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A versatile mathematical work-flow to explore how Cancer Stem Cell fate influences tumor progression.

, , , , , , , and . BMC Syst. Biol., 9 (S-3): S1 (2015)

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A versatile mathematical work-flow to explore how Cancer Stem Cell fate influences tumor progression., , , , , , , and . BMC Syst. Biol., 9 (S-3): S1 (2015)A mathematical model to study breast cancer growth., , , , , and . BIBM, page 1438-1445. IEEE Computer Society, (2017)From Symmetric Nets to Differential Equations exploiting Model Symmetries., , , , , , and . Comput. J., 58 (1): 23-39 (2015)Multi-level model for the investigation of oncoantigen-driven vaccination effect., , , , , , , and . BMC Bioinform., 14 (S-6): S11 (2013)Mathematical Approach to Predict the Drug Effects on Cancer Stem Cell Models., , , , and . CS2Bio@DisCoTec, volume 277 of Electronic Notes in Theoretical Computer Science, page 29-39. Elsevier, (2011)Markovian Agents Population Models to Study Cancer Evolution., , , and . ASMTA, volume 8499 of Lecture Notes in Computer Science, page 16-32. Springer, (2014)Combenefit: an interactive platform for the analysis and visualization of drug combinations., , , , , , and . Bioinform., 32 (18): 2866-2868 (2016)Cancer stem cell based adjuvant for oncoantingen-driven vaccination., , , , , , , , and . BCB, page 564-568. ACM, (2011)