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Nature


Title:Optimal traffic organization in ants under crowded conditions
Author(s):Dussutour A; Fourcassie V; Helbing D; Deneubourg JL;
Address:"Centre de Recherches sur la Cognition Animale, UMR CNRS 5169, Universite Paul Sabatier, 118 Route de Narbonne, F-31062 Toulouse Cedex 4, France. dussutou@cict.fr"
Journal Title:Nature
Year:2004
Volume:428
Issue:6978
Page Number:70 - 73
DOI: 10.1038/nature02345
ISSN/ISBN:1476-4687 (Electronic) 0028-0836 (Linking)
Abstract:"Efficient transportation, a hot topic in nonlinear science, is essential for modern societies and the survival of biological species. Biological evolution has generated a rich variety of successful solutions, which have inspired engineers to design optimized artificial systems. Foraging ants, for example, form attractive trails that support the exploitation of initially unknown food sources in almost the minimum possible time. However, can this strategy cope with bottleneck situations, when interactions cause delays that reduce the overall flow? Here, we present an experimental study of ants confronted with two alternative routes. We find that pheromone-based attraction generates one trail at low densities, whereas at a high level of crowding, another trail is established before traffic volume is affected, which guarantees that an optimal rate of food return is maintained. This bifurcation phenomenon is explained by a nonlinear modelling approach. Surprisingly, the underlying mechanism is based on inhibitory interactions. It points to capacity reserves, a limitation of the density-induced speed reduction, and a sufficient pheromone concentration for reliable trail perception. The balancing mechanism between cohesive and dispersive forces appears to be generic in natural, urban and transportation systems"
Keywords:"Animals Ants/drug effects/*physiology Biological Evolution Biomimetics Food *Locomotion/drug effects *Models, Biological Monte Carlo Method Pheromones/pharmacology Population Density *Social Behavior Transportation;"
Notes:"MedlineDussutour, Audrey Fourcassie, Vincent Helbing, Dirk Deneubourg, Jean-Louis eng England 2004/03/06 Nature. 2004 Mar 4; 428(6978):70-3. doi: 10.1038/nature02345"

 
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