Juhász N, Bartha F A, Marzban S, Han R, Röst G
National Laboratory for Health Security, 6720 Szeged, Hungary.
Bolyai Institute, University of Szeged, 6720 Szeged, Hungary.
R Soc Open Sci. 2024 Oct 2;11(10):240903. doi: 10.1098/rsos.240903. eCollection 2024 Oct.
We provide an study of stochastic viral infection extinction from a pharmacokinetical viewpoint. Our work considers a non-specific antiviral drug that increases the virus clearance rate, and we investigate the effect of this drug on early infection extinction. Infection extinction data are generated by a hybrid multiscale framework that applies both continuous and discrete mathematical approaches. The central result of our paper is the observation, analysis and explanation of a linear relationship between the virus clearance rate and the probability of early infection extinction. The derivation behind this simple relationship is given by merging different mathematical toolboxes.
我们从药代动力学的角度对随机病毒感染的灭绝进行了一项研究。我们的工作考虑了一种能提高病毒清除率的非特异性抗病毒药物,并研究了这种药物对早期感染灭绝的影响。感染灭绝数据由一个应用连续和离散数学方法的混合多尺度框架生成。我们论文的核心结果是观察、分析并解释病毒清除率与早期感染灭绝概率之间的线性关系。这种简单关系背后的推导是通过合并不同的数学工具箱给出的。