Reserve selection with minimum contiguous area restrictions: An application to open space protection planning in suburban Chicago

Conservation efforts often require site or parcel selection strategies that lead to spatially cohesive reserves. Although habitat contiguity is thought to be conducive to the persistence of many sensitive species, availability of funding and suitable land may restrict the extent to which this spatia...

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Published inBiological conservation Vol. 142; no. 8; pp. 1617 - 1627
Main Authors Tóth, Sándor F., Haight, Robert G., Snyder, Stephanie A., George, Sonney, Miller, James R., Gregory, Mark S., Skibbe, Adam M.
Format Journal Article
LanguageEnglish
Published Kidlington Elsevier Ltd 01.08.2009
Kidlington, Oxford: Elsevier Science Ltd
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Abstract Conservation efforts often require site or parcel selection strategies that lead to spatially cohesive reserves. Although habitat contiguity is thought to be conducive to the persistence of many sensitive species, availability of funding and suitable land may restrict the extent to which this spatial attribute can be pursued in land management or conservation. Using optimization modeling, we explore the economic and spatial tradeoffs of retaining or restoring grassland habitat in contiguous patches of various sizes near the Chicago metropolitan area. The underlying mathematical construct is the first exact, generalized formulation that directly models spatial contiguity in optimal reserve selection. The construct allows conservation planners to analyze and weigh different minimum contiguous habitat size requirements that are to be used in specific land acquisition or retention projects.
AbstractList Conservation efforts often require site or parcel selection strategies that lead to spatially cohesive reserves. Although habitat contiguity is thought to be conducive to the persistence of many sensitive species, availability of funding and suitable land may restrict the extent to which this spatial attribute can be pursued in land management or conservation. Using optimization modeling, we explore the economic and spatial tradeoffs of retaining or restoring grassland habitat in contiguous patches of various sizes near the Chicago metropolitan area. The underlying mathematical construct is the first exact, generalized formulation that directly models spatial contiguity in optimal reserve selection. The construct allows conservation planners to analyze and weigh different minimum contiguous habitat size requirements that are to be used in specific land acquisition or retention projects.
Author Snyder, Stephanie A.
Haight, Robert G.
Tóth, Sándor F.
Miller, James R.
Gregory, Mark S.
Skibbe, Adam M.
George, Sonney
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  givenname: Adam M.
  surname: Skibbe
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  email: askibbe@ksu.edu
  organization: Division of Biology, Kansas State University, 116 Ackert Hall, Manhattan, KS 66506, United States
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Issue 8
Keywords 0–1 Programming
Reserve design
Urban sprawl
Spatial optimization
Contiguity
Landscape
0-1 Programming
Openfield
Urban area
Planning
Protection
Optimization
Language English
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Snippet Conservation efforts often require site or parcel selection strategies that lead to spatially cohesive reserves. Although habitat contiguity is thought to be...
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SubjectTerms 0–1 Programming
Animal, plant and microbial ecology
Applied ecology
Biological and medical sciences
conservation areas
Conservation, protection and management of environment and wildlife
Contiguity
Fundamental and applied biological sciences. Psychology
grasslands
habitats
land use planning
mathematical models
optimization
Parks, reserves, wildlife conservation. Endangered species: population survey and restocking
Reserve design
simulation models
Spatial optimization
suburban areas
urban planning
Urban sprawl
wild birds
Title Reserve selection with minimum contiguous area restrictions: An application to open space protection planning in suburban Chicago
URI https://dx.doi.org/10.1016/j.biocon.2009.02.037
https://search.proquest.com/docview/20623663
https://search.proquest.com/docview/34428908
https://search.proquest.com/docview/903639364
Volume 142
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