Light as a controlling factor of winter phytoplankton in a monomictic reservoir
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J. Hejzlar | R. Kozáková | M. Brabec | L. Nedbalová | J. Vrba | K. Řeháková | Michal Šorf | J. Fott
[1] J. Hejzlar,et al. Biogeochemical causes of sixty-year trends and seasonal variations of river water properties in a large European basin , 2021, Biogeochemistry.
[2] J. Priscu,et al. Year‐Round and Long‐Term Phytoplankton Dynamics in Lake Bonney, a Permanently Ice‐Covered Antarctic Lake , 2021, Journal of Geophysical Research: Biogeosciences.
[3] J. Lenters,et al. Global lake responses to climate change , 2020, Nature Reviews Earth & Environment.
[4] Christopher J. Merchant,et al. Worldwide alteration of lake mixing regimes in response to climate change , 2019, Nature Geoscience.
[5] J. Hejzlar,et al. Trends in riverine element fluxes: A chronicle of regional socio-economic changes. , 2017, Water research.
[6] J. Hejzlar,et al. Long-term trends of phosphorus concentrations in an artificial lake: Socio-economic and climate drivers , 2017, PloS one.
[7] H. Carrick,et al. Phytoplankton Seasonality along a Trophic Gradient of Temperate Lakes: Convergence in Taxonomic Compostion during Winter Ice-Cover , 2017, Northeastern Naturalist.
[8] Simon N. Wood,et al. P-splines with derivative based penalties and tensor product smoothing of unevenly distributed data , 2016, Statistics and Computing.
[9] M. Grabowska,et al. Autotrophic and heterotrophic plankton under ice in a eutrophic temperate lake , 2016, Hydrobiologia.
[10] S. Wood,et al. Smoothing Parameter and Model Selection for General Smooth Models , 2015, 1511.03864.
[11] J. Hejzlar,et al. A mass-balance study on chloride fluxes in a large central European catchment during 1900–2010 , 2014, Biogeochemistry.
[12] J. Hejzlar,et al. Sulphate leaching from diffuse agricultural and forest sources in a large central European catchment during 1900-2010. , 2014, The Science of the total environment.
[13] J. Hejzlar,et al. Factors controlling the export of nitrogen from agricultural land in a large central European catchment during 1900-2010. , 2013, Environmental science & technology.
[14] Miquel Lürling,et al. Beyond the Plankton Ecology Group (PEG) Model : Mechanisms Driving Plankton Succession , 2012 .
[15] M. Devetter. Seasonal development of planktonic rotifers in Slapy Reservoir (Czech Republic) , 2011, Biologia.
[16] E. Bellinger,et al. Introduction to Freshwater Algae , 2010 .
[17] Lauri Arvola,et al. The impact of the changing climate on the thermal characteristics of lakes , 2010 .
[18] T. Blenckner,et al. Lake Ice Phenology , 2010 .
[19] D. G. George,et al. The Impact of Variations in the Climate on Seasonal Dynamics of Phytoplankton , 2010 .
[20] M. Dokulil,et al. An analysis of long-term winter data on phytoplankton and zooplankton in Neusiedler See, a shallow temperate lake, Austria , 2009, Aquatic Ecology.
[21] L. Caisová,et al. Morphological variability in selected heterocystous cyanobacterial strains as a response to varied temperature, light intensity and medium composition , 2008, Folia Microbiologica.
[22] U. Sommer,et al. Climate change and the timing, magnitude, and composition of the phytoplankton spring bloom , 2008 .
[23] A. Pasztaleniec,et al. Winter phytoplankton communities in different depths of three mesotrophic lakes (Łęczna-Włodawa Lakeland, Eastern Poland) , 2008, Biologia.
[24] D. Straile,et al. Turbulent mixing and phytoplankton spring bloom development in a deep lake , 2007 .
[25] U. Gaedke,et al. The effect of irradiance, vertical mixing and temperature on spring phytoplankton dynamics under climate change: long-term observations and model analysis , 2006, Oecologia.
[26] F. Schanz,et al. Light climate as the key factor controlling the spring dynamics of phytoplankton in Lake Zürich , 1997, Aquatic Sciences.
[27] J. Smol,et al. Winter limnology: a comparison of physical, chemical and biological characteristics in two temperate lakes during ice cover , 1995, Hydrobiologia.
[28] Z. Brandl,et al. Predatory impact of Leptodora kindtii on zooplankton community in the Slapy Reservoir , 2003, Hydrobiologia.
[29] M. Fawley,et al. Winter phytoplankton community structure in three shallow temperate lakes during ice cover , 2002, Hydrobiologia.
[30] M. Weitere,et al. Structure of the heterotrophic flagellate community in the water column of the River Rhine (Germany) , 2003 .
[31] Ben P. Sommeijer,et al. Population dynamics of sinking phytoplankton in light-limited environments: simulation techniques and critical parameters , 2002 .
[32] Nancy E. Monsen,et al. A comment on the use of flushing time, residence time, and age as transport time scales , 2002 .
[33] T. Blenckner,et al. Changes of the plankton spring outburst related to the North Atlantic Oscillation , 1999 .
[34] K. Šimek,et al. Investigations on pelagic food webs in mountain lakes - aims and methods , 1999 .
[35] O. Strunecký,et al. Phytoplankton in three Tatra Mountain lakes of different acidification status , 1999 .
[36] M. Jansson,et al. Bacterial grazing by phagotrophic phytoflagellates in a deep humic lake in northern Sweden , 1999 .
[37] J. Pernthaler,et al. Community structure, picoplankton grazing and zooplankton control of heterotrophic nanoflagellates in a eutrophic reservoir during the summer phytoplankton maximum , 1997 .
[38] Paul H. C. Eilers,et al. Flexible smoothing with B-splines and penalties , 1996 .
[39] Scott A. Wells,et al. CE-QUAL-W2: A Two-dimensional, Laterally Averaged, Hydrodynamic and Water Quality Model, Version 3.5 , 2006 .
[40] M. D. Keller,et al. Spring phytoplankton blooms in the absence of vertical water column stratification , 1992, Nature.
[41] L. Pechar. Use of an acetone methanol mixture for the extraction and spectrophotometric determination of chlorophyll alpha in phytoplankton , 1987 .
[42] Ulrich Sommer,et al. The PEG-model of seasonal succession of planktonic events in fresh waters , 1986, Archiv für Hydrobiologie.
[43] J. Kalff,et al. EFFECT OF LIGHT AND TEMPERATURE INTERACTIONS ON GROWTH OF CRYPTOMONAS EROSA (CRYPTOPHYCEAE) 1 , 1979 .
[44] J. Talling. The underwater light climate as a controlling factor in the production ecology of freshwater phytoplankton: With 14 figures in the text and on 1 folder , 1971 .
[45] R. Pechlaner. Factors that control the production rate and biomass of phytoplankton in high-mountain lakes: With 9 figures and 2 tables in the text and on 1 folder , 1971 .
[46] R. T. Wright,et al. Dynamics of a Phytoplankton Community in AN Ice-Covered LAKE1 , 1964 .
[47] J. Talling. PHOTOSYNTHETIC CHARACTERISTICS OF SOME FRESHWATER PLANKTON DIATOMS IN RELATION TO UNDERWATER RADIATION , 1957 .
[48] G. E. Hutchinson,et al. THE THERMAL CLASSIFICATION OF LAKES. , 1956, Proceedings of the National Academy of Sciences of the United States of America.
[49] H. Sverdrup,et al. On Conditions for the Vernal Blooming of Phytoplankton , 1953 .
[50] J. Lund. Studies on Asterionella: I. The Origin and Nature of the Cells Producing Seasonal Maxima , 1949 .