References
- Balestrieri, A., Gazzola, A., Formenton, G. & Canova, L. 2019. Long-term impact of agricultural practices on the diversity of small mammal communities: a case study based on owl pellets. – Environmental Monitoring and Assessment 191: 1–14. DOI: 10.1007/s10661-019-7910-5
- Bank, L., Haraszthy, L., Horváth, A. & Horváth, G. F. 2019. Nesting success and productivity of the Common Barn-owl: results from a nest box installation and long-term breeding monitoring program in Southern Hungary. – Ornis Hungarica 27(1): 1–31. DOI: 10.2478/orhu-2019-0001
- Benedek, A. M., Dumitru, A. & Sbârcea, R. 2007. Correlation between diet and breeding of Tyto alba (Scopoli, 1769) (Aves: Tytonidae). – Travaux du Muséum National d’Histoire Naturelle “Grigore Antipa” L: 329–335.
- Benjamini, Y. & Hochberg, Y. 1995. Controlling the false discovery rate: a practical and powerful approach to multiple testing. – Journal of the Royal Statistical Society: series B (Methodological) 57: 289–300. DOI: 10.1111/j.2517-6161.1995.tb02031.x
- Bernard, N., Michelat, D., Raoul, F., Quéré, J. P., Delattre, P. & Giraudoux, P. 2010. Dietary response of Barn Owls (Tyto alba) to large variations in populations of Common Voles (Microtus arvalis) and European Water Voles (Arvicola terrestris). – Canadian Journal of Zoology 88(4): 416–426. DOI: 10.1139/Z10-011
- Bolnick, D. I., Yang, L. H., Fordyce, J. A., Davis, J. M. & Svanbäck, R. 2002. Measuring individual-level resource specialization. – Ecology 83(10): 2936–2941. DOI: 10.1890/0012-9658(2002)083[2936:MILRS]2.0.CO;2
- Bontzorlos, V. A., Peris, S. J., Vlachos, C. G. & Bakaloudis, D. E. 2005. The diet of Barn Owl in the agricultural landscapes of central Greece. – Folia Zoologica 54(1–2): 99–100.
- Bonvicino, C. R. & Bezerra, A. M. 2003. Use of regurgitated pellets of Barn Owl (Tyto alba) for inventorying small mammals in the Cerrado of Central Brazil. – Studies on Neotropical Fauna and Environment 38(1): 1–5. DOI: 10.1076/snfe.38.1.1.14030
- Bosé, M. & Guidali, F. 2001. Seasonal and geographic differences in the diet of the Barn Owl in an agro-ecosystem in northern Italy. – Journal of Raptor Research 35(3): 240–246.
- Botta-Dukát, Z. 2005. Rao’s quadratic entropy as a measure of functional diversity based on multiple traits. – Journal of Vegetation Science 16(5): 533–540. DOI: 10.1111/j.1654-1103.2005.tb02393.x
- Botta-Dukát, Z. & Czúcz, B. 2016. Testing the ability of functional diversity indices to detect trait convergence and divergence using individual-based simulation. – Methods in Ecology and Evolution 7(1): 114–126. DOI: 10.1111/2041-210X.12450
- Catry, T., Alves, J. A., Gill, J. A., Gunnarsson, T. G. & Granadeiro, J. P. 2014. Individual specialization in a shorebird population with narrow foraging niche. – Acta Oecologica 56: 56–65. DOI: 10.1016/j.actao.2014.03.001
- Charter, M., Izhaki, I., Meyrom, K., Motro, Y. & Leshem, Y. 2009. Diets of Barn Owls differ in the same agricultural region. – The Wilson Journal of Ornithology 121(2): 378–383. DOI: 10.1676/08-083.1
- Charter, M., Izhaki, I., Meyrom, K., Aviel, S., Leshem, Y. & Roulin, A. 2017. The relationship between weather and reproduction of the Barn Owl Tyto alba in a semi-arid agricultural landscape in Israel. – Avian Biology Research 10(4): 253–258. DOI: 10.3184/175815617X15063340995365
- Cornulier, T., Yoccoz, N. G., Bretagnolle, V., Brommer, J. E., Butet, A., Ecke, F., Elston, D. A., Framstad, E., Henttonen, H., Hörnfeld, B., Huitu, O., Imholt, C., Ims, R. A., Jacob, J., Jędrzejewska, B., Millon, A., Petty, S. J., Pietiäinen, H., Tkadlec, E., Zub, K. & Lambin, X. 2013. Europe-wide dampening of population cycles in keystone herbivores. – Science 340(6128): 63–66. DOI: 10.1126/science.1228992
- de Bruijn, O. 1994. Population ecology and conservation of the Barn Owl Tyto alba in farmland habitats in Liemers and Achterhoek (The Netherlands). – Ardea 82(1): 1–109.
- De Cáceres, M. 2013. How to use the indicspecies package (ver. 1.7. 1). – R Proj, 29.
- De Cáceres, M., Lapiedra, O. & Sol, D. 2014. An example of usage of the niche metric functions (former’resniche’package). Available from URL: https://citeseerx.ist.psu.edu/document?repid=rep1&type=pdf&doi=f49c759b303b5097500773f70355002464bb59d0
- De Cáceres, M., Sol, D., Lapiedra, O. & Legendre, P. 2011. A framework for estimating niche metrics using the resemblance between qualitative resources. – Oikos 120(9): 1341–1350. DOI: 10.1111/j.1600-0706.2011.19679.x
- de la Peña, N. M., Butet, A., Delettre, Y., Paillat, G., Morant, P., Le Du, L. & Burel, F. 2003. Response of the small mammal community to changes in western French agricultural landscapes. – Landscape Ecology 18(3): 265–278. DOI: 10.1023/A:1024452930326
- Delgado-V, C. A. & Cataño-B, E. J. 2004. Diet of the Barn Owl (Tyto alba) in the lowlands of Antioquia, Colombia. – Ornitología Neotropical 15: 413–415.
- González-Fischer, C. M., Codesido, M., Teta, P. & Bilenca, D. 2011. Seasonal and geographic variation in the diet of Barn Owls (Tyto alba) in temperate agroecosystems of Argentina. – Ornitología Neotropical 22(2): 295–305.
- Goodman, S. M., Langrand, O. & Raxworthy, C. J. 1993. The food habits of the Barn Owl Tyto alba at three sites on Madagascar. – Ostrich 64(4): 160–171. DOI: 10.1080/00306525.1993.9632655
- Görner, M., Hackethal, H. & Leuck, W. 1988. Säugetiere Europas [Mammals of Europe]. – Stuttgart: Enke (in German)
- Hafidzi, M. N. & Na Im, M. 2003. The use of the Barn Owl, Tyto alba, to suppress rat damage in rice fields in Malaysia. – ACIAR Monograph Series 96: 274–276.
- Herrera, C. M. 1974. Trophic diversity of the Barn Owl Tyto alba in continental Western Europe. – Ornis Scandinavica 5(2): 181–191. DOI: 10.2307/3676061
- Hindmarch, S. & Elliott, J. E. 2015. A specialist in the city: the diet of Barn Owls along a rural to urban gradient. – Urban Ecosystems 18(2): 477–488. DOI: 10.1007/s11252-014-0411-y
- Horváth, A., Morvai, A. & Horváth, G. F. 2018. Food-niche pattern of the Barn Owl (Tyto alba) in intensively cultivated agricultural landscape. – Ornis Hungarica 26(1): 27–40. DOI: 10.1515/orhu-2018-0002
- Horváth, G. F., Horváth, A., Boldogh, S., Szentgyörgyi, P., Estók, P., Dudás, M., Endes, M., Kalivoda, B. & Mátics, R. 2019. Kisemlősök táj- és időfüggő előfordulási mintázata és mennyiségük éves változása gyöngybagoly, Tyto alba köpetvizsgálat alapján [Annual and landscape dependent change of small mammals’ occurrence and abundance on the basis of Common Barn-owl Tyto alba pellet analysis]. – In: Váczi, O., Varga, I. & Bakó, B. (eds.) A Nemzeti Biodiverzitás-monitorozó Rendszer eredményei II. Gerinces állatok [Results of the Hungarian Biodiversity Monitoring System II. Vertebrates]. – Körös-Maros Nemzeti Park Igazgatóság, Szarvas, pp. 40–92. (in Hungarian)
- Horváth, A., Bank, L. & Horváth, G. F. 2020. Variation in the diet and breeding biology of the Common Barn-owl (Tyto alba) in a demographic cycle of Common Vole (Microtus arvalis) between two outbreaks. – Ornis Hungarica 28(2): 37–65. DOI: 10.2478/orhu-2020-0016
- Horváth, A., Morvai, A. & Horváth, G. F. 2022. Difference in small mammal assemblages in the diet of the Common Barn-owl Tyto alba between two landscapes. – Acta Zoologica Academiae Scientiarum Hungaricae 68(2): 189–216. DOI: 10.17109/AZH.68.2.189.2022
- Horváth, G. F., Mánfai, K. & Horváth, A. 2023. Relationship between landscape structure and the diet of Common Barn-owl at different distances from the Drava River ecological corridor. – Ornis Hungarica 31(1): 88–110. DOI: 10.2478/orhu-2023-0006
- Huysman, A. E. & Johnson, M. D. 2021a Multi-year nest box occupancy and short-term resilience to wildfire disturbance by Barn Owls in a vineyard agroecosystem. – Ecosphere 12(3): e03438. DOI: 10.1002/ecs2.3438
- Huysman, A. E. & Johnson, M. D. 2021b Habitat selection by a predator of rodent pests is resilient to wildfire in a vineyard agroecosystem. – Ecology and Evolution 11(24): 18216–18228. DOI: 10.1002/ece3.8416
- Frey, C., Sonnay, C., Dreiss, A. & Roulin, A. 2011. Habitat, breeding performance, diet and individual age in Swiss Barn Owls (Tyto alba). – Journal of Ornithology 152(2): 279–290. DOI: 10.1007/s10336-010-0579-8
- Jacob, J., Manson, P., Barfknecht, R. & Fredricks, T. 2014. Common Vole (Microtus arvalis) ecology and management: implications for risk assessment of plant protection products. – Pest Management Science 70(6): 869–878. DOI: 10.7325/Galemys.2016.A2
- Jacob, J., Imholt, C., Caminero-Saldaña, C., Couval, G., Giraudoux, P., Herrero-Cófreces, S., Horváth, G. F., Luque-Larena, J. J., Tkadlec, E. & Wymenga, E. 2020. Europe-wide outbreaks of Common Voles in 2019. – Journal of Pest Science 93(2): 703–709. DOI: 10.1007/s10340-020-01200-2
- Janžekovič, F. & Klenovšek, T. 2020. The biogeography of diet diversity of Barn Owls on Mediterranean islands. – Journal of Biogeography 47(11): 2353–2361. DOI: 10.1111/jbi.13955
- Jiménez, J. E., Jones, M. K., Stoddart, K., Dickson, S., Chapman, A., Baxter-Slye, J. L. & Steigman, K. L. 2020. Comparative diet analysis of Barn Owl (Tyto alba) and Long-eared Owl (Asio otus) in a habitat island in north-central Texas. – Texas Journal of Science 72(1): Article 5. DOI: 10.32011/txjsci_72_1_Article5
- Jiménez-Nájar, P., Garrido-Bautista, J., Tarifa, R., Rivas, J. M. & Moreno-Rueda, G. 2021. Diet of sympatric Barn Owls Tyto alba and Short-eared Owls Asio flammeus in an agricultural landscape in south-east Spain. – Ornis Svecica 31: 139–150. DOI: 10.34080/os.v31.23108
- Kessler, J. 2015. Osteological guide of songbirds from Central Europe. – Ornis Hungarica 23(2): 62–155. DOI: 10.1515/orhu-2015-0016
- Kitowski, I. 2013. Winter diet of the Barn Owl (Tyto alba) and the Long-eared Owl (Asio otus) in Eastern Poland. – North-Western Journal of Zoology 9(1): 16–22.
- Klok, C. & De Roos, A. M. 2007. Effects of vole fluctuations on the population dynamics of the Barn Owl Tyto alba. – Acta Biotheoretica 55: 227–241. DOI: 10.1007/s10441-007-9013-x
- von Knorre, D. 1973. Jagdgebiet und täglicher Nahrungsbedarf der Schleiereule (Tyto alba Scopoli) [Hunting area and daily food requirements of the Barn Owl (Tyto alba Scopoli)]. – Zoologische Jahrbücher Abteilung für Systematik, Geographie und Biologie der Tiere 100: 301–320. (in German)
- Korpimäki, E. & Marti, C. D. 1995. Geographical trends in trophic characteristics of mammal-eating and bird-eating raptors in Europe and North America. – The Auk 112(4): 1004–1023. DOI: 10.2307/4089031
- Kross, S. M., Bourbour, R. P. & Martinico, B. L. 2016. Agricultural land use, Barn Owl diet, and vertebrate pest control implications. – Agriculture, Ecosystems & Environment 223: 167–174. DOI: 10.1016/j. agee.2016.03.002
- Kryštufek, B. & Macholán, M. 1998: Morphological differentiation in Mus spicilegus and the taxonomic status of mound-building mice from the Adriatic coast of Yugoslavia. – Journal of Zoology 245(2): 185–196. DOI: 10.1111/j.1469-7998.1998.tb00086.x
- Laliberté, E. & Legendre, P. 2010. A distance-based framework for measuring functional diversity from multiple traits. – Ecology 91(1): 299–305. DOI: 10.1890/08-2244.1
- Lenton, G. M. 1984. The feeding and breeding ecology of Barn Owls Tyto alba in peninsular Malaysia. – Ibis 126(4): 551–575. DOI: 10.1111/j.1474-919X.1984.tb02080.x
- Leveau, L. M., Teta, P., Bogdaschewsky, R. & Pardiñas, U. F. 2006. Feeding habits of the Barn Owl (Tyto alba) along a longitudinal-latitudinal gradient in central Argentina. – Ornitología Neotropical 17(3): 353–362.
- Love, R. A., Webon, C., Glue, D. E. & Harris, S. 2000. Changes in the food of British Barn Owls (Tyto alba) between 1974 and 1997. – Mammal Review 30(2): 107–129. DOI: 10.1046/j.1365-2907.2000.00060.x
- Macholán, M. 1996. Morphometric analysis of European House Mice. – Acta Theriologica 41(3): 255–275.
- Maldonado, K., Bozinovic, F., Newsome, S. D. & Sabat, P. 2017. Testing the niche variation hypothesis in a community of passerine birds. – Ecology 98(4): 903–908. DOI: 10.1002/ecy.1769
- Marks, J. S. & Marti, C. D. 1984. Feeding ecology of sympatric Barn Owls and Long-eared Owls in Idaho. – Ornis Scandinavica 15(2): 135–143. DOI: 10.2307/3675952
- Marti, C. D. 1988. A long-term study of food-niche dynamics in the Common Barn Owl: comparisons within and between populations. – Canadian Journal of Zoology 66(8): 1803–1812. DOI: 10.1139/z88-261
- Marti, C. D. 2010. Dietary trends of Barn Owls in an agricultural ecosystem in Northern Utah. – Wilson Journal of Ornithology 122(1): 60–67. DOI: 10.1676/09-025.1
- Marti, C. D., Steenhof, K., Kochert, M. N. & Marks, J. S. 1993. Community trophic structure: the roles of diet, body size, and activity time in vertebrate predators. – Oikos 67: 6–18. DOI: 10.2307/3545090
- März, R. 1972. Gewöll- und Rupfungskunde [The Science of Pellets and Pluck]. – Akademie Verlag, Berlin (in German)
- McDowell, M. C. & Medlin, G. C. 2009. The effects of drought on prey selection of the Barn Owl (Tyto alba) in the Strzelecki Regional Reserve, north-eastern South Australia. – Australian Mammalogy 31(1): 47–55. DOI: 10.1071/AM08115
- Milana, G., Lai, M., Maiorano, L., Luiselli, L. & Amori, G. 2016. Geographic patterns of predator niche breadth and prey species richness. – Ecological Research 31(1): 111–115. DOI: 10.1007/s11284-015-1319-6
- Milchev, B. 2015. Diet of Barn Owls Tyto alba in Central South Bulgaria as influenced by landscape structure. – Turkish Journal Zoology 39: 933–940. DOI: 10.3906/zoo-1409-24
- Milchev, B. 2016. Dietary comparison of coexisting Barn Owl (Tyto alba) and Eagle Owl (Bubo bubo) during consecutive breeding seasons. – Animal Biology 66(2): 219–228. DOI: 10.1163/15707563-00002499
- Milchev, B. 2022. Effects of a forest landscape on the prey composition of the Common Barn-owl Tyto alba in southern Bulgaria. – Travaux du Muséum National d’Histoire Naturelle “Grigore Antipa” 65(1): 141–149. DOI: 10.3897/travaux.64.e65230
- Mikkola, H. 1983. Owls of Europe. – T & AD Poyser, Calton, UK.
- Muñoz-Pedreros, A., Gil, C., Yáñez, J. & Rau, J. R. 2010. Raptor habitat management and its implication on the biological control of the Hantavirus. – European Journal of Wildlife Research 56: 703–715. DOI: 10.1007/s10344-010-0364-2
- Muñoz-Pedreros, A., Gil, C., Yáñez, J., Rau, J. R. & Möller, P. 2016. Trophic ecology of two raptors, Barn Owl (Tyto alba) and White-tailed Kite (Elanus leucurus), and possible implications for biological control of Hantavirus reservoir in Chile. – The Wilson Journal of Ornithology 128(2): 391–403. DOI: 10.1676/ wils-128-02-391-403.1
- Nanni, A. S., Ortiz, P. E., Jayat, J. P. & Martín, E. 2012. Seasonal variation in the diet of the Common Barn-owl (Tyto alba) in a disturbed environment of the Argentinean Dry Chaco. – El Hornero 027(02): 149–157. DOI: 20.500.12110/hornero_v027_n02_p149
- Neuwirth, E. 2022. RColorBrewer: colorBrewer palettes (R package version 1.1-3). – https://CRAN.R-project.org/package=RColorBrewer.
- Oksanen, J., Simpson, G. L., Blanchet, F. G., Kindt, R., Legendre, P., Minchin, P. R., O’Hara, R. B., Solymos, P., Stevens, M. H. H., Szoecs, E., Wagner, H., Barbour, M., Bedward, M., Bolker, B., Borcard, D., Carvalho, G., Chirico, M., De Caceres, M., Durand, S., Evangelista, H. B. A., FitzJohn, R., Friendly, M., Furneaux, B., Hannigan, G., Hill, M. O., Lahti, L., McGlinn, D., Ouellette, M. H., Cunha, E. R., Smith, T., Stier, A., Ter Braak, C. J. F. & Weedon, J. 2022. vegan: Community Ecology Package. R package version 2.6-2. – Available from URL: https://CRAN.R-project.org/package=vegan
- Pavluvčík, P., Poprach, K., Machar, I., Losík, J., Gouveia, A. & Tkadlec, E. 2015. Barn Owl productivity response to variability of vole populations. – PloS One 10(12): e0145851. DOI: 10.1371/journal. pone.0145851
- Pavoine, S., Ollier, S. & Pontier, D. 2005. Measuring diversity from dissimilarities with Rao’s quadratic entropy: Are any dissimilarities suitable? – Theoretical Population Biology 67(4): 231–239. DOI: 10.1016/j.tpb.2005.01.004
- Petrovici, M., Molnar, P. & Sándor, A. D. 2013. Trophic niche overlap of two sympatric owl species (Asio otus Linnaeus, 1758 and Tyto alba Scopoli, 1769) in the North-Western part of Romania. – North-Western Journal of Zoology 9(2): 250–256.
- Pezzo, F. & Morimando, F. 1995. Food habits of the Barn Owl, Tyto alba, in a Mediterranean rural area: Comparison with the diet of two sympatric carnivores. – Italian Journal of Zoology 62(4): 369–373. DOI: 10.1080/11250009509356091
- Prete, S., Battisti, C., Marini, F. & Ciucci, P. 2012. Applying abundance/biomass comparisons on a small mammal assemblage from Barn Owl (Tyto alba) pellets (Mount Soratte, central Italy): a cautionary note. – Rendiconti Lincei 23(4): 349–354. DOI: 10.1007/s12210-012-0183-3
- Purger, J. J. 2014. Survey of the small mammal fauna in north-western Somogy County (Hungary), based on Barn Owl Tyto alba (Scopoli, 1769) pellet analysis. – Natura Somogyiensis 24: 293–304. DOI: 10.24394/ NatSom.2014.24.293
- Rao, C. R. 1982. Diversity and dissimilarity coefficients: A unified approach. – Theoretical Population Biology 21(1): 24–43. DOI: 10.1016/0040-5809(82)90004-1
- R Core Team. 2023. R: A language and environment for statistical computing. – R Foundation for Statistical Computing. URL https://www.R-project.org
- Ricotta, C. & Szeidl, L. 2009. Diversity partitioning of Rao’s quadratic entropy. – Theoretical Population Biology 76: 299–302. DOI: 10.1016/j.tpb.2009.10.001
- Ricotta, C. & Moretti, M. 2011. CWM and Rao’s quadratic diversity: a unified framework for functional ecology. – Oecologia 167: 181–188. DOI: 10.1007/s00442-011-1965-5
- Rodríguez, C. & Peris, S. 2007. Habitat associations of small mammals in farmed landscapes: implications for agri-environmental schemes. – Animal Biology 57(3): 301–314. DOI: 10.1163/157075607781753092
- Romano, A., Séchaud, R. & Roulin, A. 2020. Global biogeographical patterns in the diet of a cosmopolitan avian predator. – Journal of Biogeography 47(7): 1467–1481. DOI: 10.1111/jbi.13829
- Romanowski, J. & Lesiński, G. 2020. Comparing trophic niches of sympatric raptors in agricultural landscape in Central Poland. – Polish Journal of Ecology 67(4): 331–338. DOI: 10.3161/15052249PJE2019.67.4.005
- Rooney, E. & Montgomery, W. I. 2013. Diet diversity of the Common Buzzard (Buteo buteo) in a vole-less environment. – Bird Study 60(2): 147–155. DOI: 10.1080/00063657.2013.772085
- Roulin, A. 2020. Barn Owls. Evolution and Ecology. – Cambridge University Press, Cambridge UK.
- Saufi, S., Ravindran, S., Hamid, N. H., Zainal Abidin, C. M. R., Ahmad, H., Ahmad, A. H. & Salim, H. 2020 Diet composition of introduced Barn Owls (Tyto alba javanica) in urban area in comparison with agriculture settings. – Journal of Urban Ecology 6(1): 1–8. DOI: 10.1093/jue/juz025
- Schaefer, H. 1932. Die Artbestimmung der deutschen Anuren nach dem Skelet [Species identification of German anurans based on the skeleton]. – Zeitschrift für Anatomie und Entwicklungsgeschichte 97(6): 767–779. DOI: 10.1007/BF02121644
- Sokal, R. R. & Rohlf, F. J. 1997. Biometry. – W. H. Freeman and Co., New York
- Sol, D., Lapiedra, O., González-Lagos, C. & De Caceres, M. 2021. Resource preferences and the emergence of individual niche specialization within populations. – Behavioral Ecology 32(6): 1202–1211. DOI: 10.1093/ beheco/arab086
- Szép, D., Krčmar, S. & Purger, J. J. 2021. Possible causes of temporal changes in the diet composition of Common Barn-owls Tyto alba (Scopoli, 1769) (Strigiformes: Tytonidae) in Baranja, Croatia. – Acta Zoologica Bulgarica 73: 87–94.
- Szűcs, D., Horváth, K. & Horváth, G. F. 2014. Comparing small mammal faunas based on Barn Owl (Tyto alba) pellets collected in two different lowland landscapes. – Natura Somogyiensis 24: 305–320. DOI: 10.24394/ NatSom.2014.24.305
- Taylor, I. 1994. Barn Owls. Predator-Prey Relationships and Conservation. – Cambridge University Press, Cambridge
- Teta, P., Hercolini, C. & Cueto, G. 2012. Variation in the diet of Western Barn Owls (Tyto alba) along an urban-rural gradient. – The Wilson Journal of Ornithology 124(3): 589–596. DOI: 10.1676/11-173.1
- Torre, I., Gracia-Quintas, L., Arrizabalaga, A., Baucells, J. & Díaz, M. 2015. Are recent changes in the terrestrial small mammal communities related to land use change? A test using pellet analyses. – Ecological Research 30(5): 813–819. DOI 10.1007/s11284-015-1279-x
- Tkadlec, E. & Stenseth, N. C. 2001. A new geographical gradient in vole population dynamics. – Proceedings of the Royal Society of London, Series B: Biological Sciences 268(1476): 1547–1552. DOI: 10.1098/ rspb.2001.1694
- Trejo, A., Kun, M., Sahores, M. & Seijas, S. 2005. Diet overlap and prey size of two owls in the forest-steppe ecotone of southern Argentina. – Ornitología Neotropical 16: 539–546.
- Trejo, A. & Lambertucci, S. 2007. Feeding habits of Barn Owls along a vegetative gradient in northern Patagonia. – Journal of Raptor Research 41(4): 277–287. DOI: 10.3356/0892-1016(2007)41[277:FHOBOA]2.0.CO;2
- Tulis, F., Baláž, M., Obuch, J. & Šotnár, K. 2015. Responses of the Long-eared Owl Asio otus diet and the numbers of wintering individuals to changing abundance of the Common Vole Microtus arvalis. – Biologia 70(5): 667–673. DOI: 10.1515/biolog-2015-00
- Veselovský, T., Bacsa, K. & Tulis, F. 2017. Barn Owl (Tyto alba) diet composition on intensively used agricultural land in the Danube Lowland. – Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis 65(1): 225–233. DOI: 10.11118/actaun201765010225
- Warnes, G. R., Bolker, B., Bonebakker, L., Gentleman, R., Huber, W., Liaw, A., Lumley, T., Maechler, M., Arni Magnusson, A., Moeller, S., Schwartz, M. L., Venables, B., Huber, W., Liaw, A., Gregory, R., Warnes, B. B., Bonebakker, L., Lumley, T., Maechler, M., Magnusson, A., Moeller, S., Schwartz, M. & Venables, B. 2022. gplots: Various R Programming Tools for Plotting Data. R Package Version 3.1.3. Computer Software. – https://github.com/cran/gplots
- Wendt, C. A. & Johnson, M. D. 2017. Multi-scale analysis of Barn Owl nest box selection on Napa Valley vineyards. – Agriculture, Ecosystems & Environment 247: 75–83. DOI: 10.1016/j.agee.2017.06.023
- Wijnandts, H. 1984. Ecological energetics of the Long-eared Owl (Asio otus). – Ardea 55(1–2): 192. DOI: 10.5253/arde.v72.p1
- Yalden, D. W. & Morris, P. A. 1990. Owl Pellet Analysis. – The Mammal Society, London
- Yalden, D. W. 1977. Identification of Remains in Owl Pellets. – The Mammal Society, London