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Data from: Markov-modulated Poisson processes as a new framework for analyzing capture-recapture data
负责人:
关键词:
Capra ibex;spring 2011;Breeding
DOI:
doi:10.5061/dryad.098c4
摘要:
1.Opportunistic capture-recapture data consists of observations over non-constant time-intervals and so fails to satisfy the basic assumpt
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:
an application of using capture-recapture to develop a model of animal density using a least-cost path model for individual encounter probability that accounts
Data from: Effect of light-level geolocators on apparent survival of two highly aerial swift species
负责人:
关键词:
Apus pallidus;aerial foragers;survival;capture-mark-recapture;Apus apus;geolocator
DOI:
doi:10.5061/dryad.b1t42
摘要:
of highly aerial species have been poorly investigated so far. We recorded capture-recapture histories of 283 common swifts Apus apus and 107 pallid swifts
Data from: Integrated population modeling provides the first empirical estimates of vital rates and abundance for polar bears in the Chukchi Sea
负责人:
关键词:
vital rates;polar bear;abundance;sea ice;capture-recapture;carnivore;movement;integrated population model;Ursus maritimus;climate change
DOI:
doi:10.5061/dryad.692jb15
摘要:
ke it difficult to estimate demographic parameters needed for management. Here we develop an integrated population model to analyze capture-recapture
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:
capturerecapture population estimates from live trapping to estimates derived from NGS, and assessed NGS costs. NGS provided population estimates sim
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:
in Tanzania's Ruaha National Park over a 4-month period in 2015, using photographic capturerecapture surveys via road-based transects. We divided the study ar
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 populations
Data from: Comparison of photo-matching algorithms commonly used for photographic capture-recapture studies
负责人:
关键词:
Triturus carnifex;Salamandra infraimmaculata;Abystoma opacum;Bombina variegata;Wild-ID;Salamandra salamandra;I3S;AmphIdent;APHIS;Triturus cristatus
DOI:
doi:10.5061/dryad.4f0bh
摘要:
Photographic capturerecapture is a valuable tool for obtaining demographic information on wildlife populations due to its noninvasive nature
Data from: Use of hidden Markov capture-recapture models to estimate abundance in presence of uncertainty: application to estimating the prevalence
负责人:
Santostasi, Nina Luisa
关键词:
hidden Markov models capture-recapture hybridization Viterbi algorithm
DOI:
doi:10.5061/dryad.8g8r675
摘要:
of the diagnostic methods. We developed a hidden Markov (also known as multievent) capturerecapture model to estimate prevalence in free‐ranging populations accounting

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