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Author Freitas, J.; Lagos, L.; Álvares, F. openurl 
  Title Horses as prey of wolves. Type Journal Article
  Year 2021 Publication Carnivore Damage Preventionnews Abbreviated Journal CDPnews  
  Volume (up) 23 Issue Pages 1-9  
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 6677  
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Author Lagos, L.; Blanco, P. openurl 
  Title Testing the use of dogs to prevent wolf attackson free ranging ponies in Iberia? Type Journal Article
  Year 2021 Publication Carnivore Damage Prevention News Abbreviated Journal CDPnews  
  Volume (up) 23 Issue Pages 20-27  
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 6679  
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Author Solmsen, E. - H.; Bathen, M.; Grüntjens, T.; Hempel, E.; Klose, M.; Krüger, K.; Martin, H.; Meyer, A.; Schütte, P.; Vogel, L.; Wiezorek, S.; Wittor, B. openurl 
  Title Protecting horses against wolves in Germany. Type Journal Article
  Year 2021 Publication Carnivore Damage Prevention News Abbreviated Journal CDPNews  
  Volume (up) 23 Issue Pages  
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 6682  
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Author Dyson, S.; Berger, J.; Ellis, A.D.; Mullard, J. url  doi
openurl 
  Title Development of an ethogram for a pain scoring system in ridden horses and its application to determine the presence of musculoskeletal pain Type Journal Article
  Year 2018 Publication Journal of Veterinary Behavior Abbreviated Journal  
  Volume (up) 23 Issue Pages 47-57  
  Keywords Lameness; Equine behavior; Pain grading; Headshaking; Bucking; Rearing  
  Abstract There is evidence that more than 47% of the sports horse population in normal work may be lame, but the lameness is not recognized by owners or trainers. An alternative means of detecting pain may be recognition of behavioral changes in ridden horses. It has been demonstrated that there are differences in facial expressions in nonlame and lame horses. The purpose of this study was to develop a whole horse ethogram for ridden horses and to determine whether it could be applied repeatedly by 1 observer (repeatability study, 9 horses) and if, by application of a related pain behavior score, lame horses (n = 24) and nonlame horses (n = 13) could be differentiated. It was hypothesized that there would be some overlap in pain behavior scores among nonlame and lame horses; and that overall, nonlame horses would have a lower pain behavior score than lame horses. The ethogram was developed with 117 behavioral markers, and the horses were graded twice in random order by a trained specialist using video footage. Overall, there was a good correlation between the 2 assessments (P < 0.001; R2 = 0.91). Behavioral markers that were not consistent across the 2 assessments were omitted, reducing the ethogram to 70 markers. The modified ethogram was applied to video recordings of the nonlame horses and lame horses (ethogram evaluation). There was a strong correlation between 20 behavioral markers and the presence of lameness. The ethogram was subsequently simplified to 24 behavioral markers, by the amalgamation of similar behaviors which scored similarly and by omission of markers which showed unreliable results in relation to lameness. Following this, the maximum individual occurrence score for lame horses was 14 (out of 24 possible markers), with a median and mean score of 9 (±2 standard deviation) compared with a maximum score of 6 for nonlame horses, with a median and mean score of 2 (±1.4). For lame horses, the following behaviors occurred significantly more (P < 0.05, chi-square): ears back, mouth opening, tongue out, change in eye posture and expression, going above the bit, head tossing, tilting the head, unwillingness to go, crookedness, hurrying, changing gait spontaneously, poor quality canter, resisting, and stumbling and toe dragging. Recognition of these features as potential indicators of musculoskeletal pain may enable earlier recognition of lameness and avoidance of punishment-based training. Further research is necessary to verify this new ethogram for assessment of pain in ridden horses.  
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  ISSN 1558-7878 ISBN Medium  
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 6706  
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Author Voigtlaender-Schnabel, S.; Vogel, L.; Greiner, B.; Wiezorek, S.; Schuette, P.; Solmsen, E.-H.; Martin; H.; Hempel, E.; Gruentjens, T.; Bathen, M.; Herold, P.; Krueger, K. openurl 
  Title Reactions of horses to wildlife and livestock guarding dogs Type Journal Article
  Year 2022 Publication Carnivore Damage Prevention News Abbreviated Journal CDPNews  
  Volume (up) 24 Issue Pages 49-58  
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 6668  
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Author Lagos, L.; Bárcena, F. openurl 
  Title How to reduce wolf predation on wild ponies in Galicia? Type Journal Article
  Year 2022 Publication Carnivore Damage Prevention News Abbreviated Journal CDPNews  
  Volume (up) 24 Issue Pages 24-31  
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 6680  
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Author Lema, F.J.; Ribeiro, S.; Palacios, V. openurl 
  Title Observations of wolves hunting fee-ranging horses in Iberia. Type Journal Article
  Year 2022 Publication Carnivore Damage Prevention News Abbreviated Journal CDPNews  
  Volume (up) 24 Issue Pages 1-9  
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 6681  
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Author Bandini, E.; Tennie C. doi  openurl
  Title Exploring the role of individual learning in animal tool-use Type Journal Article
  Year 2020 Publication PeerJ Abbreviated Journal PeerJ  
  Volume (up) 25 Issue Pages 8:e9877  
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  Abstract The notion that tool-use is unique to humans has long been refuted by the growing number of observations of animals using tools across various contexts. Yet, the mechanisms behind the emergence and sustenance of these tool-use repertoires are still heavily debated. We argue that the current animal behaviour literature is biased towards a social learning approach, in which animal, and in particular primate, tool-use repertoires are thought to require social learning mechanisms (copying variants of social learning are most often invoked). However, concrete evidence for a widespread dependency on social learning is still lacking. On the other hand, a growing body of observational and experimental data demonstrates that various animal species are capable of acquiring the forms of their tool-use behaviours via individual learning, with (non-copying) social learning regulating the frequencies of the behavioural forms within (and, indirectly, between) groups. As a first outline of the extent of the role of individual learning in animal tool-use, a literature review of reports of the spontaneous acquisition of animal tool-use behaviours was carried out across observational and experimental studies. The results of this review suggest that perhaps due to the pervasive focus on social learning in the literature, accounts of the individual learning of tool-use forms by naïve animals may have been largely overlooked, and their importance under-examined.  
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  Call Number Equine Behaviour @ team @ Serial 6659  
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Author Wallner, B.; Palmieri, N.; Vogl, C.; Rigler, D.; Bozlak, E.; Druml, T.; Jagannathan, V.; Leeb, T.; Fries, R.; Tetens, J.; Thaller, G.; Metzger, J.; Distl, O.; Lindgren, G.; Rubin, C.-J.; Andersson, L.; Schaefer, R.; McCue, M.; Neuditschko, M.; Rieder, S.; Schlötterer, C.; Brem, G. url  doi
openurl 
  Title Y Chromosome Uncovers the Recent Oriental Origin of Modern Stallions Type Journal Article
  Year 2017 Publication Current Biology Abbreviated Journal Current Biology  
  Volume (up) 27 Issue 13 Pages 2029-2035.e5  
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  Abstract The Y chromosome directly reflects male genealogies, but the extremely low Y chromosome sequence diversity in horses has prevented the reconstruction of stallion genealogies [1, 2]. Here, we resolve the first Y chromosome genealogy of modern horses by screening 1.46 Mb of the male-specific region of the Y chromosome (MSY) in 52 horses from 21 breeds. Based on highly accurate pedigree data, we estimated the de novo mutation rate of the horse MSY and showed that various modern horse Y chromosome lineages split much later than the domestication of the species. Apart from few private northern European haplotypes, all modern horse breeds clustered together in a roughly 700-year-old haplogroup that was transmitted to Europe by the import of Oriental stallions. The Oriental horse group consisted of two major subclades: the Original Arabian lineage and the Turkoman horse lineage. We show that the English Thoroughbred MSY was derived from the Turkoman lineage and that English Thoroughbred sires are largely responsible for the predominance of this haplotype in modern horses.  
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  Publisher Elsevier Place of Publication Editor  
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  ISSN 0960-9822 ISBN Medium  
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  Notes doi: 10.1016/j.cub.2017.05.086 Approved no  
  Call Number Equine Behaviour @ team @ Serial 6669  
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Author Meriggi, A.; Dagradi, V.; Dondina, O.; Perversi, M.; Milanesi, P.; Lombardini, M.; Raviglione, S.; Repossi, A. url  doi
openurl 
  Title Short-term responses of wolf feeding habits to changes of wild and domestic ungulate abundance in Northern Italy Type Journal Article
  Year 2014 Publication Ethology Ecology & Evolution Abbreviated Journal Ethology Ecology & Evolution  
  Volume (up) 27 Issue 4 Pages 389-411  
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  Publisher Taylor & Francis Place of Publication Editor  
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  ISSN 0394-9370 ISBN Medium  
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  Notes doi: 10.1080/03949370.2014.986768 Approved no  
  Call Number Equine Behaviour @ team @ Serial 6688  
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