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Roeland Merks
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2020 – today
- 2024
- [j13]Martijn A. de Jong, Esmée Adegeest, Noémie M. L. P. Bérenger-Currias, Maria Mircea, Roeland M. H. Merks, Stefan Semrau:
The shapes of elongating gastruloids are consistent with convergent extension driven by a combination of active cell crawling and differential adhesion. PLoS Comput. Biol. 20(2) (2024) - 2023
- [j12]Daipeng Chen, Zary Forghany, Xinxin Liu, Haijiang Wang, Roeland M. H. Merks, David A. Baker:
A new model of Notch signalling: Control of Notch receptor cis-inhibition via Notch ligand dimers. PLoS Comput. Biol. 19(1) (2023) - 2022
- [j11]Leonie van Steijn, Inge M. N. Wortel, Clément Sire, Loïc Dupré, Guy Theraulaz, Roeland M. H. Merks:
Computational modelling of cell motility modes emerging from cell-matrix adhesion dynamics. PLoS Comput. Biol. 18(2) (2022)
2010 – 2019
- 2018
- [j10]Sonja E. M. Boas, Joao Carvalho, Marloes van den Broek, Ester M. Weijers, Marie-José Goumans, Pieter Koolwijk, Roeland M. H. Merks:
A local uPAR-plasmin-TGFβ1 positive feedback loop in a qualitative computational model of angiogenic sprouting explains the in vitro effect of fibrinogen variants. PLoS Comput. Biol. 14(7) (2018) - 2017
- [j9]Milan J. A. van Hoek, Roeland M. H. Merks:
Emergence of microbial diversity due to cross-feeding interactions in a spatial model of gut microbial metabolism. BMC Syst. Biol. 11(1): 56:1-56:18 (2017) - [j8]András Szabó, Roeland M. H. Merks:
Blood vessel tortuosity selects against evolution of aggressive tumor cells in confined tissue environments: A modeling approach. PLoS Comput. Biol. 13(7) (2017) - 2016
- [i3]Roeland Merks, Marie-France Sagot:
Tackling Big Data in the Life Sciences - Introduction to the Special Theme. ERCIM News 2016(104) (2016) - [i2]Elisabeth G. Rens, Sonja E. M. Boas, Roeland M. H. Merks:
Modelling the Growth of Blood Vessels in Health and Disease. ERCIM News 2016(104) (2016) - 2015
- [j7]Sonja E. M. Boas, María I. Navarro Jimenez, Roeland M. H. Merks, Joke G. Blom:
A global sensitivity analysis approach for morphogenesis models. BMC Syst. Biol. 9: 85 (2015) - [j6]Sonja E. M. Boas, Roeland M. H. Merks:
Tip cell overtaking occurs as a side effect of sprouting in computational models of angiogenesis. BMC Syst. Biol. 9: 86 (2015) - 2014
- [j5]René F. M. van Oers, Elisabeth G. Rens, Danielle J. LaValley, Cynthia A. Reinhart-King, Roeland M. H. Merks:
Mechanical Cell-Matrix Feedback Explains Pairwise and Collective Endothelial Cell Behavior In Vitro. PLoS Comput. Biol. 10(8) (2014) - [i1]Roeland Merks:
The Next Boom of Big Data in Biology: Multicellular Datasets. ERCIM News 2014(99) (2014) - 2012
- [j4]Milan van Hoek, Roeland Merks:
Redox balance is key to explaining full vs. partial switching to low-yield metabolism. BMC Syst. Biol. 6: 22 (2012) - 2011
- [c4]Michael A. Guravage, Roeland Merks:
A Web-based Repository of Reproducible Simulation Experiments for Systems Biology. SIMULTECH 2011: 134-141
2000 – 2009
- 2008
- [j3]Roeland Merks, Erica D. Perryn, Abbas Shirinifard, James A. Glazier:
Contact-Inhibited Chemotaxis in De Novo and Sprouting Blood-Vessel Growth. PLoS Comput. Biol. 4(9) (2008) - 2007
- [j2]Trevor M. Cickovski, Kedar Aras, Maciej Swat, Roeland Merks, Tilmann Glimm, H. George E. Hentschel, Mark S. Alber, James A. Glazier, Stuart A. Newman, Jesús A. Izaguirre:
From Genes to Organisms Via the Cell: A Problem-Solving Environment for Multicellular Development. Comput. Sci. Eng. 9(4): 50-60 (2007) - 2006
- [j1]Roeland Merks, Alfons G. Hoekstra, Jaap A. Kaandorp, Peter M. A. Sloot, Paulien Hogeweg:
Problem-Solving Environments for Biological Morphogenesis. Comput. Sci. Eng. 8(1): 61-72 (2006) - 2004
- [c3]Roeland Merks, Stuart A. Newman, James A. Glazier:
Cell-Oriented Modeling of In Vitro Capillary Development. ACRI 2004: 425-434 - 2003
- [c2]Roeland Merks, Alfons G. Hoekstra, Jaap A. Kaandorp, Peter M. A. Sloot:
A Problem Solving Environment for Modelling Stony Coral Morphogenesis. International Conference on Computational Science 2003: 639-648 - 2002
- [c1]Roeland Merks, Alfons G. Hoekstra, Jaap A. Kaandorp, Peter M. A. Sloot:
Spontaneous Branching in a Polyp Oriented Model of Stony Coral Growth. International Conference on Computational Science (1) 2002: 88-96
Coauthor Index
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