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Titlebook: Structured Population Models in Biology and Epidemiology; Pierre Magal,Shigui Ruan Book 2008 Springer-Verlag Berlin Heidelberg 2008 Struct

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书目名称Structured Population Models in Biology and Epidemiology
编辑Pierre Magal,Shigui Ruan
视频videohttp://file.papertrans.cn/881/880326/880326.mp4
概述Includes supplementary material:
丛书名称Lecture Notes in Mathematics
图书封面Titlebook: Structured Population Models in Biology and Epidemiology;  Pierre Magal,Shigui Ruan Book 2008 Springer-Verlag Berlin Heidelberg 2008 Struct
描述In this new century mankind faces ever more challenging environmental and publichealthproblems,suchaspollution,invasionbyexoticspecies,theem- gence of new diseases or the emergence of diseases into new regions (West Nile virus,SARS,Anthrax,etc.),andtheresurgenceofexistingdiseases(in?uenza, malaria, TB, HIV/AIDS, etc.). Mathematical models have been successfully used to study many biological, epidemiological and medical problems, and nonlinear and complex dynamics have been observed in all of those contexts. Mathematical studies have helped us not only to better understand these problems but also to ?nd solutions in some cases, such as the prediction and control of SARS outbreaks, understanding HIV infection, and the investi- tion of antibiotic-resistant infections in hospitals. Structuredpopulationmodelsdistinguishindividualsfromoneanother- cording to characteristics such as age, size, location, status, and movement, to determine the birth, growth and death rates, interaction with each other and with environment, infectivity, etc. The goal of structured population models is to understand how these characteristics a?ect the dynamics of these models and thus the outcomes and conseque
出版日期Book 2008
关键词Structured population model; aggregation of variables; biofilm model; biology; dynamics; epidemiology; mat
版次1
doihttps://doi.org/10.1007/978-3-540-78273-5
isbn_softcover978-3-540-78272-8
isbn_ebook978-3-540-78273-5Series ISSN 0075-8434 Series E-ISSN 1617-9692
issn_series 0075-8434
copyrightSpringer-Verlag Berlin Heidelberg 2008
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Infinite ODE Systems Modeling Size-Structured Metapopulations, Macroparasitic Diseases, and Prion Pient generality (based on operator semigroups) and, besides well-posedness, to establish conditions for the solution semiflow to be dissipative and have a compact attractor for bounded sets. For metapopulations, we present conditions for uniform persistence on the one hand and prove on the other han
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Simple Models for the Transmission of Microparasites Between Host Populations Living on Noncoincideng on distinct spatial domains. We shall consider two prototypical situations (1), a vector borne disease and, (2), an environmentally transmitted disease. In our models direct horizontal criss-cross transmission from infectious individuals of one population to susceptibles of the other one does not
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Spatiotemporal Patterns of Disease Spread: Interaction of Physiological Structure, Spatial Movementwith particular focus on the role of the developmental stages of hosts in determining the transmission dynamics, the effectiveness of different approaches to controlling the vector and the spatial spread of an epidemic. A possible model incorporating the developmental stages of avian hosts is discus
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The Biofilm Model of Freter: A Review, in order to illuminate the role of bacterial wall attachment on the phenomenon of colonization resistance in the mammalian gut. Together with various collaborators, we have re-formulated the model in the setting of a tubular flow reactor, extended the interpretation of the model as a biofilm model,
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0075-8434 ion,invasionbyexoticspecies,theem- gence of new diseases or the emergence of diseases into new regions (West Nile virus,SARS,Anthrax,etc.),andtheresurgenceofexistingdiseases(in?uenza, malaria, TB, HIV/AIDS, etc.). Mathematical models have been successfully used to study many biological, epidemiologi
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