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Author Perusse, D.; Lefebvre, L.
Title Grouped sequential exploitation of food patches in a flock feeder, the feral pigeon Type Journal Article
Year 1985 Publication Behavioural Processes Abbreviated Journal Behav. Process.
Volume (down) 11 Issue 1 Pages 39-52
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Abstract Feral and laboratory flocks of rock doves ( ) show a pattern of grouped sequential exploitation when simultaneously presented with two dispersed, depleting patches of seed. This behavior contrasts with the ideal free distribution pattern shown when patches are small and concentrated. Grouped sequential exploitation consists of two phases: all pigeons first land together and feed at one patch, then leave one by one for the other patch. Departure times of individuals for the second patch are correlated with feeding rate at patch 1, which is in turn correlated with position in the dominance hierarchy. The decision to switch from patch 1 to patch 2 improves individual feeding rates in all cases, but is done slightly later than it should according to optimal foraging theory.
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Call Number Equine Behaviour @ team @ Serial 4227
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Author Poling, A.; Thomas, J.; Hall-Johnson, E.; Picker, M.
Title Self-control revisited: Some factors that affect autoshaped responding Type Journal Article
Year 1985 Publication Behavioural Processes Abbreviated Journal Behav. Process.
Volume (down) 10 Issue 1-2 Pages 77-85
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Abstract Pigeons were exposed to autoshaping procedures under which 50% of red key illuminations were followed by 9-sec food deliveries, and 50% of blue key illuminations were followed by 3-sec food deliveries. When all key illuminations were 6 sec, pigeons preferred the red stimulus. Subsequent manipulations demonstrated that preference could be shifted to the blue stimulus by either increasing the duration of the red stimulus or imposing a delay interval between the offset of that stimulus and food delivery. A final experiment demonstrated that, in two of three subjects, preference for key illuminations associated with longer, but delayed, food deliveries generally increased as the duration of all key illuminations was lengthened. These results, obtained under conditions where keypecking had no programmed consequences, are similar to those previously observed under procedures involving a positive response-food dependency.
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Call Number Equine Behaviour @ team @ Serial 3606
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Author Zucca, P.; Cerri, F.; Carluccio, A.; Baciadonna, L.
Title Space availability influence laterality in donkeys (Equus asinus) Type Journal Article
Year Publication Behavioural Processes Abbreviated Journal Behav. Process.
Volume (down) In Press, Uncorrected Proof Issue Pages
Keywords Cerebral lateralization; Donkey; Footedness; Welfare; Equus asinus
Abstract Cerebral lateralization is the portioning of the cognitive functions between the two cerebral hemispheres. Several factors, like embryological manipulations, light exposure, health conditions, sex and age can influence the left-right brain asymmetries and contribute to increasing the variability in the strength and direction of laterality within most species. We investigated the influence of an environmental constraint, namely space availability, as a new source of variation on laterality in an adult vertebrate model, the donkey. In a baseline condition we tested whether donkeys show a motor lateralization bias at population level, while in an experimental condition we manipulated space availability to verify if a reduction in this parameter could represent a new source of variation in laterality. Results show that donkeys are lateralized at population level with a strong bias to standing with the right forelimb advanced over the left and that a reduction of space availability is an important source of variation in the laterality strength and direction within this species. The comparative analysis of the environmental and developmental factors that give origin to neural and behavioural laterality in animal models will be very important for a better understanding of the evolutionary origin of such multifaceted phenomenon.
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ISSN 0376-6357 ISBN Medium
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Call Number Equine Behaviour @ team @ Serial 5400
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