VERMOLEN, Fred

Full Name
VERMOLEN, Fred
Email
fred.vermolen@uhasselt.be
 
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Publications

Results 1-20 of 31 (Search time: 0.003 seconds).

Issue DateTitleContributor(s)TypeCat.
12025Stability of Equilibria in a One Dimensional Model for Morpho–Poroelasticity for Soft TissuesASGHAR, Sabia; VERMOLEN, FredProceedings PaperC1
22025How can mathematics be used to improve burn care?EGBERTS, Ginger; VERMOLEN, Fred; Peng, Qiyao; Korkmaz, H.Ibrahim; van Zuijlen, PaulJournal ContributionA2
32025Biomorphoelasticity alone: limitations in modeling post-burn contraction and hypertrophy without finite strainsEGBERTS, Ginger; VERMOLEN, Fred; van Zuijlen, PaulJournal ContributionA1
42024Do Cancer Cells Collaborate During Metastasis?VERMOLEN, Fred; PENG, Qiyao; WEIHS, Daphne; Laporte, S; Benoit, A; Skalli, WProceedings PaperC1
52023Code supporting the paper: High-speed predictions of post-burn contraction using a neural network trained on 2D-finite element simulationsEgberts, Ginger; VERMOLEN, Fred; Zuijlen, Paul van; Egberts, GingerDatasetDS
62023A Spatial Markov Chain Cellular Automata Model for the Spread of VirusesLu, Jenny; VERMOLEN, Fred; Tavares, JMRS; Bourauel, C; Geris, L; Slote, JVProceedings PaperC1
72023Predicting the Efficacy of Stalk Cells Following Leading Cells Through a Micro-Channel Using Morphoelasticity and a Cell Shape Evolution ModelPENG, Qiyao; VERMOLEN, Fred; Weihs, D.; Tavares, JMRS; Bourauel, L.; Geris, L; Slote, JVProceedings PaperC1
82023Physical confinement and cell proximity increase cell migration rates and invasiveness: A mathematical model of cancer cell invasion through flexible channelsPENG, Qiyao; VERMOLEN, Fred; Weihs, DaphneJournal ContributionA1
92023Analysis of linearized elasticity models with point sources in weighted Sobolev spaces: applications in tissue contractionBoon, Wietse M.; VERMOLEN, FredJournal ContributionA1
102023High-speed predictions of post-burn contraction using a neural network trained on 2D-finite element simulationsEGBERTS, Ginger; VERMOLEN, Fred; van Zuijlen, PaulJournal ContributionA1
112023Mathematical model of mechano-sensing and mechanically induced collective motility of cells on planar elastic substratesAhmed, Riham K.; Abdalrahman, Tamer; Davies, Neil H.; VERMOLEN, Fred; Franz, ThomasJournal ContributionA1
122023Stability of a two-dimensional biomorphoelastic model for post-burn contractionEGBERTS, Ginger; VERMOLEN, Fred; van Zuijlen, PaulJournal ContributionA1
132022Data for Mathematical Model of Mechanosensing and Mechanically Induced Collective Motility of Cells on Planar Elastic SubstratesAhmed, Riham; Abdalrahman, Tamer; Davies, Neil; VERMOLEN, Fred; Franz, ThomasDatasetDS
142022On the fundamental solutions-based inversion of Laplace matricesVERMOLEN, Fred; den Bakker, D. R.; Vuik, C.Journal ContributionA1
152022Comparison between a phenomenological approach and a morphoelasticity approach regarding the displacement of extracellular matrixPENG, Qiyao; Gorter, W. S.; VERMOLEN, FredJournal ContributionA1
162022A Bayesian finite-element trained machine learning approach for predicting post-burn contractionEGBERTS, Ginger; Schaaphok, Marianne; VERMOLEN, Fred; van Zuijlen, PaulJournal ContributionA1
172022Upscaling between an Agent-Based Model (Smoothed Particle Approach) and a Continuum-Based Model for Skin ContractionsPENG, Qiyao; VERMOLEN, FredJournal ContributionA1
182022Point forces in elasticity equation and their alternatives in multi dimensionsPENG, Qiyao; VERMOLEN, FredJournal ContributionA1
192022The future of burn care from a complexity science perspectiveVan Zuijlen, Paul; Korkmaz, H; Sheraton, Vivek; Haanstra, Tsjitske; Pijpe, Anouk; De Vries, Annebeth; Van Der Vlies, Cornelis; Bosma, Eelke; De Jong, Evelien; Middelkoop, Esther; VERMOLEN, Fred; Sloot, PeterJournal ContributionA1
202022Numerical Methods to Compute Stresses and Displacements from Cellular Forces: Application to the Contraction of TissuePENG, Qiyao; VERMOLEN, FredJournal ContributionA1