How cellular movement determines the collective force generated by the Dictyostelium discoideum slug.
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Simulating the mammalian blastocyst--molecular and mechanical interactions pattern the embryoA sub-cellular viscoelastic model for cell population mechanicsStrategies of eradicating glioma cells: a multi-scale mathematical model with MiR-451-AMPK-mTOR controlDirect mechanical force measurements during the migration of Dictyostelium slugs using flexible substrata.Wound healing revised: a novel reepithelialization mechanism revealed by in vitro and in silico models.Nonlinear modelling of cancer: bridging the gap between cells and tumoursThe role of the microenvironment in tumor growth and invasionThe anomalous diffusion of a tumor invading with different surrounding tissuesMulti-scale models of cell and tissue dynamics.Regulation of cell proliferation and migration in glioblastoma: new therapeutic approachMultiscale cancer modelingA 3D self-organizing multicellular epidermis model of barrier formation and hydration with realistic cell morphology based on EPISIM.Progress and perspectives in signal transduction, actin dynamics, and movement at the cell and tissue level: lessons from DictyosteliumA continuous-time model of centrally coordinated motion with random switching.Thrombin-induced contraction in alveolar epithelial cells probed by traction microscopy.Role of boundary conditions in an experimental model of epithelial wound healing.Modeling the effect of deregulated proliferation and apoptosis on the growth dynamics of epithelial cell populations in vitro.A model of fibroblast motility on substrates with different rigidities.Mathematically modelling the effects of counting factor in Dictyostelium discoideum.Multicellular tumor spheroid in an off-lattice Voronoi-Delaunay cell model.A Multicellular Model of Intestinal Crypt Buckling and Fission.Using a mathematical model of cadherin-based adhesion to understand the function of the actin cytoskeleton.A hybrid model of tumor-stromal interactions in breast cancer.Understanding streaming in Dictyostelium discoideum: theory versus experiments.From a discrete to a continuum model of cell dynamics in one dimension.Modeling emergent tissue organization involving high-speed migrating cells in a flow equilibrium.Continuum versus discrete model: a comparison for multicellular tumour spheroids.Migration ofDictyosteliumslugs: Anterior-like cells may provide the motive force for the prespore zone
P2860
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P2860
How cellular movement determines the collective force generated by the Dictyostelium discoideum slug.
description
2004 nî lūn-bûn
@nan
2004年の論文
@ja
2004年学术文章
@wuu
2004年学术文章
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2004年学术文章
@zh-cn
2004年学术文章
@zh-hans
2004年学术文章
@zh-my
2004年学术文章
@zh-sg
2004年學術文章
@yue
2004年學術文章
@zh-hant
name
How cellular movement determin ...... Dictyostelium discoideum slug.
@en
How cellular movement determin ...... Dictyostelium discoideum slug.
@nl
type
label
How cellular movement determin ...... Dictyostelium discoideum slug.
@en
How cellular movement determin ...... Dictyostelium discoideum slug.
@nl
prefLabel
How cellular movement determin ...... Dictyostelium discoideum slug.
@en
How cellular movement determin ...... Dictyostelium discoideum slug.
@nl
P1476
How cellular movement determin ...... Dictyostelium discoideum slug.
@en
P2093
Hans G Othmer
John C Dallon
P304
P356
10.1016/J.JTBI.2004.06.015
P407
P577
2004-11-01T00:00:00Z