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Bidirectional interactions facilitate the integration of a robot into a shoal of zebrafish Danio rerio

Many studies on collective animal behavior seek to identify the individual rules that underlie collective patterns. However, it was not until the recent advancements of micro-electronic and embedded systems that scientists were able to create mixed groups of sensor-rich robots and animals and study...

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Autores principales: Papaspyros, Vaios, Bonnet, Frank, Collignon, Bertrand, Mondada, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6701756/
https://www.ncbi.nlm.nih.gov/pubmed/31430290
http://dx.doi.org/10.1371/journal.pone.0220559
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author Papaspyros, Vaios
Bonnet, Frank
Collignon, Bertrand
Mondada, Francesco
author_facet Papaspyros, Vaios
Bonnet, Frank
Collignon, Bertrand
Mondada, Francesco
author_sort Papaspyros, Vaios
collection PubMed
description Many studies on collective animal behavior seek to identify the individual rules that underlie collective patterns. However, it was not until the recent advancements of micro-electronic and embedded systems that scientists were able to create mixed groups of sensor-rich robots and animals and study collective interactions from the within a bio-hybrid group. In recent work, scientists showed that a robot-controlled lure is capable of influencing the collective decisions of zebrafish Danio rerio shoals moving in a ring and a two-room setup. Here, we study a closely related topic, that is, the collective behavior patterns that emerge when different behavioral models are reproduced through the use of a robotic lure. We design a behavioral model that alternates between obeying and disobeying the collective motion decisions in order to become socially accepted by the shoal members. Subsequently, we compare it against two extreme cases: a reactive and an imposing decision model. For this, we use spatial, directional and information theoretic metrics to measure the degree of integration of the robotic agent. We show that our model leads to similar information flow as in freely roaming shoals of zebrafish and exhibits leadership skills more often than the open-loop models. Thus, in order for the robot to achieve higher degrees of integration in the zebrafish shoal, it must, like any other shoal member, be bidirectionally involved in the decision making process. These findings provide insight on the ability to form mixed societies of animals and robots and yield promising results on the degree to which a robot can influence the collective decision making.
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spelling pubmed-67017562019-09-04 Bidirectional interactions facilitate the integration of a robot into a shoal of zebrafish Danio rerio Papaspyros, Vaios Bonnet, Frank Collignon, Bertrand Mondada, Francesco PLoS One Research Article Many studies on collective animal behavior seek to identify the individual rules that underlie collective patterns. However, it was not until the recent advancements of micro-electronic and embedded systems that scientists were able to create mixed groups of sensor-rich robots and animals and study collective interactions from the within a bio-hybrid group. In recent work, scientists showed that a robot-controlled lure is capable of influencing the collective decisions of zebrafish Danio rerio shoals moving in a ring and a two-room setup. Here, we study a closely related topic, that is, the collective behavior patterns that emerge when different behavioral models are reproduced through the use of a robotic lure. We design a behavioral model that alternates between obeying and disobeying the collective motion decisions in order to become socially accepted by the shoal members. Subsequently, we compare it against two extreme cases: a reactive and an imposing decision model. For this, we use spatial, directional and information theoretic metrics to measure the degree of integration of the robotic agent. We show that our model leads to similar information flow as in freely roaming shoals of zebrafish and exhibits leadership skills more often than the open-loop models. Thus, in order for the robot to achieve higher degrees of integration in the zebrafish shoal, it must, like any other shoal member, be bidirectionally involved in the decision making process. These findings provide insight on the ability to form mixed societies of animals and robots and yield promising results on the degree to which a robot can influence the collective decision making. Public Library of Science 2019-08-20 /pmc/articles/PMC6701756/ /pubmed/31430290 http://dx.doi.org/10.1371/journal.pone.0220559 Text en © 2019 Papaspyros et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Papaspyros, Vaios
Bonnet, Frank
Collignon, Bertrand
Mondada, Francesco
Bidirectional interactions facilitate the integration of a robot into a shoal of zebrafish Danio rerio
title Bidirectional interactions facilitate the integration of a robot into a shoal of zebrafish Danio rerio
title_full Bidirectional interactions facilitate the integration of a robot into a shoal of zebrafish Danio rerio
title_fullStr Bidirectional interactions facilitate the integration of a robot into a shoal of zebrafish Danio rerio
title_full_unstemmed Bidirectional interactions facilitate the integration of a robot into a shoal of zebrafish Danio rerio
title_short Bidirectional interactions facilitate the integration of a robot into a shoal of zebrafish Danio rerio
title_sort bidirectional interactions facilitate the integration of a robot into a shoal of zebrafish danio rerio
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6701756/
https://www.ncbi.nlm.nih.gov/pubmed/31430290
http://dx.doi.org/10.1371/journal.pone.0220559
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