Simulation of anti-angiogenesis and febrile neutropenia risk: a mathematical modeling approach
DOI:
https://doi.org/10.18687/LACCEI2026.1.1.1666Palabras clave:
Angiogenesis, Biomedical simulation, Differential equations, Febrile neutropenia, UnityResumen
Tumor angiogenesis and its inhibition are key processes in cancer progression and treatment response. Understanding the relationship between vascular changes and chemotherapy-induced hematological complications is essential to evaluate therapeutic safety. This paper presents the development of a computational simulator that integrates simplified mathematical models to represent inverse angiogenesis in vascular tumors and to estimate the risk of febrile neutropenia associated with the combined use of bevacizumab and paclitaxel. The system combines a Python-based computational module, built upon differential equations, with an interactive Unity interface that allows adjusting clinical and treatment parameters and visualizing the temporal evolution of tumor volume, VEGF concentration, and vascular branching. The results obtained show trends consistent with those reported in the literature, reflecting a reduction in VEGF and tumor growthDescargas
Publicado
2026-07-27
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Derechos de autor 2026 LACCEI
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Esta obra está bajo una Licencia Creative Commons Atribución-NoComercial-CompartirIgual 4.0 Internacional.
LACCEI conserva el copyright de todos los artículos publicados bajo los términos de su acuerdo de transferencia de copyright. Como titular del copyright, LACCEI distribuye los artículos al público bajo la Licencia Internacional Creative Commons Atribución-NoComercial-CompartirIgual 4.0 (CC BY-NC-SA 4.0).
Cómo citar
Zúniga Silva, I. (2026). Simulation of anti-angiogenesis and febrile neutropenia risk: a mathematical modeling approach. LACCEI, 1(14). https://doi.org/10.18687/LACCEI2026.1.1.1666