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Inferring the rules of interaction of shoaling fish
by
Ward, Ashley J. W
, Sumpter, David J. T
, Schaerf, Timothy M
, Perna, Andrea
, Mann, Richard P
, Herbert-Read, James E
in
Algorithms
/ Animal behavior
/ Animals
/ Behavior, Animal - physiology
/ Biological Sciences
/ Birds
/ collective animal behavior
/ Coordinate systems
/ Ecosystems
/ Fish
/ Fish scales
/ fish shoals
/ Fishes - physiology
/ Freshwater
/ Gambusia holbrooki
/ group motion
/ Machine learning
/ Models, Biological
/ Models, Statistical
/ Movement - physiology
/ Neighborhoods
/ Physical Sciences
/ Poecilia - physiology
/ Schools of fish
/ self-organization
/ self-propelled particles
/ Shoals
/ Social Behavior
/ Social interaction
/ Software
/ Swimming
/ Time Factors
2011
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Inferring the rules of interaction of shoaling fish
by
Ward, Ashley J. W
, Sumpter, David J. T
, Schaerf, Timothy M
, Perna, Andrea
, Mann, Richard P
, Herbert-Read, James E
in
Algorithms
/ Animal behavior
/ Animals
/ Behavior, Animal - physiology
/ Biological Sciences
/ Birds
/ collective animal behavior
/ Coordinate systems
/ Ecosystems
/ Fish
/ Fish scales
/ fish shoals
/ Fishes - physiology
/ Freshwater
/ Gambusia holbrooki
/ group motion
/ Machine learning
/ Models, Biological
/ Models, Statistical
/ Movement - physiology
/ Neighborhoods
/ Physical Sciences
/ Poecilia - physiology
/ Schools of fish
/ self-organization
/ self-propelled particles
/ Shoals
/ Social Behavior
/ Social interaction
/ Software
/ Swimming
/ Time Factors
2011
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Inferring the rules of interaction of shoaling fish
by
Ward, Ashley J. W
, Sumpter, David J. T
, Schaerf, Timothy M
, Perna, Andrea
, Mann, Richard P
, Herbert-Read, James E
in
Algorithms
/ Animal behavior
/ Animals
/ Behavior, Animal - physiology
/ Biological Sciences
/ Birds
/ collective animal behavior
/ Coordinate systems
/ Ecosystems
/ Fish
/ Fish scales
/ fish shoals
/ Fishes - physiology
/ Freshwater
/ Gambusia holbrooki
/ group motion
/ Machine learning
/ Models, Biological
/ Models, Statistical
/ Movement - physiology
/ Neighborhoods
/ Physical Sciences
/ Poecilia - physiology
/ Schools of fish
/ self-organization
/ self-propelled particles
/ Shoals
/ Social Behavior
/ Social interaction
/ Software
/ Swimming
/ Time Factors
2011
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Journal Article
Inferring the rules of interaction of shoaling fish
2011
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Overview
Collective motion, where large numbers of individuals move synchronously together, is achieved when individuals adopt interaction rules that determine how they respond to their neighbors’ movements and positions. These rules determine how group-living animals move, make decisions, and transmit information between individuals. Nonetheless, few studies have explicitly determined these interaction rules in moving groups, and very little is known about the interaction rules of fish. Here, we identify three key rules for the social interactions of mosquitofish (Gambusia holbrooki): (i) Attraction forces are important in maintaining group cohesion, while we find only weak evidence that fish align with their neighbor’s orientation; (ii) repulsion is mediated principally by changes in speed; (iii) although the positions and directions of all shoal members are highly correlated, individuals only respond to their single nearest neighbor. The last two of these rules are different from the classical models of collective animal motion, raising new questions about how fish and other animals self-organize on the move.
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