Physical Review Letters · 1996 · 109 citations · 8 references
EngineeringCytoskeletonOptogeneticsCellular PhysiologyTrajectory AnalysisNeural Retinal CellsRetinal CellsGanglion CellTransport PhenomenaSingle Cell MotionBiophysicsMorphogenesisBrownian MotionCell BiologyPattern FormationDevelopmental BiologySingle-cell BiologyCell MigrationCell MotilityMedicine
We investigate the motion of individual pigmented retinal cells in aggregates of neural retinal cells obtained from chicken embryos. Individual cells in aggregates move randomly in the absence of chemical or adhesion gradients: the power spectrum of position and velocity versus time correspond to Brownian motion and the velocities are uncorrelated in time. Thus a quasithermal model of cell migration like the extended Potts model is appropriate. We also measure cell diffusivity and the cell velocity distribution. The results support the idea that collections of embryonic cells behave as liquids with membrane fluctuations playing the role of temperature.
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Fundamentals of Statistical and Thermal Physics
F. Reif, H. L. Scott · American Journal of Physics · 1998 · 2.6K citations
<i>Fundamentals of Statistical and Thermal Physics</i>
F. Reif, Stuart A. Rice · Physics Today · 1967 · 1.4K citations
Reconstruction of Tissues by Dissociated Cells
Malcolm S. Steinberg · Science · 1963 · 1.1K citations
Regenerative Medicine, Tissue Engineering, Dissociated Cells +7
Capping protein levels influence actin assembly and cell motility in dictyostelium
Christopher Hug, Patrick Y. Jay, Indira Reddy et al. · Cell · 1995 · 170 citations · Full text