Imitation Combined with a Characteristic Stimulus Duration Results in Robust Collective Decision-Making.

For group-living animals, reaching consensus to stay cohesive is crucial for their fitness, particularly when collective motion starts and stops. Understanding the decision-making at individual and collective levels upon sudden disturbances is central in the study of collective animal behavior, and...

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Main Authors: Sylvain Toulet, Jacques Gautrais, Richard Bon, Fernando Peruani
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4605660?pdf=render
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spelling doaj-8d9e4473dd874b0fb9aa3bba739ce4d82020-11-25T01:35:14ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-011010e014018810.1371/journal.pone.0140188Imitation Combined with a Characteristic Stimulus Duration Results in Robust Collective Decision-Making.Sylvain TouletJacques GautraisRichard BonFernando PeruaniFor group-living animals, reaching consensus to stay cohesive is crucial for their fitness, particularly when collective motion starts and stops. Understanding the decision-making at individual and collective levels upon sudden disturbances is central in the study of collective animal behavior, and concerns the broader question of how information is distributed and evaluated in groups. Despite the relevance of the problem, well-controlled experimental studies that quantify the collective response of groups facing disruptive events are lacking. Here we study the behavior of small-sized groups of uninformed individuals subject to the departure and stop of a trained conspecific. We find that the groups reach an effective consensus: either all uninformed individuals follow the trained one (and collective motion occurs) or none does. Combining experiments and a simple mathematical model we show that the observed phenomena results from the interplay between simple mimetic rules and the characteristic duration of the stimulus, here, the time during which the trained individual is moving away. The proposed mechanism strongly depends on group size, as observed in the experiments, and even if group splitting can occur, the most likely outcome is always a coherent collective group response (consensus). The prevalence of a consensus is expected even if the groups of naives face conflicting information, e.g. if groups contain two subgroups of trained individuals, one trained to stay and one trained to leave. Our results indicate that collective decision-making and consensus in (small) animal groups are likely to be self-organized phenomena that do not involve concertation or even communication among the group members.http://europepmc.org/articles/PMC4605660?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Sylvain Toulet
Jacques Gautrais
Richard Bon
Fernando Peruani
spellingShingle Sylvain Toulet
Jacques Gautrais
Richard Bon
Fernando Peruani
Imitation Combined with a Characteristic Stimulus Duration Results in Robust Collective Decision-Making.
PLoS ONE
author_facet Sylvain Toulet
Jacques Gautrais
Richard Bon
Fernando Peruani
author_sort Sylvain Toulet
title Imitation Combined with a Characteristic Stimulus Duration Results in Robust Collective Decision-Making.
title_short Imitation Combined with a Characteristic Stimulus Duration Results in Robust Collective Decision-Making.
title_full Imitation Combined with a Characteristic Stimulus Duration Results in Robust Collective Decision-Making.
title_fullStr Imitation Combined with a Characteristic Stimulus Duration Results in Robust Collective Decision-Making.
title_full_unstemmed Imitation Combined with a Characteristic Stimulus Duration Results in Robust Collective Decision-Making.
title_sort imitation combined with a characteristic stimulus duration results in robust collective decision-making.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description For group-living animals, reaching consensus to stay cohesive is crucial for their fitness, particularly when collective motion starts and stops. Understanding the decision-making at individual and collective levels upon sudden disturbances is central in the study of collective animal behavior, and concerns the broader question of how information is distributed and evaluated in groups. Despite the relevance of the problem, well-controlled experimental studies that quantify the collective response of groups facing disruptive events are lacking. Here we study the behavior of small-sized groups of uninformed individuals subject to the departure and stop of a trained conspecific. We find that the groups reach an effective consensus: either all uninformed individuals follow the trained one (and collective motion occurs) or none does. Combining experiments and a simple mathematical model we show that the observed phenomena results from the interplay between simple mimetic rules and the characteristic duration of the stimulus, here, the time during which the trained individual is moving away. The proposed mechanism strongly depends on group size, as observed in the experiments, and even if group splitting can occur, the most likely outcome is always a coherent collective group response (consensus). The prevalence of a consensus is expected even if the groups of naives face conflicting information, e.g. if groups contain two subgroups of trained individuals, one trained to stay and one trained to leave. Our results indicate that collective decision-making and consensus in (small) animal groups are likely to be self-organized phenomena that do not involve concertation or even communication among the group members.
url http://europepmc.org/articles/PMC4605660?pdf=render
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