心理恐慌对优化控制策略下肿瘤-免疫相互作用动态的影响

Rafel Ibrahim Salih, S. Jawad, K. Dehingia, Anusmita Das
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引用次数: 0

摘要

罹患癌症通常会让患者感到恐惧。要想找到阻止癌症扩散的方法,就必须探索化疗和焦虑如何共同影响癌细胞的繁殖速度和免疫系统的反应模型。本文提出了一个数学模型来研究心理恐慌和化疗对癌症与免疫相互作用的影响。所提出的模型描述准确。模型动态分析的重点是确定潜在的平衡位置。根据分析,可以确定三个平衡位置。稳定性分析表明,在规定的条件下,所有平衡点都始终表现出稳定性。平衡点上出现的分岔也被推导出来。具体来说,我们得到了跨临界分岔、杈形分岔和鞍形节点分岔。通过数值模拟验证了理论研究,并确定了在存在心理困扰的情况下根除癌症所需的最小治疗剂量,从而减轻了对患者的伤害。恐惧可能是导致肿瘤扩散和免疫功能减弱的重要因素。
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The effect of a psychological scare on the dynamics of the tumor-immune interaction with optimal control strategy
Contracting cancer typically induces a state of terror among the individuals who are affected. Exploring how chemotherapy and anxiety work together to affect the speed at which cancer cells multiply and the immune system’s response model is necessary to come up with ways to stop the spread of cancer. This paper proposes a mathematical model to investigate the impact of psychological scare and chemotherapy on the interaction of cancer and immunity. The proposed model is accurately described. The focus of the model’s dynamic analysis is to identify the potential equilibrium locations. According to the analysis, it is possible to establish three equilibrium positions. The stability analysis reveals that all equilibrium points consistently exhibit stability under the defined conditions. The bifurcations occurring at the equilibrium sites are derived. Specifically, we obtained transcritical, pitchfork, and saddle-node bifurcation. Numerical simulations are employed to validate the theoretical study and ascertain the minimum therapy dosage necessary for eradicating cancer in the presence of psychological distress, thereby mitigating harm to patients. Fear could be a significant contributor to the spread of tumors and weakness of immune functionality.
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