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一类模拟细菌和病毒疾病空间传播的反应扩散系统向平衡态的收敛

Convergence to equilibrium states for a reaction-diffusion system modelling the spatial spread of a class of bacterial and viral diseases.

作者信息

Capasso V, Maddalena L

出版信息

J Math Biol. 1981;13(2):173-84. doi: 10.1007/BF00275212.

Abstract

A reaction-diffusion system which describes the spatial spread of bacterial diseases is studied. It consists of two nonlinear parabolic equations which concern the evolution of the bacteria population and of the human infective population in an urban community, respectively. Different boundary conditions of the third type are considered, for the two variables. This model is suitable to study oro-faecal transmitted diseases in the European Mediterranean regions. A threshold parameter is introduced such that for suitable values of it the epidemic eventually tends to extinction, otherwise a globally asymptotically stable spatially inhomogeneous stationary endemic state appears. The case in which the bacteria diffuse but the human population does not, has also been considered.

摘要

研究了一个描述细菌性疾病空间传播的反应扩散系统。它由两个非线性抛物方程组成,分别涉及城市社区中细菌种群和人类感染种群的演化。针对这两个变量,考虑了不同的第三类边界条件。该模型适用于研究欧洲地中海地区经口粪传播的疾病。引入了一个阈值参数,使得对于合适的参数值,疫情最终趋于灭绝,否则会出现全局渐近稳定的空间非均匀稳态地方病状态。还考虑了细菌扩散而人类种群不扩散的情况。

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