Searched for: subject%3A%22Cell%255C+BE%22
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document
Peng, Q. (author), Vermolen, F.J. (author), Weihs, D. (author)
Cancer cell migration between different body parts is the driving force behind cancer metastasis, which causes mortality of patients. Migration of cancer cells often proceeds by penetration through narrow cavities in possibly stiff tissues. In our previous work [12], a model for the evolution of cell geometry is developed, and in the current...
book chapter 2023
document
Peng, Q. (author), Vermolen, F.J. (author), Weihs, D. (author)
The phenomenological model for cell shape deformation and cell migration Chen (BMM 17:1429–1450, 2018), Vermolen and Gefen (BMM 12:301–323, 2012), is extended with the incorporation of cell traction forces and the evolution of cell equilibrium shapes as a result of cell differentiation. Plastic deformations of the extracellular matrix are...
journal article 2021
document
Chen, J. (author), Weihs, Daphne (author), Vermolen, F.J. (author)
More than eighty percent of pancreatic cancer involves ductal adenocarcinoma with an abundant desmoplastic extracellular matrix surrounding the solid tumor entity. This aberrant tumor microenvironment facilitates a strong resistance of pancreatic cancer to medication. Although various therapeutic strategies have been reported to be effective...
journal article 2019
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Chen, J. (author), Weihs, Daphne (author), van Dijk, Marcel (author), Vermolen, F.J. (author)
Cell migration plays an essential role in cancer metastasis. In cancer invasion through confined spaces, cells must undergo extensive deformation, which is a capability related to their metastatic potentials. Here, we simulate the deformation of the cell and nucleus during invasion through a dense, physiological microenvironment by developing...
journal article 2018
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Chen, J. (author), Weihs, Daphne (author), Vermolen, F.J. (author)
Cell migration, known as an orchestrated movement of cells, is crucially important for wound healing, tumor growth, immune response as well as other biomedical processes. This paper presents a cell-based model to describe cell migration in non-isotropic fibrin networks around pancreatic tumor islets. This migration is determined by the...
journal article 2017
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Vermolen, F.J. (author), Van der Meijden, R.P. (author), Van Es, M. (author), Gefen, A. (author), Weihs, D. (author)
A phenomenological model is formulated to model the early stages of tumor formation. The model is based on a cell-based formalism, where each cell is represented as a circle or sphere in two-and three dimensional simulations, respectively. The model takes into account constituent cells, such as epithelial cells, tumor cells, and T-cells that...
journal article 2015
Searched for: subject%3A%22Cell%255C+BE%22
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