Modelling of dynamics of the self-organizing processes in spatially distributed plant communities
Matematičeskaâ biologiâ i bioinformatika, Tome 3 (2008) no. 2, pp. 85-102.

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In this communication we consider a mathematical models imitating and analytical for spatial-temporal dynamics of plant communities. It was shown that increased intensity of competitive for resources (primarily involving light) pressure leads to processes of chaotic self-organization and rise of complexly structured heterogeneous (spotty) spatial distributions.
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A. N. Kolobov; E. Ya. Frisman. Modelling of dynamics of the self-organizing processes in spatially distributed plant communities. Matematičeskaâ biologiâ i bioinformatika, Tome 3 (2008) no. 2, pp. 85-102. http://geodesic.mathdoc.fr/item/MBB_2008_3_2_a5/

[1] Frisman E. Ya., Tuzinkevich A. V., Chernyshova N. B., “Mozaichnaya struktura biologicheskogo raznoobraziya kak sledstvie dinamicheskoi neustoichivosti (na primere dvuvidovogo soobschestva rastenii)”, Yubileinyi sbornik: k tridtsatiletiyu IAPU DVO RAN, IAPU DVO RAN, Vladivostok, 2001, 350–365

[2] Frisman E. Ya., Tuzinkevich A. V., Chernyshova N. B., Faiman P. A., Biologicheskoe raznoobrazie i dinamika ekosistem. Informatsionnye tekhnologii i modelirovanie, Izd-vo SO RAN, Novosibirsk, 2006, 393–401

[3] Tuzinkevich A. V., Issledovanie netraditsionnoi modeli dinamiki rastitelnogo soobschestva, IAPU DVNTs AN SSSR, Vladivostok, 1987, 45 pp.

[4] Tuzinkevich A. V., “Ob odnoi tipichnoi bifurkatsii v integralnykh modelyakh ekosistem”, Prikladnye voprosy statisticheskogo analiza, DVO AN SSSR, Vladivostok, 1988, 48–68 | MR

[5] Tuzinkevich A. V., “Issledovanie povedeniya integralnykh modelei dinamiki biomassy”, Kibernetika, 4 (1990), 108–113 | MR | Zbl

[6] Tuzinkevich A. V., Frisman E. Ya, “Dissipativnye struktury i pyatnistost prostranstvennogo raspredeleniya organizmov”, Biofizika, 33:2 (1988), 333–337

[7] Tuzinkevich A. V., Frisman E. Ya., “Dissipative structures and patchiness in spatial distribution of plants”, Ecological Modelling, 52 (1990), 207–223 | DOI

[8] Popadyuk R. V., Chumachenko S. N., “Imitatsionnaya bioekologicheskaya model razvitiya mnogovidovogo, raznovozrastnogo drevostoya”, Biologicheskie nauki, 8:332 (1991), 67–78

[9] Huth A., Ditzer T., “Simulation of the growth of a lowland Dipterocarp rain forest with FORMIX3”, Ecological Modelling, 134 (2000), 1–25 | DOI

[10] Huth A., Ditzer T., “Long-term impact of loggint in a tropical rain forest – a simulation study”, Forest Ecology and Management., 142 (2001), 33–51 | DOI

[11] Poletaev I. A., Problemy kibernetiki, 16 (1966), 171–190 | Zbl

[12] Karev G. P., Skomorovskii Yu. I., Sibirskii ekologicheskii zhurnal, 4 (1999), 403–417

[13] Korzukhin M. D., Semevskii F. N., Sinekologiya lesa, Gidrometeozdat, S.-P., 1992

[14] Tornli Dzh. G. M., Matematicheskie modeli v fiziologii rastenii, Naukova dumka, Kiev, 1982, 312 pp.

[15] Alekseev V. A., Svetovoi rezhim lesa, Nauka, L., 1975, 227 pp.

[16] Ross Yu. K., Radiatsionnyi rezhim i arkhitektonika rastitelnogo pokrova, Gidrometeoizdat, L., 1975, 327 pp.

[17] Monsi M., Saeki T., “Uber den Lichtfactor in den Pflanzengesellschaften und seine Bedeutung fur die Stoffproduction”, Jap. Jour. Bot., 14:1 (1953), 22–52

[18] Korotkov V. N., “Novaya paradigma v lesnoi ekologii”, Biologicheskie nauki, 8 (1991), 7–20

[19] Smirnova O. V., Chistyakova A. A., Popadyuk R. V. i dr., Populyatsionnaya organizatsiya rastitelnogo pokrova lesnykh territorii (na primere shirokolistvennykh lesov evropeiskoi chasti SSSR), NTsBI, Puschino, 1990, 92 pp.