Diffusion bridges fitted to Ayu fish counts show daily migration is less randomized and intermittent than intraday migration via distinct Feller indices.
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UNVERDICTED 2representative citing papers
A nonlinear analytical theory derived via asymptotic analysis identifies four dynamical regimes for heterogeneous chemotactic cell collectives and predicts a balanced mixing-localization regime for dendritic and T cell co-migration enabled by strong chemoattractant consumption.
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Multiple timescales in collective motion: daily and intraday upstream fish migration focusing on Feller condition
Diffusion bridges fitted to Ayu fish counts show daily migration is less randomized and intermittent than intraday migration via distinct Feller indices.
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A nonlinear theory for chemotactic fronts of mixed populations
A nonlinear analytical theory derived via asymptotic analysis identifies four dynamical regimes for heterogeneous chemotactic cell collectives and predicts a balanced mixing-localization regime for dendritic and T cell co-migration enabled by strong chemoattractant consumption.