EGBERTS, Ginger

Full Name
EGBERTS, Ginger
Email
ginger.egberts@uhasselt.be
 
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Publications

Results 1-10 of 10 (Search time: 0.002 seconds).

Issue DateTitleContributor(s)TypeCat.
12023Code 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
22023Stability of a two-dimensional biomorphoelastic model for post-burn contractionEGBERTS, Ginger; VERMOLEN, Fred; van Zuijlen, PaulJournal ContributionA1
32023High-speed predictions of post-burn contraction using a neural network trained on 2D-finite element simulationsEGBERTS, Ginger; VERMOLEN, Fred; van Zuijlen, PaulJournal ContributionA1
42023In silico exploration of post-burn contraction using uncertainty quantificationEGBERTS, GingerTheses and DissertationsT1
52022A Bayesian finite-element trained machine learning approach for predicting post-burn contractionEGBERTS, Ginger; Schaaphok, Marianne; VERMOLEN, Fred; van Zuijlen, PaulJournal ContributionA1
62022Sensitivity of a two-dimensional biomorphoelastic model for post-burn contractionEGBERTS, Ginger; Desmouliere, Alexis; VERMOLEN, Fred; van Zuijlen, PaulJournal ContributionA1
72021Sensitivity and feasibility of a one-dimensional morphoelastic model for post-burn contractionEGBERTS, Ginger; VERMOLEN, Fred; van Zuijlen, PaulJournal ContributionA1
82021A one-dimensional morphoelastic model for burn injuries: sensitivity analysis and a feasibility studyEGBERTS, Ginger; VERMOLEN, Fred; Van Zuijlen, PaulPreprintO
92021A one-dimensional morphoelastic model for burn injuries: stability analysis, numerical validation and biological interpretation of (in)stabilityEGBERTS, Ginger; VERMOLEN, Fred; Van Zuijlen, PaulPreprintO
102021Stability of a one-dimensional morphoelastic model for post-burn contractionEGBERTS, Ginger; VERMOLEN, Fred; van Zuijlen, PaulJournal ContributionA1