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Bifurcation analysis of a multidelayed HIV model in presence of immune response and understanding of in-host viral dynamics

机译:在免疫反应存在下多电位艾滋病毒模型的分岔分析及对宿主病毒动力学的理解

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In this paper, we proposed a multidelayed in-host HIV model to represent the interaction between human immunodeficiency virus and immune response. One delay was considered to incorporate the time required by the virus for various intracellular events to make a host cell productively infective, and the second delay was introduced to take into account the time required for adaptive immune system to respond against infection. We extensively analyzed this multidelayed model analytically and numerically. We show that delay may have both destabilizing and stabilizing effects even when the system contains a single immune response delay. It happens when there exists two sequences of critical values of this delay. If the system starts with stable state in absence of delay, then the smallest value of these critical delays causes instability and the next higher value causes stability. The system may also show stability switching for different values of the virus replication factor. These results demonstrate the possible reasons of intrapatients and interpatients variability of CD4(+) T cells and virus counts in HIV-infected patients.
机译:在本文中,我们提出了多加入的宿主HIV模型,以代表人类免疫缺陷病毒与免疫应答之间的相互作用。考虑一种延迟掺入病毒对各种细胞内事件所需的时间,以使宿主细胞能够高效感染,并引入第二延迟,考虑到适应性免疫系统反应感染所需的时间。我们在分析和数值上广泛地分析了这种多电位模型。我们表明,即使系统含有单一免疫应答延迟,延迟也可能具有稳定和稳定的影响。当存在这种延迟的两个临界值序列时它会发生。如果系统在没有延迟的情况下以稳定状态开头,则这些关键延迟的最小值会导致不稳定,下一个更高的值导致稳定性。该系统还可以显示用于病毒复制因子的不同值的稳定性切换。这些结果证明了巢穴感染患者中的内部剂和患者患者的可能性和患者患者的可能性。

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