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Author Li, W.; Howard, J.D.; Parrish, T.B.; Gottfried, J.A.
Title Supporting Online Material to: Aversive Learning Enhances Perceptual and Cortical Discrimination of Indiscriminable Odor Cues Type Miscellaneous
Year 2008 Publication Science Abbreviated Journal Science
Volume 319 Issue 5871 Pages 1842-1845
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Abstract Learning to associate sensory cues with threats is critical for minimizing aversive experience. The ecological benefit of associative learning relies on accurate perception of predictive cues, but how aversive learning enhances perceptual acuity of sensory signals, particularly in humans, is unclear. We combined multivariate functional magnetic resonance imaging with olfactory psychophysics to show that initially indistinguishable odor enantiomers (mirror-image molecules) become discriminable after aversive conditioning, paralleling the spatial divergence of ensemble activity patterns in primary olfactory (piriform) cortex. Our findings indicate that aversive learning induces piriform plasticity with corresponding gains in odor enantiomer discrimination, underscoring the capacity of fear conditioning to update perceptual representation of predictive cues, over and above its well-recognized role in the acquisition of conditioned responses. That completely indiscriminable sensations can be transformed into discriminable percepts further accentuates the potency of associative learning to enhance sensory cue perception and support adaptive behavior.
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Notes 10.1126/science.1152837 Approved no
Call Number Equine Behaviour @ team @ Serial 4409
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Author Kaminski, J.; Call, J.; Fischer, J.
Title Word Learning in a Domestic Dog: Evidence for “Fast Mapping” Type Journal Article
Year 2004 Publication Science Abbreviated Journal Science
Volume 304 Issue 5677 Pages 1682-1683
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Abstract During speech acquisition, children form quick and rough hypotheses about the meaning of a new word after only a single exposure--a process dubbed “fast mapping.” Here we provide evidence that a border collie, Rico, is able to fast map. Rico knew the labels of over 200 different items. He inferred the names of novel items by exclusion learning and correctly retrieved those items right away as well as 4 weeks after the initial exposure. Fast mapping thus appears to be mediated by general learning and memory mechanisms also found in other animals and not by a language acquisition device that is special to humans.
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Notes 10.1126/science.1097859 Approved no
Call Number Equine Behaviour @ team @ Serial 4678
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Author Legare, C.H.; Nielsen, M.
Title Imitation and Innovation: The Dual Engines of Cultural Learning Type Journal Article
Year Publication Trends in Cognitive Sciences Abbreviated Journal Trends in Cognitive Sciences
Volume 19 Issue 11 Pages 688-699
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Abstract Imitation and innovation work in tandem to support cultural learning in children and facilitate our capacity for cumulative culture. Here we propose an integrated theoretical account of how the unique demands of acquiring instrumental skills and cultural conventions provide insight into when children imitate, when they innovate, and to what degree. For instrumental learning, with an increase in experience, high fidelity imitation decreases and innovation increases. By contrast, for conventional learning, imitative fidelity stays high, regardless of experience, and innovation stays low. We synthesize cutting edge research on the development of imitative flexibility and innovation to provide insight into the social learning mechanisms underpinning the uniquely human mind.
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Publisher Elsevier Place of Publication Editor
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ISSN 1364-6613 ISBN Medium
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Notes doi: 10.1016/j.tics.2015.08.005 Approved no
Call Number Equine Behaviour @ team @ Serial 5931
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Author Bednarz, J.C.
Title Cooperative Hunting Harris' Hawks (Parabuteo unicinctus) Type Journal Article
Year 1988 Publication Science Abbreviated Journal Science
Volume 239 Issue 4847 Pages 1525-1527
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Abstract Coordinated hunting by several individuals directed toward the capture and sharing of one Large prey animal has been documented convincingly only for a few mammalian carnivores. In New Mexico, Harris' hawks formed hunting parties of two to six individuals in the nonbreeding season. This behavior improved capture success and the average energy available per individual enabled hawks to dispatch prey larger than themselves. These patterns suggest that cooperation is important to understanding the evolution of complex social behavior in higher vertebrates and, specifically, that benefits derived from team hunting a key factor in the social living of Harris' hawks.
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Notes 10.1126/science.239.4847.1525 Approved no
Call Number Equine Behaviour @ team @ Serial 4717
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Author Rowe, M.L.; Goldin-Meadow, S.
Title Differences in Early Gesture Explain SES Disparities in Child Vocabulary Size at School Entry Type Journal Article
Year 2009 Publication Science Abbreviated Journal Science
Volume 323 Issue 5916 Pages 951-953
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Abstract Children from low-socioeconomic status (SES) families, on average, arrive at school with smaller vocabularies than children from high-SES families. In an effort to identify precursors to, and possible remedies for, this inequality, we videotaped 50 children from families with a range of different SES interacting with parents at 14 months and assessed their vocabulary skills at 54 months. We found that children from high-SES families frequently used gesture to communicate at 14 months, a relation that was explained by parent gesture use (with speech controlled). In turn, the fact that children from high-SES families have large vocabularies at 54 months was explained by children's gesture use at 14 months. Thus, differences in early gesture help to explain the disparities in vocabulary that children bring with them to school.
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Notes 10.1126/science.1167025 Approved no
Call Number Equine Behaviour @ team @ Serial 4728
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Author Goodwin, D.; McGreevy, P.; Waran, N.; McLean, A.
Title How equitation science can elucidate and refine horsemanship techniques Type Journal Article
Year 2009 Publication The Veterinary Journal Abbreviated Journal Special Issue: Equitation Science
Volume 181 Issue 1 Pages 5-11
Keywords Horse; Training; Equitation; Learning theory; Ethology; Cognition
Abstract The long-held belief that human dominance and equine submission are key to successful training and that the horse must be taught to [`]respect' the trainer infers that force is often used during training. Many horses respond by trialling unwelcome evasions, resistances and flight responses, which readily become established. When unable to cope with problem behaviours, some handlers in the past might have been encouraged to use harsh methods or devices while others may have called in a so-called [`]good horseman' or [`]horse whisperer' to remediate the horse. Frequently, the approaches such practitioners offer could not be applied by the horse's owner or trainer because of their lack of understanding or inability to apply the techniques. Often it seemed that these [`]horse-people' had magical ways with horses (e.g., they only had to whisper to them) that achieved impressive results although they had little motivation to divulge their techniques. As we begin to appreciate how to communicate with horses sensitively and consistently, misunderstandings and misinterpretations by horse and trainer should become less common. Recent studies have begun to reveal what comprises the simplest, most humane and most effective mechanisms in horse training and these advances are being matched by greater sharing of knowledge among practitioners. Indeed, various practitioners of what is referred to here as [`]natural horsemanship' now use techniques similar to the [`]whisperers' of old, but they are more open about their methods. Reputable horse trainers using natural horsemanship approaches are talented observers of horse behaviour and respond consistently and swiftly to the horse's subtle cues during training. For example, in the roundpen these trainers apply an aversive stimulus to prompt a flight response and then, when the horse slows down, moves toward them, or offers space-reducing affiliative signals, the trainer immediately modifies his/her agonistic signals, thus negatively reinforcing the desired response. Learning theory and equine ethology, the fundamentals of the emerging discipline of equitation science, can be used to explain almost all the behaviour modification that goes on in these contexts and in conventional horsemanship. By measuring and evaluating what works and what does not, equitation science has the potential to have a unifying effect on traditional practices and developing branches of equitation.
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ISSN 1090-0233 ISBN Medium
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Notes Approved no
Call Number Equine Behaviour @ team @ Serial 4826
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Author Axelrod, R.; Hamilton, W.D.
Title The evolution of cooperation Type Journal Article
Year 1981 Publication Science Abbreviated Journal Science
Volume 211 Issue 4489 Pages 1390-1396
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Abstract Cooperation in organisms, whether bacteria or primates, has been a difficulty for evolutionary theory since Darwin. On the assumption that interactions between pairs of individuals occur on a probabilistic basis, a model is developed based on the concept of an evolutionarily stable strategy in the context of the Prisoner's Dilemma game. Deductions from the model, and the results of a computer tournament show how cooperation based on reciprocity can get started in an asocial world, can thrive while interacting with a wide range of other strategies, and can resist invasion once fully established. Potential applications include specific aspects of territoriality, mating, and disease.
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Notes 10.1126/science.7466396 Approved no
Call Number Equine Behaviour @ team @ Serial 4933
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Author McLaren, B.E.; Peterson, R.O.
Title Wolves, Moose, and Tree Rings on Isle Royale Type Journal Article
Year 1994 Publication Science Abbreviated Journal Science
Volume 266 Issue 5190 Pages 1555-1558
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Abstract Investigation of tree growth in Isle Royale National Park in Michigan revealed the influence of herbivores and carnivores on plants in an intimately linked food chain. Plant growth rates were regulated by cycles in animal density and responded to annual changes in primary productivity only when released from herbivory by wolf predation. Isle Royale's dendrochronology complements a rich literature on food chain control in aquatic systems, which often supports a trophic cascade model. This study provides evidence of top-down control in a forested ecosystem.
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Call Number Equine Behaviour @ team @ Serial 4995
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Author Milo, R.; Itzkovitz, S.; Kashtan, N.; Levitt, R.; Alon, U.
Title Response to Comment on “Network Motifs: Simple Building Blocks of Complex Networks” and “Superfamilies of Evolved and Designed Networks” Type Journal Article
Year 2004 Publication Science Abbreviated Journal Science
Volume 305 Issue 5687 Pages 1107d
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Notes 10.1126/science.1100519 Approved no
Call Number Equine Behaviour @ team @ Serial 5031
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Author Milo, R.; Shen-Orr, S.; Itzkovitz, S.; Kashtan, N.; Chklovskii, D.; Alon, U.
Title Network Motifs: Simple Building Blocks of Complex Networks Type Journal Article
Year 2002 Publication Science Abbreviated Journal Science
Volume 298 Issue 5594 Pages 824-827
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Abstract Complex networks are studied across many fields of science. To uncover their structural design principles, we defined “network motifs,” patterns of interconnections occurring in complex networks at numbers that are significantly higher than those in randomized networks. We found such motifs in networks from biochemistry, neurobiology, ecology, and engineering. The motifs shared by ecological food webs were distinct from the motifs shared by the genetic networks of Escherichia coli and Saccharomyces cerevisiae or from those found in the World Wide Web. Similar motifs were found in networks that perform information processing, even though they describe elements as different as biomolecules within a cell and synaptic connections between neurons in Caenorhabditis elegans. Motifs may thus define universal classes of networks. This approach may uncover the basic building blocks of most networks.
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Notes 10.1126/science.298.5594.824 Approved no
Call Number Equine Behaviour @ team @ Serial 5032
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