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Phase transition in the collective migration of tissue cells: Experiment and model

Physical Review E · 2006 · Vol. 74(6) · pp. 061908–061908
Bálint SzabóGergely J. SzöllősiBalázs GönciZsófia JurányiDávid SelmecziTamás Vicsek

Abstract

We have recorded the swarming-like collective migration of a large number of keratocytes (tissue cells obtained from the scales of goldfish) using long-term videomicroscopy. By increasing the overall density of the migrating cells, we have been able to demonstrate experimentally a kinetic phase transition from a disordered into an ordered state. Near the critical density a complex picture emerges with interacting clusters of cells moving in groups. Motivated by these experiments we have constructed a flocking model that exhibits a continuous transition to the ordered phase, while assuming only short-range interactions and no explicit information about the knowledge of the directions of motion of neighbors. Placing cells in microfabricated arenas we found spectacular whirling behavior which we could also reproduce in simulations.

Micro and Nano RoboticsCellular Mechanics and InteractionsDiffusion and Search DynamicsFlocking (texture)Collective motionPhase transitionCollective behaviorKinetic energyStatistical physicsPhysicsCondensed matter physicsClassical mechanicsQuantum mechanics

MeSH terms

AnimalsCell AggregationCell CommunicationCells, CulturedComputer SimulationGoldfishModels, BiologicalKeratinocytesPhase Transition

Funding

  • Hungarian Scientific Research Fund
Citations
520
FWCI
4.46
field-weighted impact
References
18
Percentile
94%
vs. same field & year
Citations per year
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References
Novel Type of Phase Transition in a System of Self-Driven Particles
Physical Review Letters · 1995 · 7,265 citations
Coordination of groups of mobile autonomous agents using nearest neighbor rules
IEEE Transactions on Automatic Control · 2003 · 8,369 citations
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