dc.contributor | Link Ospina, Andrés | |
dc.contributor | Lizcano, Diego José | |
dc.contributor | Osorio Popiolek, Christian | |
dc.contributor | Sánchez, Juan Armando | |
dc.contributor | Laboratorio de Ecología de Bosques Tropicales y Primatología | |
dc.creator | Cepeda Duque, Juan Camilo | |
dc.date.accessioned | 2022-07-10T00:38:34Z | |
dc.date.available | 2022-07-10T00:38:34Z | |
dc.date.created | 2022-07-10T00:38:34Z | |
dc.date.issued | 2022 | |
dc.identifier | http://hdl.handle.net/1992/58671 | |
dc.identifier | instname:Universidad de los Andes | |
dc.identifier | reponame:Repositorio Institucional Séneca | |
dc.identifier | repourl:https://repositorio.uniandes.edu.co/ | |
dc.description.abstract | Mesocarnivores play an important role in structuring communities and maintaining biodiversity as they are regulators of population growth. The habitat use of small felids is affected by human disturbance, co-occurrence with intraguild prey and predators, and microhabitat and landscape structure. Understanding the effect of these variables is essential to implement viable conservation plans for threatened species such as the Andean tiger cat (Leopardus tigrinus pardinoides). An 18-month sampling with 53 camera trap stations was carried out to evaluate the main determinants in the Andean tiger cat occupancy over three protected areas from the middle Cauca River Basin in Colombia. Occupancy of the Andean tiger cat increased with litter depth and distance from population centers, it also increased with the presence of prey but was not affected by its intraguild conspecifics. To implement viable conservation actions on the species, it will be necessary to consider the importance of the microhabitat structure, human disturbance and prey co-occurrence as determinant factors of its occupancy. Finally, it will be crucial to determine in the future whether the observed trends can be sustained beyond the boundaries of protected areas. | |
dc.language | spa | |
dc.publisher | Universidad de los Andes | |
dc.publisher | Maestría en Ciencias Biológicas | |
dc.publisher | Facultad de Ciencias | |
dc.publisher | Departamento de Ciencias Biológicas | |
dc.relation | Alves, F., López-Iborra, G. M., Stojanovic, D., & Silveira, L. F. (2017). Habitat selection by the endangered Red-billed Curassow (Crax blumenbachii) in an Atlantic Forest remnant. Emu-Austral Ornithology, 117(4), 316-324. https://doi.org/10.1080/01584197.2017.1326010 | |
dc.relation | Amézquita, A., Marquez, R., Medina, R., Mejia-Vargas, D., Kahn, T. R., Suarez, G., & Mazariegos, L. (2013). A new species of Andean poison frog, Andinobates (Anura: Dendrobatidae), from
the northwestern Andes of Colombia. Zootaxa, 3620(1), 163-178. https://doi.org/10.11646/zootaxa.3620.1.8 | |
dc.relation | Andrade-Ponce, G. P., Gallina, S., Gómez-Valencia, B., & Lira-Noriega, A. (2020). Coexistencia de Vulpes macrotis y Canis latrans (Carnivora: Canidae) en la Reserva de la Biosfera de Mapimí, México. Revista Mexicana de Biodiversidad, 91. https://doi.org/10.22201/ib.20078706e.2020.91.2973 | |
dc.relation | Ardente, N. C., Ferreguetti, Á. C., Gettinger, D., Leal, P., Martins-Hatano, F., Banhos, A., & Bergallo, H. G. (2021). Habitat use by two sympatric species of short-tailed opossums (Didelphidae: Monodelphis) in an area in eastern Amazonia. Journal of Mammalogy, 102(5), 1279-1288. https://doi.org/10.1093/jmammal/gyab047 | |
dc.relation | August, P. V. (1983). The role of habitat complexity and heterogeneity in structuring tropical mammal communities. Ecology, 64(6), 1495-1507. https://doi.org/10.2307/1937504 | |
dc.relation | Ayram, C. A. C., Etter, A., Díaz-Timoté, J., Buriticá, S. R., Ramírez, W., & Corzo, G. (2020). Spatiotemporal evaluation of the human footprint in Colombia: Four decades of anthropic impact in highly biodiverse ecosystems. Ecological Indicators, 117, 106630. https://doi.org/10.1016/j.ecolind.2020.106630 | |
dc.relation | Barve, S., Dhondt, A. A., Mathur, V. B., & Cheviron, Z. A. (2016). Life-history characteristics influence physiological strategies to cope with hypoxia in Himalayan birds. Proceedings of the Royal Society B: Biological Sciences, 283(1843), 20162201. https://doi.org/10.1098/rspb.2016.2201 | |
dc.relation | Bedoya-Durán, M. J., Murillo-García, O. E., & Branch, L. C. (2021). Factors outside privately protected areas determine mammal assemblages in a global biodiversity hotspot in the Andes. Global Ecology and Conservation, 32, e01921. https://doi.org/10.1016/j.gecco.2021.e01921 | |
dc.relation | Bedoya-Gómez, B. D., Dossman-Gil, M. Á., & Marín-Fernández, J. (2021). Valoración ecológica de los servicios ecosistémicos prestados por el suelo en fincas cafeteras en Belén de Umbría, Colombia. Revista de Ciencias Ambientales, 55(1), 160-181. https://doi.org/10.15359/rca.55-1.8 | |
dc.relation | Bianchi, R., Olifiers, N., Riski, L. L., Gouvea, J. A., Cesário, C. S., Fornitano, L., ... & Gompper, M. E. (2020). Dog activity in protected areas: behavioral effects on mesocarnivores and the impacts of a top predator. European Journal of Wildlife Research, 66(3), 1-10. https://doi.org/10.1007/s10344-020-01376-z | |
dc.relation | Bini, L. M., Diniz¿Filho, J. A. F., Rangel, T. F., Bastos, R. P., & Pinto, M. P. (2006). Challenging Wallacean and Linnean shortfalls: knowledge gradients and conservation planning in a biodiversity hotspot. Diversity and distributions, 12(5), 475-482. https://doi.org/10.1111/j.1366-9516.2006.00286.x | |
dc.relation | Bonilla-Sánchez, A., Gómez-Ruíz, D. A., Botero-Cañola, S., Rendón-Jaramillo, U., Ledesma-Castañeda, E., & Solari, S. (2020). Riqueza y monitoreo de mamíferos en áreas protegidas privadas en Antioquia, Colombia. Mastozoologia Neotropical, 27(2). https://doi.org/10.31687/saremMN.20.27.2.0.11 | |
dc.relation | Boron, V., Xofis, P., Link, A., Payan, E., & Tzanopoulos, J. (2018). Conserving predators across agricultural landscapes in Colombia: habitat use and space partitioning by jaguars, pumas, ocelots and jaguarundis. Oryx, 54(4), 554-563. https://doi.org/10.1017/S0030605318000327 | |
dc.relation | Boron, V., Deere, N. J., Xofis, P., Link, A., Quiñones-Guerrero, A., Payan, E., & Tzanopoulos, J. (2019). Richness, diversity, and factors influencing occupancy of mammal communities across human-modified landscapes in Colombia. Biological conservation, 232, 108-116. https://doi.org/10.1016/j.biocon.2019.01.030 | |
dc.relation | Botts, R. T., Eppert, A. A., Wiegman, T. J., Rodriguez, A., Blankenship, S. R., Asselin, E. M., ... & Mooring, M. S. (2020). Circadian activity patterns of mammalian predators and prey in Costa Rica. Journal of mammalogy, 101(5), 1313-1331. https://doi.org/10.1093/jmammal/gyaa103 | |
dc.relation | Bruijnzeel, L. A., Kappelle, M., Mulligan, M., & Scatena, F. N. (2010). Tropical montane cloud forests: state of knowledge and sustainability perspectives in a changing world. Tropical Montane Cloud Forests: Science for Conservation and Management , eds. L. A. Bruijnzeel, F. N. Scatena, and L. S. Hamilton. Published by Cambridge University Press. # Cambridge University Press 2010. | |
dc.relation | Burnham, K. P., & Anderson, D. R. (2002). Model selection and multimodel inference: a practical information-theoretic approach. Second edition. Springer US, New York, New York, USA. | |
dc.relation | Calderón, A. P., Louvrier, J., Planillo, A., Araya¿Gamboa, D., Arroyo¿Arce, S., Barrantes¿Núñez, M., Carazo-Salazar, J., Corrales-Gutiérrez, D., Doncaster, C., Foster, R., García L., García-Anleu, R., Harmsen, B., Hernández-Potosme, S., Leonardo R.., Trigeros, D., McNab, R., Meyer, N., Moreno, R., Salom-Pérez, R., Rossi, A., Thompson, I., Thornton, D., Urbina, Y., Grimm, V., & Kramer¿Schadt, S. (2022). Occupancy models reveal potential of conservation prioritization for Central American jaguars. Animal Conservation. https://doi.org/10.1111/acv.12772 | |
dc.relation | Carbone, C., & Gittleman, J. L. (2002). A common rule for the scaling of carnivore density. Science, 295(5563), 2273-2276. https://doi.org/10.1126/science.1067994 | |
dc.relation | Cepeda¿Duque, J. C., Gómez¿Valencia, B., Alvarez, S., Gutiérrez¿Sanabria, D. R., & Lizcano, D. J. (2021). Daily activity pattern of pumas (Puma concolor) and their potential prey in a tropical cloud forest of Colombia. Animal Biodiversity and Conservation, 44, 267-278. https://doi.org/10.32800/abc.2021.44.0267 | |
dc.relation | Cepeda-Duque, J. C., Link, A., Lizcano, D. J., Mazariegos, L., Rendón-Jaramillo, U., & de Oliveira, T. G. (en prensa). Avoiding the enemy while searching for dinner: Understanding the temporal niche of the threatened Andean tiger cat in a cloud forest of the western Andes, Colombia. | |
dc.relation | Chandler, R., Kellner, K., Fiske, I., Miller, D., Royle, A., Hostetler, J., & Baker, C. (2020). Package unmarked. R Package version 1.0. 0. | |
dc.relation | Corporación Autónoma Regional de Cundinamarca. (2019). Plan de Manejo y Conservación de la Oncilla (Leopardus tigrinus) para la Jurisdicción de la Corporación Autónoma Regional de Cundinamarca CAR.49 Pp. | |
dc.relation | Cruz, P., Iezzi, M. E., De Angelo, C., Varela, D., Di Bitetti, M. S., & Paviolo, A. (2018). Effects of human impacts on habitat use, activity patterns and ecological relationships among medium and small felids of the Atlantic Forest. PloS one, 13(8), e0200806. https://doi.org/10.1371/journal.pone.0200806 | |
dc.relation | Cunningham, C. X., Johnson, C. N., & Jones, M. E. (2020). A native apex predator limits an invasive mesopredator and protects native prey: Tasmanian devils protecting bandicoots from cats. Ecology Letters, 23(4), 711-721. https://doi.org/10.1111/ele.13473 | |
dc.relation | Davis, C. L., Rich, L. N., Farris, Z. J., Kelly, M. J., Di Bitetti, M. S., Blanco, Y. D., ... & Miller, D. A. (2018). Ecological correlates of the spatial co¿occurrence of sympatric mammalian carnivores worldwide. Ecology Letters, 21(9), 1401-1412. https://doi.org/10.1111/ele.13124 | |
dc.relation | Dechner, A., Flesher, K. M., Lindell, C., Vega de Oliveira, T., & Maurer, B. A. (2018). Determining carnivore habitat use in a rubber/forest landscape in Brazil using multispecies occupancy models. PloS one, 13(4), e0195311. https://doi.org/10.1371/journal.pone.0195311 | |
dc.relation | Delgado-V, C. A. (2007). Muerte de mamíferos por vehículos en la vía del Escobero, Envigado (Antioquia), Colombia. Actualidades Biológicas, 29(87), 235-239. | |
dc.relation | de Oliveira, T. G., M. A. Tortato, L. Silveira, C. B. Kasper, F. D. Mazim, M. Lucherini, A. T. Jácomo, J. B. G. Soares, R. V. Marques, & M. Sunquist. (2010). Ocelot Ecology and Its Effect on the Small-Felid Guild in the Lowland Neotropics. In Biology and Conservation of Wild Felids, edited by D. W. Macdonald and A. J. Loveridge, 559¿580. Oxford: Oxford University Press | |
dc.relation | de Oliveira, T. G., & Pereira, J. A. (2014). Intraguild predation and interspecific killing as structuring forces of carnivoran communities in South America. Journal of Mammalian Evolution, 21(4), 427-436. https://doi.org/10.1007/s10914-013-9251-4 | |
dc.relation | de Oliveira, T. G., Lima, B. C., Fox-Rosales, L., Pereira, R. S., Pontes-Araujo, E., & de Sousa, A. L. (2020). A refined population and conservation assessment of the elusive and endangered northern tiger cat (Leopardus tigrinus) in its key worldwide conservation area in Brazil. Global Ecology and Conservation, 22, e00927. https://doi.org/10.1016/j.gecco.2020.e00927 | |
dc.relation | Dias, D. D. M., Lima Massara, R., de Campos, C. B., & Henrique Guimarães Rodrigues, F. (2019). Human activities influence the occupancy probability of mammalian carnivores in the Brazilian Caatinga. Biotropica, 51(2), 253-265. https://doi.org/10.1111/btp.12628 | |
dc.relation | Dickman, A. J., Hinks, A. E., Macdonald, E. A., Burnham, D., & Macdonald, D. W. (2015). Priorities for global felid conservation. Conservation Biology, 29(3), 854-864. https://doi.org/10.1111/cobi.12494 | |
dc.relation | Dunford, C. E., Marks, N. J., Wilmers, C. C., Bryce, C. M., Nickel, B., Wolfe, L. L., ... & Williams, T. M. (2020). Surviving in steep terrain: a lab-to-field assessment of locomotor costs for wild mountain lions (Puma concolor). | |
dc.relation | Escobar-Lasso, S., Cepeda-Duque, J. C., Gil-Fernández, M., & González-Maya, J. F. (2020). Is the banana ripe Andean bear¿human conflict in a protected area of Colombia. Human¿Wildlife Interactions, 14(2), 10. https://doi.org/10.26077/6e5e-089e | |
dc.relation | Etter, A., & van Wyngaarden, W. (2000). Patterns of landscape transformation in Colombia, with emphasis in the Andean region. Ambio: A journal of the Human Environment, 29(7), 432-439. https://doi.org/10.1579/0044-7447-29.7.432 | |
dc.relation | Farhadinia, M. S., Heit, D. R., Montgomery, R. A., Johnson, P. J., Hobeali, K., Hunter, L. T., & Macdonald, D. W. (2020). Vertical relief facilitates spatial segregation of a high-density large carnivore population. Oikos, 129(3), 346-355. https://doi.org/10.1111/oik.06724 | |
dc.relation | Fahrig, L. (2003). Effects of habitat fragmentation on biodiversity. Annual review of ecology, evolution, and systematics, 34(1), 487-515. https://doi.org/10.1146/annurev.ecolsys.34.011802.132419 | |
dc.relation | Figel, J. J., Botero-Cañola, S., Sánchez-Londoño, J. D., & Racero-Casarrubia, J. (2021). Jaguars and pumas exhibit distinct spatiotemporal responses to human disturbances in Colombia¿s most imperiled ecoregion. Journal of Mammalogy, 102(1), 333-345. https://doi.org/10.1093/jmammal/gyaa146 | |
dc.relation | Finnegan, S. P., Gantchoff, M. G., Hill, J. E., Silveira, L., Tôrres, N. M., Jácomo, A. T., & Uzal, A. (2021). When the felids away, the mesocarnivores play¿: seasonal temporal segregation in a neotropical carnivore guild. Mammalian Biology, 101(5), 631-638. https://doi.org/10.1007/s42991-021-00110-9 | |
dc.relation | Fleschutz, M. M., Gálvez, N., Pe¿er, G., Davies, Z. G., Henle, K., & Schüttler, E. (2016). Response of a small felid of conservation concern to habitat fragmentation. Biodiversity and Conservation, 25(8), 1447-1463. https://doi.org/10.1007/s10531-016-1118-6 | |
dc.relation | Fox-Rosales, L. A., & de Oliveira, T. G. (2022). Habitat use patterns and conservation of small carnivores in a human-dominated landscape of the semiarid Caatinga in Brazil. Mammalian Biology, 1-11. https://doi.org/10.1007/s42991-022-00245-3 | |
dc.relation | Freitas, S.R., Cerqueira, R. & Vieira, M.V. (2002) A device and standard variables to describe microhabitat structure of small mammals based on plant cover. Revista Brasileira de Biologia, 62, 795¿800. https://doi.org/10.1590/S1519-69842002000500008 | |
dc.relation | García-R, S., Botero-Cañola, S., Sánchez-Giraldo, C., & Solari, S. (2019). Habitat use and activity patterns of Leopardus pardalis (Felidae) in the Northern Andes, Antioquia, Colombia. Biodiversity, 20(1), 5-19. https://doi.org/10.1080/14888386.2019.1590235 | |
dc.relation | Gardner, A. L. (1971). Notes on the little spotted cat, Felis tigrina oncilla Thomas, in Costa Rica. Journal of Mammalogy, 52, 464-465. https://doi.org/10.2307/1378697 | |
dc.relation | Giordano, A. J. (2012). The oncilla: A new conservation perspective. Wild Felid Monitor, 5, 16. | |
dc.relation | Glover¿Kapfer, P., Soto¿Navarro, C. A., & Wearn, O. R. (2019). Camera trapping version 3.0: Current constraints and future priorities for development. Remote Sensing in Ecology and Conservation, 5(3), 209-223. https://doi.org/10.1002/rse2.106 | |
dc.relation | González-González, A., Clerici, N., & Quesada, B. (2022). A 30 m-resolution land use-land cover product for the Colombian Andes and Amazon using cloud-computing. International Journal of Applied Earth Observation and Geoinformation, 107, 102688. https://doi.org/10.1016/j.jag.2022.102688 | |
dc.relation | Guillera Arroita, G., & Lahoz Monfort, J. J. (2012). Designing studies to detect differences in species occupancy: power analysis under imperfect detection. Methods in Ecology and Evolution, 3(5), 860-869. https://doi.org/10.1111/j.2041-210X.2012.00225.x | |
dc.relation | Harmsen, B. J., Saville, N., & Foster, R. J. (2021). Long-term monitoring of margays (Leopardus wiedii): Implications for understanding low detection rates. Plos one, 16(3), e0247536. https://doi.org/10.1371/journal.pone.0247536 | |
dc.relation | Hodge, A. M. C. (2014). Habitat selection of the margay (Leopardus wiedii) in the eastern Andean foothills of Ecuador. Mammalia, 78(3), 351-358. https://doi.org/10.1515/mammalia-2013-0070 | |
dc.relation | Hofmeester, T. R., Rowcliffe, J. M., & Jansen, P. A. (2017). A simple method for estimating the effective detection distance of camera traps. Remote Sensing in Ecology and Conservation, 3(2), 81-89. https://doi.org/10.1002/rse2.25 | |
dc.relation | Hofmeester, T. R., Cromsigt, J. P., Odden, J., Andrén, H., Kindberg, J., & Linnell, J. D. (2019). Framing pictures: A conceptual framework to identify and correct for biases in detection probability of camera traps enabling multi¿species comparison. Ecology and Evolution, 9(4), 2320-2336. https://doi.org/10.1002/ece3.4878 | |
dc.relation | Holt, R. D., & Polis, G. A. (1997). A theoretical framework for intraguild predation. The American Naturalist, 149(4), 745-764. https://doi. org/10.1016/j.medcli.2010.04.013 | |
dc.relation | Hughes, J., & Macdonald, D. W. (2013). A review of the interactions between free-roaming domestic dogs and wildlife. Biological Conservation, 157, 341-351. https://doi.org/10.1016/j.biocon.2012.07.005 | |
dc.relation | Johnson, W. E., Slattery, J. P., Eizirik, E., Kim, J. H., Menotti Raymond, M., Bonacic, C., Cambre, R., Crawshaw, P., Nunes, A., Seuánez, H. N., Moreira M., Seymour, K., Simon, F., Swanson, W., & O¿Brien, S. J. (1999). Disparate phylogeographic patterns of molecular genetic variation in four closely related South American small cat species. Molecular Ecology, 8, S79-S94. https://doi.org/10.1046/j.1365-294x.1999.00796.x | |
dc.relation | Jung, M. (2016). LecoS¿A python plugin for automated landscape ecology analysis. Ecological informatics, 31, 18-21. http://dx.doi.org/10.1016/j.ecoinf.2015.11.006 | |
dc.relation | Kays, R., Arbogast, B. S., Baker¿Whatton, M., Beirne, C., Boone, H. M., Bowler, M., ... & Gonçalves, A. L. S. (2020). An empirical evaluation of camera trap study design: How many, how long and when?. Methods in Ecology and Evolution. https://doi.org/10.1111/2041-210X.13370 | |
dc.relation | Kellner, K. F., & Swihart, R. K. (2014). Changes in small mammal microhabitat use following silvicultural disturbance. The American Midland Naturalist, 172(2), 348-358. https://doi.org/10.1674/0003-0031-172.2.348 | |
dc.relation | Kellner, K. F., Fowler, N. L., Petroelje, T. R., Kautz, T. M., Beyer Jr, D. E., & Belant, J. L. (2021). ubms: An R package for fitting hierarchical occupancy and N¿mixture abundance models in a Bayesian framework. Methods in Ecology and Evolution, 13(3), 577-584. https://doi.org/10.1111/2041-210X.13777 | |
dc.relation | Kéry, M., & Royle, J. A. (2016). Applied hierarchical modelling in ecology Modeling distribution, abundance and species richness using R and BUGS. In Volume 1: Prelude and Static Models. Elsevier/Academic Press. 783 Pp. | |
dc.relation | Kupfer, J. A., Malanson, G. P., & Franklin, S. B. (2006). Not seeing the ocean for the islands: the mediating influence of matrix¿based processes on forest fragmentation effects. Global ecology and biogeography, 15(1), 8-20. https://doi.org/10.1111/j.1466-822X.2006.00204.x | |
dc.relation | Liévano-Latorre, L., & López-Arévalo H. (2015). Comunidad de mamíferos no voladores en un área periurbana andina, Cundinamarca, Colombia. Acta Biológica Colombiana. 20(2): 193-202. https://doi.org/10.15446/abc.v20n2.43477 | |
dc.relation | Linnell, J. D., & Strand, O. (2000). Interference interactions, coexistence and conservation of mammalian carnivores. Diversity and Distributions, 6(4), 169-176. https://doi.org/10.1046/j.1472-4642.2000.00069.x | |
dc.relation | Lombardi, J. V., MacKenzie, D. I., Tewes, M. E., Perotto¿Baldivieso, H. L., Mata, J. M., & Campbell, T. A. (2020). Co occurrence of bobcats, coyotes, and ocelots in Texas. Ecology and evolution, 10(11), 4903-4917. https://dx.doi.org/10.1002%2Fece3.6242 | |
dc.relation | MacKenzie, D. I., Nichols, J. D., Lachman, G. B., Droege, S., Andrew Royle, J., & Langtimm, C. A. (2002). Estimating site occupancy rates when detection probabilities are less than one. Ecology, 83(8), 2248-2255. http://dx.doi.org/10.1890/0012-9658(2002)083[2248:ESORWD]2.0.CO;2 | |
dc.relation | MacKenzie, D. I., Bailey, L. L., & Nichols, J. D. (2004). Investigating species co¿occurrence patterns when species are detected imperfectly. Journal of Animal Ecology, 73(3), 546-555. https://doi.org/10.1111/j.0021-8790.2004.00828.x | |
dc.relation | Mackenzie, D. I. (2005). Was it there Dealing with imperfect detection for species presence/absence data. Australian & New Zealand Journal of Statistics, 47(1), 65-74. https://doi.org/10.1111/j.1467-842X.2005.00372.x | |
dc.relation | MacKenzie, D. I., Nichols, J. D., Royle, J. A., Pollock, K. H., Bailey, L., & Hines, J. E. (2018). Occupancy estimation and modeling: inferring patterns and dynamics of species occurrence. Elsevier. 648 Pp. | |
dc.relation | Massara, R. L., Paschoal, A. M. D. O., Doherty Jr, P. F., Hirsch, A., & Chiarello, A. G. (2015). Ocelot population status in protected Brazilian Atlantic Forest. PloS one, 10(11), e0141333. https://doi.org/10.1371/journal.pone.0141333 | |
dc.relation | Marinho, P. H., Bezerra, D., Antongiovanni, M., Fonseca, C. R., & Venticinque, E. M. (2018). Estimating occupancy of the Vulnerable northern tiger cat Leopardus tigrinus in Caatinga drylands. Mammal Research, 63(1), 33-42. https://doi.org/10.1007/s13364-017-0330-4 | |
dc.relation | Meek, P. D., Ballard, G., Claridge, A., Kays, R., Moseby, K., Obrien, T., ... & Townsend, S. (2014). Recommended guiding principles for reporting on camera trapping research. Biodiversity and conservation, 23(9), 2321-2343. https://doi.org/10.1007/s10531-014-0712-8 | |
dc.relation | Mena, J. L., Vento, R., Martínez, J. L., & Gallegos, A. (2021). Retrospective and current trend of wild¿cat trade in Peru. Conservation Science and Practice, 3(12), e558. https://doi.org/10.1111/csp2.558 | |
dc.relation | Meyer, N. F., Moreno, R., Reyna-Hurtado, R., Signer, J., & Balkenhol, N. (2020). Towards the restoration of the Mesoamerican Biological Corridor for large mammals in Panama: comparing multi-species occupancy to movement models. Movement ecology, 8(1), 1-14. https://doi.org/10.1186/s40462-019-0186-0 | |
dc.relation | Moll, R. J., Ortiz-Calo, W., Cepek, J. D., Lorch, P. D., Dennis, P. M., Robison, T., & Montgomery, R. A. (2020). The effect of camera-trap viewshed obstruction on wildlife detection: implications for inference. Wildlife Research, 47(2), 158-165. https://doi.org/10.1071/WR19004 | |
dc.relation | Monterroso, P., Díaz Ruiz, F., Lukacs, P. M., Alves, P. C., & Ferreras, P. (2020). Ecological traits and the spatial structure of competitive coexistence among carnivores. Ecology, 101(8), e03059. https://doi.org/10.1002/ecy.3059 | |
dc.relation | Moreno-Sosa, A. M., Yacelga, M., Craighead, K. A., Kramer-Schadt, S., & Abrams, J. F. (2022). Can prey occupancy act as a surrogate for mesopredator occupancy A case study of ocelot (Leopardus pardalis). Mammalian Biology, 102(1), 163-175. https://doi.org/10.1007/s42991-022-00232-8 | |
dc.relation | Morrell, N., Appleton, R. D., & Arcese, P. (2021). Roads, forest cover, and topography as factors affecting the occurrence of large carnivores: The case of the Andean bear (Tremarctos ornatus). Global Ecology and Conservation, 26, e01473. https://doi.org/10.1016/j.gecco.2021.e01473 | |
dc.relation | Morin, D. J., Yackulic, C. B., Diffendorfer, J. E., Lesmeister, D. B., Nielsen, C. K., Reid, J., & Schauber, E. M. (2020). Is your ad hoc model selection strategy affecting your multimodel inference?. Ecosphere, 11(1), e02997. https://doi.org/10.1002/ecs2.2997 | |
dc.relation | Murcia, C. (1997). Evaluation of Andean alder as a catalyst for the recovery of tropical cloud forests in Colombia. Forest Ecology and Management, 99(1-2), 163-170. https://doi.org/10.1016/S0378-1127(97)00202-8 | |
dc.relation | Nagy-Reis, M. B., Nichols, J. D., Chiarello, A. G., Ribeiro, M. C., & Setz, E. Z. (2017). Landscape use and co-occurrence patterns of Neotropical spotted cats. PloS one, 12(1), e0168441. https://doi.org/10.1371/journal.pone.0168441 | |
dc.relation | Nascimento, F. O., & Feijó, A. (2017). Taxonomic revision of the tigrina Leopardus tigrinus (Schreber, 1775) species group (Carnivora, Felidae). Papéis Avulsos de Zoologia, 57, 231-264. https://doi.org/10.11606/0031-1049.2017.57.19 | |
dc.relation | Ocampo-Peñuela, N., & Pimm, S. L. (2014). Setting practical conservation priorities for birds in the western Andes of Colombia. Conservation biology, 28(5), 1260-1270. https://doi.org/10.1111/cobi.12312 | |
dc.relation | Oliveira-Santos, L. G. R., Graipel, M. E., Tortato, M. A., Zucco, C. A., Cáceres, N. C., & Goulart, F. V. (2012). Abundance changes and activity flexibility of the oncilla, Leopardus tigrinus (Carnivora: Felidae), appear to reflect avoidance of conflict. Zoologia (Curitiba), 29(2), 115-120. https://doi.org/10.1590/S1984-46702012000200003 | |
dc.relation | Osorio, C., Muñoz, A., Guarda, N., Bonacic, C., & Kelly, M. (2020). Exotic prey facilitate coexistence between Pumas and Culpeo Foxes in the Andes of central Chile. Diversity, 12(9), 317. https://doi.org/10.3390/d12090317 | |
dc.relation | Palencia, P., Vicente, J., Soriguer, R. C., & Acevedo, P. (2021). Towards a best-practices guide for camera trapping: assessing differences among camera trap models and settings under field conditions. Journal of Zoology, 00, 1¿ 12. https://doi.org/10.1111/jzo.12945 | |
dc.relation | Paolino, R. M., Royle, J. A., Versiani, N. F., Rodrigues, T. F., Pasqualotto, N., Krepschi, V. G., & Chiarello, A. G. (2018). Importance of riparian forest corridors for the ocelot in agricultural landscapes. Journal of Mammalogy, 99(4), 874-884. https://doi.org/10.1093/jmammal/gyy075 | |
dc.relation | Pardo, L. E., Campbell, M. J., Cove, M. V., Edwards, W., Clements, G. R., & Laurance, W. F. (2019). Land management strategies can increase oil palm plantation use by some terrestrial mammals in Colombia. Scientific reports, 9(1), 1-12. https://doi.org/10.1038/s41598-019-44288-y | |
dc.relation | Paschoal, A. M., Massara, R. L., Bailey, L. L., Doherty Jr, P. F., Santos, P. M., Paglia, A. P., ... & Chiarello, A. G. (2018). Anthropogenic disturbances drive domestic dog use of Atlantic forest protected areas. Tropical Conservation Science, 11, 1940082918789833. https://doi.org/10.1177%2F1940082918789833 | |
dc.relation | Patel, C. 2011. Leopardus tigrinus. (On-line), Animal Diversity Web. Accessed April 06, 2022 at https://animaldiversity.org/accounts/Leopardus_tigrinus/ | |
dc.relation | Payan, E., & González-Maya, J. F. (2011). Distribución geográfica de la Oncilla (Leopardus tigrinus) en Colombia e implicaciones para su conservación. Revista Latinoamericana de Conservación, 2(1). | |
dc.relation | Payan, E., & de Oliveira, T. (2016). Leopardus tigrinus. The IUCN Red List of Threatened Species 2016: e. T54012637A50653881. https://doi.org/10.2305/IUCN.UK.2016-2.RLTS.T54012637A50653881.en | |
dc.relation | Prugh, L. R., Stoner, C. J., Epps, C. W., Bean, W. T., Ripple, W. J., Laliberte, A. S., & Brashares, J. S. (2009). The rise of the mesopredator. Bioscience, 59(9), 779-791. http://dx.doi.org/10.1525/bio.2009.59.9.9 | |
dc.relation | Quintero-Corzo, S., Stasiuskynas, D., Mejía, A., Gómez, M. F., & Payán, E. (2019). Plan de acción para la conservación de Leopardus tigrinus y otros felinos en la zona de influencia de Continental Gold. Continental Gold y Panthera, Cali, 52 pp. | |
dc.relation | Ramírez-Mejía, A. F., & Sánchez, F. (2016). Activity patterns and habitat use of mammals in an Andean Forest and a Eucalyptus reforestation in Colombia. Hystrix, the Italian Journal of Mammalogy, 27(2). https://doi.org/10.4404/hystrix-27.2-11319 | |
dc.relation | Richmond, O. M., Hines, J. E., & Beissinger, S. R. (2010). Two¿species occupancy models: a new parameterization applied to co¿occurrence of secretive rails. Ecological Applications, 20(7), 2036-2046. https://doi.org/10.1890/09-0470.1 | |
dc.relation | Rocchini, D., Thouverai, E., Marcantonio, M., Iannacito, M., Da Re, D., Torresani, M., ... & Wegmann, M. (2021). rasterdiv An Information Theory tailored R package for measuring ecosystem heterogeneity from space: To the origin and back. Methods in ecology and evolution, 12(6), 1093. https://doi.org/10.1111/2041-210X.13583 | |
dc.relation | Rodríguez, E. N., Armenteras-Pascual, D., & Alumbreros, J. R. (2013). Land use and land cover change in the Colombian Andes: dynamics and future scenarios. Journal of Land Use Science, 8(2), 154-174. https://doi.org/10.1080/1747423X.2011.650228 | |
dc.relation | Rodríguez, J., Bohórquez, J. S., Raigozo, O. G., & Clavijo, A. (2020). Evento de depredación de Venado Soche (Mazama rufina, Pucheran, 1851) por Taira (Eira barbara, Linnaeus, 1758) en el Parque Nacional Natural Chingaza, Colombia. Mammalogy Notes, 6(2), 169-169. https://doi.org/10.47603/mano.v6n2.169 | |
dc.relation | Roncancio-Duque, N. J., & Vélez Vanegas, L. A. (2019). Valores objeto de conservación del subsistema de áreas protegidas de los Andes occidentales, Colombia. Revista de la Academia Colombiana de Ciencias Exactas, Físicas y Naturales, 43(166), 52-64. https://doi.org/10.18257/raccefyn.719 | |
dc.relation | Rota, C. T., Fletcher Jr, R. J., Dorazio, R. M., & Betts, M. G. (2009). Occupancy estimation and the closure assumption. Journal of Applied Ecology, 46(6), 1173-1181. https://doi.org/10.1111/j.1365-2664.2009.01734.x | |
dc.relation | Rovero, F., Zimmermann, F., Berzi, D., & Meek, P. (2013). Which camera trap type and how many do I need?. A review of camera features and study designs for a range of wildlife research applications. Hystrix, 24(2). https://doi.org/10.4404/hystrix-24.2-8789 | |
dc.relation | Santos, F., Carbone, C., Wearn, O. R., Rowcliffe, J. M., Espinosa, S., Lima, M. G. M., ... & Peres, C. A. (2019). Prey availability and temporal partitioning modulate felid coexistence in Neotropical forests. PloS one, 14(3), e0213671. https://doi.org/10.1371/journal.pone.0213671 | |
dc.relation | Semper-Pascual, A., Decarre, J., Baumann, M., Camino, M., Di Blanco, Y., Gómez-Valencia, B., & Kuemmerle, T. (2020). Using occupancy models to assess the direct and indirect impacts of agricultural expansion on species¿ populations. Biodiversity and Conservation, 29(13), 3669-3688. https://doi.org/10.1007/s10531-020-02042-1 | |
dc.relation | Sévêque, A., Gentle, L. K., López-Bao, J. V., Yarnell, R. W., & Uzal, A. (2020). Human disturbance has contrasting effects on niche partitioning within carnivore communities. Biological Reviews, 95(6), 1689-1705. https://doi.org/10.1111/brv.12635 | |
dc.relation | Steenweg, R., Hebblewhite, M., Whittington, J., Lukacs, P., & McKelvey, K. (2018). Sampling scales define occupancy and underlying occupancy¿abundance relationships in animals. Ecology, 99(1), 172-183. https://doi.org/10.1002/ecy.2054 | |
dc.relation | Sunquist, M.E. & Sunquist, F. (2002). Wild cats of the world. Chicago: The University of Chicago Press. | |
dc.relation | Tian, J., Zou, Q., Zhang, M., Hu, C., Khattak, R. H., & Su, H. (2022). Spatial and temporal differentiation are not distinct but are covariant for facilitating coexistence of small and medium-sized carnivores in Southwestern China. Global Ecology and Conservation, e02017. https://doi.org/10.1016/j.gecco.2022.e02017 | |
dc.relation | Tortato, M. A., Oliveira-Santos, L. G. R., Moura, M. O., & de Oliveira, T. G. (2021). Small prey for small cats: the importance of prey-size in the diet of southern tiger cat Leopardus guttulus in a competitor-free environment. Studies on Neotropical Fauna and Environment, 1-12. https://doi.org/10.1080/01650521.2021.1902202 | |
dc.relation | Trigo, T. C., Tirelli, F. P., Machado, L. F., Peters, F. B., Indrusiak, C. B., Mazim, F. D., Sana, D., Eizirik, E., & de Freitas, T. R. O. (2013a). Geographic distribution and food habits of Leopardus tigrinus and L. geoffroyi (Carnivora, Felidae) at their geographic contact zone in southern Brazil. Studies on Neotropical Fauna and Environment, 48(1), 56-67. https://doi.org/10.1080/01650521.2013.774789 | |
dc.relation | Trigo, T. C., Schneider, A., De Oliveira, T. G., Lehugeur, L. M., Silveira, L., Freitas, T. R. O., & Eizirik, E. (2013b). Molecular data reveal complex hybridization and a cryptic species of Neotropical wild cat. Current Biology, 23, 2528-2533. https://doi.org/10.1016/j.cub.2013.10.046 | |
dc.relation | Vehtari, A., Gelman, A., & Gabry, J. (2017). Practical Bayesian model evaluation using leave-one-out cross-validation and WAIC. Statistics and computing, 27(5), 1413-1432. https://doi.org/10.1007/s11222-016-9696-4 | |
dc.relation | Villafañe-Trujillo, Á. J., Kolowski, J. M., Cove, M. V., Medici, E. P., Harmsen, B. J., Foster, R. J., Hidalgo-Mihart, M., Espinosa, S., Ríos-Alvear, G., Reyes-Puig, C., Reyes-Puig, J., da Silva, X., Paviolo, A., Cruz, P., & López-González, C. A. (2021). Activity patterns of tayra (Eira barbara) across their distribution. Journal of Mammalogy, 102(3), 772-788. https://doi.org/10.1093/jmammal/gyaa159 | |
dc.relation | Wang, E. (2002). Diets of ocelots (Leopardus pardalis), margays (L. wiedii), and oncillas (L. tigrinus) in the Atlantic rainforest in southeast Brazil. Studies on Neotropical Fauna and Environment, 37(3), 207-212. http://dx.doi.org/10.1076/snfe.37.3.207.8564 | |
dc.relation | Wang, X., Blanchet, F. G., & Koper, N. (2014). Measuring habitat fragmentation: an evaluation of landscape pattern metrics. Methods in ecology and evolution, 5(7), 634-646. https://doi.org/10.1111/2041-210X.12198 | |
dc.relation | Wang, B., Rocha, D. G., Abrahams, M. I., Antunes, A. P., Costa, H. C., Gonçalves, A. L. S., ... & Tan, C. K. W. (2019). Habitat use of the ocelot (Leopardus pardalis) in Brazilian Amazon. Ecology and Evolution, 9(9), 5049-5062. https://doi.org/10.1002/ece3.5005 | |
dc.relation | Weber, W., & Rabinowitz, A. (1996). A global perspective on large carnivore conservation. Conservation Biology, 10(4), 1046-1054. https://doi.org/10.1046/J.1523-1739.1996.10041046.X | |
dc.relation | Welbourne, D. J., Claridge, A. W., Paull, D. J., & Lambert, A. (2016). How do passive infrared triggered camera traps operate and why does it matter Breaking down common misconceptions. Remote Sensing in Ecology and Conservation, 2(2), 77-83. https://doi.org/10.1002/rse2.20 | |
dc.relation | Zapata-Ríos, G., & Branch, L. C. (2016). Altered activity patterns and reduced abundance of native mammals in sites with feral dogs in the high Andes. Biological Conservation, 193, 9-16. https://doi.org/10.1016/j.biocon.2015.10.016 | |
dc.relation | Zenner, E. K. (2004). Does old-growth condition imply high live-tree structural complexity. Forest Ecology and Management, 195(1-2), 243-258. https://doi.org/10.1016/j.foreco.2004.03.026 | |
dc.relation | Ziegler, J. P., Hoffman, C., Battaglia, M., & Mell, W. (2017). Spatially explicit measurements of forest structure and fire behavior following restoration treatments in dry forests. Forest Ecology and Management, 386, 1-12. https://doi.org/10.1016/j.foreco.2016.12.002 | |
dc.relation | Zub, K., Szafraska, P. A., Konarzewski, M., Redman, P., & Speakman, J. R. (2009). Trade-offs between activity and thermoregulation in a small carnivore, the least weasel Mustela nivalis. Proceedings of the Royal Society B: Biological Sciences, 276(1663), 1921-1927. https://doi.org/10.1098/rspb.2008.1936 | |
dc.rights | Attribution-NonCommercial-NoDerivatives 4.0 Internacional | |
dc.rights | http://creativecommons.org/licenses/by-nc-nd/4.0/ | |
dc.rights | info:eu-repo/semantics/openAccess | |
dc.rights | http://purl.org/coar/access_right/c_abf2 | |
dc.title | Determinantes ecológicos de la ocupación del tigrillo andino (Leopardus tigrinus pardinoides) en bosques de niebla de la cuenca media del Río Cauca, Colombia | |
dc.type | Trabajo de grado - Maestría | |