Publication | Open Access
Complex spatial group patterns result from different animal communication mechanisms
123
Citations
30
References
2007
Year
Spatiotemporal OrganizationCommunicationOne-dimensional Hyperbolic ModelMammalogyCollective MotionPrimate BehaviorBehavioral NeuroscienceAnimal Group FormationNervous SystemBiologyEmergent PhenomenonPattern FormationAnimal BehaviourNatural SciencesSocial BehaviorEvolutionary BiologyStationary PulsesAnimal CommunicationMedicineAnimal MindAnimal Behavior
We present previously undescribed spatial group patterns that emerge in a one-dimensional hyperbolic model for animal group formation and movement. The patterns result from the assumption that the interactions governing movement depend not only on distance between conspecifics, but also on how individuals receive information about their neighbors and the amount of information received. Some of these patterns are classical, such as stationary pulses, traveling waves, ripples, or traveling trains. However, most of the patterns have not been reported previously. We call these patterns zigzag pulses, semizigzag pulses, breathers, traveling breathers, and feathers.
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