Using mathematical modeling to study the dynamics of Legionnaires' disease and consider management options.

IF 2.6 4区 工程技术 Q1 Mathematics
Mark Z Wang, Christina J Edholm, Lihong Zhao
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引用次数: 0

Abstract

Legionnaires' disease (LD) is a largely understudied and underreported pneumonic environmentally transmitted disease caused by the bacteria Legionella. It primarily occurs in places with poorly maintained artificial sources of water. There is currently a lack of mathematical models on the dynamics of LD. In this paper, we formulate a novel ordinary differential equation-based susceptible-exposed-infected-recovered (SEIR) model for LD. One issue with LD is the difficulty in its detection, as the majority of countries around the world lack the proper surveillance and diagnosis methods. Thus, there is not much publicly available data or literature on LD. We use parameter estimation for our model with one of the few outbreaks with time series data from Murcia, Spain in 2001. Furthermore, we apply a global sensitivity analysis to understand the contributions of parameters to our model output. To consider managing LD outbreaks, we explore implementing sanitizing individual sources of water by constructing an optimal control problem. Using our fitted model and the optimal control problem, we analyze how different parameters and controls might help manage LD outbreaks in the future.

利用数学模型研究军团病的动态,并考虑管理方案。
军团病(LD)是一种由军团菌引起的肺部环境传播疾病,在很大程度上没有得到充分的研究和报道。它主要发生在人工水源维护不善的地方。目前缺乏LD动力学的数学模型。在本文中,我们为LD制定了一个新的基于常微分方程的易感暴露感染恢复(SEIR)模型。LD的一个问题是难以检测,因为世界上大多数国家缺乏适当的监测和诊断方法。因此,关于LD的公开数据或文献并不多。我们对2001年西班牙穆尔西亚为数不多的疫情之一的时间序列数据进行了参数估计。此外,我们应用全局敏感性分析来了解参数对模型输出的贡献。为了考虑控制LD的爆发,我们通过构造一个最优控制问题来探索对单个水源进行消毒。利用我们的拟合模型和最优控制问题,我们分析了不同的参数和控制如何帮助管理未来的LD爆发。
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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来源期刊
Mathematical Biosciences and Engineering
Mathematical Biosciences and Engineering 工程技术-数学跨学科应用
CiteScore
3.90
自引率
7.70%
发文量
586
审稿时长
>12 weeks
期刊介绍: Mathematical Biosciences and Engineering (MBE) is an interdisciplinary Open Access journal promoting cutting-edge research, technology transfer and knowledge translation about complex data and information processing. MBE publishes Research articles (long and original research); Communications (short and novel research); Expository papers; Technology Transfer and Knowledge Translation reports (description of new technologies and products); Announcements and Industrial Progress and News (announcements and even advertisement, including major conferences).
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