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Author | Bates, L.A.; Sayialel, K.N.; Njiraini, N.W.; Poole, J.H.; Moss, C.J.; Byrne, R.W. | ||||
Title | African elephants have expectations about the locations of out-of-sight family members | Type | Journal Article | ||
Year | 2008 | Publication | Biology Letters | Abbreviated Journal | Biol Lett |
Volume | 4 | Issue | 1 | Pages | 34-36 |
Keywords | elephants, olfaction, urine, individual recognition | ||||
Abstract | Monitoring the location of conspecifics may be important to social mammals. Here, we use an expectancy-violation paradigm to test the ability of African elephants (Loxodonta africana) to keep track of their social companions from olfactory cues. We presented elephants with samples of earth mixed with urine from female conspecifics that were either kin or unrelated to them, and either unexpected or highly predictable at that location. From behavioural measurements of the elephants' reactions, we show that African elephants can recognize up to 17 females and possibly up to 30 family members from cues present in the urine-earth mix, and that they keep track of the location of these individuals in relation to themselves. | ||||
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Call Number | Equine Behaviour @ team @ | Serial | 4332 | ||
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Author | Beck, B.B. | ||||
Title | Chimpocentrism: Bias in cognitive ethology | Type | Journal Article | ||
Year | 1982 | Publication | Journal of Human Evolution | Abbreviated Journal | |
Volume | 11 | Issue | 1 | Pages | 3-17 |
Keywords | herring gull; chimpanzee; cognition; tool-use; shell-dropping; mollusk; predation | ||||
Abstract | Herring gulls drop hard-shelled mollusks and hermit crab-inhabited molluskan prey in order to break the shells and gain access to the edible interior. A field study of predatory shell dropping on Cape Cod, Massachusetts, U.S.A. showed that the gulls usually drop the same shell repeatedly, orient directly to dropping sites that are invisible from the point at which the mollusks are captured, drop preferentially on hard surfaces, adjust dropping heights to suit the area and elasticity of the substrate, orient directly into the wind while dropping, sever the large defensive cheliped of hermit crabs before consumption, and rinse prey that is difficult to swallow. Proficiency in prey dropping is acquired through dropping objects in play, trial-and-error learning, and perhaps, observation learning. Observable attributes of predatory shell-dropping support inferences that the gulls are capable of extended concentration, purposefulness, mental representation of spatially and temporally displaced environmental features, cognitive mapping, cognitive modeling, selectivity, and strategy formation. Identical cognitive processes have been inferred to underlie the most sophisticated forms of chimpanzee tool-use. Advanced cognitive capacities are not restricted to chimpanzees and other pongids, and are not associated uniquely with tool use. The chimpocentric bias should be abandoned, and reconstructions of the evolution of intelligence should be modified accordingly. |
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Call Number | Equine Behaviour @ team @ | Serial | 4414 | ||
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Author | Drummond, H. | ||||
Title | Dominance in vertebrate broods and litters | Type | Journal Article | ||
Year | 2006 | Publication | Quarterly Review of Biology | Abbreviated Journal | |
Volume | 81 | Issue | 1 | Pages | 3-32 |
Keywords | Aggression; Assessment; Dominance; Individual recognition; Sibling conflict; Trained losing | ||||
Abstract | Drawing on the concepts and theory of dominance in adult vertebrates, this article categorizes the relationships of dominance between infant siblings, identifies the behavioral mechanisms that give rise to those relationships, and proposes a model to explain their evolution. Dominance relationships in avian broods can be classified according to the agonistic roles of dominants and subordinates as “aggression-submission,” “aggression-resistance, ” “aggression-aggression,” “aggression-avoidance,” “rotating dominance,” and “flock dominance.” These relationships differ mainly in the submissiveness/pugnacity of subordinates, which is pivotal, and in the specificity/generality of the learning processes that underlie them. As in the dominance hierarchies of adult vertebrates, agonistic roles are engendered and maintained by several mechanisms, including differential fighting ability, assessment, trained winning and losing (especially in altricial species), learned individual relationships (especially in precocial species), site-specific learning, and probably group-level effects. An evolutionary framework in which the species-typical dominance relationship is determined by feeding mode, confinement, cost of subordination, and capacity for individual recognition, can be extended to mammalian litters and account for the aggression-submission and aggression-resistance observed in distinct populations of spotted hyenas and the “site-specific dominance” (teat ownership) of some pigs, felids, and hyraxes. Little is known about agonism in the litters of other mammals or broods of poikilotherms, but some species of fish and crocodilians have the potential for dominance among broodmates. Copyright © 2006 by The University of Chicago. All rights reserved. | ||||
Address | Instituto de Ecología, Universidad Nacional Autónoma de México, A.P. 70-275, 04510 D.F., Mexico | ||||
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Notes | Cited By (since 1996): 20; Export Date: 23 October 2008; Source: Scopus | Approved | no | ||
Call Number | Equine Behaviour @ team @ | Serial | 4559 | ||
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Author | Nakagawa, S.; Waas, J.R. | ||||
Title | 'O sibling, where art thou?' – A review of avian sibling recognition with respect to the mammalian literature | Type | Journal Article | ||
Year | 2004 | Publication | Biological Reviews of the Cambridge Philosophical Society | Abbreviated Journal | |
Volume | 79 | Issue | 1 | Pages | 101-119 |
Keywords | Birds; Direct familiarisation; Indirect familiarisation; Individual recognition; Kin discrimination; Kin recognition; Mammals; Sibling recognition | ||||
Abstract | Avian literature on sibling recognition is rare compared to that developed by mammalian researchers. We compare avian and mammalian research on sibling recognition to identify why avian work is rare, how approaches differ and what avian and mammalian researchers can learn from each other. Three factors: (1) biological differences between birds and mammals, (2) conceptual biases and (3) practical constraints, appear to influence our current understanding. Avian research focuses on colonial species because sibling recognition is considered adaptive where 'mixing potential' of dependent young is high; research on a wider range of species, breeding systems and ecological conditions is now needed. Studies of acoustic recognition cues dominate avian literature; other types of cues (e.g. visual, olfactory) deserve further attention. The effect of gender on avian sibling recognition has yet to be investigated; mammalian work shows that gender can have important influences. Most importantly, many researchers assume that birds recognise siblings through 'direct familiarisation' (commonly known as associative learning or familiarity); future experiments should also incorporate tests for 'indirect familiarisation' (commonly known as phenotype matching). If direct familiarisation proves crucial, avian research should investigate how periods of separation influence sibling discrimination. Mammalian researchers typically interpret sibling recognition in broad functional terms (nepotism, optimal outbreeding); some avian researchers more successfully identify specific and testable adaptive explanations, with greater relevance to natural contexts. We end by reporting exciting discoveries from recent studies of avian sibling recognition that inspire further interest in this topic. | ||||
Address | Department of Biological Sciences, University Waikato, Private Bag 3105, Hamilton, New Zealand | ||||
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Notes | Cited By (since 1996): 9; Export Date: 23 October 2008; Source: Scopus | Approved | no | ||
Call Number | Equine Behaviour @ team @ | Serial | 4567 | ||
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Author | Arakawa, H.; Arakawa, K.; Blanchard, D.C.; Blanchard, R.J. | ||||
Title | A new test paradigm for social recognition evidenced by urinary scent marking behavior in C57BL/6J mice | Type | Journal Article | ||
Year | 2008 | Publication | Behavioural Brain Research | Abbreviated Journal | Behav. Brain. Res. |
Volume | 190 | Issue | 1 | Pages | 97-104 |
Keywords | Social recognition; Urine marking; Familiarity; Context recognition; C57BL/6J mice | ||||
Abstract | Olfaction is a major sensory element in intraspecies recognition and communication in mice. The present study investigated scent marking behaviors of males of the highly inbred C57BL/6J (C57) strain in order to evaluate the ability of these behaviors to provide clear and consistent measures of social familiarity and response to social signals. C57 males engage in scent marking when placed in a chamber with a wire mesh partition separating them from a conspecific. Male mice (C57 or outbred CD-1 mice) showed rapid habituation of scent marking (decreased marking over trials) with repeated exposure at 24-h intervals, to a stimulus animal of the C57 or CD-1 strains, or to an empty chamber. Subsequent exposure to a genetically different novel mouse (CD-1 after CD-1 exposure, or CD-1 after C57 exposure) or to a novel context (different shaped chamber) produced recovery of marking, while responses to a novel but genetically identical mouse (C57 after C57 exposure) or to the empty chamber did not. This finding demonstrated that male mice differentiate familiar and novel conspecifics as expressed by habituation and recovery of scent marking, but neither C57 or CD-1 mice can differentiate new vs. familiar C57 males; likely due to similarities in their odor patterns. The data also indicate that scent marking can differentiate novel from familiar contexts. | ||||
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Call Number | Equine Behaviour @ team @ | Serial | 4639 | ||
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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 | Soproni, K.; Miklósi, Á.; Topál, J.; Csányi, V. | ||||
Title | Dogs' (Canis familiaris) responsiveness to human pointing gestures | Type | Journal Article | ||
Year | 2002 | Publication | Journal of Comparative Psychology (Washington, D.C. : 1983) | Abbreviated Journal | J Comp Psychol |
Volume | 116 | Issue | 1 | Pages | 27-34 |
Keywords | Analysis of Variance; Animals; *Behavior, Animal; Choice Behavior; Dogs/*psychology; Female; Gestures; Male; *Recognition (Psychology); Species Specificity | ||||
Abstract | In a series of 3 experiments, dogs (Canis familiaris) were presented with variations of the human pointing gesture: gestures with reversed direction of movement, cross-pointing, and different arm extensions. Dogs performed at above chance level if they could see the hand (and index finger) protruding from the human body contour. If these minimum requirements were not accessible, dogs still could rely on the body position of the signaler. The direction of movement of the pointing arm did not influence the performance. In summary, these observations suggest that dogs are able to rely on relatively novel gestural forms of the human communicative pointing gesture and that they are able to comprehend to some extent the referential nature of human pointing. | ||||
Address | Department of Ethology, Eotvos Lorand University, Budapest, Hungary. krisztinasoproni@hotmail.com | ||||
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Language | English | Summary Language | Original Title | ||
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ISSN | 0735-7036 | ISBN | Medium | ||
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Notes | PMID:11926681 | Approved | no | ||
Call Number | Equine Behaviour @ team @ | Serial | 4962 | ||
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Author | McLean, A.N. | ||||
Title | Short-term spatial memory in the domestic horse | Type | Journal Article | ||
Year | 2004 | Publication | Applied Animal Behaviour Science | Abbreviated Journal | Appl. Anim. Behav. Sci. |
Volume | 85 | Issue | 1-2 | Pages | 93-105 |
Keywords | Animal cognition; Delayed response; Equine memory; Horse; Object permanence; Temporal cognition | ||||
Abstract | This study investigates the ability of horses to recall a feeding event in a two-point choice apparatus. Twelve horses were individually tested whereby they were maintained immobile in a test arena and visually and aurally experienced the delivery of food into one of two feed goals. The horses were then released to make their choice in two experimental contexts: immediate release after experiencing the delivery of food, and release 10 s after food delivery. Each horse performed 40 immediate-release (IR) trials, followed by forty 10-s release trials over a 3-day period. In addition, the same horses were tested 3 months later in the spring with the same number and sequence of trials. Results were analysed by log-linear analysis of frequencies. Results showed that while horses were able to achieve the correct feed goal choice in the immediate-release trials, they were unsuccessful with the 10-s release trials. This suggests that there are limitations in recall abilities in horses, in that they may not possess a prospective type of memory. There are welfare and training implications in these findings concerning the effects of overestimating the mental abilities of horses during training and the effects of delays in reinforcements. | ||||
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Call Number | refbase @ user @ | Serial | 403 | ||
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Author | Crowley, P.H.; Provencher, L.; Sloane, S.; Dugatkin, L.A.; Spohn, B.; Rogers, L.; Alfieri, M. | ||||
Title | Evolving cooperation: the role of individual recognition | Type | Journal Article | ||
Year | 1996 | Publication | Biosystems | Abbreviated Journal | Biosystems |
Volume | 37 | Issue | 1-2 | Pages | 49-66 |
Keywords | Game theory; Genetic algorithms; Individual recognition; Iterated Prisoner's Dilemma; Reciprocal altruism | ||||
Abstract | To evaluate the role of individual recognition in the evolution of cooperation, we formulated and analyzed a genetic algorithm model (EvCo) for playing the Iterated Prisoner's Dilemma (IPD) game. Strategies compete against each other during each generation, and successful strategies contribute more of their attributes to the next generation. Each strategy is encoded on a `chromosome' that plays the IPD, responding to the sequences of most recent responses by the interacting individuals (chromosomes). The analysis reported in this paper considered different memory capabilities (one to five previous interactions), pairing continuities (pairs of individuals remain together for about one, two, five, or 1000 consecutive interactions), and types of individual recognition (recognition capability was maximal, nil, or allowed to evolve between these limits). Analysis of the results focused on the frequency of mutual cooperation in pairwise interactions (a good indicator of overall success in the IPD) and on the extent to which previous responses by the focal individual and its partner were associated with the partner's identity (individual recognition). Results indicated that a fixed, substantial amount of individual recognition could maintain high levels of mutual cooperation even at low pairing continuities, and a significant but limited capability for individual recognition evolved under selection. Recognition generally increased mutual cooperation more when the recent responses of individuals other than the current partner were ignored. Titrating recognition memory under selection using a fitness cost suggested that memory of the partner's previous responses was more valuable than memory of the focal's previous responses. The dynamics produced to date by EvCo are a step toward understanding the evolution of social networks, for which additional benefits associated with group interactions must be incorporated. | ||||
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Call Number | refbase @ user @ | Serial | 483 | ||
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Author | Pepperberg, I.M. | ||||
Title | In search of king Solomon's ring: cognitive and communicative studies of Grey parrots (Psittacus erithacus) | Type | Journal Article | ||
Year | 2002 | Publication | Brain, behavior and evolution | Abbreviated Journal | Brain Behav Evol |
Volume | 59 | Issue | 1-2 | Pages | 54-67 |
Keywords | *Animal Communication; Animals; Attention/physiology; Cognition/*physiology; Cues; Form Perception/physiology; Humans; Intelligence; Learning/physiology; Male; Models, Psychological; Parrots/*physiology; Psychomotor Performance/physiology; Reward; Social Behavior | ||||
Abstract | During the past 24 years, I have used a modeling technique (M/R procedure) to train Grey parrots to use an allospecific code (English speech) referentially; I then use the code to test their cognitive abilities. The oldest bird, Alex, labels more than 50 different objects, 7 colors, 5 shapes, quantities to 6, 3 categories (color, shape, material) and uses 'no', 'come here', wanna go X' and 'want Y' (X and Y are appropriate location or item labels). He combines labels to identify, request, comment upon or refuse more than 100 items and to alter his environment. He processes queries to judge category, relative size, quantity, presence or absence of similarity/difference in attributes, and show label comprehension. He semantically separates labeling from requesting. He thus exhibits capacities once presumed limited to humans or nonhuman primates. Studies on this and other Greys show that parrots given training that lacks some aspect of input present in M/R protocols (reference, functionality, social interaction) fail to acquire referential English speech. Examining how input affects the extent to which parrots acquire an allospecific code may elucidate mechanisms of other forms of exceptional learning: learning unlikely in the normal course of development but that can occur under certain conditions. | ||||
Address | The MIT Media Lab, Cambridge, Mass. 02139, USA. impepper@media.mit.edu | ||||
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ISSN | 0006-8977 | ISBN | Medium | ||
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Notes | PMID:12097860 | Approved | no | ||
Call Number | refbase @ user @ | Serial | 579 | ||
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