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Nest site characteristics of the Great-spotted Woodpecker in a bottomland riparian forest in the presence of invasive tree species


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Adkins Giese, C. L. & Cuthbert, F. J. 2003. Influence of surrounding vegetation on woodpecker nest tree selection in oak forests of the Upper Midwest, USA. - Forest Ecology and Management 179: 523-534. DOI: 10.1016/S0378-1127(02)00529-710.1016/S0378-1127(02)00529-7Search in Google Scholar

Aulén, G. & Lundberg, A. 1991. Sexual dimorphism and patterns of territory use by the White-backed Woodpecker Dendrocopos leucotos. - Ornis Scandinavica 22(1): 60-64. DOI: 10.2307/367662210.2307/3676622Search in Google Scholar

Bai, M-L., Wichmann, F. & Mühlenberg, M. 2005. Nest-site characteristics of hole-nesting birds in a primeval boreal forest of Mongolia. - Acta Ornithologica 40(1): 1-14. DOI: 10.3161/068.040.010510.3161/068.040.0105Search in Google Scholar

Cooke, H. A. & Hannon, S. J. 2012. Nest-site selection by old boreal forest cavity excavators as a basis for structural retention guidelines in spatially- aggregated harvests. - Forest Ecology and Management 269: 37-51. DOI: 10.1016/j.foreco.2011.12.04210.1016/j.foreco.2011.12.042Search in Google Scholar

Csiszár, Á. 2009. Allelopathic effects of invasive woody plant species in Hungary. - Acta Silvatica et Lignaria Hungarica 5: 9-17.Search in Google Scholar

Csiszár, Á. & Bartha, D. 2008. Green ash (Fraxinus pennsylvanica Marsh.). - In: Botta-Dukát, Z. & Mihály, B. (eds.). The most important invasive plants in Hungary. - Institute of Ecology and Botany, Hungarian Academy of Sciences, Vácrátót, Hungary, pp. 161-166.Search in Google Scholar

Csiszár, Á., Korda, M., Schmidt, D., Špor, D., Süle, I. P., Teleki, B., Tiborcz, V., Zagyvai, G. & Bartha, D. 2013. Allelopathic potential of some invasive plant species occurring in Hungary. - Allelopathy Journal 31: 309-318.Search in Google Scholar

Edman, T., Angelstam, P., Mikusinski, G., Roberge, J-M. & Sikora, A. 2011. Spatial planning for biodiversity conservation: Assessment of forest landscapes’ conservation value using umbrella species requirements in Poland. - Landscape Urban Planning 102(1): 16-23. DOI: 10.1016/j.landurbplan.2011.03.00410.1016/j.landurbplan.2011.03.004Search in Google Scholar

Erfmeier, A., Böhnke, M. & Bruelheide, E. 2011. Secondary invasion of Acer negundo: the role of phenotypic responses versus local adaptation. - Biological Invasions 13: 1599-1614. DOI: 10.1007/ s10530-010-9917-210.1007/s10530-010-9917-2Search in Google Scholar

Gencsi, L. & Vancsura, R. 2002. Dendrológia [Dendrology]. - Mezőgazda Kiadó, Budapest (in Hungarian)Search in Google Scholar

Glue, D. E. & Boswell, T. 1994. Comparative nesting ecology of the three British breeding woodpeckers. - British Birds 87: 253-269.Search in Google Scholar

Gorman, G. 2004. Woodpeckers of Europe. A study of the European Picidae. - Chalfont St. Peter: Bruce ColemanSearch in Google Scholar

Gorman, G. 2011. The Black Woodpecker. A monograph on Dryocopus martius. - Lynx Edicions, BarcelonaSearch in Google Scholar

Hagvar, S., Hagvar, G. & Monness, E. 1990. Nest site selection in Norwegian woodpeckers. - Holarctic Ecology 13: 156-165. DOI: 10.1111/j.1600-0587.1990.tb00602.x10.1111/j.1600-0587.1990.tb00602.xSearch in Google Scholar

Hansson, L. 1992. Requirements by the Great-spotted Woodpecker Dendrocopos major for a suburban life. - Ornis Svecica 2: 1-6.Search in Google Scholar

Hammer, O., Harper, D. A. T. & Ryan, P. D. 2001. PAST: Paleontological statistics software package for education and data analysis. - Palaeontologia Electronica 4(1): 9.Search in Google Scholar

Haraszthy, L. 2001. The floodplain forests in Hungary. - In: Klimo, E. & Hager, H. (eds.) The floodplain forests in Europe. Current situation and perspectives. - European Forest Institute Research Report 10. Brill, Leiden, pp. 17-24.Search in Google Scholar

Hebda, G. 2009. Nesting sites of the Great-spotted Woodpecker Dendrocopos major L. in Poland: analysis of nest cards. - Polish Journal of Ecology 57(1): 149-158.Search in Google Scholar

Hobbs, R. J., Arico, S., Aronson, J., Baron, J. S., Bridgewater, P., Cramer, V. A., Epstein, P. R., Ewel, J. J., Klink, C. A., Lugo, A. E., Norton, D., Ojima, D., Richardson, D. M., Sanderson, E. W., Valladares, F., Vilà, M., Zamora, R. & Zobel, M. 2006. Novel ecosystems: theoretical and management aspects of the new ecological world order. - Global Ecology and Biogeography 15: 1-7. DOI: 10.1111/j.1466-822x.2006.00212.x10.1111/j.1466-822X.2006.00212.xSearch in Google Scholar

Hobbs, R. J., Higgs, E. S. & Hall, C. M. 2013. Defining novel ecosystems. - In: Hobbs, R. J., Higgs, E. S. & Hall, C. M. (eds.) Novel ecosystems. Intervening in the new ecological world order. - Wiley-Blackwell, Chichester, pp. 58-60.Search in Google Scholar

Hutcheson, K. 1970. A test for comparing diversities based on the Shannon formula. - Journal of Theoretical Biology 29: 151-154.10.1016/0022-5193(70)90124-4Search in Google Scholar

Iverson, L., Prasad, A. & Matthews, S. 2008. Modelling potential climate change impacts on the trees of the northeastern United States. - Mitigation and Adaptation Strategies for Global Change 13(5-6): 487-516.10.1007/s11027-007-9129-ySearch in Google Scholar

Iverson, L., Prasad, A. Matthews, S. & Peters, M. 2009. Potential changes in tree habitat for Illinois under climate change. - In: Taft, J. (ed.) Canaries in the Catbird Seat, Chapter 16. - Illinois Natural History Survey Special Publication 30, Champaign, Illinois, pp. 263-270.Search in Google Scholar

Jackson, J. A. & Jackson B. J. S. 2004. Ecological relationships between fungi and woodpecker cavity sites. - The Condor 106(1): 37-49. DOI: 10.1650/748310.1650/7483Search in Google Scholar

Kosiński, Z. & Kempa, M. 2007. Density, distribution and nest-sites of woodpeckers Picidae, in a managed forest of western Poland. - Polish Journal of Ecology 55(3): 519-533.Search in Google Scholar

Kosiński, Z. & Winiecki, A. 2004. Nest-site selection and niche partitioning among the Great-spotted Woodpecker Dendrocopos major and Middlespotted Woodpecker Dendrocopos medius in riverine forest of Central Europe. - Ornis Fennica 81: 145-156.Search in Google Scholar

Kosiński, Z., Ksit, P. & Winiecki, A. 2006. Nest sites of Great-spotted Woodpeckers Dendrocopos major and Middle-spotted Woodpeckers Dendrocopos medius in near-natural and managed riverine forests. - Acta Ornithologica 41(1): 21-32. DOI: 10.3161/068.041.010810.3161/068.041.0108Search in Google Scholar

Kotaka, N. & Matsuoka, S. 2002. Secondary users of Great-spotted Woodpecker (Dendrocopos major) nest cavities in urban and suburban forests in Sapporo City, northern Japan. - Ornithological Science 1(2): 117-122. DOI: 10.2326/osj.1.11710.2326/osj.1.117Search in Google Scholar

Kozma, J. 2009. Nest-site attributes and reproductive success of White-headed and Hairy Woodpeckers along the East-slope Cascades of Washington State. - In: Rich, T. D., Thompson, C. D., Demarest, D. & Arizmendi, D. (eds.) Tundra to Tropics: connecting birds, habitas and people. - Proceedings of the Fourth International Partners in Flight Conference, McAllen, TX., pp. 52-61.Search in Google Scholar

Lammertink, M. 2014. Trends in threat status and priorities in conservation of the woodpeckers of the world. - Acta Ornithologica 49(2): 207-219. DOI: 10.3161/173484714X68710910.3161/173484714X687109Search in Google Scholar

Lindenmayer, D. B., Fischer, J., Felton, A., Crane, M., Michael, D., Macgregor, C., Montague-Drake, R., Manning, A. & Hobbs, R. J. 2008. Novel ecosystems resulting from landscape transformation create dilemmas for modern conservation practice. - Conservation Letters 1: 129-135. DOI: 10.1111/j.1755-263X.2008.00021.x10.1111/j.1755-263X.2008.00021.xSearch in Google Scholar

Magura, T., Báldi, A. & Horváth, R. 2008. Breakdown of the species-area relationship in exotic but not in native forest patches. - Acta Oecologica 33: 272-279. DOI: 10.1016/j.actao.2007.11.00710.1016/j.actao.2007.11.007Search in Google Scholar

Martin, K. & Eadie, J. M. 1999. Nest webs: A community- wide approach to the management and conservation of cavity-nesting forest birds. - Forest Ecology Management 115(2): 243-257. DOI: 10.1016/S0378-1127(98)00403-410.1016/S0378-1127(98)00403-4Search in Google Scholar

Martin, K., Aitken, K. E. H. & Wiebe, K. L. 2004. Nest sites and nest webs for cavity-nesting communities in interior British Columbia, Canada: nest characteristics and niche partitioning. - The Condor 106(1): 5-19. DOI: 10.1650/748210.1093/condor/106.1.5Search in Google Scholar

Mazgajski, T. 1998. Nest-site characteristic of Great-spotted Woodpecker Dendrocopos major in Central Poland. - Polish Journal of Ecology 46(1): 33-41.Search in Google Scholar

Melletti, M. & Penteriani, V. 2003. Nesting and feeding tree selection in the endangered Whitebacked Woodpecker Dendrocopos leucotos lilfordi. - The Wilson Bulletin 115(3): 299-306. DOI: 10.1676/03-02210.1676/03-022Search in Google Scholar

Mihály, B. & Botta-Dukát, Z. (eds.) 2004. Biológiai inváziók Magyarországon. Özönnövények [Biological invasions in Hungary. Invasive plants]. - Természetbúvár Alapítvány Kiadó, Budapest (in Hungarian)Search in Google Scholar

Milton, S. J. 2003. ‘Emerging ecosystems’: a washing- stone for ecologists, economists and sociologists? - South African Journal of Science 99: 404-406.Search in Google Scholar

Ónodi, G. & Csörgő, T. 2013. Relationship between vegetation structure and abundance of Great-spotted Woodpeckers (Dendrocopos major) in a mosaic habitat. - Ornis Hungarica 21(1): 1-11. DOI: 10.2478/orhu-2013-001110.2478/orhu-2013-0011Search in Google Scholar

Ónodi, G. & Csörgő, T. 2014. Habitat preference of Great-spotted Woodpecker (Dendrocopos major Linnaeus, 1758) and Lesser-spotted Woodpecker (Dendrocopos minor Linnaeus, 1758) in the presence of invasive plant species - preliminary study. - Ornis Hungarica 22(2): 50-64. DOI: 10.2478/orhu-2014-001810.2478/orhu-2014-0018Search in Google Scholar

Pasinelli, G. 2007. Nest site selection in Middle and Great-spotted Woodpeckers Dendrocopos medius & D. major: implications for forest management and conservation. - Biodiversity and Conservation 16: 1283-1298. DOI: 10.1007/s10531-007-9162-x10.1007/s10531-007-9162-xSearch in Google Scholar

Politi, N., Hunter, M. Jr. & Rivera, L. 2010. Availability of cavities for avian cavity nesters in selectively logged subtropical montane forests of the Andes. - Forest Ecology and Management 260: 893-906. DOI: 10.1016/j.foreco.2010.06.00910.1016/j.foreco.2010.06.009Search in Google Scholar

Poole, R. W. 1974. An introduction to quantitative ecology. - McGraw-Hill, New YorkSearch in Google Scholar

Porté, A. J., Lamarque, L. J., Lortie, C. J., Michalet, R. & Delzon, S. 2011. Invasive Acer negundo outperforms native species in non-limiting resource environments due to its higher phenotypic plasticity. - BioMed Central Ecology 11: 28. DOI: 10.1186/1472-6785-11-2810.1186/1472-6785-11-28Search in Google Scholar

Roberge, J-M., Angelstam, P. & Villard, M-A. 2008a Specialised woodpeckers and naturalness in hemiboreal forests. Deriving quantitative targets for conservation planning. - Biological Conservation 141(6): 997-1012. DOI: 10.1016/j.biocon.2008.01.01010.1016/j.biocon.2008.01.010Search in Google Scholar

Roberge, J-M., Mikusinski, G. & Svensson, S. 2008b The White-backed Woodpecker: umbrella species for forest conservation planning? - Biodiversity and Conservation 17(10): 2479-2494. DOI: 10.1007/s10531-008-9394-410.1007/s10531-008-9394-4Search in Google Scholar

Ross, W. G., Kulhavy, D. L. & Conner, R. N. 1997. Stand conditions and tree characteristics affect quality of longleaf pine for Red-cockaded Woodpecker cavity trees. - Forest Ecology and Management 91: 141-154.10.1016/S0378-1127(96)03894-7Search in Google Scholar

Rumble, M. A. & Gobeille, J. E. 1998. Bird community relationships to succession in green ash (Fraxinus pennsylvanica) woodlands. - American Midland Naturalist 140: 372-381. DOI: 10.1674/0003-0031(1998)140[0372:BCRTSI]2.0.CO;2Search in Google Scholar

Saccone, P., Brun, J-J. & Michalet, R. 2010. Challenging growth-survival trade-off: a key for Acer negundo invasion in European floodplains? - Canadian Journal of Forest Research 40: 1879-1886. DOI: 10.1139/X10-13410.1139/X10-134Search in Google Scholar

Scott, M. L., Auble, G. T. & Friedman, J. M. 1997. Flood dependency of cottonwood establishment along the Missouri river, Montana, USA. - Ecological Applications 7(2): 677-690. DOI: 10.1890/1051-0761(1997)007[0677:FDOCEA] 2.0.CO;2Search in Google Scholar

Smith, K. W. 1995. Nest site selection of the Great-spotted Woodpecker Dendrocopos major in two oak woods in southern England and its implications for woodland management. - Biological Conservation 80: 283-288. DOI: 10.1016/S0006-3207(96)00038-910.1016/S0006-3207(96)00038-9Search in Google Scholar

Smith, K. W. 1997. Nest site selection of the Great-spotted Woodpecker Dendrocopos major in two oak woods in Southern England and its implications for woodland management. - Biological Conservation 80: 283-288.10.1016/S0006-3207(96)00038-9Search in Google Scholar

Smith, K. W. 2007. The utilization of dead wood resources by woodpeckers in Britain. - Ibis 149(Suppl.2): 183-192. DOI: 10.1111/j.1474-919X.2007.00738.x/Search in Google Scholar

Starzomski, B. M. 2013. Novel ecosystems and climate change. - In: Hobbs, R. J., Higgs, E. S. & Hall, C. M. (eds.) Novel ecosystems. Intervening in the new ecological world order. - Wiley-Blackwell, Chichester, pp. 88-101.Search in Google Scholar

Udvardy, L. 2008. Boxelder (Acer negundo L.). - In: Botta-Dukát, Z. & Mihály, B. (eds.). The most important invasive plants in Hungary. Institute of Ecology and Botany, Hungarian Academy of Sciences, Vácrátót, Hungary, pp. 115-120.Search in Google Scholar

Vaillancourt, M., Drapeau, P., Gauthier, S. & Robert, M. 2008. Availability of standing trees for large cavity-nesting birds in the eastern boreal forest of Québec, Canada. - Forest Ecology and Management 255: 2272-2285.10.1016/j.foreco.2007.12.036Search in Google Scholar

van Turnhout, C. A. M., Leuven, R. S. E. W., Hendriks, A. J., Kurstjens, G., van Strien, A., Foppen, R. P. B. & Siepel, H. 2010. Ecological strategies successfully predict the effects of river floodplain rehabilitation on breeding birds. - River Research and Applications 28(3): 269-282. DOI: 10.1002/rra.145510.1002/rra.1455Search in Google Scholar

Wan, T., Hu, J., Jiao, Z., Wen, J. & Luo, Y. 2008. Nest-cavity characteristics of the Great-spotted Woodpecker Dendrocopos major in shelter plantations of west Inner Mongolia. - Forestry Studies in China 10(1): 36-40. DOI: 10.1007/s11632-008-0010-110.1007/s11632-008-0010-1Search in Google Scholar

Walankiewicz, W. & Czeszczewik, D. 2005. Wykorzystanie osiki Populus tremula przez ptaki w drzewostanach pierwotnych Białowieskiego Parku Narodowego [Use of aspen Populus tremula by birds in primeval stands of the Białowieża National Park]. - Notatki Ornitologiczne 46: 9-14. (in Polish with English Summary)Search in Google Scholar

Wesołowski, T. & Tomiałojć, L. 1986. The breeding ecology of woodpeckers in a temperate primaeval forest - preliminary data. - Acta Ornithologica 22: 1-21.Search in Google Scholar

Wesolowski, T. 2007. Lessons from long-term hole-nester studies in a primeval temperate forest. - Journal of Ornithology 148: 395-405. DOI: 10.1007/s10336-007-0198-110.1007/s10336-007-0198-1Search in Google Scholar

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