Counting crows: population structure and group size variation in an urban population of crows.

Florian Uhl, Max Ringler, Rachael Miller, Sarah A Deventer, Thomas Bugnyar, Christine Schwab
Author Information
  1. Florian Uhl: Department of Cognitive Biology, University of Vienna, Vienna, Austria. ORCID
  2. Max Ringler: Department of Ecology and Evolutionary Biology, University of California Los Angeles, Los Angeles, CA, USA. ORCID
  3. Rachael Miller: Department of Cognitive Biology, University of Vienna, Vienna, Austria.
  4. Sarah A Deventer: Department of Cognitive Biology, University of Vienna, Vienna, Austria.
  5. Thomas Bugnyar: Department of Cognitive Biology, University of Vienna, Vienna, Austria.
  6. Christine Schwab: Department of Cognitive Biology, University of Vienna, Vienna, Austria.

Abstract

Social complexity arises from the formation of social relationships like social bonds and dominance hierarchies. In turn, these aspects may be affected by the degree of fission-fusion dynamics, i.e., changes in group size and composition over time. Whilst fission-fusion dynamics has been studied in mammals, birds have received comparably little attention, despite some species having equally complex social lives. Here, we investigated the influence of environmental factors on aspects of fission-fusion dynamics in a free-ranging population of carrion and hooded crows (.) in the urban zoo of Vienna, Austria over a 1-year period. We investigated 1) the size and 2) spatio-temporal structure of the local flock, and 3) environmental influences on local flock and subgroup size. The local flock size varied considerably over the year, with fewest birds being present during the breeding season. The spatio-temporal structure of the local flock showed 4 distinct presence categories, of which the proportions changed significantly throughout the year. Environmental effects on both local flock and subgroup size were time of day, season, temperature, and weather, with additional pronounced effects of the structure of the surroundings and age class on subgroup size. Our findings show environmental influences on party size at the local flock and subgroup level, as well as indications of structured party composition in respect to the 4 presence categories. These results suggest that environmental factors have significant effects on fission-fusion dynamics in free-ranging crows, thereby influencing social complexity.

Keywords

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Grants

  1. J 3868/Austrian Science Fund FWF
  2. P 24788/Austrian Science Fund FWF
  3. P 29705/Austrian Science Fund FWF
  4. Y 366/Austrian Science Fund FWF

Word Cloud

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