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The use of social information in vulture flight decisions

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AbstractAnimals rely on a balance of personal and social information to decide when and where to move next in order to access a desired resource, such as food. The benefits from cueing on conspecifics to reduce uncertainty about resources availability can be rapidly overcome by the risks of within-group competition, often exacerbated toward low-ranked individuals. Being obligate soarers, relying on thermal updrafts to search for carcasses around which competition can be fierce, vultures represent ideal models to investigate the balance between personal and social information during foraging movements. Linking dominance hierarchy, social affinities and meteorological conditions to movement decisions of eight captive vultures,Gyps spp., released for free flights in natural-like soaring conditions, we found that they relied on social information (i.e. other vultures using/having used the thermals) to find the next thermal updraft, especially in unfavourable flight conditions. Low-ranked individuals were more likely to disregard social cues when deciding where to go next, possibly to minimise the competitive risk of social aggregation. These results exemplify the architecture of decision-making during flight in social birds. It suggests that the environmental context, the context of risk and the social system as a whole calibrate the balance between personal and social information use.
Title: The use of social information in vulture flight decisions
Description:
AbstractAnimals rely on a balance of personal and social information to decide when and where to move next in order to access a desired resource, such as food.
The benefits from cueing on conspecifics to reduce uncertainty about resources availability can be rapidly overcome by the risks of within-group competition, often exacerbated toward low-ranked individuals.
Being obligate soarers, relying on thermal updrafts to search for carcasses around which competition can be fierce, vultures represent ideal models to investigate the balance between personal and social information during foraging movements.
Linking dominance hierarchy, social affinities and meteorological conditions to movement decisions of eight captive vultures,Gyps spp.
, released for free flights in natural-like soaring conditions, we found that they relied on social information (i.
e.
other vultures using/having used the thermals) to find the next thermal updraft, especially in unfavourable flight conditions.
Low-ranked individuals were more likely to disregard social cues when deciding where to go next, possibly to minimise the competitive risk of social aggregation.
These results exemplify the architecture of decision-making during flight in social birds.
It suggests that the environmental context, the context of risk and the social system as a whole calibrate the balance between personal and social information use.

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