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Mechanisms Affecting Population Density in Fragmented Habitat

Bibliographic Data

ID4239284
AuthorsLutz Tischendorf (ELUTIS Modelling and Consulting (Canada)), Audrey Grez, Audrey A Grez (0000-0002-6907-1283, University of Chile), Tania Zaviezo (0000-0002-4993-0386, Pontificia Universidad Católica de Chile), Lenore Fahrig (0000-0002-3841-0342, Carleton University)
Year2005
Volume10
Issue1
Publication date2005-01-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueConservation Ecology (JOURNAL)
Journal identifiersISSN: 1195-5449 • E-ISSN: 1708-3087
PublisherResilience Alliance (PUBLISHER • CA)
DOI10.5751/es-01265-100107
OpenAlexW2149497874
LanguageEN
Citations received1
References cited2

We conducted a factorial simulation experiment to analyze the relative importance of movement pattern, boundary-crossing probability, and mortality in habitat and matrix on population density, and its dependency on habitat fragmentation, as well as inter-patch distance. We also examined how the initial response of a species to a fragmentation event may affect our observations of population density in post-fragmentation experiments. We found that the boundary-crossing probability from habitat to matrix, which partly determines the emigration rate, is the most important determinant for population density within habitat patches. The probability of crossing a boundary from matrix to habitat had a weaker, but positive, effect on population density. Movement behavior in habitat had a stronger effect on population density than movement behavior in matrix. Habitat fragmentation and inter-patch distance may have a positive or negative effect on population density. The direction of both effects depends on two factors. First, when the boundary-crossing probability from habitat to matrix is high, population density may decline with increasing habitat fragmentation. Conversely, for species with a high matrix-to-habitat boundary-crossing probability, population density may increase with increasing habitat fragmentation. Second, the initial distribution of individuals across the landscape: we found that habitat fragmentation and inter-patch distance were positively correlated with population density when individuals were distributed across matrix and habitat at the beginning of our simulation experiments. The direction of these relationships changed to negative when individuals were initially distributed across habitat only. Our findings imply that the speed of the initial response of organisms to habitat fragmentation events may determine the direction of observed relationships between habitat fragmentation and population density. The time scale of post-fragmentation studies must, therefore, be adjusted to match the pace of post-fragmentation movement responses

Biology · Density dependence · Geography · Habitat · Habitat destruction · Habitat fragmentation · Population · Population density · Animal Ecology and Behavior Studies · Demography · Ecology and Vegetation Dynamics Studies · Wildlife Ecology and Conservation · Ecology

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  • Patch Size and Population Density

    Open Access•J Bowman, Naomi Cappuccino et al.•Conservation Ecology•2002

Unique citing works1
Citations per year0,05
Citation span2005 - 2005 (1)
Citation velocityhistorical
Highly citedNo

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