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dc.creatorBrooks, Christopher P.en
dc.creatorAntonovics, Janisen
dc.creatorKeitt, Timothy H.en
dc.date.accessioned2015-09-09T15:50:52Zen
dc.date.available2015-09-09T15:50:52Zen
dc.date.issued2008-08en
dc.identifier.citationChristopher P. Brooks, Janis Antonovics, Timothy H. Keitt. Spatial And Temporal Heterogeneity Explain Disease Dynamics In A Spatially Explicit Network Model. The American Naturalist, Vol. 172, No. 2 (Aug., 2008), pp. 149-159. DOI: 10.1086/589451en
dc.identifier.issn0003-0147en
dc.identifier.urihttp://hdl.handle.net/2152/31140en
dc.description.abstractThere is an increasing recognition that individual-level spatial and temporal heterogeneity may play an important role in metapopulation dynamics and persistence. In particular, the patterns of contact within and between aggregates (e. g., demes) at different spatial and temporal scales may reveal important mechanisms governing metapopulation dynamics. Using 7 years of data on the interaction between the anther smut fungus (Microbotryum violaceum) and fire pink (Silene virginica), we show how the application of spatially explicit and implicit network models can be used to make accurate predictions of infection dynamics in spatially structured populations. Explicit consideration of both spatial and temporal organization reveals the role of each in spreading risk for both the host and the pathogen. This work suggests that the application of spatially explicit network models can yield important insights into how heterogeneous structure can promote the persistence of species in natural landscapes.en
dc.description.sponsorshipen
dc.language.isoEnglishen
dc.rightsAdministrative deposit of works to Texas ScholarWorks: This works author(s) is or was a University faculty member, student or staff member; this article is already available through open access or the publisher allows a PDF version of the article to be freely posted online. The library makes the deposit as a matter of fair use (for scholarly, educational, and research purposes), and to preserve the work and further secure public access to the works of the University.en
dc.subjectnetwork epidemiologyen
dc.subjectdisease ecologyen
dc.subjectbiocomplexityen
dc.subjectmicrobotryumen
dc.subjectviolaceumen
dc.subjectsilene virginicaen
dc.subjectanther-smut infectionen
dc.subjectsilene-albaen
dc.subjectlandscape connectivityen
dc.subjectustilago-violaceaen
dc.subjectmetapopulation capacityen
dc.subjectspore depositionen
dc.subjectmouthen
dc.subjectepidemicen
dc.subjectpatternsen
dc.subjectdispersalen
dc.subjecthummingbirdsen
dc.subjectecologyen
dc.subjectevolutionary biologyen
dc.titleSpatial And Temporal Heterogeneity Explain Disease Dynamics In A Spatially Explicit Network Modelen
dc.typeArticleen
dc.rights.holderen
dc.description.departmentIntegrative Biologyen
dc.identifier.doi10.1086/589451en
dc.identifier.urlen
dc.contributor.utaustinauthorBrooks, Christopher P.en
dc.contributor.utaustinauthorKeitt, Timothy H.en
dc.relation.ispartofserialAmerican Naturalisten


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