| Authors |
Dmitry A. Shitikov, Ph.D., associate professor at the Moscow State Pedagogical University (129164, Russia, Moscow, Kibalchicha Street, 6, bld. 3); iD ORCID: https://orcid.org/0000-0001-8851-5380; e-mail: dash.mpgu@gmail.com Tatiana M. Vaytina, Researcher at the Moscow State Pedagogical University (129164, Russia, Moscow, Kibalchicha Street, 6, bld. 3); e-mail: vaitinatm@gmail.com Viktoria A. Grudinskaya, Employee at the Zoological Museum of Lomonosov Moscow State University (125009, Russia, Moscow, B. Nikitskaya Street, 2); e-mail: viktoryia.grudinskaya@gmail.com Olga S. Bystrova, Student at the Moscow State Pedagogical University (129164, Russia, Moscow, Kibalchicha Street, 6, bld. 3); e-mail: 2001olgabystrova@gmail.com Alexandra V. Dandina, Student at the Moscow State Pedagogical University (129164, Russia, Moscow, Kibalchicha Street, 6, bld. 3); e-mail: sashadandina@mail.ru Dilyara V. Khasanova, Student at the Moscow State Pedagogical University (129164, Russia, Moscow, Kibalchicha Street, 6, bld. 3); e-mail: xasanova99@mail.ru Stanislav V. Samsonov, Researcher at the A.N. Severtsov Institute of Ecology and Evolution of the RAS (119071, Russia, Moscow, Leninsky Prospekt, 33); e-mail: s.v.samsonov95@gmail.com |
| References |
Altman B., Geier J., Rockwell S.M. 2024. High post-fledging survival and site persistence using mark-resight methodology for Oregon Vesper Sparrows in the Willamette Valley, Oregon. Avian Conservation and Ecology 19(2): 8. DOI: 10.5751/ACE-02706-190208 Babushkin M.V. 2019. Photoposts – an effective method of obtaining information about ringed White-Tailed Eagles and Ospreys in the condition of reservoirs. In: Buturlin Article Collection. Izhevsk: Print. P. 83–93. [In Russian] Barshep Y., Ottosson U., Waldenström J., Hulme M. 2012. Non-breeding ecology of the Whinchat Saxicola rubetra in Nigeria. Ornis Svecica 22: 25–32. DOI: 10.34080/os.v22.22591 Bates D., Mächler M., Bolker B., Walker S. 2015. Fitting Linear Mixed-Effects Models Using lme4. Journal of Statistical Software 67: 1–48. DOI: 10.18637/jss.v067.i01 Berkeley L.I., McCarty J.P., Wolfenbarger L.L. 2007. Postfledging survival and movement in Dickcissels (Spiza americana): implications for habitat management and conservation. Auk 124(2): 396–409. DOI: 10.1093/auk/124.2.396 Bloche D.A.F., Thorup K., Olsen K., Ekberg P., Ellegaard Larsen P., Strange K.E., Tøttrup A.P. 2023. Breeding biology of Red-backed Shrikes (Lanius collurio): distribution, performance and post-fledging survival in Denmark. Ornis Fennica 100(2): 69–83. DOI: 10.51812/of.124729 Bolton M., Butcher N., Sharpe F., Stevens D., Fisher G. 2007. Remote monitoring of nests using digital camera technology. Journal of Field Ornithology 78(2): 213–220. DOI: 10.1111/j.1557-9263.2007.00104.x Bureš S., Baláž M., Slavkovská D., Weidinger K. 2023. Post-fledging survival and dispersal of the White-Throated Dipper Cinclus cinclus. Acta Ornithologica 57(2): 125–133. DOI: 10.3161/00016454AO2022.57.2.001 Cox W.A., Thompson F.R., Cox A.S., Faaborg J. 2014. Post-fledging survival in passerine birds and the value of post-fledging studies to conservation. Journal of Wildlife Management 78(2): 183–193. DOI: 10.1002/jwmg.670 Dinsmore S.J., White G.C., Knopf F.L. 2002. Advanced techniques for modeling avian nest survival. Ecology 83(12): 3476–3488. DOI: 10.1890/0012-9658(2002)083[3476:atfman]2.0.co;2 Fay R., Schaub M., Banik M.V., Borde J.A., Henderson I.G., Fahl G., Feulner J., Horch P., Korner F., Müller M., Michel V., Rebstock H., Shitikov D., Tome D., Vögeli M., Grüebler M.U. 2021. Whinchat survival estimates across Europe: can excessive adult mortality explain population declines?. Animal Conservation 24(1): 15–25. DOI: 10.1111/acv.12594 Fischer K., Busch R., Fahl G., Kunz M., Knopf M. 2013. Habitat preferences and breeding success of Whinchats (Saxicola rubetra) in the Westerwald mountain range. Journal of Ornithology 154(2): 339–349. DOI: 10.1007/s10336-012-0898-z Fisher R.J., Davis S.K. 2011. Post-fledging dispersal, habitat use, and survival of Sprague's pipits: Are planted grasslands a good substitute for native?. Biological Conservation 144(1): 263–271. DOI: 10.1016/j.biocon.2010.08.024 Fiss C.J., McNeil D.J., Rodewald A.D., Duchamp J.E., Larkin J.L. 2020. Post-fledging Golden-winged Warblers require forests with multiple stand developmental stages. Condor 122(4): duaa052. DOI: 10.1093/condor/duaa052 Giannerini S., Bianchi M., Furini M., Nannelli L., Santalmasi G. 2024. Camera trapping as a monitoring method of the Red-Backed Shrike (Lanius collurio) in Italy. European Journal of Ecology 10: 116–121. DOI: 10.17161/eurojecol.v10i.23251 Halliwell C., Ketcher M., Proud A., Westerberg S., Douglas D.J.T., Burgess M.D. 2023. Early life conditions influence fledging success and subsequent local recruitment rates in a declining migratory songbird, the Whinchat Saxicola rubetra. Ecology and Evolution 13(7): e10346. DOI: 10.1002/ece3.10346 Hayes S., Boyd B.P., Stutchbury B.J. 2024. Why do juvenile Wood Thrushes make long-distance pre-migratory movements across a fragmented landscape?. Journal of Field Ornithology 95(2): 9. DOI: 10.5751/JFO-00465-950209 Hepp M., Ware L., van Oort H., Beauchesne S.M., Cooper J.M., Green D.J. 2018. Postfledging survival and local recruitment of a riparian songbird in habitat influenced by reservoir operations. Avian Conservation and Ecology 13(1): 12. DOI: 10.5751/ACE-01190-130112 Hijmans R.J., Williams E., Vennes C. 2019. R package geosphere: Spherical Trigonometry (version 1.5-10). DOI: 10.32614/CRAN.package.geosphere Hill J.M., Elphick C.S. 2011. Are grassland passerines especially susceptible to negative transmitter impacts?. Wildlife Society Bulletin 35(4): 362–367. DOI: 10.1002/wsb.84 Hong S.Y., Lin H.S., Huang Z.L., Choi W.S., Wang W.I., Sun Y.H. 2022. Perch-mounted camera traps record predatory birds in farmland. Journal of Raptor Research 56(1): 116–124. DOI: 10.3356/JRR-21-00001 Lebreton J.D., Burnham K.P., Clobert J., Anderson D.R. 1992. Modeling survival and testing biological hypotheses using marked animals: a unified approach with case studies. Ecological Monographs 62(1): 67–118. DOI: 10.2307/2937171 Kershner E.L., Walk J.W., Warner R.E. 2004. Postfledging movements and survival of juvenile Eastern Meadowlarks (Sturnella magna) in Illinois. Auk 121(4): 1146–1154. DOI: 10.1093/auk/121.4.1146 Kiseleva N.V., Zakharov V.D. 2020. The experience of using camera trapping to study birds. Bulletin of Moscow Society of Naturalists 125(1): 15–18. [In Russian] Koce U., Denac D. 2010. Social foraging and habitat use by a long-distance passerine migrant, Whinchat Saxicola rubetra, at a spring stopover site on the SE Adriatic coast. Journal of Ornithology 151(3): 655–663. DOI: 10.1007/s10336-010-0506-z Malchevsky A.S., Pukinsky Yu.B. 1983. The birds of Leningrad region and adjacent areas: History, biology, conservation. Vol. 2. Leningrad: Leningrad University Press. 504 p. [In Russian] Mitchell G.W., Taylor P.D., Warkentin I.G. 2010. Assessing the function of broad-scale movements made by juvenile songbirds prior to migration. Condor 112(4): 644–654. DOI: 10.1525/cond.2010.090136 Morton M.L., Wakamatsu M.W., Pereyra M.E., Morton G.A. 1991. Postfledging dispersal, habitat imprinting, and philopatry in a montane, migratory sparrow. Ornis Scandinavica 22(2): 98–106. DOI: 10.2307/3676540 Naef-Daenzer B., Grüebler M.U. 2016. Post-fledging survival of altricial birds: ecological determinants and adaptation. Journal of Field Ornithology 87(3): 227–250. DOI: 10.1111/jofo.12157 Ogurtsov S.S., Zheltukhin A.S. 2024. Mammal inventory using camera traps in the Central Forest State Nature Reserve (West of European Russia). Nature Conservation Research 9(3): 12–33. DOI: 10.24189/ncr.2024.017 [In Russian] Paevsky V.A. 2008. Demographic structure and population dynamics of songbirds. St. Peterburg-Moscow: KMK Scientific Press. 235 p. [In Russian] Patchett R., Styles P., Robins King J., Kirschel A.N.G., Cresswell W. 2022. The potential function of post-fledging dispersal behavior in first breeding territory selection for males of a migratory bird. Current Zoology 68(6): 708–715. DOI: 10.1093/CZ/ZOAC002 R Core Team. 2024. R: A language and environment for statistical computing. Vienna, Austria: R Foundation for Statistical Computing. Available from: https://www.R-project.org/ Samsonov S.V., Makarova T.V., Shitikov D.A. 2018. Nest predator species of open nesting songbirds of abandoned fields in «Russky Sever» National Park (Russia). Nature Conservation Research 3(2): 100–103. DOI: 10.24189/ncr.2018.025 Samsonov S., Grudinskaya V., Grabovsky A., Makarova T., Shitikov D. 2022. A hidden threat in abandoned fields: frequent nest predation by common adder on ground-nesting passerines. European Journal of Wildlife Research 68(1): 11. DOI: 10.1007/s10344-022-01559-w Savinich I.B. 1987. The seasonal phenomenons of the annual cycle of Whinchat (Saxicola rubetra) in the south-east coast of the Ladoga lake. Proceedings of Zoological Institute AS USSR 163: 113–125. [In Russian] Shitikov D.А. 2021. Nest Survival of Open-Nesting Passerines: Species Differences, Temporal Variability, and the Impact of Weather Conditions. Biology Bulletin 48(Suppl.1): S74–S84. DOI: 10.1134/S1062359021140168 Shitikov D.A., Fedchuk D.V. 2008. The role of territorial relations in the formation of breeding population of passerines in a forb meadow of the middle taiga. Zoologicheskii Zhurnal 87(2): 206–217. [In Russian] Shitikov D.A., Vaytina T.M., Gagieva V.A., Fedchuk D.V. 2015. Breeding success affects site fidelity in a Whinchat Saxicola rubetra population in abandoned fields. Bird Study 62(1): 96–105. DOI: 10.1080/00063657.2014.988120 Shitikov D., Grudinskaya V., Makarova T., Vaytina T., Fedotova S., Samsonov S., Grabovsky A. 2020. Low first-year apparent survival of passerines in abandoned fields in northwestern Russia. Condor 122(2): duaa008. DOI: 10.1093/condor/duaa008 Sokolov L.V. 1991. Philopatry and dispersal of birds. Proceedings of Zoological Institute AS USSR 230: 1–233. [In Russian] Sokolov L.V., Vysotskiy V.G., Bardin A.V. 1987. Post-breeding dispersal of the Pied Flycatcher (Ficedula hypoleuca) on the Curonian Spit. Proceedings of Zoological Institute AS USSR 163: 126–135. [In Russian] Tohiran K., Nasir D.M., Burhanuddin M., Nobilly F., Zulkifli R., Moslim R., Yahya M.S., Norhisham A.R., Lechner A.M., Azhar B. 2024. First records of diurnal and nocturnal predatory birds from artificial hunting perch trials in oil palm plantations. BioControl 69(6): 635–646. DOI: 10.1007/s10526-024-10279-w Tome D., Denac D. 2012. Survival and development of predator avoidance in the post-fledging period of the Whinchat (Saxicola rubetra): Consequences for conservation measures. Journal of Ornithology 153(1): 131–138. DOI: 10.1007/s10336-011-0713-2 Vargas-Daza A.M., Betancurt-Grisales J.F., Cardona-Salazar L.J., Benavides-Ossa Y.A., Fontúrbel F.E., Castaño-Villa G.J. 2023. Assessing bird diversity in Neotropical rainforests: A comparative study of camera traps and mist nets reveals complementary sampling approaches. Ornithological Applications 125(3): duad019. DOI: 10.1093/ornithapp/duad019 Yackel Adams A.A., Skagen S.K., Savidge J.A. 2006. Modeling post-fledging survival of lark buntings in response to ecological and biological factors. Ecology 87(1): 178–188. DOI: 10.1890/04-1922 Zhang Q., Gong Y., Song X., Wang X., Yang C., Shu Z., Zou F. 2018. Comparing the effectiveness of camera trapping to traditional methods for biodiversity surveys of forest birds. Biodiversity Science 26(3): 229–237. DOI: 10.17520/biods.2017275 Züst Z., Mukhin A., Taylor P.D., Schmaljohann H. 2023. Pre-migratory flights in migrant songbirds: the ecological and evolutionary importance of understudied exploratory movements. Movement Ecology 11(1): 78. DOI: 10.1186/s40462-023-00440-y |