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Author |
Lagos, L.; Bárcena, F. |
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Title |
How to reduce wolf predation on wild ponies in Galicia? |
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2022 |
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Carnivore Damage Prevention News |
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CDPNews |
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24 |
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24-31 |
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Equine Behaviour @ team @ |
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6680 |
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Author |
Lagos, L.; Blanco, P. |
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Title |
Testing the use of dogs to prevent wolf attackson free ranging ponies in Iberia? |
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Journal Article |
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Year |
2021 |
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Carnivore Damage Prevention News |
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CDPnews |
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23 |
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20-27 |
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Equine Behaviour @ team @ |
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6679 |
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Author |
Laland K.N. |
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Title |
Social learning strategies |
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Journal Article |
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Year |
2004 |
Publication |
Learning & Behavior |
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Learn. Behav. |
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32 |
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4-14 |
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Abstract |
In most studies of social learning in animals, no attempt has been made to examine the nature of the strategy adopted by animals when they copy others. Researchers have expended considerable effort in exploring the psychological processes that underlie social learning and amassed extensive data banks recording purported social learning in the field, but the contexts under which animals copy others remain unexplored. Yet, theoretical models used to investigate the adaptive advantages of social learning lead to the conclusion that social learning cannot be indiscriminate and that individuals should adopt strategies that dictate the circumstances under which they copy others and from whom they learn. In this article, I discuss a number of possible strategies that are predicted by theoretical analyses, including copy when uncertain, copy the majority, and copy if better, and consider the empirical evidence in support of each, drawing from both the animal and human social learning literature. Reliance on social learning strategies may be organized hierarchically, their being employed by animals when unlearned and asocially learned strategies prove ineffective but before animals take recourse in innovation. |
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Equine Behaviour @ team @ |
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4193 |
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Laland, K. N.; van Bergen, Y |
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Title |
Experimental studies of innovation in the guppy |
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Journal Article |
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2003 |
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Animal Innovation |
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155-174 |
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Oxford University Press |
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Ox |
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S. M. Reader and K. N. Laland |
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Equine Behaviour @ team @ |
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6537 |
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Langbein, J.; Siebert, K.; Nuernberg, G. |
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Concurrent recall of serially learned visual discrimination problems in dwarf goats (Capra hircus) |
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2008 |
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Behav Proc |
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79 |
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Equine Behaviour @ team @ Langbein2008 |
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6363 |
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Lansade, L.; Colson, V.; Parias, C.; Trösch, M.; Reigner, F.; Calandreau, L. |
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Title |
Female horses spontaneously identify a photograph of their keeper, last seen six months previously |
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2020 |
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Scientific Reports |
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10 |
Issue |
1 |
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6302 |
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Horses are capable of identifying individual conspecifics based on olfactory, auditory or visual cues. However, this raises the questions of their ability to recognize human beings and on the basis of what cues. This study investigated whether horses could differentiate between a familiar and unfamiliar human from photographs of faces. Eleven horses were trained on a discrimination task using a computer-controlled screen, on which two photographs were presented simultaneously (32 trials/session): touching one was rewarded (S+) and the other not (S-). In the training phase, the S+ faces were of four unfamiliar people which gradually became familiar over the trials. The S- faces were novel for each trial. After the training phase, the faces of the horses' keepers were presented opposite novel faces to test whether the horses could identify the former spontaneously. A reward was given whichever face was touched to avoid any possible learning effect. Horses touched the faces of keepers significantly more than chance, whether it was their current keeper or one they had not seen for six months (t = 3.65; p < 0.004 and t = 6.24; p < 0.0001). Overall, these results show that horses have advanced human face-recognition abilities and a long-term memory of those human faces. |
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2045-2322 |
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Equine Behaviour @ team @ Lansade2020 |
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6623 |
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Author |
Lee, P. |
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Title |
Adaptation to environmental change:an evolutionary perspective |
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Year |
1991 |
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Primate responses to environmental changes |
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39-56 |
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Chapmann & Hall |
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London |
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H. O. Box |
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Equine Behaviour @ team @ |
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6523 |
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Author |
Lee, P.C. |
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Title |
Innovation as a behavioural response to environmental challenges |
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Book Chapter |
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2003 |
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Animal Innovation |
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261-279 |
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Oxford University Press |
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Oxford |
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S. M. Reader and K. N. Laland |
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Equine Behaviour @ team @ |
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6534 |
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Lee, P.C.; de Antonio, C. A. |
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Title |
Necessity, unpredictability and opportunity: An exploration of ecological and social drivers of behavioral innovation. |
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2015 |
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Animal Creativity and Innovation |
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317- 333 |
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Elsevier |
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Cambridge |
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Equine Behaviour @ team @ |
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6535 |
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Author |
Lefebvre, L.; Reader, S.M.; Sol, D. |
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Title |
Brains, Innovations and Evolution in Birds and Primates |
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2004 |
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Brain, Behavior and Evolution |
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Brain. Behav. Evol. |
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63 |
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4 |
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233-246 |
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Innovation W Brain evolution W Hyperstriatum ventrale W Neostriatum W Isocortex W Birds W Primates W Tool use W Invasion biology |
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Abstract
Several comparative research programs have focusedon the cognitive, life history and ecological traits thataccount for variation in brain size. We review one ofthese programs, a program that uses the reported frequencyof behavioral innovation as an operational measureof cognition. In both birds and primates, innovationrate is positively correlated with the relative size of associationareas in the brain, the hyperstriatum ventrale andneostriatum in birds and the isocortex and striatum inprimates. Innovation rate is also positively correlatedwith the taxonomic distribution of tool use, as well asinterspecific differences in learning. Some features ofcognition have thus evolved in a remarkably similar wayin primates and at least six phyletically-independent avianlineages. In birds, innovation rate is associated withthe ability of species to deal with seasonal changes in theenvironment and to establish themselves in new regions,and it also appears to be related to the rate atwhich lineages diversify. Innovation rate provides a usefultool to quantify inter-taxon differences in cognitionand to test classic hypotheses regarding the evolution ofthe brain. |
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0006-8977 |
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Equine Behaviour @ team @ |
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4738 |
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