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Stability Analysis of Delayed Immune Response BCG Infection in Bladder Cancer Treatment Model by Stochastic Perturbations

机译:随机扰动在膀胱癌治疗模型中延迟免疫应答卡介苗感染的稳定性分析

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摘要

We present a revised mathematical model of the immune response to Bacillus Calmette-Guérin (BCG) treatment of bladder cancer, optimized according to biological and clinical data accumulated during the last decade. The improved model accounts for cytotoxic T lymphocyte differentiation as an integral element of the delayed immune response, as well as the logistic growth terms for cancer cell proliferation. Three equilibria are demonstrated for the proposed model, which is assumed to be influenced by white noise stochastic perturbations that are directly proportional to the system state deviation from an equilibrium. Stability conditions for all equilibria are analyzed using the Kolmanovskii-Shaikhet general method of Lyapunov functionals construction.
机译:我们提出了一种针对卡介苗(BCG)治疗膀胱癌的免疫应答的修订数学模型,根据过去十年中积累的生物学和临床数据进行了优化。改进的模型将细胞毒性T淋巴细胞的分化解释为延迟免疫反应的组成部分,以及癌细胞增殖的逻辑增长术语。对于所提出的模型,证明了三个平衡,假设它们受到白噪声随机扰动的影响,该扰动与系统状态与平衡的偏离成正比。使用Lyapunov泛函构造的Kolmanovskii-Shaikhet通用方法分析所有平衡的稳定性条件。

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