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Impact of stand variables on characteristics of avian soundscape in common oak (Quercus robur L.) forests Cover

Impact of stand variables on characteristics of avian soundscape in common oak (Quercus robur L.) forests

Open Access
|Nov 2019

References

  1. Ambuel, B., Temple, S.A. 1983. Area-dependent changes in the bird communities and vegetation of southern Wisconsin forests. – Ecology, 64(5), 1057–1068.10.2307/1937814
  2. Atemasov, A.A., Atemasova, T.A., Devyatko, T.N., Lysenko, N.G., Goncharov, G.L. 2011. The structure of the communities of breeding birds in oak forests on elevated positions in the southern part of Middle Russian Hills. – Birds ecology: species, communities, interrelations. Part 1. – Proceedings of the Meeting Commemorating the 150th Anniversary of the Birth of Nikolay N. Somov (1861–1923), Ukraine, Dec. 2011. Kharkov, 345–354. (In Russian with English summary).
  3. Balestrieri, R., Basile, M., Posillico, M., Altea, T., Matteucci, G. 2017. Survey effort requirements for bird community assessment in forest habitats. – Acta Ornithologica, 52(1), 1–9.10.3161/00016454AO2017.52.1.001
  4. Bibby, C.J., Burgess, N.D., Hill, D.A. 1992. Bird Census Techniques. London, Academic Press. 257 pp.
  5. Bobryk, Ch.W., Rega-Brodsky, C.C., Bardhan, S., Farina, A., He, H.S., Jose, S. 2016. A rapid soundscape analysis to quantify conservation benefits of temperate agroforestry systems using low-cost technology. – Agroforestry Systems, 90(6), 997–1008.10.1007/s10457-015-9879-6
  6. Boelman, N.T., Asner, G.P., Hart, P.J., Martin, R.E. 2007. Multi-trophic invasion resistance in Hawaii: bioacoustics, field surveys, and airborne remote sensing. – Ecological Applications, 17, 2137–2144.10.1890/07-0004.1
  7. Browning, E., Gibb, R., Glover-Kapfer, P., Jones, K.E. 2017. Passive acoustic monitoring in ecology and conservation. WWF Conservation Technology Series 1(2). Woking, United Kingdom, WWF-UK. 75 pp.
  8. Buxton, R.T., Agnihotri, S., Robin, V.V., Goel A., Balakrishnan, R. 2018. Acoustic indices as rapid indicators of avian diversity in different land-use types in an Indian biodiversity hotspot. – Journal of Ecoacoustics, 2, #GWPZVD.10.22261/jea.gwpzvd
  9. Czeszczewik, D., Walankiewicz, W., Mitrus, C., Tumiel, T., Stanski, T., Sahel, M., Bednarczyk, G. 2013. Importance of dead wood resources for woodpeckers in coniferous stands of the Białowieża Forest. – Bird Conservation International, 23, 414–425.10.1017/S0959270912000354
  10. Czeszczewik, D., Zub, K., Stanski, T., Sahel, M., Kapusta, A., Walankiewicz, W. 2015. Effects of forest management on bird assemblages in the Białowieża Forest, Poland. – iForest, 8, 377–385.10.3832/ifor1212-007
  11. Eldridge, A., Guyot, P., Moscoso, P., Johnston, A., Eyre-Walker, Y., Peck, M. 2018. Sounding out ecoacoustic metrics: Avian species richness is predicted by acoustic indices in temperate but not tropical habitats. – Ecological Indicators, 95(1), 939–952.10.1016/j.ecolind.2018.06.012
  12. Farina, A. 2014. Soundscape Ecology: Principles, Patterns, Methods and Applications. Dordrecht, Springer. 315 pp.10.1007/978-94-007-7374-5
  13. Farina, A., Morri, D. 2008. Source-sink and eco-field: hypotheses and experimental evidence. (Source-sink e eco-field: ipotesi ed evidenze sperimentali). – Atti del X congresso nazionale della SIEP-IALE. Ecologia e governance delpaesaggio: esperienze e prospettive. Bari, 365–372.
  14. Fuller, R.J., Langslow, D.R. 1984. Estimating numbers of birds by point counts: how long should counts last? – Bird Study, 31(3), 195–202.10.1080/00063658409476841
  15. Gardner, T. 2010. Monitoring Forest Biodiversity: Improving Conservation through Ecologically-Responsible Management. London, Routledge. 388 pp.10.4324/9781849775106
  16. Gòmez, W.E., Isaza, C.V., Daza, J.M. 2018. Identifying disturbed habitats: a new method from acoustic indices. – Ecological Informatics, 45, 16–25.10.1016/j.ecoinf.2018.03.001
  17. Gorelova, L.N. 1989. Protection of vegetation cover in Siversky Donets river basin in Kharkiv region. (Охрана растительного покрова бассейна р. Сев. Донец в пределах Харьковской области). – Kharkov University Bulletin, 330, 23–26. (In Russian).
  18. Guziy, A.I. 2006. Spatio-Typological Organization of Bird Forest Stands in Western Ukraine. (Просторово-типологічна організація населення птахів лісостанів західного регіону України). Zhytomyr, Volyn’, Ruta. 448 pp. (In Ukrainian).
  19. Hutto, R.L., Pletschet, S.M., Hendricks, P. 1986. A fixed-radius point count method for nonbreeding and breeding season use. – The Auk, 103(3), 593–602.10.1093/auk/103.3.593
  20. James, F.C., Shugart, H.H. Jr. 1970. A quantitative method of habitat description. – Audubon Field Notes, 24(6), 727–736.
  21. Jorge, F.C., Machado, C.G., da Cunha Nogueira S.S., Nogueira-Filho S.L.G. 2018. The effectiveness of acoustic indices for forest monitoring in Atlantic rainforest fragments. – Ecological Indicators, 91, 71–76.10.1016/j.ecolind.2018.04.001
  22. Kasten, E.P., Gage, S.H., Fox, J., Joo, W. 2012. The remote environmental assessment laboratory’s acoustic library: An archive for studying soundscape ecology. – Ecological Informatics, 12, 50–67.10.1016/j.ecoinf.2012.08.001
  23. Lindenmayer, D.B., Margules, C.R., Botkin, D.B. 2000. Indicators of biodiversity for ecologically sustainable forest management. – Conservation Biology, 14(4), 941–950.10.1046/j.1523-1739.2000.98533.x
  24. Machado, R.B., Aguiar, L., Jones, G. 2017. Do acoustic indices reflect the characteristics of bird communities in the savannas of Central Brazil? – Landscape and Urban Planning, 162, 36–43.10.1016/j.landurbplan.2017.01.014
  25. Mammides, Ch., Goodale, E., Dayananda, S.K., Kang, L., Chen, J. 2017. Do acoustic indices correlate with bird diversity? Insights from two biodiverse regions in Yunnan Province, south China. – Ecological Indicators, 82, 470–477.10.1016/j.ecolind.2017.07.017
  26. Matsuoka, S.M., Mahon, C.L., Handel, C.M., Sòlymos, P., Bayne, E.M., Fontaine, P.C., Ralph, C.J. 2014 Reviving common standards in point-count surveys for broad inference across studies. – The Condor, 116(4), 599–608.10.1650/CONDOR-14-108.1
  27. Morozov, N.S. 1997. Observer and analyst variability in ecological research. III. Animal counts: birds. – Biology Bulletin Reviews, 117(2), 196–217. (In Russian with English summary).
  28. Ng, M.-L., Butler, N., Woods, N. 2018. Soundscapes as a surrogate measure of vegetation condition for biodiversity values: A pilot study. – Ecological Indicators, 93, 1070–1080.10.1016/j.ecolind.2018.06.003
  29. Pekin, B.K., Jung, J., Villanueva-Rivera, L.J., Pijanowski, B.C., Ahumada, J.A. 2012. Modeling acoustic diversity using soundscape recordings and LIDAR-derived metrics of vertical forest structure in a neotropical rainforest. – Landscape Ecology, 27(10), 1513–1522.10.1007/s10980-012-9806-4
  30. Pieretti, N., Farina, A., Morri, D. 2011. A new methodology to infer the singing activity of an avian community: The Acoustic Complexity Index (ACI). – Ecological Indicators, 11, 868–873.10.1016/j.ecolind.2010.11.005
  31. Pijanowski, B.C., Farina, A., Gage, S.H., Dumyahn, S.L., Krause, B.L. 2011a. What is soundscape ecology? An introduction and overview of an emerging new science. – Landscape Ecology, 26, 1213–1232.10.1007/s10980-011-9600-8
  32. Pijanowski, B.C., Villanueva-Rivera, L.J., Dumyahn, S.L., Farina, A., Krause, B.L., Napoletano, B.N., Gage, S.H., Pieretti, N. 2011b. Soundscape ecology: the science of sound in the landscape. – BioScience, 61, 203–216.10.1525/bio.2011.61.3.6
  33. Priedniks, Ya., Kuresoo, A., Kurlavichus, P. 1986. Recommendations for Ornithological Monitoring in the Baltics. (Рекомендации к орнитологическому мониторингу в Прибалтике). Riga, Zinatne. 65 pp. (In Russian).
  34. Prokudin, Yu.N. 1980. Seversk-Donetsk Nature Complex. (Северско-Донецкий природный комплекс). Kharkov, Vyshcha Shkola. 88 pp. (In Russian).
  35. R Core Team. 2018. R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. [WWW document]. – URL https://www.R-project.org/. [Accessed 2 July 2018].
  36. Ralph, C.J., Droege, S., Sauer, J.R. 1995. Managing and monitoring birds using point counts: standards and applications. – Ralph, C.J., Sauer, J.R., Droege, S. (eds.). Monitoring Bird Populations by Point Counts. Albany, CA, Pacific Southwest Research Station, Forest Service, US. Department of Agriculture, 161–168.10.2737/PSW-GTR-149
  37. Ralph, C.J., Scott, J.M. (eds.) 1981. Estimating Numbers of Terrestrial Birds. Los Angeles, Cooper Ornithological Society. 630 pp.
  38. Ravkin, E.S., Ravkin, Yu.S. 2005. Birds of the Plains of Northern Eurasia: Number, Distribution, and Spatial Organization of Communities. (Птицы равнин Северной Евразии: численность, распределение и пространственная организация сообществ). Novosibirsk, Nauka. 304 pp. (In Russian).
  39. Retamosa Izaguirre, M.I., Ramírez-Alán, O., De la O Castro, J. 2018. Acoustic indices applied to biodiversity monitoring in a Costa Rica dry tropical forest. – Journal of Ecoacoustics, 2, #TNW2NP.10.22261/jea.tnw2np
  40. Roberge, J-M., Angelstam, P., Villard, M-A. 2008. Specialised woodpeckers and naturalness in hemiboreal forests – deriving quantitative targets for conservation planning. – Biological Conservation, 141, 997–1012.10.1016/j.biocon.2008.01.010
  41. Shiu, H.-J., Lee, P.-F. 2003. Assessing avian point-count duration and sample size using species accumulation functions. – Zoological Studies, 42(2), 357–367.
  42. Sokolov, V.E., Reshetnikov, Yu.S. 1997. Monitoring of biodiversity in Russia. (Мониторинг биоразнообразия в России). – Sokolov, V.E., Reshetnikov, Yu.S., Shatunovsky, M.I. (eds.). Monitoring of Biological Diversity. Moscow, Russian Academy of Science, 8–15. (In Russian).
  43. Sòlymos, P., Matsuoka, S.M., Cumming, S.G., Stralberg, D., Fontaine, P., Schmiegelow, F.K.A., Song, S.J., Bayne, E.M. 2018. Evaluating time-removal models for estimating availability of boreal birds during point count surveys: sample size requirements and model complexity. – The Condor, 120(4), 765–786.10.1650/CONDOR-18-32.1
  44. Sorace, A., Gustin, M., Calvario, E., Ianniello, L., Sarrocco, S., Carere, C. 2000. Assessing bird communities by point counts: repeated sessions and their duration. – Acta Ornithologica, 35(2), 197–202.10.3161/068.035.0213
  45. Sueur, J., Pavoine, S., Hamerlynck, O., Duvail, S. 2008. Rapid acoustic survey for biodiversity appraisal. – PLoS ONE, 3(12), e4065.10.1371/journal.pone.0004065
  46. Sueur, J., Farina, A., 2015. Ecoacoustics: the ecological investigation and interpretation of environmental sound. – Biosemiotics, 8, 493–502.10.1007/s12304-015-9248-x
  47. Thompson, I.D., Hogan, H.A., Montevecchi, W.A. 1999. Avian communities of mature balsam fir forests in Newfoundland: age-dependence and implications for timber harvesting. – The Condor, 101, 311–323.10.2307/1369994
  48. Towsey, M., Wimmer, J., Williamson, I., Roe, P. 2014. The use of acoustic indices to determine avian species richness in audio-recordings of the environment. – Ecological Informatics, 21, 110–119.10.1016/j.ecoinf.2013.11.007
  49. Tozer, D.C., Burke, D.M., Nol, E., Elliott, K.A. 2010. Short-term effects of group-selection harvesting on breeding birds in a northern hardwood forest. – Forest Ecology and Management, 259, 1522–1529.10.1016/j.foreco.2010.01.028
  50. Venier, L.A., Pearce, J.L. 2007. Boreal forest landbirds in relation to forest composition, structure, and landscape: implications for forest management. – Canadian Journal of Forest Research, 37, 1214–1226.10.1139/X07-025
  51. Venier, L.A., Mazerolle, M.J., Rodgers, A., McIlwrick, K.A., Holmes, S., Thompson, D. 2017. Comparison of semiautomated bird song recognition with manual detection of recorded bird song samples. – Avian Conservation and Ecology, 12(2), 2.10.5751/ACE-01029-120202
  52. Villanueva-Rivera, L.J., Pijanowski, B.C., Doucette, J., Pekin, B. 2011. A primer of acoustic analysis for landscape ecologists. – Landscape Ecology, 26, 1233–1246.10.1007/s10980-011-9636-9
  53. Villanueva-Rivera, L.J., Pijanowski, B.C. 2015. Soundecology: Soundscape Ecology. R package version 1.3. [WWW document]. – URL http://CRAN.R-project.org/package=soundecology. [Accessed 2 July 2018].
  54. Walankiewicz, W., Czeszczewik, D., Mitrus, C., Bida, E. 2002. Snag importance for woodpeckers in deciduous stands of the Bialowieza forest. (Znaczenie martwych drzew dla zespolu dzieciolow w lasach lisciastych Puszczy Bialowieskiej). – Notatki Ornitologiczne, 43, 61–71. (In Polish with English summary).
  55. Walankiewicz, W., Czeszczewik, D., Tumiel, T., Stański, T. 2011. Woodpeckers abundance in the Białowieża Forest – a comparison between deciduous, strictly protected and managed stands. – Ornis Polonica, 52, 161–168.
DOI: https://doi.org/10.2478/fsmu-2019-0006 | Journal eISSN: 1736-8723 | Journal ISSN: 1406-9954
Language: English
Page range: 68 - 79
Submitted on: Aug 5, 2019
Accepted on: Sep 13, 2019
Published on: Nov 21, 2019
Published by: Estonian University of Life Sciences
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2019 Andrey Atemasov, Tatiana Atemasova, published by Estonian University of Life Sciences
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.