A Mathematical Model With Piecewise Constant Arguments of Colorectal Cancer With Chemo-Immunotherapy

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Abstract

We propose a new mathematical model with piecewise constant arguments of a system of ODEs to investigate the growth of colorectal cancer and its response to chemo-immunotherapy. Our main target in this paper is to analyze and represent the I.S.'s (immune system) efficiency during the chemotherapeutic process. Therefore, we proved and illustrated the necessity of IL-2 that supports the immune system, especially in early-detected cases of tumor density. Thus, the constructed model has been divided into sub-systems: the cell populations, the effects of the medications doxorubicin, and IL-2 concentration.Firstly, we analyze the stability of the equilibrium points (disease-free and co-existing) using the RouthHurwitz criteria. In addition, our study has shown that the system undergoes period-doubling, stationary and Neimark-Sacker bifurcations based on specific conditions. In the end, we illustrate some simulations to assist the theory of the manuscript.

Description

Yousef, Ali/0000-0002-8824-5947;

Keywords

Stability, Period-Doubling, Stationary and Neimark, Sacker Bifurcations, Colorectal Cancer, Piecewise Constant Arguments, Period-Doubling, Stationary and Neimark-Sacker Bifurcations, Colorectal Cancer, Period-doubling, Sacker Bifurcations, Piecewise Constant Arguments, Stability, Stationary and Neimark

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0301 basic medicine, 0303 health sciences, 03 medical and health sciences

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15

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168

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113207

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CrossRef : 10

Scopus : 19

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19

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16

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92

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