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首页> 外文期刊>Frontiers in Public Health >Facilitating Understanding, Modeling and Simulation of Infectious Disease Epidemics in the Age of COVID-19
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Facilitating Understanding, Modeling and Simulation of Infectious Disease Epidemics in the Age of COVID-19

机译:促进Covid-19时代传染病流行病的理解,建模和模拟

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Interest in the mathematical modeling of infectious diseases has increased due to the COVID-19 pandemic. However, many medical students do not have the required background in coding or mathematics to engage optimally in this approach. System dynamics is a methodology for implementing mathematical models as easy-to-understand stock-flow diagrams. Remarkably, creating stock-flow diagrams is the same process as creating the equivalent differential equations. Yet, its visual nature makes the process simple and intuitive. We demonstrate the simplicity of system dynamics by applying it to epidemic models including a model of COVID-19 mutation. We then discuss the ease with which far more complex models can be produced by implementing a model comprising eight differential equations of a Chikungunya epidemic from the literature. Finally, we discuss the learning environment in which the teaching of the epidemic modeling occurs. We advocate the widespread use of system dynamics to empower those who are engaged in infectious disease epidemiology, regardless of their mathematical background.
机译:由于Covid-19大流行,对传染病的数学建模的兴趣增加。然而,许多医学生在编码或数学中没有必要的背景,以在这种方法中最佳地进行。系统动态是一种实现数学模型作为易于理解的股票流程图的方法。值得注意的是,创建库存流程图与创建等效微分方程相同。然而,它的视觉性质使过程简单直观。我们通过将其应用于包括Covid-19突变模型的流行病模型来展示系统动态的简单性。然后,我们通过实施来自文献的八个差动方程的模型来讨论可以产生更复杂的模型的容易性。最后,我们讨论了这种学习环境,其中发生了流行性建模的教学。我们主张普遍使用系统动态,以赋予那些从事传染病流行病学的人,无论他们的数学背景如何。

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