Open Access

The dynamics of forest species composition in the Eastern Moscow Region


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Abaturov, A.V., Melankholin, P.N. 2004. Natural forest dynamics at the permanent test plots in Moscow Oblast (in Russian). Grif and K Publishing, Tula, Russia.Search in Google Scholar

Angelstam, P.K., Kuuluvainen, T. 2004. Boreal forest disturbance regimes, successional dynamics landscape structures – a European perspective. Ecological Bulletins, 51, 117–136.Search in Google Scholar

Annenskaya, G.N. et al. 1997. Landscapes of Moscow Oblast and their current state (in Russian). Smolensk State University, Smolensk, Russia.Search in Google Scholar

Axelsson, A.L., Ostlund, L., Hellberg, E. 2002. Changes in mixed deciduous forests of boreal Sweden 1866–1999 based on interpretation of historical records. Landscape Ecology, 17 (5), 403–418.10.1023/A:1021226600159Search in Google Scholar

Bergeron, Y., Harvey, B. 1997. Basing silviculture on natural ecosystem dynamics: an approach applied to the Southern boreal mixedwood forests of Quebec. Forest Ecology and Management, 92 (1), 235–242.10.1016/S0378-1127(96)03924-2Search in Google Scholar

Braslavskaya, T.Y., Tikhonova, E.V. 2016. The 25-years dynamics of broadleaved tree species distribution on the territory of Zvenigorodskaya Biological Station (Moscow State University) (in Russian with English summary). Proceedings of the 6th All-Russian Conference Aerospace Methods and Geo-information Technologies in Forest Science, Forestry and Ecology. Center of Forest Ecology and Productivity, Russian Academy of Sciences, Moscow, 162–166.Search in Google Scholar

Connell, J.Y., Slatyer, R.O. 1977. Mechanisms of successions in natural communities and their role in community stability and organization. The American Naturalist, 11 (982), 1119–1144.10.1086/283241Search in Google Scholar

Douda, J. et al. 2015. Vegetation classification and bio-geography of European floodplain forests and alder carrs. Applied Vegetation Science, 19 (1), 147–163. DOI: 10.1111/avsc.1220110.1111/avsc.12201Search in Google Scholar

Ermokhin, M.V., Uglyanets, S.A., Vershitskaya, I.N., Ivkovich, V.S. 2013. State and dynamics of the old-growth spruce forests of the Berezinsky Biosphere Reserve (in Russian, with English summary). In: Proceedings of the 4th International conference Monitoring and assessment of vegetation status (ed. A. V. Pugachevskii). March 2–5, 2013, Minsk, Belarus, 111–113.Search in Google Scholar

Frelich, L.E. 2002. Forest dynamics and disturbance regimes: studies from temperate evergreen–deciduous forests. Cambridge University Press, Cambridge, UK.10.1017/CBO9780511542046Search in Google Scholar

Gamfeldt, L. et al. 2013. Higher levels of multiple ecosystem services are found in forests with more tree species. Nature Communications, 4, 1340. DOI: https://doi.org/10.1038/ncomms232810.1038/ncomms2328356244723299890Search in Google Scholar

Grigorova, E.S. 2004. About the mesoclimate of Moscow megacity (in Russian). Meteorologiya i gidrologiya, 10, 36–45.Search in Google Scholar

History and state of Losiny Ostrov forests (in Russian). 2000. Ed. V.V. Nefed’ev. Prima-Press-M Publishing, Moscow.Search in Google Scholar

Karminov, V.N., Martynenko, O.V. 2007. Methods of numeric classification in soil studies (in Russian). Lesnoj Vestnik, 7, 76–77.Search in Google Scholar

Kiseleva, V.V., Korotkov, S.A., Stonozhenko, L.V., Naidenova E.V. 2019. Structure and regeneration of spruce forests as affected by forest management practices in the Moscow Region. IOP Conf. Series: Earth and Environmental Science, 226, 012042. DOI: 10.1088/1755-1315/226/1/01204210.1088/1755-1315/226/1/012042Search in Google Scholar

Kislov, A., Konstantinov, P., Varentsov, M., Samsonov, T., Gorlach, I., Trusilova, K. 2015. Urban amplification of the global warming in Moscow megacity. EGU General Assembly 2015. Geophysical Research Abstracts, 17, EGU2015-5620.Search in Google Scholar

Korotkov, S.A., Kiseleva, V.V., Stonozhenko, L.V., Ivanov, S.K., Naidenova, E.V. 2015. On the trends in the forest forming process in North-Eastern Moscow Oblast (in Russian with English summary). Lesotekhnicheskii zhurnal, 3 (19), 41–54.10.12737/14152Search in Google Scholar

Korotkov, S.A., Makuev, V.A., Lopatnikov, M.V., Nikitin, V.V., Sirotov, A.V., Stonozhenko, L.V. 2016. Forest-Use Issues in Moscow Region at the Beginning of the 21st Century. Bulletin of the Transilvania University of Brasov. Series II – Forestry. Wood Industry. Agricultural Food Engineering, 9 (58), 17–24.Search in Google Scholar

Kuuluvainen, T., Aakala, T. 2011. Natural forest dynamics in boreal Fennoscandia: a review and classification. Silva Fennica, 45 (5), 823–841.10.14214/sf.73Search in Google Scholar

Lasch, P., Lindner, M., Erhard, V., Suckow, F., Wenzel, A. 2002. Regional impact assessment on forest structure and functions under climate change – the Brandenburg case study. Forest Ecology and Management, 162, 73–86.10.1016/S0378-1127(02)00051-8Search in Google Scholar

Lindbladh, M., Axelsson, A.L., Hultberg, T., Brunet, T.J., Felton, A. 2014. From broadleaves to spruce – the borealization of southern Sweden. Scandinavian Journal of Forest Research, 29 (7), 686–696. DOI: https://doi.org/10.1080/02827581.2014.96089310.1080/02827581.2014.960893Search in Google Scholar

Lokoshchenko, M.A. 2014. Urban ‘heat island’ in Moscow. Urban Climate, 10, 550–562.10.1016/j.uclim.2014.01.008Search in Google Scholar

Martynenko, O., Karminov, V., Shchepashchenko, D., Ontikov, P. 2018. The dependence of the productivity of pine forests of Moscow Experimental Forestry on soil conditions. Contemporary Problems of Ecology, 11, 807–812. DOI: 10.1134/S199542551807012010.1134/S1995425518070120Search in Google Scholar

Maslov, A.A. 2012. Fluctuations and successions in forest communities under climate change (in Russian with English summary). Bulletin of Samara Scientific Research Center of Russian Academy of Sciences, 1 (5), 1316–1319.Search in Google Scholar

McEwan, R.W., Dyer, J.M., Pederson, N. 2011. Multiple interacting ecosystem drivers: toward an encompassing hypothesis of oak forest dynamics across eastern North America. Ecography, 34, 244–256. DOI: 10.1111/j.1600-0587.2010.06390.x10.1111/j.1600-0587.2010.06390.xSearch in Google Scholar

Melekhov, I.S. 2007. Forest Science (in Russian). Moscow Forest University, Moscow.Search in Google Scholar

Rysin, L.P. 2012. Forests of Moscow Oblast (in Russian). KMK Publishing, Moscow.Search in Google Scholar

Schepaschenko, D. et al. 2018. Improved estimates of biomass expansion factors for Russian forests. Forests, 9 (6), 312. DOI: 10.3390/f906031210.3390/f9060312Search in Google Scholar

Shorohova, E., Kuuluvainen, T., Kangur, A., Jõgiste, A.K. 2009. Natural stand structures, disturbance regimes and successional dynamics in the Eurasian boreal forest: a review with special reference to Russian studies. Annals of Forest Science, 66 (2), 201. DOI: https://doi.org/10.1051/forest/200808310.1051/forest/2008083Search in Google Scholar

Spiecker, H. et al. 2004. Norway spruce conversion – options and consequences. Research Report 18. Brill: Leiden, Boston, Köln.10.1163/9789047412908Search in Google Scholar

Sukachev, V.N. 1972. Selected works. Vol. 1. Foundations of forest typology and biogeocoenology (in Russian). Nauka, Leningrad.Search in Google Scholar

Terauds, A., Nikodemus, O., Brumelis, G. 2011. Seventy-year changes in tree species composition and tree ages in state-owned forests in Latvia. Scandinavian Journal of Forest Research, 26 (5), 446–456. DOI: https://doi.org/10.1080/02827581.2011.58664710.1080/02827581.2011.586647Search in Google Scholar

eISSN:
2199-5907
ISSN:
0071-6677
Language:
English
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Journal Subjects:
Life Sciences, Plant Science, Medicine, Veterinary Medicine