Our aim in this paper is to analyze a model of glioma where oxygen drives cancer diffusion and proliferation. We prove the global well-posedness of the analytical problem and that, in the longtime, the illness does not disappear. Besides, the tumor dynamics increase the oxygen levels.

An Oxygen driven proliferative-to-invasive transition of glioma cells: an analytical study / Gatti, Stefania. - In: DISCRETE AND CONTINUOUS DYNAMICAL SYSTEMS. SERIES S. - ISSN 1937-1632. - 15:8(2022), pp. 2233-2248. [10.3934/dcdss.2022002]

An Oxygen driven proliferative-to-invasive transition of glioma cells: an analytical study

Stefania Gatti
2022

Abstract

Our aim in this paper is to analyze a model of glioma where oxygen drives cancer diffusion and proliferation. We prove the global well-posedness of the analytical problem and that, in the longtime, the illness does not disappear. Besides, the tumor dynamics increase the oxygen levels.
2022
ago-2022
15
8
2233
2248
An Oxygen driven proliferative-to-invasive transition of glioma cells: an analytical study / Gatti, Stefania. - In: DISCRETE AND CONTINUOUS DYNAMICAL SYSTEMS. SERIES S. - ISSN 1937-1632. - 15:8(2022), pp. 2233-2248. [10.3934/dcdss.2022002]
Gatti, Stefania
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1277197
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