References

Akima, H., & Gebhardt, A. (2022). akima: Interpolation of irregularly and regularly spaced data. https://CRAN.R-project.org/package=akima
Allaire, J., Francois, R., Ushey, K., Vandenbrouck, G., Geelnard, M., & Intel. (2023). RcppParallel: Parallel programming tools for ’rcpp’. https://CRAN.R-project.org/package=RcppParallel
Augustine, B. C., Royle, J. A., Kelly, M. J., Satter, C. B., Alonso, R. S., Boydston, E. E., & Crooks, K. R. (2018). Spatial capture–recapture with partial identity: An application to camera traps. The Annals of Applied Statistics, 12(1). https://doi.org/10.1214/17-aoas1091
Augustine, B. C., Royle, J. A., Linden, D. W., & Fuller, A. K. (2020). Spatial proximity moderates genotype uncertainty in genetic tagging studies. Proceedings of the National Academy of Sciences, 117(30), 17903–17912. https://doi.org/10.1073/pnas.2000247117
Baddeley, A., Rubak, E., & Turner, R. (2015). Spatial point patterns. Chapman; Hall/CRC. https://doi.org/10.1201/b19708
Bischof, R., Dupont, P., Milleret, C., Chipperfield, J., & Royle, J. A. (2020). Consequences of ignoring group association in spatial capture–recapture analysis. Wildlife Biology, 2020(1), 1–10. https://doi.org/10.2981/wlb.00649
Borchers, D. L., Buckland, S. T., & Zucchini, W. (2002). Estimating animal abundance. In Statistics for Biology and Health. Springer London. https://doi.org/10.1007/978-1-4471-3708-5
Borchers, D. L., & Efford, M. G. (2007). Supplements to biometrics paper. https://www.otago.ac.nz/density
Borchers, D. L., & Efford, M. G. (2008). Spatially explicit maximum likelihood methods for capture-recapture studies. Biometrics, 64, 377–385. https://doi.org/10.1111/j.1541-0420.2007.00927.x
Borchers, D. L., & Fewster, R. (2016). Spatial capture–recapture models. Statistical Science, 31(2). https://doi.org/10.1214/16-sts557
Borchers, D. L., & Kidney, D. (2014). Flexible density surface estimation for spatially explicit capture–recapture surveys. University of St Andrews. https://research-repository.st-andrews.ac.uk/bitstream/handle/10023/9147/secrgam_techrep.pdf?sequence=1
Borchers, D. L., Stevenson, B. C., Kidney, D., Thomas, L., & Marques, T. A. (2015). A unifying model for capture–recapture and distance sampling surveys of wildlife populations. Journal of the American Statistical Association, 110(509), 195–204. https://doi.org/10.1080/01621459.2014.893884
Boutin, S. (1984). Home range size and methods of estimating snowshoe hare densities. Acta Zoologica Fennica, 171, 275–278.
Boyce, M. S., Vernier, P. R., Nielsen, S. E., & Schmiegelow, F. K. A. (2002). Evaluating resource selection functions. Ecological Modelling, 157, 281–300.
Brooks, C., S. P., & Morgan, B. J. T. (2000). Bayesian animal survival estimation. Statistical Science, 15, 357–376.
Brooks, S. P., Morgan, B. J. T., Ridout, M. S., & Pack, S. E. (1997). Finite mixture models for proportions. Biometrics, 53(3), 1097. https://doi.org/10.2307/2533567
Buckland, S. T., Anderson, D. R., Burnham, K. P., Laake, J. L., Borchers, D. L., & Thomas, L. (2001). Introduction to distance sampling. Oxford University Press.
Buckland, S. T., Burnham, K. P., & Augustin, N. H. (1997). Model selection: An integral part of inference. Biometrics, 53(2), 603. https://doi.org/10.2307/2533961
Buckland, S. T., Rexstad, E. A., Marques, T. A., & Oedekoven, C. S. (2015). Distance sampling: Methods and applications. Springer.
Burnham, K. P., & Anderson, D. R. (2002). Model selection and multimodel inference: A practical information-theoretic approach. Springer.
Burnham, K. P., Anderson, D. R., White, G. C., Brownie, C., & Pollock, K. H. (1987). Design and analysis methods for fish survival experiments based on release-recapture. American Fisheries Society.
Calhoun, J. B., & Casby, J. U. (1958). Calculation of home range and density of small mammals. Public Health Monograph, 55.
Chandler, R. B., Crawford, D. A., Garrison, E. P., Miller, K. V., & Cherry, M. J. (2021). Modeling abundance, distribution, movement and space use with camera and telemetry data. Ecology, 103(10). https://doi.org/10.1002/ecy.3583
Chandler, R. B., & Royle, J. A. (2013). Spatially explicit models for inference about density in unmarked or partially marked populations. Annals of Applied Statistics, 7, 936–954.
Chandler, R., & Hepinstall-Cymerman, J. (2016). Estimating the spatial scales of landscape effects on abundance. Landscape Ecology, 31, 1383–1394. https://doi.org/10.1007/s10980-016-0380-z
Chao, A. (1989). Estimating population size for sparse data in capture-recapture experiments. Biometrics, 45(2), 427. https://doi.org/10.2307/2531487
Choo, Y. R., Sutherland, C., & Johnston, A. (2024). A monte carlo resampling framework for implementing goodness‐of‐fit tests in spatial capture‐recapture models. Methods in Ecology and Evolution, 15, 1653–1666. https://doi.org/10.1111/2041-210x.14386
Clark, J. D. (2019). Comparing clustered sampling designs for spatially explicit estimation of population density. Population Ecology, 61, 93–101.
Cochran, W. G. (1977). Sampling techniques. (3rd ed.). John Wiley; Sons.
Cooch, E., & White, G. (Eds.). (2023). Program MARK: A gentle introduction. (23rd ed.). http://www.phidot.org/software/mark/docs/book/
Csardi, G., & Nepusz, T. (2006). The igraph software package for complex network research. InterJournal, 1695. http://igraph.org
Dawson, D. K., & Efford, M. G. (2009). Bird population density estimated from acoustic signals. Journal of Applied Ecology, 46, 1201–1209.
Després‐Einspenner, M., Howe, E. J., Drapeau, P., & Kühl, H. S. (2017). An empirical evaluation of camera trapping and spatially explicit capture‐recapture models for estimating chimpanzee density. American Journal of Primatology, 79(7). https://doi.org/10.1002/ajp.22647
Dey, S., Moqanaki, E., Milleret, C., Dupont, P., Tourani, M., & Bischof, R. (2023). Modelling spatially autocorrelated detection probabilities in spatial capture-recapture using random effects. Ecological Modelling, 479, 110324. https://doi.org/10.1016/j.ecolmodel.2023.110324
Distiller, G., & Borchers, D. L. (2015). A spatially explicit capture–recapture estimator for single‐catch traps. Ecology and Evolution, 5(21), 5075–5087. https://doi.org/10.1002/ece3.1748
Doherty, P. F., White, G. C., & Burnham, K. P. (2010). Comparison of model building and selection strategies. Journal of Ornithology, 152(S2), 317–323. https://doi.org/10.1007/s10336-010-0598-5
Dorazio, R. M. (2013). Bayes and empirical bayes estimators of abundance and density from spatial capture-recapture data. PLoS ONE, 8, e84017.
Dumelle, M., Kincaid, T. M., Olsen, A. R., & Weber, M. H. (2024). Spsurvey: Spatial sampling design and analysis. In R package version 5.5.1. https://CRAN.R-project.org/package=spsurvey
Dumelle, M., Kincaid, T., Olsen, A. R., & Weber, M. (2023). Spsurvey: Spatial sampling design and analysis in r. Journal of Statistical Software, 105. https://doi.org/10.18637/jss.v105.i03
Dunn, J. E., & Gipson, P. S. (1977). Analysis of radio telemetry data in studies of home range. Biometrics, 33(1), 85. https://doi.org/10.2307/2529305
Dupont, G., Royle, J. A., Nawaz, M. A., & Sutherland, C. (2021). Optimal sampling design for spatial capture-recapture. Ecology, 102, e03262.
Dupont, P., Milleret, C., Gimenez, O., & Bischof, R. (2019). Population closure and the bias‐precision trade‐off in spatial capture–recapture. Methods in Ecology and Evolution, 10(5), 661–672. https://doi.org/10.1111/2041-210x.13158
Durbach, I., Borchers, D., Sutherland, C., & Sharma, K. (2021). Fast, flexible alternatives to regular grid designs for spatial capture-recapture. Methods in Ecology and Evolution, 12(298-310), 2041–2210. https://doi.org/10.1111/2041-210X.13517
Durbach, I., Chopara, R., Borchers, D. L., Phillip, R., Sharma, K., & Stevenson, B. C. (2024). That’s not the mona lisa! How to interpret spatial capture-recapture density surface estimates. Biometrics, 80. https://doi.org/10.1093/biomtc/ujad020
Eddelbuettel, D., Francois, R., Allaire, J., Ushey, K., Kou, Q., Russell, N., Ucar, I., Bates, D., & Chambers, J. (2023). Rcpp: Seamless r and c++ integration. https://CRAN.R-project.org/package=Rcpp
Edzer, E., & Bivand, R. (2023). Spatial Data Science: With applications in R (p. 352). Chapman; Hall/CRC. https://doi.org/10.1201/9780429459016
Efford, M. G. (2004). Density estimation in live-trapping studies. Oikos, 106, 598–610.
Efford, M. G. (2011). Estimation of population density by spatially explicit capture-recapture analysis of data from area searches. Ecology, 92, 2202–2207.
Efford, M. G. (2012). DENSITY 5.0: Software for spatially explicit capture-recapture. Department of Mathematics; Statistics, University of Otago. https://www.otago.ac.nz/density
Efford, M. G. (2014). Bias from heterogeneous usage of space in spatially explicit capture-recapture analyses. Methods in Ecology and Evolution, 5, 599–602.
Efford, M. G. (2019). Non‐circular home ranges and the estimation of population density. Ecology, 100(2). https://doi.org/10.1002/ecy.2580
Efford, M. G. (2023a). ipsecr: An R package for awkward spatial capture–recapture data. Methods in Ecology and Evolution, 14(5), 1182–1189. https://doi.org/10.1111/2041-210x.14088
Efford, M. G. (2023b). secrdesign: Sampling Design for Spatially Explicit Capture-Recapture. https://CRAN.R-project.org/package=secrdesign
Efford, M. G. (2024). secrlinear: Spatially Explicit Capture-Recapture for Linear Habitats. https://CRAN.R-project.org/package=secrlinear
Efford, M. G. (2025a). secr: Spatially explicit capture-recapture models. https://CRAN.R-project.org/package=secr
Efford, M. G. (2025b). Spatially explicit capture–recapture models for relative density. BioRxiv. https://doi.org/10.1101/2025.01.22.634401
Efford, M. G., Borchers, D. L., & Byrom, A. E. (2009). Density estimation by spatially explicit capture-recapture: Likelihood-based methods. In D. L. Thomson, E. G. Cooch, & M. J. Conroy (Eds.), Modeling demographic processes in marked populations (pp. 255–269). Springer.
Efford, M. G., Borchers, D. L., & Mowat, G. (2013). Varying effort in capture-recapture studies. Methods in Ecology and Evolution, 4, 629–636.
Efford, M. G., & Boulanger, J. (2019). Fast evaluation of study designs for spatially explicit capture-recapture. Methods in Ecology and Evolution, 10, 1529–1535. https://doi.org/10.1111/2041-210X.13239
Efford, M. G., & Cowan, P. E. (2004). Long-term population trend of trichosurus vulpecula in the orongorongo valley, new zealand. In R. L. Goldingay & S. M. Jackson (Eds.), The biology of australian possums and gliders (pp. 471–483). Surrey Beatty & Sons.
Efford, M. G., Dawson, D. K., & Borchers, D. L. (2009). Population density estimated from locations of individuals on a passive detector array. Ecology, 90, 2676–2682.
Efford, M. G., Dawson, D. K., Jhala, Y. V., & Qureshi, Q. (2016). Density-dependent home-range size revealed by spatially explicit capture-recapture. Ecography, 39, 676–688.
Efford, M. G., Dawson, D. K., & Robbins, C. S. (2004). DENSITY: Software for analysing capture-recapture data from passive detector arrays. Animal Biodiversity and Conservation, 27, 217–228.
Efford, M. G., & Fewster, R. M. (2013). Estimating population size by spatially explicit capture-recapture. Oikos, 122, 918–928.
Efford, M. G., & Fletcher, D. (2024). Effect of spatial overdispersion on confidence intervals for population density estimated by spatial capture-recapture. bioRxiv. https://doi.org/10.1101/2024.03.12.584742
Efford, M. G., & Hunter, C. M. (2018). Spatial capture-mark-resight estimation of animal population density. Biometrics, 74, 411–420. https://doi.org/10.1111/biom.12766
Efford, M. G., & Mowat, G. (2014). Compensatory heterogeneity in spatially explicit capture-recapture data. Ecology, 95, 1341–1348.
Efford, M. G., & Schofield, M. R. (2020). A spatial open-population capture-recapture model. Biometrics, 76, 392–402.
Efford, M. G., Warburton, B., Coleman, M. C., & Barker, R. J. (2005). A field test of two methods for density estimation. Wildlife Society Bulletin, 33, 731–738.
Ergon, T., & Gardner, B. (2013). Separating mortality and emigration: Modelling space use, dispersal and survival with robust‐design spatial capture–recapture data. Methods in Ecology and Evolution, 5(12), 1327–1336. https://doi.org/10.1111/2041-210x.12133
Evans, M. A., Kim, H.-M., & O’Brien, T. E. (1996). An application of profile-likelihood based confidence interval to capture: Recapture estimators. Journal of Agricultural, Biological, and Environmental Statistics, 1(1), 131. https://doi.org/10.2307/1400565
Fewster, R. M., & Buckland, S. T. (2004). Assessment of distance sampling estimators. In S. T. Buckland, D. R. Anderson, K. P. Burnham, J. L. Laake, D. L. Borchers, & L. Thomas (Eds.), Advanced distance sampling (pp. 281–306). Oxford University Press.
Fieberg, J. (2007). Kernel density estimators of home range: Smoothing and the autocorrelation red herring. Ecology, 88, 1059–1066.
Fleming, J., Grant, E. H. C., Sterrett, S. C., & Sutherland, C. (2021). Experimental evaluation of spatial capture–recapture study design. Ecological Applications, 31(7). https://doi.org/10.1002/eap.2419
Fletcher, D. (2019). Model averaging. Springer.
Gardner, B., Royle, J. A., & Wegan, M. T. (2009). Hierarchical models for estimating density from DNA mark-recapture studies. Ecology, 90, 1106–1115.
Gelman, M., A., & Stern, H. (1996). Posterior predictive assessment of model fitness via realized disrepancies. Statistica Sinica, 6, 733–807.
Gerber, B. D., & Parmenter, R. R. (2015). Spatial capture–recapture model performance with known small‐mammal densities. Ecological Applications, 25(3), 695–705. https://doi.org/10.1890/14-0960.1
Gimenez, O., Viallefont, A., Catchpole, E. A., Choquet, R., & Morgan, B. J. T. (2004). Methods for investigating parameter redundancy. Animal Biodiversity and Conservation, 27, 561–572.
Gopalaswamy, A. M., Royle, J. A., Delampady, M., Nichols, J. D., Karanth, K. U., & Macdonald, D. W. (2012). Density estimation in tiger populations: Combining information for strong inference. Ecology, 93(7), 1741–1751. https://doi.org/10.1890/11-2110.1
Hahsler, M., & Hornik, K. (2007). TSP- infrastructure for the traveling salesperson problem. Journal of Statistical Software, 23(2). https://doi.org/10.18637/jss.v023.i02
Harihar, A., Chanchani, P., Pariwakam, M., Noon, B. R., & Goodrich, J. (2017). Defensible inference: Questioning global trends in tiger populations. Conservation Letters, 10(5), 502–505. https://doi.org/10.1111/conl.12406
Hayes, R. J., & Buckland, S. T. (1983). Radial-distance models for the line-transect method. Biometrics, 39, 29–42.
Hijmans, R. J. (2023a). Raster: Geographic data analysis and modeling. In R package version 3.6-26. https://CRAN.R-project.org/package=raster
Hijmans, R. J. (2023b). Terra: Spatial data analysis. https://CRAN.R-project.org/package=terra
Hooten, M. B., Johnson, D. S., McClintock, B. T., & Morales, J. M. (2017). Animal movement: Statistical models for telemetry data. CRC Press. https://doi.org/10.1201/9781315117744
Hooten, M. B., Schwob, M. R., Johnson, D. S., & Ivan, J. S. (2024). Geostatistical capture–recapture models. Spatial Statistics, 59, 100817. https://doi.org/10.1016/j.spasta.2024.100817
Huggins, R. M. (1989). On the statistical analysis of capture experiments. Biometrika, 76, 133–140.
Hurvich, C. M., & Tsai, C.-L. (1989). Regression and time series model selection in small samples. Biometrika, 76(2), 297–307. https://doi.org/10.1093/biomet/76.2.297
Huxley, J. S. (1934). A natural experiment on the territorial instinct. British Birds, 27, 270–277.
Illian, J., Penttinen, A., Stoyan, H., & Stoyan, D. (2008). Statistical analysis and modelling of spatial point patterns. Wiley.
Ivan, J. S., White, G. C., & Shenk, T. M. (2013). Using auxiliary telemetry information to estimate animal density from capture–recapture data. Ecology, 94(4), 809–816. https://doi.org/10.1890/12-0101.1
Jackson, H. B., & Fahrig, L. (2014). Are ecologists conducting research at the optimal scale? Global Ecology and Biogeography, 24, 52–63. https://doi.org/10.1111/geb.12233
Jennrich, R. I., & Turner, F. B. (1969). Measurement of non-circular home range. Journal of Theoretical Biology, 22, 227–237. https://doi.org/10.1016/0022-5193(69)90002-2
Johansson, Ö., Samelius, G., Wikberg, E., Chapron, G., Mishra, C., & Low, M. (2020). Identification errors in camera-trap studies result in systematic population overestimation. Scientific Reports, 10. https://doi.org/10.1038/s41598-020-63367-z
Johnson, D. H. (1980). The comparison of usage and availability measurements for evaluating resource preference. Ecology, 61, 65–71.
Johnson, D. S., Laake, J. L., & Ver Hoef, J. M. (2010). A model‐based approach for making ecological inference from distance sampling data. Biometrics, 66(1), 310–318. https://doi.org/10.1111/j.1541-0420.2009.01265.x
Johnson, D. S., London, J. M., Lea, M.-A., & Durban, J. W. (2008). Continuous-time correlated random walk model for animal telemetry data. Ecology, 89(5), 1208–1215. https://doi.org/10.1890/07-1032.1
Karanth, K. U., & Nichols, J. D. (1998). Estimation of tiger densities in india using photographic captures and recaptures. Ecology, 79, 2852–2862.
Kendall, W. L. (1999). Robustness of closed capture–recapture methods to violations of the closure assumption. Ecology, 80(8), 2517–2525. https://doi.org/10.1890/0012-9658(1999)080[2517:roccrm]2.0.co;2
Kendeigh, S. C. (1944). Measurement of bird populations. Ecological Monographs, 14, 67–106. https://doi.org/10.2307/1961632
Kéry, M., & Royle, J. A. (2020). Applied hierarchical modeling in ecology. Volume 2. Elsevier Science.
King, R., McClintock, B. T., Kidney, D., & Borchers, D. (2016). Capture–recapture abundance estimation using a semi-complete data likelihood approach. The Annals of Applied Statistics, 10, 264–285. https://doi.org/10.1214/15-aoas890
Kodi, A. R., Howard, J., Borchers, D. L., Worthington, H., Alexander, J. S., Lkhagvajav, P., Bayandonoi, G., Ochirjav, M., Erdenebaatar, S., Byambasuren, C., Battulga, N., Johansson, Ö., & Sharma, K. (2024). Ghostbusting - reducing bias due to identification errors in spatial capture‐recapture histories. Methods in Ecology and Evolution, 15, 1060–1070. https://doi.org/10.1111/2041-210x.14326
Laake, J. L., & Collier, B. A. (2024). Understanding implications of detection heterogeneity in wildlife abundance estimation. Journal of Wildlife Management, 88, e22516. https://doi.org/10.1002/jwmg.22516
Lampa, S., Henle, K., Klenke, R., Hoehn, M., & Gruber, B. (2013). How to overcome genotyping errors in non-invasive genetic mark-recapture population size estimation-a review of available methods illustrated by a case study: Genotyping errors in CMR-a review. The Journal of Wildlife Management, 77(8), 1490–1511. https://doi.org/10.1002/jwmg.604
Laufenberg, J. S., Van Manen, F. T., & Clark, J. D. (2013). Effects of sampling conditions on DNA-based estimates of american black bear abundance: Sampling for bear population studies. Journal of Wildlife Management, 77, 1010–1020. https://doi.org/10.1002/jwmg.534
Linden, D. W., Sirén, A. P. K., & Pekins, P. J. (2018). Integrating telemetry data into spatial capture–recapture modifies inferences on multi‐scale resource selection. Ecosphere, 9(4). https://doi.org/10.1002/ecs2.2203
López-Bao, J. V., Godinho, R., Pacheco, C., Lema, F. J., García, E., Llaneza, L., Palacios, V., & Jiménez, J. (2018). Toward reliable population estimates of wolves by combining spatial capture-recapture models and non-invasive DNA monitoring. Scientific Reports, 8(1). https://doi.org/10.1038/s41598-018-20675-9
Lukacs, P. M., & Burnham, K. P. (2005). Estimating population size from DNA-based closed capture-recapture data incorporating genotyping error. Journal of Wildlife Management, 69, 396–403.
Malcolm-White, E., McMahon, C. R., & Cowen, L. L. E. (2020). Complete tag loss in capture-recapture studies affects abundance estimates: An elephant seal case study. Ecology and Evolution, 10(5), 2377–2384. https://doi.org/10.1002/ece3.6052
Margenau, L. L. S., Cherry, M. J., Miller, K. V., Garrison, E. P., & Chandler, R. B. (2022). Monitoring partially marked populations using camera and telemetry data. Ecological Applications, 32(4). https://doi.org/10.1002/eap.2553
Marques, T. A., Thomas, L., & Royle, J. A. (2011). A hierarchical model for spatial capture-recapture data: comment. Ecology, 92, 526–528.
Matechou, E., Morgan, B. J. T., Pledger, S., Collazo, J. A., & Lyons, J. E. (2013). Integrated analysis of capture-recapture-resighting data and counts of unmarked birds at stopover sites. Journal of Agricultural, Biological and Environmental Statistics, 18, 120–135.
McClintock, B. T., & White, G. C. (2012). From NOREMARK to MARK: Software for estimating demographic parameters using mark-resight methodology. Journal of Ornithology, Supplement 2, 152, S641–S650.
McCrea, R. S., & Morgan, B. J. T. (2011). Multistate mark-recapture model selection using score tests. Biometrics, 67, 234–241. https://doi.org/10.1111/j.1541-0420.2010.01421.x
McLaughlin, P., & Bar, H. (2020). A spatial capture–recapture model with attractions between individuals. Environmetrics, 32(1). https://doi.org/10.1002/env.2653
McLellan, B. A., Howe, E., Marrotte, R. R., & Northrup, J. M. (2023). Accounting for heterogeneous density and detectability in spatially explicit capture–recapture studies of carnivores. Ecosphere, 14(10). https://doi.org/10.1002/ecs2.4669
Milleret, C., Dupont, P., Brøseth, H., Kindberg, J., Royle, J. A., & Bischof, R. (2018). Using partial aggregation in spatial capture recapture. Methods in Ecology and Evolution, 9(8), 1896–1907. https://doi.org/10.1111/2041-210x.13030
Mills, L. S., Ciotta, J. C., Lair, K. P., Schwartz, M. K., & Tallmon, D. A. (2000). Estimating animal abundance using noninvasive genetic sampling: Promise and pitfalls. Ecological Applications, 10, 283–294.
Moqanaki, E. M., Milleret, C., Tourani, M., Dupont, P., & Bischof, R. (2021). Consequences of ignoring variable and spatially autocorrelated detection probability in spatial capture-recapture. Landscape Ecology, 36(10), 2879–2895. https://doi.org/10.1007/s10980-021-01283-x
Mowat, G., & Strobeck, C. (2000). Estimating population size of grizzly bears using hair capture, DNA profiling, and mark-recapture analysis. Journal of Wildlife Management, 64, 183–193.
Murphy, S. M., Cox, J. J., Augustine, B. C., Hast, J. T., Guthrie, J. M., Wright, J., McDermott, J., Maehr, S. C., & Plaxico, J. H. (2016). Characterizing recolonization by a reintroduced bear population using genetic spatial capture-recapture: Recolonization by reintroduced bear population. The Journal of Wildlife Management, 80(8), 1390–1407. https://doi.org/10.1002/jwmg.21144
Murphy, S. M., & Luja, V. H. (2025). Jaguar density estimation in mexico: The conservation importance of considering home range orientation in spatial capture–recapture. Conservation Science and Practice. https://doi.org/10.1111/csp2.13301
Noonan, M. J., Tucker, M. A., Fleming, C. H., Akre, T. S., Alberts, S. C., Ali, A. H., Altmann, J., Antunes, P. C., Belant, J. L., Beyer, D., Blaum, N., Böhning‐Gaese, K., Cullen, L., Paula, R. C. de, Dekker, J., Drescher‐Lehman, J., Farwig, N., Fichtel, C., Fischer, C., … Calabrese, J. M. (2019). A comprehensive analysis of autocorrelation and bias in home range estimation. Ecological Monographs, 89(2). https://doi.org/10.1002/ecm.1344
Noss, A. J., Gardner, B., Maffei, L., Cuéllar, E., Montaño, R., Romero‐Muñoz, A., Sollman, R., & O’Connell, A. F. (2012). Comparison of density estimation methods for mammal populations with camera traps in the <scp>k</scp>aa‐<scp>i</scp>ya del <scp>g</scp>ran <scp>c</scp>haco landscape. Animal Conservation, 15(5), 527–535. https://doi.org/10.1111/j.1469-1795.2012.00545.x
Otis, D. L., Burnham, K. P., White, G. C., & Anderson, D. R. (1978). Statistical inference from capture data on closed animal populations. Wildlife Monographs, 62.
Otis, D. L., & White, G. C. (1999). Autocorrelation of location estimates and the analysis of radiotracking data. The Journal of Wildlife Management, 63(3), 1039. https://doi.org/10.2307/3802819
Paetkau, D. (2003). An empirical exploration of data quality in DNA‐based population inventories. Molecular Ecology, 12(6), 1375–1387. https://doi.org/10.1046/j.1365-294x.2003.01820.x
Palmero, S., Premier, J., Kramer‐Schadt, S., Monterroso, P., & Heurich, M. (2023). Sampling variables and their thresholds for the precise estimation of wild felid population density with camera traps and spatial capture–recapture methods. Mammal Review, 53(4), 223–237. https://doi.org/10.1111/mam.12320
Parmenter, R., Yates, T., Anderson, D., Burnham, K., Dunnum, J., Franklin, A., Friggens, M., Lubow, B., Miller, M., Olson, G., Parmenter, C., Pollard, J., Rexstad, E., Shenk, T., Stanley, T., & White, G. (2003). Small-mammal density estimation: A field comparison of grid-based vs web-based density estimators. Ecological Monographs, 73(1), 1–26.
Paterson, J. T., Proffitt, K., Jimenez, B., Rotella, J., & Garrott, R. (2019). Simulation-based validation of spatial capture-recapture models: A case study using mountain lions. PLOS ONE, 14(4), e0215458. https://doi.org/10.1371/journal.pone.0215458
Pebesma, E. J. (2018). Simple Features for R: Standardized Support for Spatial Vector Data. The R Journal, 10(1), 439–446. https://doi.org/10.32614/RJ-2018-009
Pebesma, E. J., & Bivand, R. (2005). Classes and methods for spatial data in R. R News, 5(2), 9–13. https://CRAN.R-project.org/doc/Rnews/
Pledger, S. (2000). Unified maximum likelihood estimates for closed capture-recapture models using mixtures. Biometrics, 56, 434–442.
Proffitt, K. M., Goldberg, J. F., Hebblewhite, M., Russell, R., Jimenez, B. S., Robinson, H. S., Pilgrim, K., & Schwartz, M. K. (2015). Integrating resource selection into spatial capture‐recapture models for large carnivores. Ecosphere, 6, 1–15. https://doi.org/10.1890/es15-00001.1
Qiu, Y., Balan, S., Beall, M., Sauder, M., Okazaki, N., & Hahn, T. (2023). RcppNumerical: ’Rcpp’ integration for numerical computing libraries. https://CRAN.R-project.org/package=RcppNumerical
R Core Team. (2024). R: A language and environment for statistical computing. R Foundation for Statistical Computing. https://www.R-project.org/
Reich, B. J., & Gardner, B. (2014). A spatial capture‐recapture model for territorial species. Environmetrics, 25(8), 630–637. https://doi.org/10.1002/env.2317
Rich, L. N., Kelly, M. J., Sollmann, R., Noss, A. J., Maffei, L., Arispe, R. L., Paviolo, A., De Angelo, C. D., Blanco, D., E., Y., & Di Bitetti, M. S. (2014). Comparing capture-recapture, mark-resight, and spatial mark-resight models for estimating puma densities via camera traps. Journal of Mammalogy, 95, 382–391.
Robertson, B., McDonald, T., Price, C., & Brown, J. (2018). Halton iterative partitioning: Spatially balanced sampling via partitioning. Environmental and Ecological Statistics, 25(3), 305–323. https://doi.org/10.1007/s10651-018-0406-6
Royle, J. A., Chandler, R. B., Gazenski, K. D., & Graves, T. A. (2013). Spatial capture-recapture models for jointly estimating population density and landscape connectivity. Ecology, 94, 287–294.
Royle, J. A., Chandler, R. B., Sollmann, R., & Gardner, B. (2014). Spatial capture-recapture. Academic Press.
Royle, J. A., Chandler, R. B., Sun, C. C., & Fuller, A. K. (2013). Integrating resource selection information with spatial capture–recapture. Methods in Ecology and Evolution, 4(6), 520–530. https://doi.org/10.1111/2041-210x.12039
Royle, J. A., Fuller, A. K., & Sutherland, C. (2015). Spatial capture–recapture models allowing markovian transience or dispersal. Population Ecology, 58(1), 53–62. https://doi.org/10.1007/s10144-015-0524-z
Royle, J. A., & Gardner, B. (2011). Hierarchical spatial capture-recapture models for estimating density from trapping arrays. In A. F. O’Connell, J. D. Nichols, & K. U. Karanth (Eds.), Camera traps in animal ecology: Methods and analyses (pp. 163–190). Springer.
Royle, J. A., Karanth, K. U., Gopalaswamy, A. M., & Kumar, N. S. (2009). Bayesian inference in camera trapping studies for a class of spatial capture–recapture models. Ecology, 90(11), 3233–3244. https://doi.org/10.1890/08-1481.1
Royle, J. A., Magoun, A. J., Gardner, B., Valkenburg, P., & Lowell, R. E. (2011). Density estimation in a wolverine population using spatial capture-recapture models. Journal of Wildlife Management, 75, 604–611.
Royle, J. A., Nichols, J. D., Karanth, K. U., & Gopalaswamy, A. M. (2009). A hierarchical model for estimating density in camera‐trap studies. Journal of Applied Ecology, 46(1), 118–127. https://doi.org/10.1111/j.1365-2664.2008.01578.x
Royle, J. A., & Young, K. V. (2008). A hierarchical model for spatial capture-recapture data. Ecology, 89, 2281–2289.
Ruprecht, J. S., Eriksson, C. E., Forrester, T. D., Clark, D. A., Wisdom, M. J., Rowland, M. M., Johnson, B. K., & Levi, T. (2021). Evaluating and integrating spatial capture–recapture models with data of variable individual identifiability. Ecological Applications, 31(7). https://doi.org/10.1002/eap.2405
Russell, R. E., Royle, J. A., Desimone, R., Schwartz, M. K., Edwards, V. L., Pilgrim, K. P., & Mckelvey, K. S. (2012). Estimating abundance of mountain lions from unstructured spatial sampling. The Journal of Wildlife Management, 76(8), 1551–1561. https://doi.org/10.1002/jwmg.412
Rutledge, M. E., Sollmann, R., Washburn, B. E., Moorman, C. E., & DePerno, C. S. (2015). Using novel spatial mark-resight techniques to monitor resident canada geese in a suburban environment. Wildlife Research, 41, 447–453.
Seber, G. A. F. (1982). The estimation of animal abundance and related parameters. (2nd ed.). Griffin.
Seber, G. A. F., & Schofield, M. R. (2019). Capture-recapture: Parameter estimation for open animal populations. In Statistics for Biology and Health. Springer International Publishing. https://doi.org/10.1007/978-3-030-18187-1
Sethi, S. A., Cook, G. M., Lemons, P., & Wenburg, J. (2014). Guidelines for MSAT and SNP panels that lead to high-quality data for genetic mark–recapture studies. Canadian Journal of Zoology, 92(6), 515–526. https://doi.org/10.1139/cjz-2013-0302
Settlage, K. E., Van Manen, F. T., Clark, J. D., & King, T. L. (2008). Challenges of DNA‐based mark‐-recapture studies of american black bears. Journal of Wildlife Management, 72, 1035–1042. https://doi.org/10.2193/2006-472
Sollmann, R. (2024). Mt or not mt: Temporal variation in detection probability in spatial capture-recapture and occupancy models. Peer Community Journal, 4. https://doi.org/10.24072/pcjournal.357
Sollmann, R., Gardner, B., & Belant, J. L. (2012). How does spatial study design influence density estimates from spatial capture-recapture models? PLoS ONE, 7(4), e34575. https://doi.org/10.1371/journal.pone.0034575
Sollmann, R., Gardner, B., Parsons, A. W., Stocking, J. J., McClintock, B. T., Simons, T. R., Pollock, K. H., & O’Connell, A. F. (2013). A spatial mark-resight model augmented with telemetry data. Ecology, 94, 553–559.
Stephens, M. (2000). Dealing with label switching in mixture models. Journal of the Royal Statistical Society Series B, 62, 795–809.
Stevenson, B. C., Fewster, R. M., & Sharma, K. (2021). Spatial correlation structures for detections of individuals in spatial capture–recapture models. Biometrics, 78(3), 963–973. https://doi.org/10.1111/biom.13502
Sun, C. C., Fuller, A. K., & Royle, J. A. (2014). Trap configuration and spacing influences parameter estimates in spatial capture-recapture models. PLoS ONE, 9(2), e88025. https://doi.org/10.1371/journal.pone.0088025
Sutherland, C., Fuller, A. K., & Royle, J. A. (2015). Modelling non-euclidean movement and landscape connectivity in highly structured ecological networks. Methods in Ecology and Evolution, 6, 169–177.
Sutherland, C., Royle, J. A., & Linden, D. W. (2019). oSCR: A spatial capture-recapture R package for inference about spatial ecological processes. Ecography, 42, 1459–1469. https://doi.org/10.1111/ecog.04551
Thompson, S. K. (2012). Sampling. In Wiley Series in Probability and Statistics. Wiley. https://doi.org/10.1002/9781118162934
Tobler, M. W., & Powell, G. V. N. (2013). Estimating jaguar densities with camera traps: Problems with current designs and recommendations for future studies. Biological Conservation, 159, 109–118.
Turek, D., Milleret, C., Ergon, T., Brøseth, H., Dupont, P., Bischof, R., & Valpine, P. de. (2021). Efficient estimation of large‐scale spatial capture–recapture models. Ecosphere, 12(2). https://doi.org/10.1002/ecs2.3385
Twining, J. P., McFarlane, C., O’Meara, D., O’Reilly, C., Reyne, M., Montgomery, W. I., Helyar, S., Tosh, D. G., & Augustine, B. C. (2022). A comparison of density estimation methods for monitoring marked and unmarked animal populations. Ecosphere, 13(10). https://doi.org/10.1002/ecs2.4165
van Etten, J. (2023). Gdistance: Distances and routes on geographical grids. https://CRAN.R-project.org/package=gdistance
Van Katwyk, K. E. (2014). Empirical validation of closed population abundance estimates and spatially explicit density estimates using a censused population of north american red squirrels [Master’s thesis, University of Alberta]. https://redsquirrel.biology.ualberta.ca/wp-content/uploads/sites/32/2014/07/Van-Katwyk_Kristin_Spring-2014.pdf
van Winkle, W. (1975). Comparison of several probabilistic home-range models. Journal of Wildlife Management, 39, 118–123.
Waits, L. P., & Paetkau, D. (2005). Noninvasive genetic sampling tools forwildlife biologists: A review of applications and recommendations foraccurate data collection. Journal of Wildlife Management, 69, 1419–1433.
Walvoort, D. J. J., Brus, D. J., & Gruijter, J. J. de. (2010). An R package for spatial coverage sampling and random sampling from compact geographical strata by k-means. Computers & Geosciences, 36, 1261–1267. https://doi.org/10.1016/j.cageo.2010.04.005
Whittington, J., Hebblewhite, M., & Chandler, R. (2018). Generalized spatial mark-resight models with an application to grizzly bears. Journal of Applied Ecology, 55, 157–168.
Whoriskey, K., Martins, E. G., Auger‐Méthé, M., Gutowsky, L. F. G., Lennox, R. J., Cooke, S. J., Power, M., & Mills Flemming, J. (2019). Current and emerging statistical techniques for aquatic telemetry data: A guide to analysing spatially discrete animal detections. Methods in Ecology and Evolution, 10(7), 935–948. https://doi.org/10.1111/2041-210x.13188
Williams, B. K., Nichols, J. D., & Conroy, M. J. (2002). Analysis and management of animal populations. Academic Press.
Wolters, M. A. (2015). A genetic algorithm for selection of fixed-size subsets with application to design problems. Journal of Statistical Software, Code Snippets, 68, 1–18. https://doi.org/10.18637/jss.v068.c01
Wood, S. N. (2006). Generalized additive models: An introduction with R. Chapman; Hall/CRC.
Woodruff, S. P., Johnson, T. R., & Waits, L. P. (2014). Evaluating the interaction of faecal pellet deposition rates and <scp>DNA</scp> degradation rates to optimize sampling design for <scp>DNA</scp>‐based mark–recapture analysis of sonoran pronghorn. Molecular Ecology Resources, 15(4), 843–854. https://doi.org/10.1111/1755-0998.12362