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Author | Ringhofer, M.; Yamamoto, S. | ||||
Title | Domestic horses send signals to humans when they face with an unsolvable task | Type | Journal Article | ||
Year | 2016 | Publication | Animal Cognition | Abbreviated Journal | Anim. Cogn. |
Volume | Issue | Pages | 1-9 | ||
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Abstract | Some domestic animals are thought to be skilled at social communication with humans due to the process of domestication. Horses, being in close relationship with humans, similar to dogs, might be skilled at communication with humans. Previous studies have indicated that they are sensitive to bodily signals and the attentional state of humans; however, there are few studies that investigate communication with humans and responses to the knowledge state of humans. Our first question was whether and how horses send signals to their potentially helpful but ignorant caretakers in a problem-solving situation where a food item was hidden in a bucket that was accessible only to the caretakers. We then examined whether horses alter their behaviours on the basis of the caretakers’ knowledge of where the food was hidden. We found that horses communicated to their caretakers using visual and tactile signals. The signalling behaviour of the horses significantly increased in conditions where the caretakers had not seen the hiding of the food. These results suggest that horses alter their communicative behaviour towards humans in accordance with humans’ knowledge state. | ||||
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ISSN | 1435-9456 | ISBN | Medium | ||
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Notes | Approved | no | |||
Call Number | Equine Behaviour @ team @ Ringhofer2016 | Serial | 6037 | ||
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Author | Ward, A; Webster, M. | ||||
Title | Sociality: The Behaviour of Group-Living Animals | Type | Book Whole | ||
Year | 2016 | Publication | Abbreviated Journal | ||
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Abstract | Covers the aspects of social behaviour of animals in comprehensive form Provides a clear overview to up-to-date empirical and theoretical research on social animal behaviour Discusses collective animal behaviour, social networks and animal personality in detail The last decade has seen a surge of interest among biologists in a range of social animal phenomena, including collective behaviour and social networks. In ‘Animal Social Behaviour’, authors Ashley Ward and Michael Webster integrate the most up-to-date empirical and theoretical research to provide a new synthesis of the field, which is aimed at fellow researchers and postgraduate students on the topic. ​ |
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Notes | Approved | no | |||
Call Number | Equine Behaviour @ team @ | Serial | 6156 | ||
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Author | A. Lanata; A. Guidi; G. Valenza; P. Baragli; E. P. Scilingo | ||||
Title | Quantitative heartbeat coupling measures in human-horse interaction | Type | Conference Article | ||
Year | 2016 | Publication | 2016 38th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC) | Abbreviated Journal | 2016 38th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (E |
Volume | Issue | Pages | 2696-2699 | ||
Keywords | electrocardiography; medical signal processing; signal classification; time series; Dtw; Hrv; Mpc; Msc; complex biological systems; dynamic time warping; grooming; heart rate variability time series; heartbeat dynamics; human-horse dynamic interaction; magnitude squared coherence; magnitude-phase coupling; mean phase coherence; nearest mean classifier; quantitative heartbeat coupling; real human-animal interaction; time duration; visual-olfactory interaction; Coherence; Couplings; Electrocardiography; Heart rate variability; Horses; Protocols; Time series analysis | ||||
Abstract | Abstract— We present a study focused on a quantitative estimation of a human-horse dynamic interaction. A set of measures based on magnitude and phase coupling between heartbeat dynamics of both humans and horses in three different conditions is reported: no interaction, visual/olfactory interaction and grooming. Specifically, Magnitude Squared Coherence (MSC), Mean Phase Coherence (MPC) and Dynamic Time Warping (DTW) have been used as estimators of the amount of coupling between human and horse through the analysis of their heart rate variability (HRV) time series in a group of eleven human subjects, and one horse. The rationale behind this study is that the interaction of two complex biological systems go towards a coupling process whose dynamical evolution is modulated by the kind and time duration of the interaction itself. We achieved a congruent and consistent statistical significant difference for all of the three indices. Moreover, a Nearest Mean Classifier was able to recognize the three classes of interaction with an accuracy greater than 70%. Although preliminary, these encouraging results allow a discrimination of three distinct phases in a real human-animal interaction opening to the characterization of the empirically proven relationship between human and horse. |
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Series Editor | Series Title | Abbreviated Series Title | 2016 38th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (E | ||
Series Volume | Series Issue | Edition | |||
ISSN | 1557-170x | ISBN | Medium | ||
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Notes | Approved | no | |||
Call Number | Equine Behaviour @ team @ | Serial | 6175 | ||
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Author | Suter, S.M.; Giordano, M.; Nietlispach, S.; Apollonio, M.; Passilongo, D. | ||||
Title | Non-invasive acoustic detection of wolves | Type | Journal Article | ||
Year | 2016 | Publication | Bioacoustics | Abbreviated Journal | Bioacoustics |
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Abstract | Monitoring wolves (Canis lupus) is a difficult and often expensive task due to high mobility,pack dynamic, shyness and nocturnal activity of this species. Wolves communicate acoustically trough howling, within pack and with packs of the neighbourhood. A wolf howl is a low frequency vocalization that can be transmitted over long distances and thus be used for monitoring tasks. Animated howling survey is a current method to monitor wolves indifferent areas all over the world. Animated howling, however, may be invasive to residential wolf packs and could create possible negative reactions from local human population. Here we show that it is possible to detect wolves by recording spontaneous howling events. We measured the sound pressure level of wolf howls on captive individuals and we further found that simulated howling may be recorded and clearly identified up to a distance of 3 km. We finally conducted non-invasive acoustic detection of wolves in a free ranging population. The use of passive sound recorders may provide a powerful non-invasive tool for future wolf monitoring and thus help to established sustainable management plans for this species. |
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Call Number | Equine Behaviour @ team @ | Serial | 6500 | ||
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Author | Pick, M.; Pick, J.; Rahn, A.; Wolff, N. | ||||
Title | Artgerechte Haltung von Pferden: Sachverständige Empfehlungen zur Pferdehaltung aus Sicht des Tierschutzes | Type | Book Whole | ||
Year | 2016 | Publication | Abbreviated Journal | ||
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Publisher | Tredition GmbH | Place of Publication | Hamburg | Editor | |
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Call Number | Equine Behaviour @ team @ | Serial | 6616 | ||
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Author | Marinsek, N.L.; Gazzaniga, M.S.; Miller, M.B. | ||||
Title | Chapter 17 – Split-Brain, Split-Mind | Type | Book Chapter | ||
Year | 2016 | Publication | The Neurology of Conciousness (Second Edition) | Abbreviated Journal | |
Volume | Issue | Pages | 271-279 | ||
Keywords | Split-brain; consciousness; lateralization; modular; left hemisphere interpreter | ||||
Abstract | The corpus callosum anatomically and functionally connects the two cerebral hemispheres. Despite its important role in interhemispheric communication however, severing the corpus callosum produces few--if any--noticeable cognitive or behavioral abnormalities. Incredibly, split-brain patients do not report any drastic changes in their conscious experience even though nearly all interhemispheric communication ceases after surgery. Extensive research has shown that both hemispheres remain conscious following disconnection and the conscious experience of each hemisphere is private and independent of the other. Additionally, the conscious experiences of the hemispheres appear to be qualitatively different, such that the consciousness of the left hemisphere is more enriched than the right. In this chapter, we offer explanations as to why split-brain patients feel unified despite possessing dual conscious experiences and discuss how the divided consciousness of split-brain patients can inform current theories of consciousness. | ||||
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Publisher | Academic Press | Place of Publication | San Diego | Editor | Laureys, S.; Gosseries, O.; Tononi, G. |
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ISSN | ISBN | 978-0-12-800948-2 | Medium | ||
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Notes | Approved | no | |||
Call Number | Equine Behaviour @ team @ | Serial | 6648 | ||
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