Faculty of Basic Sciences, Galala University, Suez, 435611, Egypt.
Faculty of Energy and Environmental Engineering, British University in Egypt, Cairo, 11837, Egypt.
Sci Rep. 2023 Jul 19;13(1):11675. doi: 10.1038/s41598-023-38705-6.
This paper delves into the investigation of the COVID-19 dynamics within a host using the Target-Latent-Infected-Virus (TLIV) model, presenting a fresh approach compared to previous studies. Our model introduces a latent class and explores sensitivity analysis, aspects that have received limited attention in prior research. A significant contribution of this study is the analysis of both local and global stability of equilibrium states, subject to specific sufficient conditions based on the basic reproduction number [Formula: see text]. By examining these stability properties, we aim to gain insights into the factors underlying variations observed in the findings of different studies. Additionally, we identify the death rate of infected cells as the parameter most susceptible to influence in our model. To minimize its impact and facilitate recovery, it is crucial to implement appropriate medical therapies and consume immune-boosting foods. Some computer simulations are carried out to strengthen the theoretical results.
本文利用目标潜伏感染病毒(TLIV)模型深入研究宿主内的 COVID-19 动态,与以往的研究相比提出了一种新方法。我们的模型引入了潜伏类,并探讨了敏感性分析,这是先前研究中受到较少关注的方面。本研究的一个重要贡献是分析了在特定的基本繁殖数 [Formula: see text] 下基于特定充分条件的平衡状态的局部和全局稳定性。通过分析这些稳定性特性,我们旨在深入了解不同研究结果中观察到的变化背后的因素。此外,我们确定感染细胞的死亡率是我们模型中最容易受到影响的参数。为了最小化其影响并促进恢复,实施适当的医疗疗法和食用增强免疫力的食物至关重要。进行了一些计算机模拟来加强理论结果。