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Stability Analysis of Mathematical Model including Pathogen-Specific Immune System Response with Fractional-Order Differential Equations

机译:具有分数阶微分方程的特定病原体免疫系统响应数学模型的稳定性分析

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In this study, the mathematical model examined the dynamics between pathogen and specific immune system cells (memory T cells) for diseases such as chronic infection and cancer in which nonspecific immune system cells are inadequate to destroy the pathogen and has been suggested by using a system of the fractional-order differential equation with multi-orders. Qualitative analysis of the proposed model reveals the equilibrium points giving important ideas about the proliferation of the pathogen and memory T cells. According to the results of this analysis, the possible scenarios are as follows the absence of both pathogen and memory T cells, only the existence of pathogen, and the existence of both pathogen and memory T cells. The qualitative analysis of the proposed model has expressed the persistent situations of the disease where the memory T cells either do not be able to respond to the pathogen or continue to exist with the disease-causing pathogen in the host. Results of this analysis are supported by numerical simulations. In the simulations, the time-dependent size of the tumor population under the pressure of the memory T cells was tried to be estimated.
机译:在这项研究中,该数学模型检查了病原体与特定免疫系统细胞(记忆性T细胞)之间的动态关系,以应对诸如慢性感染和癌症等疾病,其中非特异性免疫系统细胞不足以破坏病原体,并已通过使用该系统提出了建议多阶分数阶微分方程对提出的模型的定性分析揭示了平衡点,从而为病原体和记忆T细胞的增殖提供了重要的思路。根据该分析的结果,可能的情况如下:既没有病原体又没有记忆T细胞,只有病原体同时存在,并且既有病原体又带有记忆T细胞。对所提出的模型的定性分析已经表明了该疾病的持续情况,其中记忆T细胞要么不能对病原体做出反应,要么继续与宿主中的致病性病原体一起存在。数值模拟支持了该分析的结果。在模拟中,试图估计在记忆T细胞的压力下肿瘤种群的时间依赖性大小。

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