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BIBLIOGRAPHY

[1] Tough, Iona Kirsten. “Mathematical Modelling of the Immune Response to Cancer.” EThoS, 4 Apr. 2005, ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.702072.

[2] SzabÃ, András, and Isidoro Cobo. “The Molecular Basis of Radial Intercalation during Tissue Spreading in Early Development.” Developmental Cell, vol. 37, no. 3, 2016, pp. 213–225., doi:10.1016/j.devcel.2016.04.008

[3]  James Glazier. (n.d.). Retrieved from https://www.linkedin.com/in/jglazier/

[4] Maciej Swat. (n.d.). Retrieved from https://www.linkedin.com/in/maciej-swat-2858286/

[5] Sherry Clendenon. (n.d.). Retrieved from https://www.linkedin.com/in/sherryclendenon

[6] James Sluka. (n.d.). Retrieved from https://www.linkedin.com/in/james-sluka-81095329

[7] Stroka, Kimberly M, et al. “Water Permeation Drives Tumor Cell Migration in Confined Microenvironments.” Water Permeation Drives Tumor Cell Migration in Confined Microenvironments, vol. 157, no. 3, 24 Apr. 2014, pp. 611–623., doi:http://dx.doi.org/10.1016/j.cell.2014.02.052.

[8] Cickovski, Trevor, et al. “CompuCell3D.” SimTK: CompuCell3D: Project Home, National Institutes of Health , 0ADAD, simtk.org/projects/compucell3d.

[9] Rangarajan, Rajagopal, and Muhammad H. Zaman. “Modeling Cell Migration in 3D.” Cell Adhesion & Migration, vol. 2, no. 2, 2008, pp. 106–109., doi:10.4161/cam.2.2.6211.

[10] BinamÃ, Fabien, et al. “What Makes Cells Move: Requirements and Obstacles for Spontaneous Cell Motility.” Molecular BioSystems, vol. 6, no. 4, Apr. 2010, pp. 648–661., doi:10.1039/b915591k.

[11] Maciej Swat. “Manuals.” CompuCell3D, IU and the Biocomplexity Institute, www.compucell3d.org/Manuals.


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