Birs- 19w5080: Bridging Cellular and Tissue Dynamics from Normal Development to Cancer: Mathematical, Computational, and Experimental Approaches

  1. Title:
    Neural Crest Cell Migration and Tissue Dynamics During Vertebrate Embryogenesis

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  2. Title:
    Group advantage in chemotaxis of neural crest cells

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  3. Title:
    Study the mechanical effect in collective movement of two cells using Cellular Potts Model

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  4. Title:
    Leader cells in collective chemotaxis: optimality and tradeoffs

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  5. Title:
    Collective behavior in co-cultures of cells with different mechano-adhesive properties

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  6. Title:
    The essential role of feedback in the control of proliferation: implications for normal biology and cancer

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  7. Title:
    Investigating the mechanisms underlying collective migration of heterogeneous groups of cells during tissue morphogenesis and cancer metastasis

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  8. Title:
    Mean Cluster Approach to Active Matter

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  9. Title:
    Unravelling a mechanobiochemical model for 3D cell migration

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  10. Title:
    Modelling Epithelial Morphogenesis

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  11. Title:
    Exploring Dynamically Branching Structures by Agent-Based Modeling

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  12. Title:
    A novel approach to investigate transitions in tutor tissue architecture using computational topology

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  13. Title:
    Pattern formation in a membrane-bulk model for cell polarity and intracellular oscillations

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  14. Title:
    Tissue engineered models to probe cell-microenvironmental interactions in Cancer and Regeneration

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  15. Title:
    Biological lattice-gas cellular automaton models for the analysis of collective effects in cancer invasion

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  16. Title:
    Coupling reaction-diffusion to cell shape to unravel emergent cell signalling behaviour

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  17. Title:
    Quantifying zebrafish pattern variability and model robustness

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  18. Title:
    Inference of cell state transition rates in heterogeneous stem cell populations

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  19. Title:
    From Networks to Function – Computational Models of Organogenesis

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  20. Title:
    Bayesian inference reveals stochastic amplification of gene expression oscillations during embryonic neurogenesis

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