Time delay induces a back to back Hopf bifurcation on oncolytic virotherapy.

Dong-Hoon Shin
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Abstract

This study analyzes a basic mathematical model for the dynamic interactions among tumor cells, infected tumor cells and viruses population, focusing on the viral lytic cycle for oncolytic virotherapy. I study the time delay effect of viral infection on tumor cell populations by identifying bifurcation thresholds in both the burst rate and time delay of viral infection in oncolytic virus therapy. Time delay plays an important role in changing the structure of tumor cell populations in a dynamical system. The multi-bifurcation thresholds of the time delay are observed and also dependent on the bursting rate. This study demonstrates a strong relationship between viral burst rates and time delays in population dynamics. The results of this study show that time delay affects oscillation generation and results in back-to-back Hopf bifurcation. This study provides insight into understanding the relationship between the two control parameters, in which tumor cell populations pattern from equilibrium steady-state solutions to periodic solutions and from periodic solutions to equilibrium-state solutions.
时间延迟在溶瘤病毒治疗中诱导了一个背对背的Hopf分岔。
本研究分析了肿瘤细胞、被感染肿瘤细胞和病毒群体之间动态相互作用的基本数学模型,重点研究了溶瘤病毒治疗的病毒裂解周期。我通过确定溶瘤病毒治疗中病毒感染的爆发率和时间延迟的分叉阈值,研究了病毒感染对肿瘤细胞群的时间延迟效应。在动态系统中,时滞对肿瘤细胞群结构的改变起着重要的作用。观察到时间延迟的多分支阈值,并且该阈值也依赖于突发速率。本研究证明了病毒爆发率与种群动态中的时间延迟之间的密切关系。本文的研究结果表明,时滞影响振荡的产生,并导致背靠背Hopf分岔。该研究为理解两个控制参数之间的关系提供了见解,其中肿瘤细胞群模式从平衡稳态解到周期解,从周期解到平衡态解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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