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Data from: Using spatial capturerecapture to elucidate population processes and space-use in herpetological studies
负责人:
Mu?oz, David J.
关键词:
Capture mark-recapture Density Dispersal Population ecology Spatial ecology Study design Survival
DOI:
doi:10.5061/dryad.0nm8t
摘要:
r locations allows accurate estimates of population densities and survival. Spatial capturerecapture methods also allow estimation of parameters describing
Data from: Estimating population density and connectivity of American mink using spatial capture-recapture
负责人:
Fuller, Angela K.
关键词:
abundance American mink animal movement connectivity density 36 non-invasive genetic scat detection dog spatial capture-recapture
DOI:
doi:10.5061/dryad.s7ph4
摘要:
c samples of American mink (Neovison vison) individuals, and used spatial capture-recapture models (SCR) to gain inferences about mink population
Data from: Separating mortality and emigration: modelling space use, dispersal and survival with robust-design spatial-capture-recapture data
负责人:
关键词:
Space use;SCR;survival;Arvicolinae;Rodentia;Dispersal;movements;field vole;Mammalia;capture-recapture;Cricetidae;Muroidea;home range;spatial capture recapture;Microtus agrestis
DOI:
doi:10.5061/dryad.r17n5
摘要:
of populations. However, traditional CR models cannot separate mortality from emigration. Recently developed spatial-capture-recapture (SCR) models explicitly
Data from: Estimating population density of the white-tailed deer in Finland using non-invasive genetic sampling and spatial capturerecapture
负责人:
关键词:
spatial capture recapture;Odocoileus virginianus
DOI:
doi:10.5061/dryad.43j74d0
摘要:
ng non-invasive DNA collection within a spatial capturerecapture (SCR) framework. We sampled faeces during three weekly visits in autumn 2015 from 180, 20 x 20
Data from: Examining disease prevalence for species of conservation concern using non-invasive spatial capture-recapture techniques
负责人:
Muneza, Arthur B.
关键词:
Disease prevalence Giraffe Skin Disease Noninvasive surveys Population modeling Spatial capture-recapture
DOI:
doi:10.5061/dryad.2s910
摘要:
on and fitted spatial capturerecapture models to predict the spatial configuration of giraffe abundance and GSD prevalence within the study area. 5. Our result
Data from: A spatially explicit hierarchical model to characterize population viability
负责人:
Campbell, Steven
关键词:
capture-recapture CAR model demography multi-state model population viability analysis recruitment Sonoran desert tortoise spatial autoregressive model survival spatial variation
DOI:
doi:10.5061/dryad.v0q5035
摘要:
, spatial autoregressive model for capture-recapture data from multiple locations to obtain spatially explicit estimates of adult survival (Φad), juvenile survival (Φjuv
Data from: Genetic sampling for estimating density of common species
负责人:
关键词:
fecal pellets;non-invasive genetic sampling;density estimators;spatial capture-recapture;Lepus americanus;2006-2009;snowshoe hare
DOI:
doi:10.5061/dryad.s04h8
摘要:
(Lepus americanus Erxleben, 1777), in comparison with traditional live trapping. We optimized a protocol for single-session NGS sampling of hares. We compared spatial
Data from: A local evaluation of the individual state-space to scale up Bayesian spatial capture recapture
负责人:
Milleret, Cyril
关键词:
SCR abundance local evaluation of state space
DOI:
doi:10.5061/dryad.42m96c8
摘要:
1. Spatial capture-recapture models (SCR) are used to estimate animal density and to investigate a range of problems in spatial ecology that cann
Data from: Using partial aggregation in Spatial Capture Recapture
负责人:
关键词:
Gulo gulo;wolverines
DOI:
doi:10.5061/dryad.pd612qp
摘要:
1. Spatial capture-recapture (SCR) models are commonly used for analyzing data collected using non-invasive genetic sampling (NGS). Opportunistic NGS
Data from: Applying the multistate capture-recapture robust design to characterize metapopulation structure
负责人:
Chabanne, Delphine
关键词:
spatial scales heterogeneity subpopulations local transitions mark-recapture wildlife conservation distribution
DOI:
doi:10.5061/dryad.24s3c
摘要:
1. Population structure must be considered when developing mark-recapture (MR) study designs as the sampling of individuals from multiple populati

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