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Title 4Free Video Converter. 4 Free Studio. Copyright© 2000~2015 4Free Video Converter Inc. a Multimedia Utility Company Type Miscellaneous
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Call Number Equine Behaviour @ team @ ref53 Serial 6494
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Author Gazzola, A.; Avanzinelli, E.; Mauri, L.; Scandura, M.; Apollonio, M.
Title Temporal changes of howling in south European wolf packs Type Journal Article
Year 2002 Publication Ital J Zool Abbreviated Journal
Volume 69 Issue Pages
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Call Number Equine Behaviour @ team @ Gazzola2002 Serial 6495
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Author Boersma, P.; Weenink, D.
Title Praat: doing phonetics by computer Type Book Whole
Year 2009 Publication Abbreviated Journal
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Call Number Equine Behaviour @ team @ Boersma2009 Serial 6496
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Author
Title Animal Acoustic Communication: Sound Analysis and Research Methods Type Book Whole
Year 1998 Publication Abbreviated Journal
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Publisher Springer Place of Publication Berlin Editor
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Call Number Equine Behaviour @ team @ ref56 Serial 6497
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Author
Title Horses' (Equus Caballus) Laterality, Stress Hormones, and Task Related Behavior in Innovative Problem-Solving Type Journal Article
Year Publication Abbreviated Journal
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Call Number Equine Behaviour @ team @ ref3 Serial 6572
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Author Krueger., K.; Farmer, K.
Title Social learning in Horses: Differs from individual learning only in the learning stimulus and not in the learning mechanisms Type Abstract
Year 2018 Publication 14th Meeting of the Internatinoal Society for Equitation Science Abbreviated Journal 14th Meeting ISES
Volume Issue Pages
Keywords horse; individual learning; learning mechanisms; learning stimuli; social learning
Abstract Equine welfare can be enhanced by applying species specific training. This may incorporate social learning, as horses are highly social and social stimuli are of primary importance. Social learning is comparable to individual learning in its learning mechanisms, differing primarily in the way it is stimulated. Our initial study showed that horses of different breeds (N = 38) follow humans after observing other horses doing so, but only if the observed horse was familiar to and higher ranking than the observer (Fisher's exact test: N = 12, P = 0.003). A second study showed that horses and ponies (N = 25) learned to pull a rope to open a feeding apparatus after observing demonstrations by conspecifics, again, only if the demonstrating horse was older and higher ranking than the observer (Fisher's combination test, N = 3, v2 = 27.71, p = 0.006). Our third approach showed that horses and ponies (N = 24) learned to press a switch to open a feeding apparatus after observing a familiar person (GzLM: N = 24, z = 2.33, P = 0.02). Most recently, we confronted horses and ponies (N = 50) with persons demonstrating different techniques for opening a feeding apparatus. In this study we investigated whether the horses would copy the demonstrators' techniques or apply their own. Here only some horses copied the technique, and most of the successful learners used their mouths irrespective of the demonstrators' postures (Chi Square Test: N = 40, df = 2, &#967;2 = 31.4, p < 0.001). In all the approaches social stimuli elicited learning processes in the test horses, while only a few individuals in the control groups mastered the tasks by individual learning. The following behaviour observed in the initial study may have been facilitated by a social stimuli (social facilitation), and the opening of the feed boxes in the subsequent studies appear to be mostly the result of enhancement (social enhancement). Some horses may have used the social stimuli at first and continued their learning process by individual trial and error. However, the horses were also selective in whom and some in how to copy. This may have been conditioned (socially conditioned) or the result of simple forms of reasoning on the reliability of the particular information provided by demonstrators of certain social ranks or social positions, as high ranking and familiar horses and familiar persons were copied and some imitated exactly.

Lay person message: Traditional riding instructions suggest that horses learn by observing other horses. For example, older, more experienced driving horses are used for initial training of young driving horses. We have shown that horses indeed use learning stimuli provided by other horse, as well as by humans. Horses readily accept stimuli observed in high ranking and familiar horses, and familiar persons. Such stimuli elicit learning processes which are comparable to individual learning. We suggest applying social learning whenever possible, as it is much faster and less stressful than individual learning, where learners experience negative outcomes in trial and error learning.
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Call Number Equine Behaviour @ team @ Serial 6405
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Author Petersen, J.L.; Mickelson, J.R.; Cothran, E.G.; Andersson, L.S.; Axelsson, J.; Bailey, E.; Bannasch, D.; Binns, M.M.; Borges, A.S.; Brama, P.; da Câmara Machado, A.; Distl, O.; Felicetti, M.; Fox-Clipsham, L.; Graves, K.T.; Guérin, G.; Haase, B.; Hasegawa, T.; Hemmann, K.; Hill, E.W.; Leeb, T.; Lindgren, G.; Lohi, H.; Lopes, M.S.; McGivney, B.A.; Mikko, S.; Orr, N.; Penedo, M.C.T.; Piercy, R.J.; Raekallio, M.; Rieder, S.; Røed, K.H.; Silvestrelli, M.; Swinburne, J.; Tozaki, T.; Vaudin, M.; M. Wade, C.; McCue, M.E.
Title Genetic Diversity in the Modern Horse Illustrated from Genome-Wide SNP Data Type Journal Article
Year 2013 Publication Plos One Abbreviated Journal Plos One
Volume 8 Issue 1 Pages e54997
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Abstract Horses were domesticated from the Eurasian steppes 5,000-6,000 years ago. Since then, the use of horses for transportation, warfare, and agriculture, as well as selection for desired traits and fitness, has resulted in diverse populations distributed across the world, many of which have become or are in the process of becoming formally organized into closed, breeding populations (breeds). This report describes the use of a genome-wide set of autosomal SNPs and 814 horses from 36 breeds to provide the first detailed description of equine breed diversity. FST calculations, parsimony, and distance analysis demonstrated relationships among the breeds that largely reflect geographic origins and known breed histories. Low levels of population divergence were observed between breeds that are relatively early on in the process of breed development, and between those with high levels of within-breed diversity, whether due to large population size, ongoing outcrossing, or large within-breed phenotypic diversity. Populations with low within-breed diversity included those which have experienced population bottlenecks, have been under intense selective pressure, or are closed populations with long breed histories. These results provide new insights into the relationships among and the diversity within breeds of horses. In addition these results will facilitate future genome-wide association studies and investigations into genomic targets of selection.
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Publisher Public Library of Science Place of Publication Editor
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Call Number Equine Behaviour @ team @ Serial 6214
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Author Pirault, P.; Danvy, S.; Verrier, E.; Leroy, G.
Title Genetic Structure and Gene Flows within Horses: A Genealogical Study at the French Population Scale Type Journal Article
Year 2013 Publication Plos One Abbreviated Journal Plos One
Volume 8 Issue 4 Pages e61544
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Abstract Since horse breeds constitute populations submitted to variable and multiple outcrossing events, we analyzed the genetic structure and gene flows considering horses raised in France. We used genealogical data, with a reference population of 547,620 horses born in France between 2002 and 2011, grouped according to 55 breed origins. On average, individuals had 6.3 equivalent generations known. Considering different population levels, fixation index decreased from an overall species FIT of 1.37%, to an average of -0.07% when considering the 55 origins, showing that most horse breeds constitute populations without genetic structure. We illustrate the complexity of gene flows existing among horse breeds, a few populations being closed to foreign influence, most, however, being submitted to various levels of introgression. In particular, Thoroughbred and Arab breeds are largely used as introgression sources, since those two populations explain together 26% of founder origins within the overall horse population. When compared with molecular data, breeds with a small level of coancestry also showed low genetic distance; the gene pool of the breeds was probably impacted by their reproducer exchanges.
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Publisher Public Library of Science Place of Publication Editor
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Call Number Equine Behaviour @ team @ Serial 6215
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Author Pérez-Barbería, F.J.; Shultz, S.; Dunbar, R.I.
Title Evidence for coevolution of sociality and relative brain size in three orders of mammals Type Journal Article
Year 2007 Publication Evolution Abbreviated Journal
Volume 61 Issue Pages
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Call Number Equine Behaviour @ team @ Pérez-Barbería2007 Serial 6221
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Author Van Schaik, C.P.; Burkart, J.M.
Title Social learning and evolution: the cultural intelligence hypothesis Type Journal Article
Year 2011 Publication Philos Trans R Soc B Abbreviated Journal
Volume 366 Issue Pages
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Call Number Equine Behaviour @ team @ Van Schaik2011 Serial 6227
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