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A fractional order HIV-TB coinfection model with nonsingular Mittag-Leffler Law

机译:具有非奇形利垛利击法的分数阶HIV-TB繁殖模型

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The biological models for the study of human immunodeficiency virus (HIV) and its advanced stage acquired immune deficiency syndrome (AIDS) have been widely studied in last two decades. HIV virus can be transmitted by different means including blood, semen, preseminal fluid, rectal fluid, breast milk, and many more. Therefore, initiating HIV treatment with the TB treatment development has some advantages including less HIV-related losses and an inferior risk of HIV spread also having difficulties including incidence of immune reconstitution inflammatory syndrome (IRIS) because of a large pill encumbrance. It has been analyzed that patients with HIV have more weaker immune system and are susceptible to infections, for example, tuberculosis (TB). Keeping the importance of the HIV models, we are interested to consider an analysis of HIV-TB coinfected model in the Atangana-Baleanu fractional differential form. The model is studied for the existence, uniqueness of solution, Hyers-Ulam (HU) stability and numerical simulations with assumption of specific parameters.
机译:在过去二十年中,人类免疫缺陷病毒(HIV)研究的生物学模型及其晚期获得的免疫缺陷综合征(艾滋病)已被广泛研究。艾滋病毒病毒可以通过不同的方法传播,包括血液,精液,超法流体,直肠液,母乳等等。因此,用TB治疗发育启动艾滋病毒治疗具有一些优点,包括较少的艾滋病毒相关损失,艾滋病毒差异的劣势也具有困难,包括免疫重建炎症综合征(IRIS)的发生率,因为沉积物归因。已经分析了艾滋病毒患者具有更弱的免疫系统,并且易感染,例如结核(TB)。保持艾滋病毒模型的重要性,我们有兴趣考虑Atangana-Balanu分数差异形式的HIV-TB焦化模型的分析。研究了该模型的存在,唯一性,Hyer-ULAM(HU)稳定性和数值模拟,假设特定参数。

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