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 * A. Szabó and R. M. H. Merks, “Blood vessel tortuosity selects against evolution of aggressive tumor cells in confined tissue environments: A modeling approach.,” PLOS Comput Biol, vol. 13, no. 7, p. e1005635, Jul. 2017.

 * T. N. Sato and R. M. H. Merks, “Shaping the cell fate,” Cell Cycle, vol. 16, no. 2, pp. 149–150, Jan. 2017.
 * [[https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5536454/pdf/pcbi.1005635.pdf|Blood vessel tortuosity selects against evolution of aggressive tumor cells in confined tissue environments: A modeling approach]] - A. Szabó and R. M. H. Merks, __''PLOS Comput Biol''__, vol. 13, no. 7, p. e1005635, Jul. 2017.

 * [[https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5283809/pdf/kccy-16-02-1241603.pdf|Shaping the cell fate]] - T. N. Sato and R. M. H. Merks, __''Cell Cycle''__, vol. 16, no. 2, pp. 149–150, Jan. 2017.
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 * M. M. Palm, M. G. Dallinga, E. van Dijk, I. Klaassen, R. O. Schlingemann, and R. M. H. Merks, “Computational Screening of Tip and Stalk Cell Behavior Proposes a Role for Apelin Signaling in Sprout Progression,” PLOS ONE, vol. 11, no. 11, p. e0159478, Nov. 2016.

 * T. Akanuma, C. Chen, T. Sato, R. M. H. Merks, and T. N. Sato, “Memory of cell shape biases stochastic fate decision-making despite mitotic rounding,” Nat Commun, vol. 7, pp. 1–17, Jun. 2016.
 * [[https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5102492/pdf/pone.0159478.pdf|Computational Screening of Tip and Stalk Cell Behavior Proposes a Role for Apelin Signaling in Sprout Progression]] - M. M. Palm, M. G. Dallinga, E. van Dijk, I. Klaassen, R. O. Schlingemann, and R. M. H. Merks, __''PLOS ONE''__, vol. 11, no. 11, p. e0159478, Nov. 2016.

 * [[https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4931277/pdf/ncomms11963.pdf|Memory of cell shape biases stochastic fate decision-making despite mitotic rounding]] - T. Akanuma, C. Chen, T. Sato, R. M. H. Merks, and T. N. Sato, __''Nat Commun''__, vol. 7, pp. 1–17, Jun. 2016.
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 * S. E. M. Boas and R. M. H. Merks, “Tip cell overtaking occurs as a side effect of sprouting in computational models of angiogenesis,” BMC Syst Biol, pp. 1–17, Nov. 2015.  * [[https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4654812/pdf/12918_2015_Article_230.pdf|Tip cell overtaking occurs as a side effect of sprouting in computational models of angiogenesis]] - S. E. M. Boas and R. M. H. Merks, __''BMC Syst Biol''__, pp. 1–17, Nov. 2015.
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 * [[http://www.sciencedirect.com/science/article/pii/S1875389214002715|Physics of Cell Adhesion Failure and Human Diseases]] - Family, F. Phys. Procedia 57, 24–28 (2014).  * [[http://www.sciencedirect.com/science/article/pii/S1875389214002715|Physics of Cell Adhesion Failure and Human Diseases]] - Family, F. __''Phys. Procedia''__ 57, 24–28 (2014).
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 * [[javascript:void(0);/*1393870307162*/|Cell-Based Multi-Parametric Model of Cleft Progression during Submandibular Salivary Gland Branching Morphogenesis]] – Shayoni Ray, Daniel Yuan, Nimit Dhulekar, Basak Oztan, Bülent Yener, Melinda Larse, ''__PLoS Comput Biol__'' '''9'''(11):e1003319 (2013)  * [[https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3836695/pdf/pcbi.1003319.pdf|Cell-Based Multi-Parametric Model of Cleft Progression during Submandibular Salivary Gland Branching Morphogenesis]] – Shayoni Ray, Daniel Yuan, Nimit Dhulekar, Basak Oztan, Bülent Yener, Melinda Larsen, ''__PLoS Comput Biol__'' '''9'''(11):e1003319 (2013)

This page contains selected publications which were done using CompuCell3D. While we try to keep this page updated some of the publications might be missing from it. If you want your CompuCell3D-based publication to be displayed here, please e-mail us ( mthielme@indiana.edu )

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CompuCell3D: Publications (last edited 2026-06-08 16:40:39 by jpSluka)