Pages that link to "Item:Q1648960"
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The following pages link to How nucleus mechanics and ECM microstructure influence the invasion of single cells and multicellular aggregates (Q1648960):
Displaying 11 items.
- Mathematical oncology (Q1648952) (← links)
- The mathematics of mechanobiology and cell signaling. Abstracts from the workshop held February 25--March 3, 2018 (Q1731976) (← links)
- A numerical model suggests the interplay between nuclear plasticity and stiffness during a perfusion assay (Q1749051) (← links)
- A cellular Potts model simulating cell migration on and in matrix environments (Q1942625) (← links)
- Mechanical cell-cell communication in fibrous networks: the importance of network geometry (Q2012311) (← links)
- Effective interface conditions for continuum mechanical models describing the invasion of multiple cell populations through thin membranes (Q2060800) (← links)
- Multi-level mathematical models for cell migration in confined environments (Q2088502) (← links)
- The impact of elastic deformations of the extracellular matrix on cell migration (Q2173380) (← links)
- Derivation and Application of Effective Interface Conditions for Continuum Mechanical Models of Cell Invasion through Thin Membranes (Q5239839) (← links)
- The influence of nucleus mechanics in modelling adhesion-independent cell migration in structured and confined environments (Q6049023) (← links)
- Theramechanics: how acting on mechanics will help conceive new medical treatments (Q6192393) (← links)