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Author Goodall J
Title Tool-using and aimed throwing in a community of free-living chimpanzees Type Journal Article
Year 1964 Publication Nature Abbreviated Journal Nature
Volume 201 Issue Pages (down) 1264
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Notes Approved no
Call Number Equine Behaviour @ team @ Serial 3000
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Author Hamilton, W.D.
Title Selfish and Spiteful Behaviour in an Evolutionary Model Type Journal Article
Year 1970 Publication Nature Abbreviated Journal Nature
Volume 228 Issue Pages (down) 1218-1220
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Notes 10.1038/2281218a0 Approved no
Call Number Equine Behaviour @ team @ Serial 4853
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Author Gentner, T.Q.; Fenn, K.M.; Margoliash, D.; Nusbaum, H.C.
Title Recursive syntactic pattern learning by songbirds Type Journal Article
Year 2006 Publication Nature Abbreviated Journal Nature
Volume 440 Issue 7088 Pages (down) 1204-1207
Keywords Acoustic Stimulation; *Animal Communication; Animals; Auditory Perception/*physiology; Humans; *Language; Learning/*physiology; Linguistics; Models, Neurological; Semantics; Starlings/*physiology; Stochastic Processes
Abstract Humans regularly produce new utterances that are understood by other members of the same language community. Linguistic theories account for this ability through the use of syntactic rules (or generative grammars) that describe the acceptable structure of utterances. The recursive, hierarchical embedding of language units (for example, words or phrases within shorter sentences) that is part of the ability to construct new utterances minimally requires a 'context-free' grammar that is more complex than the 'finite-state' grammars thought sufficient to specify the structure of all non-human communication signals. Recent hypotheses make the central claim that the capacity for syntactic recursion forms the computational core of a uniquely human language faculty. Here we show that European starlings (Sturnus vulgaris) accurately recognize acoustic patterns defined by a recursive, self-embedding, context-free grammar. They are also able to classify new patterns defined by the grammar and reliably exclude agrammatical patterns. Thus, the capacity to classify sequences from recursive, centre-embedded grammars is not uniquely human. This finding opens a new range of complex syntactic processing mechanisms to physiological investigation.
Address Department of Organismal Biology and Anatomy, University of Chicago, Chicago, Illinois 60637, USA. tgentner@ucsd.edu
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ISSN 1476-4687 ISBN Medium
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Notes PMID:16641998 Approved no
Call Number refbase @ user @ Serial 353
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Author Gilbert, B.K.; Hailman, J.P.
Title Uncertainty of leadership-rank in fallow deer Type Journal Article
Year 1966 Publication Nature Abbreviated Journal Nature
Volume 209 Issue 5027 Pages (down) 1041-1042
Keywords Animals; Artiodactyla; *Behavior, Animal; Female; *Leadership; Pregnancy
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ISSN 0028-0836 ISBN Medium
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Notes PMID:5927524 Approved no
Call Number Serial 2057
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Author Johnson, D.D.P.; Stopka, P.; Knights, S.
Title Sociology: The puzzle of human cooperation Type Journal Article
Year 2003 Publication Nature Abbreviated Journal Nature
Volume 421 Issue 6926 Pages (down) 911-2; discussion 912
Keywords Altruism; *Cooperative Behavior; Evolution; Humans; *Models, Biological; Punishment; Reward; Risk
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Address Olin Institute for Strategic Studies, Harvard University, Cambridge, Massachusetts 02138, USA. dominic@post.harvard.edu
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ISSN 0028-0836 ISBN Medium
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Notes PMID:12606989 Approved no
Call Number refbase @ user @ Serial 467
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Author Wilson, A.M.; McGuigan, M.P.; Su, A.; van Den Bogert, A.J.
Title Horses damp the spring in their step Type Journal Article
Year 2001 Publication Nature Abbreviated Journal Nature
Volume 414 Issue 6866 Pages (down) 895-899
Keywords Animals; Biomechanics; Elasticity; Forelimb; Gait; Horses/anatomy & histology/*physiology; Leg Bones/*physiology; Locomotion; Models, Biological; Muscle Fibers/physiology; Muscle, Skeletal/anatomy & histology/*physiology; Tendons/anatomy & histology/*physiology; Vibration
Abstract The muscular work of galloping in horses is halved by storing and returning elastic strain energy in spring-like muscle-tendon units.These make the legs act like a child's pogo stick that is tuned to stretch and recoil at 2.5 strides per second. This mechanism is optimized by unique musculoskeletal adaptations: the digital flexor muscles have extremely short fibres and significant passive properties, whereas the tendons are very long and span several joints. Length change occurs by a stretching of the spring-like digital flexor tendons rather than through energetically expensive length changes in the muscle. Despite being apparently redundant for such a mechanism, the muscle fibres in the digital flexors are well developed. Here we show that the mechanical arrangement of the elastic leg permits it to vibrate at a higher frequency of 30-40 Hz that could cause fatigue damage to tendon and bone. Furthermore, we show that the digital flexor muscles have minimal ability to contribute to or regulate significantly the 2.5-Hz cycle of movement, but are ideally arranged to damp these high-frequency oscillations in the limb.
Address Department of Veterinary Basic Sciences, The Royal Veterinary College, Hatfield, Herts AL9 7TA, UK. awilson@rvc.ac.uk
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ISSN 0028-0836 ISBN Medium
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Notes PMID:11780059 Approved no
Call Number Equine Behaviour @ team @ Serial 2300
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Author Nagy, M.; Akos, Z.; Biro, D.; Vicsek, T.
Title Hierarchical group dynamics in pigeon flocks Type Journal Article
Year 2010 Publication Nature Abbreviated Journal Nature
Volume 464 Issue 7290 Pages (down) 890-893
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Abstract Animals that travel together in groups display a variety of fascinating motion patterns thought to be the result of delicate local interactions among group members1, 2, 3. Although the most informative way of investigating and interpreting collective movement phenomena would be afforded by the collection of high-resolution spatiotemporal data from moving individuals, such data are scarce4, 5, 6, 7 and are virtually non-existent for long-distance group motion within a natural setting because of the associated technological difficulties8. Here we present results of experiments in which track logs of homing pigeons flying in flocks of up to 10 individuals have been obtained by high-resolution lightweight GPS devices and analysed using a variety of correlation functions inspired by approaches common in statistical physics. We find a well-defined hierarchy among flock members from data concerning leading roles in pairwise interactions, defined on the basis of characteristic delay times between birds’ directional choices. The average spatial position of a pigeon within the flock strongly correlates with its place in the hierarchy, and birds respond more quickly to conspecifics perceived primarily through the left eye—both results revealing differential roles for birds that assume different positions with respect to flock-mates. From an evolutionary perspective, our results suggest that hierarchical organization of group flight may be more efficient than an egalitarian one, at least for those flock sizes that permit regular pairwise interactions among group members, during which leader–follower relationships are consistently manifested.
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Publisher Macmillan Publishers Limited. All rights reserved Place of Publication Editor
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ISSN 0028-0836 ISBN Medium
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Notes 10.1038/nature08891 Approved no
Call Number Equine Behaviour @ team @ Serial 5111
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Author Dyer, F.C.
Title Animal behaviour: when it pays to waggle Type
Year 2002 Publication Nature Abbreviated Journal Nature
Volume 419 Issue 6910 Pages (down) 885-886
Keywords *Animal Communication; Animals; Bees/*physiology; California; Dancing/physiology; Environment; Evolution; Female; Flowers/chemistry; *Food; Gravitation; Lighting; Motor Activity/*physiology; Odors; Seasons; Sunlight
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Notes PMID:12410290 Approved no
Call Number refbase @ user @ Serial 769
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Author Shettleworth, S.J.
Title Animal behaviour: planning for breakfast Type Journal Article
Year 2007 Publication Nature Abbreviated Journal Nature
Volume 445 Issue 7130 Pages (down) 825-826
Keywords Animals; Feeding Behavior/*physiology; *Food; Haplorhini/physiology; Memory/physiology; Songbirds/*physiology; Thinking/*physiology
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ISSN 1476-4687 ISBN Medium
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Notes PMID:17314961 Approved no
Call Number refbase @ user @ Serial 356
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Author Paz-y-Miño C. G.; Bond, A.B.; Kamil, A.C.; Balda, R.P.
Title Pinyon jays use transitive inference to predict social dominance Type Journal Article
Year 2004 Publication Nature Abbreviated Journal Nature
Volume 430 Issue 7001 Pages (down) 778-781
Keywords Animals; Cognition/*physiology; Group Structure; Male; *Social Dominance; Songbirds/*physiology
Abstract Living in large, stable social groups is often considered to favour the evolution of enhanced cognitive abilities, such as recognizing group members, tracking their social status and inferring relationships among them. An individual's place in the social order can be learned through direct interactions with others, but conflicts can be time-consuming and even injurious. Because the number of possible pairwise interactions increases rapidly with group size, members of large social groups will benefit if they can make judgments about relationships on the basis of indirect evidence. Transitive reasoning should therefore be particularly important for social individuals, allowing assessment of relationships from observations of interactions among others. Although a variety of studies have suggested that transitive inference may be used in social settings, the phenomenon has not been demonstrated under controlled conditions in animals. Here we show that highly social pinyon jays (Gymnorhinus cyanocephalus) draw sophisticated inferences about their own dominance status relative to that of strangers that they have observed interacting with known individuals. These results directly demonstrate that animals use transitive inference in social settings and imply that such cognitive capabilities are widespread among social species.
Address Center for Avian Cognition, School of Biological Sciences, University of Nebraska, Lincoln, Nebraska 68588, USA
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ISSN 1476-4687 ISBN Medium
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Notes PMID:15306809 Approved no
Call Number refbase @ user @; Equine Behaviour @ team @ room B 3.029 Serial 352
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