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Martes pennanti LaPoint New York
负责人:
University Of Konstanz
关键词:
animal movement carnivore fisher Martes pennanti animal ecology animal tracking New York
DOI:
doi:10.5441/001/1.2tp2j43g/2
摘要:
s, (2) animal movement data can be used to identify corridors at local scales, (3) camera traps are useful tools for testing corridor model predictions, and (4) tha
Martes pennanti LaPoint New York-reference data
负责人:
University Of Konstanz
关键词:
animal movement carnivore fisher Martes pennanti animal ecology animal tracking New York
DOI:
doi:10.5441/001/1.2tp2j43g/1
摘要:
s, (2) animal movement data can be used to identify corridors at local scales, (3) camera traps are useful tools for testing corridor model predictions, and (4) tha
Data from: Predicting the continuum between corridors and barriers to animal movements using Step Selection Functions and Randomized Shortest Paths
负责人:
关键词:
animal movement corridors Step Selection Function Randomized Shortest Path bottlenecks connectivity gene-flow graph-theory green infrastructures obstacles permeability
DOI:
doi:10.5061/dryad.4v13r
摘要:
animal movement (corridors) or impedes it (barriers). Most algorithms used to predict corridors assume that animals move through preferred habitat either optimal
Data from: Animal behavior, cost-based corridor models, and real corridors
负责人:
University Of Konstanz
关键词:
animal movement carnivore circuit theory connectivity conservation fisher least-cost path Martes pennanti
DOI:
doi:10.5441/001/1.2tp2j43g
摘要:
s, (2) animal movement data can be used to identify corridors at local scales, (3) camera traps are useful tools for testing corridor model predictions, and (4) tha
Data from: Functional connectivity experiments reflect routine movement behavior of a tropical hummingbird species
负责人:
关键词:
translocation routine movement hummingbird step selection functions fragmentation functional connectivity
DOI:
doi:10.5061/dryad.27900
摘要:
Translocation experiments, in which researchers displace animals then monitor their movements to return home, are commonly used as tools to assess functional
Data from: Does wildlife resource selection accurately inform corridor conservation?
负责人:
Wilson, Alan M.
关键词:
behavioural state conservation planning corridor ecology dispersal landscape connectivity landscape resistance movement ecology resource selection step selection
DOI:
doi:10.5061/dryad.66kc7
摘要:
Evaluating landscape connectivity and identifying and protecting corridors for animal movement have become central challenges in applied ecology
Data from: Shark movement strategies influence poaching risk and can guide enforcement decisions in a large, remote Marine Protected Area
负责人:
关键词:
Spatial networks;Carcharhinus albimarginatus;illegal fisheries;telemetry;elasmobranch;Carcharhinus amblyrhynchos;mobility patterns;MPA
DOI:
doi:10.5061/dryad.g98b456
摘要:
, ecological data on the space use and movements of desirable species, such as large-bodied reef predators, must be incorporated into management plans. Here, we use
Data from: Hypothesis-driven and field-validated method to prioritize fragmentation mitigation efforts in road projects
负责人:
关键词:
Animal movement Habitat suitability modelling Least-cost corridor Road crossings Road fragmentation mitigation Unpaved road
DOI:
doi:10.5061/dryad.rp46p
摘要:
changes in animal movements for buffalo and sitatunga that shift from a local exploitation of the site in the wet season to movements through the study site in the dry season
Data from: Challenges in the conservation of wide-ranging nomadic species
负责人:
Dejid, Nandintsetseg
关键词:
animal movement crossing structure space use protected area nomadic ungulate arid conservation permeability landscape
DOI:
doi:10.5061/dryad.23nt63c
摘要:
ticular concern. Because nomadic ungulates lack fidelity to certain movement corridors we advocate integrated land use planning that prioritizes
STEP Processes - Non-planning Units
负责人:
Daly, Brenda;;South African Environmental Observation Network
关键词:
Biodiversity STEP WMS
DOI:
doi:10.15493/sarva.bgis.10000102
摘要:
ong thicket and adjacent biome (fynbos, grassland, succulent karoo and Nama-karoo); STEP vegetation types; Habitat transformation - Sand movement corridors

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