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Titlebook: Infectious Diseases and Our Planet; Miranda I. Teboh-Ewungkem,Gideon Akumah Ngwa Book 2021 Springer Nature Switzerland AG 2021 Dynamical S

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发表于 2025-3-21 16:07:02 | 显示全部楼层 |阅读模式
书目名称Infectious Diseases and Our Planet
编辑Miranda I. Teboh-Ewungkem,Gideon Akumah Ngwa
视频videohttp://file.papertrans.cn/465/464528/464528.mp4
概述Contains nine recent contributions, not previously published.Presents mathematical modelling to early-graduate level.Includes a survey of topics related to diseases of humans, plants, and animals.Demo
丛书名称Mathematics of Planet Earth
图书封面Titlebook: Infectious Diseases and Our Planet;  Miranda I. Teboh-Ewungkem,Gideon Akumah Ngwa Book 2021 Springer Nature Switzerland AG 2021 Dynamical S
描述.This book features recent research in mathematical modeling of indirectly and directly transmitted infectious diseases in humans, animals, and plants. It compiles nine not previously published studies that illustrate the dynamic spread of infectious diseases, offering a broad range of models to enrich understanding. It demonstrates the capability of mathematical modeling to capture disease spread and interaction dynamics as well as the complicating factors of various evolutionary processes. In addition, it presents applications to real-world disease control by commenting on key parameters and dominant pathways related to transmission. While aimed at early-graduate level students, the book can also provide insights to established researchers in that it presents a survey of current topics and methodologies in a constantly evolving field. .
出版日期Book 2021
关键词Dynamical Systems and Ergodic Theory; Epidemiology; Population Dynamics; Ecology; Agriculture; Immunology
版次1
doihttps://doi.org/10.1007/978-3-030-50826-5
isbn_softcover978-3-030-50828-9
isbn_ebook978-3-030-50826-5Series ISSN 2524-4264 Series E-ISSN 2524-4272
issn_series 2524-4264
copyrightSpringer Nature Switzerland AG 2021
The information of publication is updating

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Modeling Ebola Transmission Dynamics with Media Effects on Disease and Isolation Rates,ividuals will seek treatment when there is a weak media effect compared to when there is a strong media effect. Our result also shows that as media effect increases the disease burden in the community decreases with a lower epidemic peak which lags behind the epidemic peak from the model without media.
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Infectious Diseases and Our Planet,is co-existence occurs in an environment that allows for such. While such interactions may not benefit some animals, they have served as vital pathways for some diseases to thrive, like in the case of vector-borne or indirectly transmitted diseases. Changes in the environment, be it man made or natu
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,The Effect of Demographic Variability and Periodic Fluctuations on Disease Outbreaks in a Vector–Ho periodic environments have shown that the average basic reproduction number is not sufficient to predict an outbreak. We extend these studies to a time-nonhomogeneous stochastic vector–host model with demographic variability and periodic fluctuations to better understand the combined effects of var
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Application of Mathematical Epidemiology to Crop Vector-Borne Diseases: The Cassava Mosaic Virus Di vectors, and virus. The main illustrative example is the cassava mosaic disease (CMD). The CMD virus has two routes of infection: through vectors and also through infected crops. In the field, the main tool to control CMD spreading is roguing. The presented biological model is sufficiently generic
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Charles Darwin Meets Ronald Ross: A Population-Genetic Framework for the Evolutionary Dynamics of Mnt. We introduce a population-genetic framework for the evolutionary processes, exemplified but not restricted to anti-malarial drug resistance, which accurately incorporates malaria transmission. In particular, the dynamics of resistance-conferring mutations and their impact on neutral genetic vari
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