期刊论文详细信息
BMC Veterinary Research
Sarcoptic-mange detector dogs used to identify infected animals during outbreaks in wildlife
Luca Rossi1  Ramón C Soriguer3  Matthew Mutinda2  Francis Gakuya2  Roberto Permunian1  Samer Alasaad3 
[1] Dipartimento di Produzioni Animali, Epidemiologia ed Ecologia, Università degli Studi di Torino, Via Leonardo da Vinci 44, I-10095, Grugliasco, Italy;Department of Veterinary and Capture Services, Kenya Wildlife Service, Nairobi, Kenya;Estación Biológica de Doñana, Consejo Superior de Investigaciones Científicas (CSIC), Avda. Américo Vespucio s/n 41092, Sevilla, Spain
关键词: Animal conservation;    Disease surveillance;    Forensic science;    Rupicapra pyrenaica;    Sarcoptes scabiei;    Canis lupus var. familiaris;   
Others  :  1119777
DOI  :  10.1186/1746-6148-8-110
 received in 2012-02-14, accepted in 2012-07-09,  发布年份 2012
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【 摘 要 】

Background

One of the main aims of forensic investigation is the detection and location of people and substances of interest, such as missing people and illegal drugs. Dogs (Canis lupus var. familiaris) have had an important role in legal and forensic investigations for decades; nonetheless canines’ keen sense of smell has never been utilized in either the surveillance or control of wildlife diseases. The rapid removal and treatment of infected carcasses and/or sick animals is a key task in the management of infectious diseases, but it is usually difficult or impractical to carry out in the wild.

Results

In this paper we report on a study running over a period of 15 years, in which - for the first time to our knowledge - two disease-detector dogs were trained to follow the scent of Sarcoptes-infected animals and to find carcasses, even under the snow, and apparently no false positives were detected in fieldwork. Sarcoptic mange-detector dogs were used to collect the carcasses of 292 mangy wild animals and to identify, separate from their herd, and capture 63 mange-infected wild animals in the Italian Alps.

Conclusions

Properly trained disease-detector dogs are an efficient and straightforward tool for surveillance and control of sarcoptic mange in affected wild animal populations.

【 授权许可】

   
2012 Alasaad et al.; licensee BioMed Central Ltd.

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【 参考文献 】
  • [1]Romanes GJ: Experiments on the sense of smell in dogs. Nature 1887, 36:273-274.
  • [2]Lorenzo N, Wan T, Harper RJ, Hsu YL, Chow M, Rose S, Furton KG: Laboratory and field experiments used to identify Canis lupus var. familiaris active odor signature chemicals from drugs, explosives, and humans. Anal Bioanal Chem 2003, 376:1212-1224.
  • [3]Schoon GA: The effect of the ageing of crime scene objects on the results of scent identification line-ups using trained dogs. Forensic Sci Int 2005, 147:43-47.
  • [4]Komar D: The use of cadaver dogs in locating scattered, scavenged human remains: preliminary field test results. J Forensic Sci 1999, 44:405-408.
  • [5]Pfiester M, Koehler PG, Pereira RM: Ability of bed bug-detecting canines to locate live bed bugs and viable bed bug eggs. J Econ Entomol 2008, 101:1389-1396.
  • [6]León-Vizcaíno L, Cubero MJ, González-Capitel E, Simón MA, Pérez L, Ruíz de Ybáñez M, Ortíz JM, González-Candela M, Alonso F: Experimental ivermectin treatment of sarcoptic mange and establishment of a mange-free population of Spanish ibex. J Wildl Dis 2002, 37:775-785.
  • [7]Alasaad S, Granados JE, Cano-Manuel FJ, Meana A, Zhu XQ, Pérez JM: Epidemiology of fasciolosis affecting Iberian Ibex, Capra pyrenaica, in southern Spain. Parasitol Res 2008, 101:751-755.
  • [8]Munang'andu HM, Siamudaala VM, Matandiko W, Munyeme M, Chembensofu M, Mwase E: Sarcoptes mite epidemiology and treatment in African buffalo (Syncerus caffer) calves captured for translocation from the Kafue game management area to game ranches. BMC Vet Res 2010, 6:29. BioMed Central Full Text
  • [9]Arlian LG: Biology, host relations, and epidemiology of Sarcoptes scabiei. Annu Rev Entomol 1989, 34:139-161.
  • [10]Gakuya F, Ombui J, Maingi N, Muchemi G, Ogara W, Soriguer RC, Alasaad S: Sarcoptic mange and cheetah conservation in Masai Mara (Kenya): Epidemiological study in a wildlife/livestock system. Parasitology 2012, 139:1-9.
  • [11]Menzano A, Rambozi L, Rossi L: Outbreak of scabies in human beings, acquired from chamois (Rupicapra rupicapra). Vet Rec 2004, 155:568.
  • [12]Pence DB, Ueckermann E: Sarcoptic mange in wildlife. Revue Scientifique Et Technique 2002, 21:385-398.
  • [13]Bornstein S, Frössling J, Näslund K, Zakrisson G: Torsten Mörner T: Evaluation of a serological test (indirect ELISA) for the diagnosis of sarcoptic mange in red foxes (Vulpes vulpes). Vet Dermatol 2006, 17:411-416.
  • [14]Bornstein S, Mörner T, Samuel WM: Sarcoptes scabiei and sarcoptic mange. In Parasitic diseases of wild mammals. 2PndP edition. Edited by Samuel WM, Pybus MJ, Kocan AA. Iowa State University Press, Ames; 2001:107-119.
  • [15]Alasaad S, Walton S, Rossi L, Bornstein S, Abu-Madi M, Soriguer RC, Fitzgerald S, Zhu XQ, Zimmermann W, Ugbomoiko US, Pei KJC, Heukelbach J: Sarcoptes-World Molecular Network (Sarcoptes-WMN): integrating research on scabies. Int J Infect Dis 2011, 1:294-297.
  • [16]Lederberg J, Shope RE, Oaks SC (Eds): Emerging infections: microbial threats to health in the United States. National Academies Press, Washington, DC; 1992.
  • [17]Alasaad S, Ndeereh D, Rossi L, Bornstein S, Permunian R, Soriguer RC, Gakuya F: The opportunistic Sarcoptes scabiei: A new episode from giraffe in the drought-suffering Kenya. Vet Parasitol 2011, 85:359-363. [Epub ahead of print]
  • [18]Daszak P, Cunningham AA, Hyatt AD: Emerging infectious diseases of wildlife—threats to biodiversity and human health. Science 2000, 287:443-449.
  • [19]Walton SF, Choy JL, Bonson A, Valle A, McBroom J, Taplin D, Arlian L, Mathews JD, Currie B, Kemp DJ: Genetically distinct dog-derived and human-derived Sarcoptes scabiei in scabies-endemic communities in northern Australia. Am J Trop Med Hyg 1999, 61:542-547.
  • [20]Alasaad S, Soglia D, Spalenza V, Maione S, Soriguer RC, Pérez JM, Rasero R, Ryser-Degiorgis MP, Nimmervoll H, Zhu XQ, Rossi L: Is ITS-2 rDNA suitable marker for genetic characterization of Sarcoptes mites from different wild animals in different geographic areas? Vet Parasitol 2009, 159:181-185.
  • [21]Alasaad S, Oleaga A, Casais R, Rossi L, Molinar Min A, Soriguer R, Gortazar C: Temporal stability in the genetic structure of Sarcoptes scabiei under the host-taxon law: empirical evidences from wildlife-derived Sarcoptes mite in Asturias, Spain. Parasit Vectors 2011, 4:151. BioMed Central Full Text
  • [22]Alasaad S, Schuster RK, Gakuya F, Theneyan H, Jowers MJ, Maione S, Molinar-Min A, Soriguer RC, Rossi L: Applicability of molecular markers to determine parasitic infection origins in the animal trade: A case study from Sarcoptes mites in wildebeest. Forensic Sci Med Pathol 2011.
  • [23]Gakuya F, Rossi L, Ombui J, Maingi N, Muchemi G, Ogara W, Soriguer RC, Alasaad S: The curse of the prey: Sarcoptes mite molecular analysis reveals potential prey-to-predator parasitic infestation in wild animals from Masai Mara, Kenya. Parasit Vectors 2011, 4:193. BioMed Central Full Text
  • [24]Soulsbury CD, Iossa G, Baker PJ, Cole NC, Funk SM, Harris S: The impact of sarcoptic mange Sarcoptes scabiei on the British fox Vulpes vulpes population. Mammal Rev 2007, 37:278-296.
  • [25]Rossi L, Fraquelli C, Vesco U, Permunian R, Sommavilla GM, Carmignola G, Da Pozzo M, Meneguz PG: Descriptive epidemiology of a scabies epidemic in chamois in the Dolomite Alps, Italy. Eur J Wildl Res 2007, 53:131-141.
  • [26]Alasaad S, Rossi L, Soriguer RC, Rambozzi L, Soglia D, Pérez JM, Zhu XQ: Sarcoptes mite from collection to DNA extraction: the lost realm of the neglected parasite. Parasitol Res 2009, 104:723-732.
  • [27]Fain A: Étude de la variabilité de Sarcoptes scabiei avec une revisiondes Sarcoptidae. Acta Zool Pathol Antverp 2009, 47:1-196.
  • [28]Schoon GA: A first assessment of the reliability of an improved scent identification line-up. J Forensic Sci 1998, 43:70-75.
  • [29]Brisbin IL, Austad SN: Testing the individual odour theory of canine olfaction. Anim Behaviour 1991, 42:63-69.
  • [30]Settle RH, Sommerville BA, McCormick J, Broom DM: Human scent matching using specially trained dogs. Anim Behaviour 1994, 48:1443-1448.
  • [31]Alasaad S, Soglia D, Maione S, Sartore S, Soriguer RC, Pérez JM, Rasero R, Rossi L: Effectiveness of the postponed isolation (post-frozen isolation) method for PCR-quality Sarcoptes mite gDNA. Exp Appl Acarol 2009, 47:173-178.
  • [32]Grauer A, Konig A: Management of chamois in Bavaria (Germany). The importance of game activities in scabies control. Wildl Biol Pract 2009, 2:115-127.
  • [33]Meneguz PG, Rossi L, Sommavilla GM, De Martin P, Rodolfi M: Sulla più temibile parassitosi della fauna alpina: la rogna sarcoptica del camoscio. Large Anim Rev 1996, 2:75-83.
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