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Author (up) Parisi, D.R.; Soria, S.A.; Josens, R. url  doi
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  Title Faster-is-slower effect in escaping ants revisited: Ants do not behave like humans Type Journal Article
  Year 2015 Publication Safety Science Abbreviated Journal  
  Volume 72 Issue Pages 274-282  
  Keywords Emergency; Evacuation; Egress; Ant egress; Crowd egress; Faster is slower; Pedestrian evacuation; Pedestrian dynamics  
  Abstract In this work we studied the trajectories, velocities and densities of ants when egressing under controlled levels of stress produced by a chemical repellent at different concentrations. We found that, unlike other animals escaping under life-and-death conditions and pedestrian simulations, ants do not produce a higher density zone near the exit door. Instead, ants are uniformly distributed over the available space allowing for efficient evacuations. Consequently, the faster-is-slower effect observed in ants (Soria et al., 2012) is clearly of a different nature to that predicted by de social force model. In the case of ants, the minimum evacuation time is correlated with the lower probability of taking backward steps. Thus, as biological model ants have important differences that make their use inadvisable for the design of human facilities.  
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  Series Volume Series Issue Edition  
  ISSN 0925-7535 ISBN Medium  
  Area Expedition Conference  
  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 6161  
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