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Author Dingemanse, N.J.; de Goede, P. url  doi
openurl 
  Title The relation between dominance and exploratory behavior is context-dependent in wild great tits Type Journal Article
  Year 2004 Publication (down) Behavioral Ecology Abbreviated Journal Behav. Ecol.  
  Volume 15 Issue 6 Pages 1023-1030  
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  Abstract Individual differences in personality affect behavior in novel or challenging situations. Personality traits may be subject to selection because they affect the ability to dominate others. We investigated whether dominance rank at feeding tables in winter correlated with a heritable personality trait (as measured by exploratory behavior in a novel environment) in a natural population of great tits, Parus major. We provided clumped resources at feeding tables and calculated linear dominance hierarchies on the basis of observations between dyads of color-ringed individuals, and we used an experimental procedure to measure individual exploratory behavior of these birds. We show that fast-exploring territorial males had higher dominance ranks than did slow-exploring territorial males in two out of three samples, and that dominance related negatively to the distance between the site of observation and the territory. In contrast, fast-exploring nonterritorial juveniles had lower dominance ranks than did slow-exploring nonterritorial juveniles, implying that the relation between dominance and personality is context-dependent in the wild. We discuss how these patterns in dominance can explain earlier reported effects of avian personality on natal dispersal and fitness.  
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  Call Number Equine Behaviour @ team @ Serial 5390  
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Author Hildenbrandt, H.; Carere, C.; Hemelrijk, C.K. url  doi
openurl 
  Title Self-organized aerial displays of thousands of starlings: a model Type Journal Article
  Year 2010 Publication (down) Behavioral Ecology Abbreviated Journal Behav. Ecol.  
  Volume 21 Issue 6 Pages 1349-1359  
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  Abstract Through combining theoretical models and empirical data, complexity science has increased our understanding of social behavior of animals, in particular of social insects, primates, and fish. What are missing are studies of collective behavior of huge swarms of birds. Recently detailed empirical data have been collected of the swarming maneuvers of large flocks of thousands of starlings (Sturnus vulgaris) at their communal sleeping site (roost). Their flocking maneuvers are of dazzling complexity in their changes in density and flock shape, but the processes underlying them are still a mystery. Recent models show that flocking may arise by self-organization from rules of co-ordination with nearby neighbors, but patterns in these models come nowhere near the complexity of those of the real starlings. The question of this paper, therefore, is whether such complex patterns can emerge by self-organization. In our computer model, called StarDisplay, we combine the usual rules of co-ordination based on separation, attraction, and alignment with specifics of starling behavior: 1) simplified aerodynamics of flight, especially rolling during turning, 2) movement above a “roosting area” (sleeping site), and 3) the low fixed number of interaction neighbors (i.e., the topological range). Our model generates patterns that resemble remarkably not only qualitative but also quantitative empirical data collected in Rome through video recordings and position measurements by stereo photography. Our results provide new insights into the mechanisms underlying complex flocking maneuvers of starlings and other birds.  
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  Call Number Equine Behaviour @ team @ Serial 5403  
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Author Preiszner, B.; Vincze, E.; Seress, G.; Papp, S.; Bókony, V.; Liker, A.; Lendvai, Á.Z.; Patras, L.; Pap, P.L.; Vágási, C.I.; Németh, J. url  doi
openurl 
  Title Necessity or capacity? Physiological state predicts problem-solving performance in house sparrows Type Journal Article
  Year 2013 Publication (down) Behavioral Ecology Abbreviated Journal Behav. Ecol.  
  Volume 25 Issue 1 Pages 124-135  
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  Abstract Innovative behaviors such as exploiting novel food sources can grant significant fitness benefits for animals, yet little is known about the mechanisms driving such phenomena, and the role of physiology is virtually unexplored in wild species. Two hypotheses predict opposing effects of physiological state on innovation success. On one hand, poor physiological condition may promote innovations by forcing individuals with poor competitive abilities to invent alternative solutions. On the other hand, superior physiological condition may ensure greater cognitive capacity and thereby better problem-solving and learning performance. To test these hypotheses, we studied the behavior of wild-caught house sparrows (Passer domesticus) in 4 novel tasks of food acquisition, one of which was presented to the birds in repeated trials, and we investigated the relationships of individual performance with relevant physiological traits. We found that problem-solving performance across the 4 tasks was moderately consistent within individuals. Birds with lower integrated levels of corticosterone, the main avian stress hormone, solved the most difficult task faster and were more efficient learners in the repeated task than birds with higher corticosterone levels. Birds with higher concentration of total glutathione, a key antioxidant, solved 2 relatively easy tasks faster, whereas birds with fewer coccidian parasites tended to solve the difficult task more quickly. Our results, thus, indicate that aspects of physiological state influence problem-solving performance in a context-dependent manner, and these effects on problem-solving capacity, probably including cognitive abilities, are more likely to drive individual innovation success than necessity due to poor condition.  
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  ISSN 1045-2249 ISBN Medium  
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  Call Number Equine Behaviour @ team @ Serial 6552  
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Author Nakagawa, S. url  doi
openurl 
  Title A farewell to Bonferroni: the problems of low statistical power and publication bias Type Journal Article
  Year 2004 Publication (down) Behavioral Ecology Abbreviated Journal beheco  
  Volume 15 Issue 6 Pages 1044-1045  
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  Call Number Equine Behaviour @ team @ Serial 6560  
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