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Author |
Gray, E.R.; Spetch, M.L. |
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Title |
Pigeons Encode Absolute Distance but Relational Direction From Landmarks and Walls |
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Journal Article |
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2006 |
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Journal of Experimental Psychology: Animal Behavior Processes |
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32 |
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4 |
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474-480 |
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spatial cognition; absolute distance; relational direction; landmark configurations |
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In recent studies, researchers have examined animals' use of absolute or relational distances in finding a hidden goal. When trained with an array of landmarks, most animals use the default strategy of searching at an absolute distance from 1 or more landmarks. In contrast, when trained in enclosures, animals often use the relationship among walls. In the present study, pigeons were trained to find the center of an array of landmarks or a set of short walls that did not block external cues. Expansion tests showed that both groups of pigeons primarily used an absolute distance strategy. However, on rotational tests, pigeons continued to search in the center of the array, suggesting that direction was learned in relation to array. |
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Equine Behaviour @ team @ |
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2894 |
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Adamo, S.A.; Ehgoetz, K.; Sangster, C.; Whitehorne, I. |
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Title |
Signaling to the Enemy? Body Pattern Expression and Its Response to External Cues During Hunting in the Cuttlefish Sepia officinalis (Cephalopoda) |
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2006 |
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Biol. Bull. |
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210 |
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3 |
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192-200 |
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Abstract. Cuttlefish can rapidly alter their appearance by using neurally controlled chromatophore organs. This ability may provide a window into their cognitive capacity. We test whether the changes in body pattern that occur during hunting depend on context. If they do, then it may be possible to use these changes to study cephalopod cognition while the animal is engaged in ecologically relevant tasks. We found consistent individual differences in the tendency of cuttlefish to hunt with the first two arms raised. We also found that cuttlefish usually darken their skin after they seize a prey item. This darkening is observed regardless of the identity of the prey (fish, crab, or shrimp), prey context (buried in sand, in a bare tank, or on top of a rock pile), or the presence of a sudden stimulus. The sudden stimulus was created by presenting an overhead model bird to the cuttlefish. The model induced components of the Deimatic Display, which is a form of antipredator behavior, suggesting that the model was perceived as a potential threat. Passing Cloud displays and the Darkening of the arms were significantly reduced after exposure to the model bird. The effect of a potential predator on body pattern expression during hunting suggests it may be possible to use these changes as a sensitive indicator of ecologically relevant learning. N1 - |
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Equine Behaviour @ team @ |
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2960 |
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Stich, K.P.; Winter, Y. |
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Lack of generalization of object discrimination between spatial contexts by a bat |
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2006 |
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J. Exp. Biol. |
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209 |
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23 |
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4802-4808 |
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Discrimination and generalization are important elements of cognition in the daily lives of animals. Nectar-feeding bats detect flowers by olfaction and probably vision, but also use echolocation and echo-perception of flowers in immediate target surroundings. The echo received from an interference-rich flower corolla is a function of a bat's own relative position in space. This raises the question how easily a free-flying bat will generalize an echo stimulus from a learning situation to a new spatial context where differences in relative flight approach trajectories may lead to an unfamiliar spectral composition of the self-generated echoes. We trained free-flying Glossophaga soricina in echoacoustic discrimination in a two-alternative forced-choice (2-AFC) paradigm at location A. We then tested at location B for spontaneous transfer of discrimination ability. Bats did not spontaneously transfer the discrimination ability acquired at A to location B. This lack of spontaneous generalization may have been caused by factors of the underlying learning mechanisms. 2-AFC tasks may not be representative of the natural foraging behaviour of flower-visiting bats. In contrast to insect-eating bats that constantly evaluate the environment to detect unpredictable prey, the spatial stability of flowers may allow flower visitors to rely on spatial memory to guide foraging. The 2-AFC task requires the disregard (learned irrelevance) of salient spatial location cues that are different at each new location. In Glossophaga, a conjunction between spatial context and 2-AFC discrimination learning may have inhibited the transfer of learned irrelevance of spatial location in the 2-AFC task to new spatial locations. Alternatively, the bats may have learnt the second discrimination task completely anew, and were faster only because of an acquired learning set. We suggest a dissociation between 2-AFC task acquisition and novel object discrimination learning to resolve the issue. |
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10.1242/jeb.02574 |
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Equine Behaviour @ team @ |
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2962 |
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Brembs, B.; Wiener, J. |
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Title |
Context and occasion setting in Drosophila visual learning |
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2006 |
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Learn. Mem. |
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13 |
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5 |
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618-628 |
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In a permanently changing environment, it is by no means an easy task to distinguish potentially important events from negligible ones. Yet, to survive, every animal has to continuously face that challenge. How does the brain accomplish this feat? Building on previous work in Drosophila melanogaster visual learning, we have developed an experimental methodology in which combinations of visual stimuli (colors and patterns) can be arranged such that the same stimuli can either be directly predictive, indirectly predictive, or nonpredictive of punishment. Varying this relationship, we found that wild-type flies can establish different memory templates for the same contextual color cues. The colors can either leave no trace in the pattern memory template, leading to context-independent pattern memory (context generalization), or be learned as a higher-order cue indicating the nature of the pattern-heat contingency leading to context-dependent memory (occasion setting) or serve as a conditioned stimulus predicting the punishment directly (simple conditioning). In transgenic flies with compromised mushroom-body function, the sensitivity to these subtle variations is altered. Our methodology constitutes a new concept for designing learning experiments. Our findings suggest that the insect mushroom bodies stabilize visual memories against context changes and are not required for cognition-like higher-order learning. |
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10.1101/lm.318606 |
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Equine Behaviour @ team @ |
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2963 |
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Author |
Bekoff, M. |
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Title |
Animal Passions And Beastly Virtues: Cognitive Ethology As The Unifying Science For Understanding The Subjective, Emotional, Empathic, And Moral Lives Of Animals |
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2006 |
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Zygon |
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41 |
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71-104 |
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refbase @ user @ |
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3445 |
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Cruz, H. |
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Towards a Darwinian Approach to Mathematics |
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2006 |
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Foundations of Science |
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11 |
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157-196 |
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refbase @ user @ |
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3441 |
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Purpura, G.J. |
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Title |
In Search of Human Uniqueness |
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2006 |
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Philosophical Psychology |
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19 |
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443-461 |
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3435 |
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Sickler, J.; Fraser, J.; Webler, T.; Reiss, D.; Boyle, P.; Lyn, H.; Lemcke, K.; Gruber, S. |
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Social Narratives Surrounding Dolphins: Q Method Study |
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2006 |
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Society and Animals |
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14 |
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351-382 |
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3431 |
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Deecke, V.B. |
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Studying Marine Mammal Cognition in the Wild: A Review of Four Decades of Playback Experiments |
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2006 |
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Aquatic Mammals |
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32 |
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461-482 |
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3420 |
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Author |
Maple; , M.L.W.; Meredith J. Bashaw; Kimberly Fountain; Sarah Kieschnick; Terry L. |
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Title |
Nocturnal behavior in a group of female African elephants |
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2006 |
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Zoo Biology |
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25 |
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3 |
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173-186 |
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The nocturnal behavior of a stable group of female, African elephants (Loxodonta africana africana) was studied to: (1) examine their behavior as a function of hour of night; (2) qualitatively compare the elephants' activity budgets to those reported in a previous study; and (3) document the presence of aggressive and stereotypic behaviors that might necessitate a change in their management. The elephants were systematically observed at least five times per week for 10 weeks between 17:00 and 08:00. Instantaneous focal samples of behavior, location, and proximity were taken every minute on a rotating basis, and all observed occurrences of social behavior were recorded. The hour of night affected elephant activity: significant relationships were found between hour of night and percent of time they spent feeding, lying, and standing. The overall activity budgets of the elephants were similar to the activity budgets reported in a previous study, although differences were evident in lying, stereotypic, and social behaviors. These differences might be a function of age. Affiliative behaviors accounted for 57% of the elephants' social behaviors, and agonistic behaviors among the elephants occurred infrequently and caused no injuries. Additionally, the elephants used all areas to which they had access. These findings provide compelling evidence that unrestricted social access during the night is the appropriate management strategy for these elephants. The results from the present study also highlight the importance of replicating existing studies and using multiple behavioral measures to make decisions regarding the welfare and management of stable groups of captive elephants. Zoo Biol 25:173-186, 2006. 2006 Wiley-Liss, Inc. |
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1098-2361 |
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refbase @ user @ Maple;2006 |
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3551 |
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