Collective response to perturbations in a data-driven fish school model

Fish schools are able to display a rich variety of collective states and behavioural responses when they are confronted to threats. However a school's response to perturbations may be different depending on its collective state. Here we use a previously developed data-driven fish school model t...

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Published inarXiv.org
Main Authors Calovi, Daniel S, Lopez, Ugo, Schuhmacher, Paul, Chaté, Hugues, Sire, Clément, Theraulaz, Guy
Format Paper Journal Article
LanguageEnglish
Published Ithaca Cornell University Library, arXiv.org 05.01.2015
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Abstract Fish schools are able to display a rich variety of collective states and behavioural responses when they are confronted to threats. However a school's response to perturbations may be different depending on its collective state. Here we use a previously developed data-driven fish school model to investigate how a single or a small number of perturbing individuals affect the long-term behaviour of a school depending on its collective state. These perturbing fish are characterised by a set of attraction and alignment parameters different from those of the main population. We find that the responsiveness of the school to the perturbation is maximum near the transition region between milling and schooling states where the school exhibits multistability and regularly shifts between these two states. We also find that a significant school's response to a perturbation only happens below a certain threshold of the noise to social interactions ratio.
AbstractList Fish schools are able to display a rich variety of collective states and behavioural responses when they are confronted to threats. However a school's response to perturbations may be different depending on its collective state. Here we use a previously developed data-driven fish school model to investigate how a single or a small number of perturbing individuals affect the long-term behaviour of a school depending on its collective state. These perturbing fish are characterised by a set of attraction and alignment parameters different from those of the main population. We find that the responsiveness of the school to the perturbation is maximum near the transition region between milling and schooling states where the school exhibits multistability and regularly shifts between these two states. We also find that a significant school's response to a perturbation only happens below a certain threshold of the noise to social interactions ratio.
J. R. Soc. Interface 12 104 20141362 (2015) Fish schools are able to display a rich variety of collective states and behavioural responses when they are confronted to threats. However a school's response to perturbations may be different depending on its collective state. Here we use a previously developed data-driven fish school model to investigate how a single or a small number of perturbing individuals affect the long-term behaviour of a school depending on its collective state. These perturbing fish are characterised by a set of attraction and alignment parameters different from those of the main population. We find that the responsiveness of the school to the perturbation is maximum near the transition region between milling and schooling states where the school exhibits multistability and regularly shifts between these two states. We also find that a significant school's response to a perturbation only happens below a certain threshold of the noise to social interactions ratio.
Author Theraulaz, Guy
Chaté, Hugues
Lopez, Ugo
Sire, Clément
Calovi, Daniel S
Schuhmacher, Paul
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BackLink https://doi.org/10.48550/arXiv.1409.6430$$DView paper in arXiv
https://doi.org/10.1098/rsif.2014.1362$$DView published paper (Access to full text may be restricted)
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Snippet Fish schools are able to display a rich variety of collective states and behavioural responses when they are confronted to threats. However a school's response...
J. R. Soc. Interface 12 104 20141362 (2015) Fish schools are able to display a rich variety of collective states and behavioural responses when they are...
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Noise threshold
Physics - Biological Physics
Quantitative Biology - Quantitative Methods
Social factors
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