Analysis of a European general wildlife health surveillance program: chances, challenges and recommendations
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I. Marti | M. Ryser-Degiorgis | M. Pewsner | F. Origgi | S. R. Pisano | S. Zürcher-Giovannini | S. Borel | B. Friker | Patrick Scherrer | Elisabeth Heiderich | Saskia Keller | Irene Adrian-Kalchhauser
[1] R. Scholz,et al. Process ownership in science–practice collaborations: the special role of transdisciplinary processes in sustainable transitioning , 2023, Sustainability Science.
[2] P. Palencia,et al. Using integrated wildlife monitoring to prevent future pandemics through one health approach , 2022, One health.
[3] H. Huntington,et al. Making a Difference: Planning for Engaged Participation in Environmental Research , 2022, Environmental Management.
[4] Ortwin Renn,et al. Characteristics, potentials, and challenges of transdisciplinary research , 2022, One Earth.
[5] G. Cáceres,et al. Stepping up from wildlife disease surveillance to integrated wildlife monitoring in Europe. , 2021, Research in veterinary science.
[6] T. Kuiken,et al. How to Start Up a National Wildlife Health Surveillance Programme , 2021, Animals : an open access journal from MDPI.
[7] C. Wamsler,et al. Inclusiveness, Equity, Consistency, and Flexibility as Guiding Criteria for Enabling Transdisciplinary Collaboration: Lessons From a European Project on Nature-Based Solutions and Urban Innovation , 2021, Frontiers in Climate.
[8] Christine K. Johnson,et al. Early detection of wildlife morbidity and mortality through an event-based surveillance system , 2021, Proceedings of the Royal Society B.
[9] T. Wahli,et al. Herpesvirus-Associated Proliferative Skin Disease in Frogs and Toads: Proposed Pathogenesis , 2021, Veterinary pathology.
[10] S. Dürr,et al. OCCURRENCE OF FOOTROT IN FREE-RANGING ALPINE IBEX (CAPRA IBEX) COLONIES IN SWITZERLAND , 2021, The Journal of Wildlife Diseases.
[11] U. Breitenmoser,et al. Cardiomyopathy Associated With Coronary Arteriosclerosis in Free-Ranging Eurasian Lynx (Lynx lynx carpathicus) , 2020, Frontiers in Veterinary Science.
[12] Zvonimir Poljak,et al. The Assessment of Twitter’s Potential for Outbreak Detection: Avian Influenza Case Study , 2019, Scientific Reports.
[13] F. Zimmermann,et al. Spatiotemporal spread of sarcoptic mange in the red fox (Vulpes vulpes) in Switzerland over more than 60 years: lessons learnt from comparative analysis of multiple surveillance tools , 2019, Parasites & Vectors.
[14] L. Rossi,et al. Sarcoptic Mange of Fox Origin in Multiple Farm Animals and Scabies in Humans, Switzerland, 2018 , 2019, Emerging infectious diseases.
[15] Elena Gissi,et al. Incorporating change in marine spatial planning: A review , 2019, Environmental Science & Policy.
[16] T. Kuiken,et al. RECENT CHANGES IN INFECTIOUS DISEASES IN EUROPEAN WILDLIFE , 2019, Journal of wildlife diseases.
[17] C. Stephen,et al. Proposed attributes of national wildlife health programmes. , 2018, Revue scientifique et technique.
[18] M. Ryser-Degiorgis,et al. Fatal leptospirosis in free‐ranging Eurasian beavers (Castor fiber L.), Switzerland , 2018, Transboundary and emerging diseases.
[19] M. Ryser-Degiorgis,et al. Wild boar and infectious diseases: evaluation of the current risk to human and domestic animal health in Switzerland: A review. , 2018, Schweizer Archiv fur Tierheilkunde.
[20] C. Frey,et al. Causes of mortality and morbidity in free-ranging mustelids in Switzerland: necropsy data from over 50 years of general health surveillance , 2018, BMC Veterinary Research.
[21] Peter Daszak,et al. One Health, emerging infectious diseases and wildlife: two decades of progress? , 2017, Philosophical Transactions of the Royal Society B: Biological Sciences.
[22] T. Wahli,et al. Ranid Herpesvirus 3 and Proliferative Dermatitis in Free-Ranging Wild Common Frogs (Rana Temporaria) , 2017, Veterinary pathology.
[23] J. Frey,et al. Assessing Fifty Years of General Health Surveillance of Roe Deer in Switzerland: A Retrospective Analysis of Necropsy Reports , 2017, PloS one.
[24] F. Conraths,et al. Harmonizing methods for wildlife abundance estimation and pathogen detection in Europe—a questionnaire survey on three selected host-pathogen combinations , 2016, BMC Veterinary Research.
[25] B. Lawson,et al. Citizen Science and Wildlife Disease Surveillance , 2015, EcoHealth.
[26] O. Liberg,et al. Recovery of large carnivores in Europe’s modern human-dominated landscapes , 2014, Science.
[27] J. Frey,et al. Characterisation of a new group of Francisella tularensis subsp. holarctica in Switzerland with altered antimicrobial susceptibilities, 1996 to 2013. , 2014, Euro surveillance : bulletin Europeen sur les maladies transmissibles = European communicable disease bulletin.
[28] Mpoki Mwabukusi,et al. Mobile technologies for disease surveillance in humans and animals. , 2014, The Onderstepoort journal of veterinary research.
[29] Marie-Pierre Ryser-Degiorgis,et al. Wildlife health investigations: needs, challenges and recommendations , 2013, BMC Veterinary Research.
[30] H. Hächler,et al. Epidemic of Salmonellosis in Passerine Birds in Switzerland With Spillover to Domestic Cats , 2013, Veterinary pathology.
[31] C. Abril,et al. Risk factors for contacts between wild boar and outdoor pigs in Switzerland and investigations on potential Brucella suis spill-over , 2012, BMC Veterinary Research.
[32] H. Segner,et al. Emergence of Canine Distemper Virus Strains With Modified Molecular Signature and Enhanced Neuronal Tropism Leading to High Mortality in Wild Carnivores , 2012, Veterinary pathology.
[33] E. Morignat,et al. Unsupervised clustering of wildlife necropsy data for syndromic surveillance , 2010, BMC veterinary research.
[34] C. Gortázar,et al. Diseases shared between wildlife and livestock: a European perspective , 2007, European Journal of Wildlife Research.
[35] K. Handeland,et al. Wildlife as Source of Zoonotic Infections , 2004, Emerging infectious diseases.
[36] F A Leighton,et al. The role of wildlife in emerging and re-emerging zoonoses. , 2004, Revue scientifique et technique.
[37] Christina Gloeckner,et al. Modern Applied Statistics With S , 2003 .
[38] R. Kock. IS IT TIME TO REFLECT, NOT ON THE “WHAT” BUT THE “WHY” IN EMERGING WILDLIFE DISEASE RESEARCH? , 2019, Journal of wildlife diseases.
[39] Heinz Mehlhorn,et al. World Organisation for Animal Health (OIE) , 2015 .
[40] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[41] Rita Schneider-Sliwa. Schweiz. Geographie, Geschichte, Wirtschaft, Politik , 2011 .
[42] R. Andersen,et al. European ungulates and their management in the 21st century , 2010 .
[43] D. Stallknecht. Impediments to wildlife disease surveillance, research, and diagnostics. , 2007, Current topics in microbiology and immunology.
[44] Brian D. Ripley,et al. Modern Applied Statistics with S Fourth edition , 2002 .