[Anneville O., Ginot V., Druat J.C., Angeli N., 2002, Longterm study (1974-1998) of seasonal changes in the phytoplankton in Lake Geneva: a multi-table approach, J. Plank. Res. 24(10): 993-1008.10.1093/plankt/24.10.993]Search in Google Scholar
[Bleiker W., Schanz F., 1989, Influence of environmental factors on the phytoplankton spring blooms in Lake Zurich, Aquat. Sci. 51(1): 47-58.10.1007/BF00877780]Search in Google Scholar
[Brooks J., Ganf D., Green D., Whittington J., 1999, The influence of light and nutrients on buoyancy, filament aggregation and flotation of Anabaena circinalis, J. Plank. Res. 21: 327-341.10.1093/plankt/21.2.327]Search in Google Scholar
[Burchardt L., 1993, Bioindication in the assessment of lake ecosystem, [in:] Burchardt L. (eds), Theory and practices in ecosystems research, Idee Ekol. 3(2): 39-44.]Search in Google Scholar
[Burchardt L., Łastowski K., 1999, The problem of using common species in bioindication: Basis term, Acta Hydrobiol. 41(3/4): 231-234.]Search in Google Scholar
[Burchardt L., Łastowski K., Szmajda P., 1994, Różnorodność ekologiczna a bioindykacja (Ecological diversity and bioindication), [in:] Burchardt L. (eds), Teoria i praktyka badań ekologicznych (Theory and practices in ecosystems research), Idee Ekol., 4(3): 27-44. (in Polish).]Search in Google Scholar
[Burgi H., Heller C., Gaebel S., Mookerji N., Wand J., 1999, Strength of coupling between phyto and zooplankton in Lake Lucerne (Switzerland) during phosphorus abatement subsequent to a weak eutrophication, J. Plank. Res. 21: 485-507.10.1093/plankt/21.3.485]Search in Google Scholar
[Carpenter S.R., Cole J.J., Kitchell J., Pace M., 1997, Impact of dissolved organic carbon, phosphorus and grazing on phytoplankton biomass and production in experimental lakes, Limnol. Oceanogr. 43(1): 73-80.10.4319/lo.1998.43.1.0073]Search in Google Scholar
[Currie D.J., 1990, Large-scale variability and interactions among phytoplankton, bacterioplankton and phosphorus, Limnol. Oceanogr. 35(7): 1437-1455.10.4319/lo.1990.35.7.1437]Search in Google Scholar
[Dauta A., Devaux J., Piquemal F., Boumnich L., 1990, Growth rate of four freshwater algae in relation to light and temperature, Hydrobiologia 207: 201-226.10.1007/BF00041459]Search in Google Scholar
[Del Giorgio P.A., Peters R.H., 1994, Patterns in planktonic P:R ratios in lakes: Influence of lake trophy and dissolved organic carbon, Limnol. Oceanogr. 39(4): 772-787.10.4319/lo.1994.39.4.0772]Search in Google Scholar
[Dunalska J., 2002, Influence of limited water flow in a pipeline on the nutrients budget in a lake restored by hypolimnetic withdrawal method, Pol. J. Environ. Stud. 11(6): 631-637.]Search in Google Scholar
[Dunalska J., Wiśniewski G., Mientki C., 2001, Water balance as factor determining the Lake Kortowskie restoration, Limnol. Rev. 1: 65-72.]Search in Google Scholar
[Elser J., Goff J. C., Mackay N.A., St-Amand A.L., Elser M.M., Carpenter S.R., 1987, Species specific algal responses to zooplankton: experimental and field observations in three nutrient limited lakes, J. Plank. Res. 9(4): 699-717.10.1093/plankt/9.4.699]Search in Google Scholar
[Ganf G.G., Oliver R.L., 1982, Vertical separation of light and available nutrients as a factor causing replacement of green algae by blue-green algae in the plankton of a stratified lake, J. Ecol. 70: 829-844.10.2307/2260107]Search in Google Scholar
[Gawler M., Balvay G., Blanc P., Druart J.P., Pelletier J.P., 1988, Plankton ecology of Lake Geneva. A test of the PEG-model, Arch. Hydrobiol. 114(2): 161-174.10.1080/03680770.1987.11899695]Search in Google Scholar
[Giraudet H., Berthon J.L., Buisson B., 1997, A comparison of the daily alkaline phosphatase activity of a cyanobacterium (Microcystis aeruginosa) and a diatom (Synedra capitata), Biochem. 320: 451-458.10.1016/S0764-4469(97)81972-5]Search in Google Scholar
[Hambright K.D., Zohary T., Easton J., Azoulay B., Fishbein T., 2001, Effects of zooplankton grazing and nutrients on the bloom-forming, N2-fixing cyanobacterium Aphanizomenon in Lake Kinneret, J. Plank. Res. 23(2): 165-174.10.1093/plankt/23.2.165]Search in Google Scholar
[Heusden G.P.H., 1972, Estimation of the biomass of plankton, Hydrobiologia 39(2): 165-208.10.1007/BF00047183]Search in Google Scholar
[Humphries S.E., Lyne V.D., 1988, Cyanophyta blooms: the role of cell buoyancy, Limnol. Oceanogr. 33(1): 79-91.10.4319/lo.1988.33.1.0079]Search in Google Scholar
[Keating K.I., 1977, Allelopathic influence on blue green bloom sequences in a eutrophic lake, Science 196: 885-887.10.1126/science.196.4292.88517821808]Search in Google Scholar
[Klemer A.R., Feuillade J., Feuillade M., 1982, Cyano-bacterial blooms: carbon and nitrogen limitation have opposite effects on the buoyancy of Oscillatoria, Science 215: 1629-1631.10.1126/science.215.4540.162917788490]Search in Google Scholar
[Krivtsov V., Bellinger E.G., Sigee D.C., 2000, Changes in the elemental composition of Asterionella formosa during the diatom spring bloom, J. Plank Res. 22(1): 169-184.10.1093/plankt/22.1.169]Search in Google Scholar
[Kurmayer R., Jutter F., 1999, Strategies for the co-existence of zooplankton with the toxic cyanobacterium Planktothrix rubescens in Lake Zurich, J. Plank. Res. 21: 659-683.10.1093/plankt/21.4.659]Search in Google Scholar
[Lafforgue M., Szeligiewicz W., Devaux J., Poulin M., 1995, Selective mechanisms controlling algal succession in Aydat Lake, Wat. Sci. Tech. 4: 117-127.10.2166/wst.1995.0173]Search in Google Scholar
[Lair N., Ayadi H., 1989, The seasonal succession of planktonic events in lake Aydat, France. A comparison with the P. E. G. model, Arch. Hydrobiol. 115(4): 589-602.10.1127/archiv-hydrobiol/115/1989/589]Search in Google Scholar
[Lathrop R.C., 1988, Evaluation of whole-lake nitrogen fertilization for controlling blue-green algal blooms in a hypereutrophic lake, Can. J. Fish. Aquat. Sci. 45: 2061-1075.10.1139/f88-240]Search in Google Scholar
[Lin C., 1972, Phytoplankton succession in eutrophic lake with special reference to blue-green algal blooms, Hydrobiologia 39(3): 321-334.10.1007/BF00046648]Search in Google Scholar
[Mientki C., Dunalska J., 2001, Phosphorus balance at various water flow in a lake restored by hypolimnetic withdrawal, Ecohydrol. Hydrobiol. 1(4): 417-422.]Search in Google Scholar
[Mientki C., Teodorowicz M., 1996, Assessment of the effects of hypolimnion water removal from the Kortowskie Lake, Chem. Prot. Environ. 2: 362-374.10.1007/978-1-4613-0405-0_40]Search in Google Scholar
[Munawar M., Munawar I., McCarthy E., 1988, Seasonal succession of phytoplankton size assemblages and its ecological implications in the North American Great Lakes, Verh. Internat. Verein. Limnol. 23: 659-671.10.1080/03680770.1987.11899689]Search in Google Scholar
[Pick F.R., Lean D.R.S., 1987, The role of macronutrients (C, N, P) in controlling cyanobacterial dominance in temperature lakes, New Zeal. J. Mar. Fresh. Res. 21: 425-434.10.1080/00288330.1987.9516238]Search in Google Scholar
[Reynolds C.S., 1988, The concept of ecological succession applied to seasonal periodicity of freshwater phytoplankton, Verh. Internat. Verein. Limnol. 23: 638-691.10.1080/03680770.1987.11899692]Search in Google Scholar
[Reynolds C.S., 2000, Phytoplankton designer- or how to predict compositional responses to trophic-state change, Hydrobiologia 424: 123-132.10.1007/978-94-017-3488-2_11]Search in Google Scholar
[Reynolds C.S., Huszar V., Kruk C., Naselli-Flores L., Melo S., 2002, Towards a functional classification of the freshwater phytoplankton, J. Plank. Res. 24(5): 417-428.10.1093/plankt/24.5.417]Search in Google Scholar
[Shapiro J., 1990, Current beliefs regarding dominance by blue-greens: The case for the importance of CO2 and pH, Verh. Internat. Verein. Limnol. 24: 38-54.10.1080/03680770.1989.11898689]Search in Google Scholar
[Sommer U., Gliwicz Z.M., Lampert W., Duncan A., 1986, The PEG-model of seasonal succession of planktonic events in freshwaters, Arch. Hydrobiol. 106: 433-471.]Search in Google Scholar
[Starmach K., 1989, Plankton roślinny wód słodkich. Metody badania i klucze do oznaczania gatunków występujących w wodach Europy Środkowej (Freshwater phytoplankton. Study methods, key to freshwater species of Central Europe), PWN, Warszawa-Kraków, p. 496. (in Polish).]Search in Google Scholar
[Synowiec A., 1965, Morfologia Jeziora Kortowskiego (Morphology of Lake Kortowskie), Zesz. Nauk. WSR Olszt. 19: 3-16 (in Polish).]Search in Google Scholar
[Tallberg P., Horppila J., Vaisanen A., Nurminen L., 1999, Seasonal succession of phytoplankton and zooplankton a trophic gradient in a eutrophic lake - implication for food web management, Hydrobiologia 412: 81-94.10.1023/A:1003804417036]Search in Google Scholar
[Talling J. F., 1993, Comparative seasonal changes, and inter-annual variability and stability, in a 26-year record of total phytoplankton biomass in four English lake basins, Hydrobiologia 268: 65-98.10.1007/BF00006879]Search in Google Scholar
[Tuji A., 2000, The effect of irradiance on the growth of different forms of freshwater diatoms: implications for succession in attached diatom communities, J. Phycol. 36: 659-661.10.1046/j.1529-8817.2000.99212.x]Search in Google Scholar
[Wirtz K.-W., Eckhardt B., 1996, Effective variables in ecosystem models with an application to phytoplankton succession, Ecol. Model. 92(1): 33-53.10.1016/0304-3800(95)00196-4]Search in Google Scholar
[Wiśniewski G., Mientki C., 2002, The influence of changes in the catchment basin on the quantity of biogene loads brought into restored Lake Kortowskie, Limnol. Rev. 2: 433-441.]Search in Google Scholar