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Invasion and Persistence of Infectious Agents in Fragmented Host Populations
- Source :
- PLoS One, 6(9). Public Library of Science, PLoS ONE, 6(9), e24006, PLoS ONE, Vol 6, Iss 9, p e24006 (2011), PLoS ONE
- Publication Year :
- 2011
-
Abstract
- One of the important questions in understanding infectious diseases and their prevention and control is how infectious agents can invade and become endemic in a host population. A ubiquitous feature of natural populations is that they are spatially fragmented, resulting in relatively homogeneous local populations inhabiting patches connected by the migration of hosts. Such fragmented population structures are studied extensively with metapopulation models. Being able to define and calculate an indicator for the success of invasion and persistence of an infectious agent is essential for obtaining general qualitative insights into infection dynamics, for the comparison of prevention and control scenarios, and for quantitative insights into specific systems. For homogeneous populations, the basic reproduction ratio R(0) plays this role. For metapopulations, defining such an 'invasion indicator' is not straightforward. Some indicators have been defined for specific situations, e.g., the household reproduction number R*. However, these existing indicators often fail to account for host demography and especially host migration. Here we show how to calculate a more broadly applicable indicator R(m) for the invasion and persistence of infectious agents in a host metapopulation of equally connected patches, for a wide range of possible epidemiological models. A strong feature of our method is that it explicitly accounts for host demography and host migration. Using a simple compartmental system as an example, we illustrate how R(m) can be calculated and expressed in terms of the key determinants of epidemiological dynamics.
- Subjects :
- Persistence (psychology)
Metapopulation Dynamics
Spatial Epidemiology
Epidemiology
Range (biology)
Science
Population Dynamics
Population
Basic Reproduction Number
Metapopulation
Introduced species
Biology
Communicable Diseases
Models, Biological
Infectious Disease Epidemiology
Birds
Animals
Humans
Disease Dynamics
education
Epidemiological Methods
Demography
education.field_of_study
Multidisciplinary
Population Biology
Host (biology)
Ecology
Emigration and Immigration
Homogeneous
Communicable Disease Control
Medicine
Introduced Species
Basic reproduction number
Algorithms
Research Article
Subjects
Details
- Language :
- English
- ISSN :
- 19326203
- Database :
- OpenAIRE
- Journal :
- PLoS One, 6(9). Public Library of Science, PLoS ONE, 6(9), e24006, PLoS ONE, Vol 6, Iss 9, p e24006 (2011), PLoS ONE
- Accession number :
- edsair.doi.dedup.....065e801c3e30e62f8bbf855e8ba5e6cd