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An empirical evaluation of camera trap study design: How many, how long and when?
ArticleAbstract: Camera traps deployed in grids or stratified random designs are a well-established survey tool for wPalabras claves:Camera traps, community ecology, detectability, Mammals, Relative abundance, Species richness, study design, wildlife surveysAutores:Arbogast B.S., Baker-Whatton M., Beirne C., Boone H.M., Bowler M., Cove M.V., Ding P., Gonçalves A.L.S., Hansen C.P., Jansen P.A., Kays R., Knowles T.W., Kolowski J.M., McShea W.J., Millspaugh J., Moreira M.G., Pacifici K., Parsons A.W., Pease B.S., Rovero F., Santiago Espinosa, Santiago F. Burneo, Santos F., Schuttler S.G., Sheil D., Si X., Snider M., Spironello W.R.Fuentes:googlescopusGlobal camera trap synthesis highlights the importance of protected areas in maintaining mammal diversity
OtherAbstract: The establishment of protected areas (PAs) is a central strategy for global biodiversity conservatioPalabras claves:camera trap, Functional diversity, human accessibility, human footprint, mammal diversity, Protected area, Species richness, taxonomic diversityAutores:Agwanda B.R., Ahumada J.A., Andrianarisoa M.H., Appleton R.D., Bitariho R., Brodie J.F., Burton A.C., Chen C., Fisher J.T., Grigione M.M., Helgen K.M., Hubbard A., Hurtado C.M., Jansen P.A., Jiang X., Jonathan Davies T., Jones A., Kalies E.L., Kays R., Kiebou-Opepa C., Li X., Liu R., McShea W.J., Meyer E., Miller A.B., Moreira M.G., Murphy T., Piana R., Quan R.C., Rota C.T., Rovero F., Santiago Espinosa, Santos F., Schuttler S.G., Sheil D., Uduman A., van Bommel J.K., Young H.Fuentes:scopus