This is the complete list of trap locations used to provide the spatial element in the Spatially Explicit Capture Recapture models which we used to calculate population density in the paper. The data comprises a grid-specific X- and Y- coordinate for every trap location in our data. For an explanation of how these were derived, see the README
When estimating population density from data collected on non-invasive detector arrays, recently dev...
Spatial capture-recapture (SCR) is now routinely used for estimating abundance and density of wildli...
We develop a class of models for inference about abundance or density using spatial capture-recaptur...
This is the complete list of trap locations used to provide the spatial element in the Spatially Exp...
This is the master file for all the capture history data, used to calculate population density via S...
There has been a rapid growth in spatial capture-recapture (SCR) methods in the last decade. This pa...
Live-trapping capture-recapture studies of animal populations with fixed trap locations inevitably h...
Recently developed spatial capture-recapture (SCR) models represent a major advance over traditional...
1. Spatial capture-recapture (SCR) methods use the location of detectors (camera traps, hair snares,...
An increasing number of studies employ spatial capture-recapture models to estimate population size,...
We develop a hierarchical capture-recapture model for demographically open populations when auxiliar...
Over the past two decades there have been many advancements in modeling capture-recapture (CR) data ...
The authors would like to provide corrections to several of the values reported in this paper. Speci...
Unbiased estimation of population density is a major and unsolved problem in animal trapping studies...
When estimating population density from data collected on non-invasive detector arrays, recently dev...
When estimating population density from data collected on non-invasive detector arrays, recently dev...
Spatial capture-recapture (SCR) is now routinely used for estimating abundance and density of wildli...
We develop a class of models for inference about abundance or density using spatial capture-recaptur...
This is the complete list of trap locations used to provide the spatial element in the Spatially Exp...
This is the master file for all the capture history data, used to calculate population density via S...
There has been a rapid growth in spatial capture-recapture (SCR) methods in the last decade. This pa...
Live-trapping capture-recapture studies of animal populations with fixed trap locations inevitably h...
Recently developed spatial capture-recapture (SCR) models represent a major advance over traditional...
1. Spatial capture-recapture (SCR) methods use the location of detectors (camera traps, hair snares,...
An increasing number of studies employ spatial capture-recapture models to estimate population size,...
We develop a hierarchical capture-recapture model for demographically open populations when auxiliar...
Over the past two decades there have been many advancements in modeling capture-recapture (CR) data ...
The authors would like to provide corrections to several of the values reported in this paper. Speci...
Unbiased estimation of population density is a major and unsolved problem in animal trapping studies...
When estimating population density from data collected on non-invasive detector arrays, recently dev...
When estimating population density from data collected on non-invasive detector arrays, recently dev...
Spatial capture-recapture (SCR) is now routinely used for estimating abundance and density of wildli...
We develop a class of models for inference about abundance or density using spatial capture-recaptur...