A Mathematical Modeling Approach to Infectious Diseases:Cross Diffusion Pde Models for Epidemiology

传染病数学建模方法:流行病学的交叉扩散偏微分方程模型

传染病学

原   价:
1066.00
售   价:
799.00
发货周期:预计3-5周发货
作      者
出  版 社
出版时间
2018年08月20日
装      帧
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ISBN
9789813238787
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页      码
300
语      种
英文
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图书简介
The intent of this book is to provide a methodology for the analysis of infectious diseases by computer-based mathematical models. The approach is based on ordinary differential equations (ODEs) that provide time variation of the model dependent variables and partial differential equations (PDEs) that provide time and spatial (spatiotemporal) variations of the model dependent variables. The starting point is a basic ODE SIR (Susceptible Infected Recovered) model that defines the S,I,R populations as a function of time. The ODE SIR model is then exended to PDEs that demonstrate the spatiotemporal evolution of the S,I,R populations. A unique feature of the PDE model is the use of cross diffusion between populations, a nonlinear effect that is readily accommodated numerically. A second feature is the use of radial coordinates to represent the geographical distribution of the model populations. The numerical methods for the computer implementation of ODE/PDE models for infectious diseases are illustrated with documented R routines for particular applications, including models for malaria and the Zika virus. The R routines are available from a download so that the reader can reproduce the reported solutions, then extend the applications through computer experimentation, including the addition of postulated effects and associated equations, and the implementation of alternative models of interest. The ODE/PDE methodology is open ended and facilitates the development of computer-based models which hopefully can elucidate the causes/conditions of infectious disease evolution and suggest methods of control. Key Features: oPartial differential equation analysis defining the spatiotemporal evolution of epidemics oCross diffusion between affected populations oRadial spatial coordinates corresponding to the physical system geometry oThis combination of features does not appear in any other book of which the author is aware
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