavior in Northern Tanzania, Environ. Plan. D, 25, 307, 10.1068\u002Fd0505\nNadasdy, 1999, The politics of TEK: power and the\" integration\" of knowledge, Arct. Anthropol., 1\nAdriansen, 2008, Understanding pastoral mobility: the case of Senegalese Fulani, Geogr. J., 174, 207, 10.1111\u002Fj.1475-4959.2008.00278.x\nBriggs, 2005, The use of indigenous knowledge in development: problems and challenges, Prog. Dev. Stud., 5, 99, 10.1191\u002F1464993405ps105oa\nLatour, 1987\nLatour, 1993\nNightingale, 2003, A feminist in the forest: situated knowledges and mixing methods in natural resource management, ACME, 2, 77\nNygren, 1999, Local knowledge in the environment–development discourse: from dichotomies to situated knowledges, Crit. 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J., 191, 145, 10.1016\u002Fj.tvjl.2011.06.033\nCatley, 2002, Community-based animal healthcare and pastoral livelihoods\nGrandin, 1996, Collection and use of ethnoveterinary data in community-based animal health programmes\nBayissa, 2009, Assessment of veterinary service delivery, livestock disease reporting, surveillance systems and prevention and control measures across Ethiopia\u002FKenya border\nCatley, 2006, Use of participatory epidemiology to compare the clinical veterinary knowledgeof pastoralists and veterinarians in East Africa, Trop. Anim. Health Prod., 38, 171, 10.1007\u002Fs11250-006-4365-9\nCatley, 1997, Somali ethnoveterinary medicine and private animal health services: can old and new systems work together?\nCaudell, 2017, Medical pluralism and livestock health: ethnomedical and biomedical veterinary knowledge among East African agropastoralists, J. Ethnobiol. 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Ethnopharmacol., 122, 273, 10.1016\u002Fj.jep.2009.01.005\nMoritz, 2013, On not knowing zoonotic diseases: pastoralists' ethnoveterinary knowledge in the far north region of Cameroon, Hum. Organ., 72, 1, 10.17730\u002Fhumo.72.1.72672642576gw247\nToyang, 1995, Ethnoveterinary medicine practices in the northwest province of Cameroon, Indig. Knowl. Dev. Monit., 3, 20\nMajekodunmi, 2013, Social factors affecting seasonal variation in bovine trypanosomiasis on the Jos Plateau, Nigeria, Parasit. Vectors, 6, 1, 10.1186\u002F1756-3305-6-293\nDucrotoy, 2018, Patterns of passage into protected areas: drivers and outcomes of Fulani immigration into the Kachia Grazing Reserve, northwest Nigeria, Pastoralism, 8, 1, 10.1186\u002Fs13570-017-0105-1\nNWGAV and AOAV, 2014\nLorusso, 2016, Tick-borne pathogens of zoonotic and veterinary importance in Nigerian cattle, Parasit. 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Vectors, 9, 1, 10.1186\u002Fs13071-016-1737-5\nOlabode, 2013, Serological evidence of contagious bovine Pleuro-pneumonia antibodies in trade cattle (Bos Indicus) sold in Kwara state-Nigeria, Int. J. Microbiol. Res., 1, 14\nAlhaji, 2016, Sero-positivity and associated risk factors for contagious bovine pleuropneumonia under two cattle production systems in north central Nigeria, Trop. Anim. Health Prod., 48, 311, 10.1007\u002Fs11250-015-0952-y\nAlhaji, 2016, Using sero-positivity to assess geospatial burden of contagious bovine pleuropneumonia on pastoral cattle herds of north-central Nigeria, Pastoralism, 6, 20, 10.1186\u002Fs13570-016-0067-8\nMasiga, 1996, Manifestation and epidemiology of contagious bovine pleuropneumonia in Africa, Rev. Sci. 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Spectr., 10, 10.1128\u002Fspectrum.00807-22\nAbolnik, 2010, Phylogenetic analysis of influenza A viruses (H6N8, H1N8, H4N2, H9N2, H10N7) isolated from wild birds, ducks, and ostriches in South Africa from 2007 to 2009 [J], Avian Dis., 54, 313, 10.1637\u002F8781-040109-Reg.1\nVijaykrishna, 2013, The recent establishment of North American H10 lineage influenza viruses in Australian wild waterfowl and the evolution of Australian avian influenza viruses [J], J. Virol., 87, 10182, 10.1128\u002FJVI.03437-12\nSuttie, 2019, Avian influenza in the Greater Mekong Subregion, 2003-2018 [J], Infect. Genet. 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Health, 22, 1141, 10.1111\u002Ftmi.12917\nWilson, 2020, Thinking differently: lessons learned by international public health specialists while supporting the integrated disease surveillance and response system in Pakistan, BMJ Glob. Health, 5\nStandley, 2015, Implementation of the international health regulations (2005) through cooperative bioengagement, Front. Public Health, 3, 231, 10.3389\u002Ffpubh.2015.00231\nHemingway-Foday, 2019, Improving integrated disease surveillance and response capacity in Guinea, 2015-2018, Online J. Public Health Inform, 11, 10.5210\u002Fojphi.v11i1.9837\nGronvall, 2014, One health security: an important component of the Global Health security agenda, Biosecur. Bioterrorism Biodefense Strategy Pract. Sci., 12, 221\nWolfe, 2021, Systematic review of integrated disease surveillance and response (IDSR) implementation in the African region, PLoS One, 16, 10.1371\u002Fjournal.pone.0245457\nEisman, 2020, Economic evaluation in implementation science: making the business case for implementation strategies, Psychiatry Res., 283, 10.1016\u002Fj.psychres.2019.06.008\nKelly, 2021\nTechnical Contributors To The June Who Meeting null, 2019, A definition for community-based surveillance and a way forward: results of the WHO global technical meeting, France, 26 to 28 June 2018, Euro Surveill. Bull. Eur. Sur. Mal. Transm. Eur. Commun. Dis. Bull., 24\nAvwunudiogba, 2021, The spatial distribution of internally displaced persons (IDPs) in Africa, 17\nMasumbuko Claude, 2020, Ebola crisis in eastern Democratic Republic of Congo: student-led community engagement, Pathog. Glob. 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