Modern diatom, cladocera, chironomid, and chrysophyte cyst assemblages as quantitative indicators for the reconstruction of past environmental conditions in the Alps. I. Climate
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H. J. B. Birks | André F. Lotter | Aldo Marchetto | Wolfgang Hofmann | H. Birks | A. Lotter | W. Hofmann | A. Marchetto | H. J. B. Birks | H. Birks
[1] A. Lotter,et al. Influence of catchment quality and altitude on the water and sediment composition of 68 small lakes in Central Europe , 1998, Aquatic Sciences.
[2] A. Lotter. The recent eutrophication of Baldeggersee (Switzerland) as assessed by fossil diatom assemblages , 1998 .
[3] R. Hall,et al. Quantitative inferences of past hypolimnetic anoxia in south-central Ontario lakes using fossil midges (Diptera: Chironomidae) , 1998 .
[4] André F. Lotter,et al. The relationship between air and water temperatures in lakes of the Swiss Plateau: a case study with pal\sgmaelig;olimnological implications , 1998 .
[5] André F. Lotter,et al. An expanded surface-water palaeotemperature inference model for use with fossil midges from eastern Canada , 1997 .
[6] Atte Korhola,et al. Surface sediment Chironomidae (Insecta: Diptera) distributions along an ecotonal transect in subarctic Fennoscandia: developing a tool for palaeotemperature reconstructions , 1997 .
[7] J. Weckström,et al. The Relationship between Diatoms and Water Temperature in Thirty Subarctic Fennoscandian Lakes , 1997 .
[8] R. Schmidt,et al. A siliceous chrysophycean cyst-based pH transfer function for Central European lakes , 1996 .
[9] N. Anderson,et al. Reconstructing the past density of planktivorous fish and trophic structure from sedimentary zooplankton fossils: a surface sediment calibration data set from shallow lakes , 1996 .
[10] S. Fritz. Paleolimnological records of climatic change in North America , 1996 .
[11] A. Herlihy,et al. Climatic forcing on zooplankton richness in lakes of the northeastern United States , 1996 .
[12] P. Leavitt,et al. Effects of ultraviolet radiation on periphyton in an alpine lake , 1996 .
[13] E. Theriot,et al. Linking planktonic diatoms and climate change in the large lakes of the Yellowstone ecosystem using resource theory , 1996 .
[14] S. Juggins,et al. The Anglesey lakes, Wales, UK — Changes in trophic status of three standing waters as inferred from diatom transfer functions and their implications for conservation , 1996 .
[15] Nicholas John Anderson,et al. Predicting Epilimnetic Phosphorus Concentrations Using an Improved Diatom-Based Transfer Function and Its Application to Lake Eutrophication Management , 1996 .
[16] N. Anderson,et al. Reconstruction of lake phosphorus loading and dynamics using the sedimentary record , 1996 .
[17] J. Smol,et al. The relationship between zooplankton, conductivity and lake-water ionic composition in 111 lakes from the Interior Plateau of British Columbia, Canada , 1996 .
[18] S. Juggins,et al. The construction of a diatom-based chlorophyll a transfer function and its application at three lakes on Signy Island (maritime Antarctic) subject to differing degrees of nutrient enrichment , 1995 .
[19] S. Bråkenhielm,et al. A statistical approach to decompose ecological variation , 1995 .
[20] J. Smol,et al. Diatom, chrysophyte and protozoan distributions along a latitudinal transect in Fennoscandia , 1995 .
[21] Helen Bennion,et al. Validation of diatom-phosphorus transfer functions: an example from Mondsee, Austria. , 1995 .
[22] R. Hall,et al. An expanded weighted-averaging model for inferring past total phosphorus concentrations from diatom assemblages in eutrophic British Columbia (Canada) lakes , 1995 .
[23] J. Smol,et al. Chironomidae (Diptera): quantitative palaeosalinity indicators for lakes of western Canada , 1995 .
[24] L. Cwynar,et al. Chironomid Evidence for Late-Glacial Climatic Reversals in Maine , 1995, Quaternary Research.
[25] C. Braak,et al. Non-linear methods for multivariate statistical calibration and their use in palaeoecology: a comparison of inverse (k-nearest neighbours, partial least squares and weighted averaging partial least squares) and classical approaches , 1995 .
[26] N. Anderson,et al. Monitoring lake recovery from point‐source eutrophication: the use of diatom‐inferred epilimnetic total phosphorus and sediment chemistry , 1994 .
[27] L. Cwynar,et al. A Multiproxy Investigation of Late-Glacial Climate and Vegetation Change at Pine Ridge Pond, Southwest New Brunswick, Canada , 1994, Quaternary Research.
[28] D. Findlay,et al. Responses of Diatom and Chrysophyte Assemblages in Lake 227 Sediments to Experimental Eutrophication , 1994 .
[29] G. Hofmann. Aufwuchs-Diatomeen in Seen und ihre Eignung als Indikatoren der Trophie , 1994 .
[30] H. Birks. The importance of pollen and diatom taxonomic precision in quantitative palaeoenvironmental reconstructions , 1994 .
[31] J. Smol,et al. Diatoms as indicators in the Environmental Monitoring and Assessment Program-Surface Waters (EMAP-SW) , 1994, Environmental monitoring and assessment.
[32] Michael J. Crawley,et al. GLIM for Ecologists , 1994 .
[33] A. E. Irish,et al. The rise and fall of Asterionella formosa in the South Basin of Windermere: analysis of a 45-year series of data , 1994 .
[34] W. Hofmann. Dynamics of a littoral Cladocera assemblage under the influence of climatic and water depth changes from Alleröd to Subboreal , 1993 .
[35] J. Smol,et al. DIATOM ASSEMBLAGES AS INDICATORS OF LAKE TROPHIC STATUS IN SOUTHEASTERN ONTARIO LAKES 1 , 1993 .
[36] N. Anderson,et al. Natural versus anthropogenic charge in lakes: The role of the sediment record. , 1993 .
[37] Harry John Betteley Birks,et al. Quaternary palaeoecology and vegetation science— current contributions and possible future developments , 1993 .
[38] D. Engstrom,et al. Quantitative trophic reconstruction from sedimentary diatom assemblages: a cautionary tale , 1993 .
[39] J. Smol,et al. Paleolimnological potential of chrysophyte cysts and scales and of sponge spicules as indicators of lake salinity , 1993 .
[40] H. Olff,et al. A hierarchical set of models for species response analysis , 1993 .
[41] P. Legendre,et al. Partialling out the spatial component of ecological variation , 1992 .
[42] John P. Smol,et al. A weighted—averaging regression and calibration model for inferring total phosphorus concentration from diatoms in British Columbia (Canada) lakes , 1992 .
[43] M. Agbeti. Relationship between Diatom Assemblages and Trophic Variables: A Comparison of Old and New Approaches , 1992 .
[44] Roland Schmidt,et al. Climate-driven pH control of remote alpine lakes and effects of acid deposition , 1992, Nature.
[45] Alan J. Miller. Subset Selection in Regression , 1991 .
[46] J. Smol,et al. Aller�d—Younger Dryas Lake Temperatures from Midge Fossils in Atlantic Canada , 1991, Science.
[47] S. Juggins,et al. Reconstruction of past changes in salinity and climate using a diatom-based transfer function , 1991, Nature.
[48] John P. Smol,et al. THE RELATIONSHIP BETWEEN SEDIMENTARY CHRYSOPHYTE SCALES (CHRYSOPHYCEAE AND SYNUROPHYCEAE) AND LIMNOLOGICAL CHARACTERISTICS IN 25 NORWEGIAN LAKES , 1991 .
[49] K. Patalas. Diversity of the zooplankton communities in Canadian lakes as a function of climate , 1990 .
[50] J. Gentle,et al. Randomization and Monte Carlo Methods in Biology. , 1990 .
[51] Mik Wisniewski,et al. Applied Regression Analysis: A Research Tool , 1990 .
[52] C.J.F. ter Braak,et al. Diatoms and pH Reconstruction , 1990 .
[53] I. Renberg,et al. Diatom quality control and data handling , 1990 .
[54] T. J. Whitmore. Florida diatom assemblages as indicators of trophic state and pH , 1989 .
[55] M. Dickman,et al. Use of lake fossil diatom assemblages to determine historical changes in trophic status , 1989 .
[56] H. Züllig. Role of carotenoids in lake sediments for reconstructing trophic history during the late Quaternary , 1989 .
[57] I. Walker,et al. Chironomidae (Diptera) remains in surficial lake sediments from the Canadian Cordillera: analysis of the fauna across an altitudinal gradient , 1989 .
[58] D. G. Frey. Littoral and offshore communities of diatoms, cladocerans and dipterous larvae, and their interpretation in paleolimnology , 1988 .
[59] B Huntley,et al. July Temperatures in Europe from Pollen Data, 6000 Years Before Present , 1988, Science.
[60] J. Smol. Paleoclimate proxy data from freshwater arctic diatoms: With 2 figures and 1 table in the text , 1988 .
[61] C. Braak,et al. Unimodal models to relate species to environment , 1988 .
[62] M. Brenner,et al. Relationships Between Concentrations of Sedimentary Variables and Trophic State in Florida Lakes , 1988 .
[63] D. Schindler. Detecting Ecosystem Responses to Anthropogenic Stress , 1987 .
[64] M. Hill,et al. Data analysis in community and landscape ecology , 1987 .
[65] R. Hecky,et al. Hypothesized resource relationships among African planktonic diatoms , 1986 .
[66] C. Braak. Canonical Correspondence Analysis: A New Eigenvector Technique for Multivariate Direct Gradient Analysis , 1986 .
[67] F. Johnson,et al. Green, bluegreen and diatom algae: Taxonomie differences in competitive ability for phosphorus, silicon and nitrogen , 1986, Archiv für Hydrobiologie.
[68] C.J.F. ter Braak,et al. Weighted averaging of species indicator values: Its efficiency in environmental calibration , 1986 .
[69] C. Nalewajko,et al. Synopsis: Phosphorus–Plankton Dynamics Symposium , 1986 .
[70] D. G. George,et al. The effect of climate on long-term changes in the crustacean zooplankton biomass of Lake Windermere, UK , 1985, Nature.
[71] D. Engstrom,et al. A palaeolimnological record of human disturbance from Harvey's Lake, Vermont: geochemistry, pigments and diatoms , 1985 .
[72] Henry E. Kowalyk. THE LARVAL CEPHALIC SETAE IN THE TANYPODINAE (DIPTERA: CHIRONOMIDAE) AND THEIR IMPORTANCE IN GENERIC DETERMINATIONS , 1985, The Canadian Entomologist.
[73] C. D. Sandgren. MORPHOLOGICAL VARIABILITY IN POPULATIONS OF CHRYSOPHYCEAN RESTING CYSTS. I. GENETIC (INTERCLONAL) AND ENCYSTMENT TEMPERATURE EFFECTS ON MORPHOLOGY 1 , 1983 .
[74] H. J. Carney. Algal Dynamics and Tropohic Interactions in the Recent History of Frains Lake, Michigan , 1982 .
[75] H. Züllig. On the use of carotenoid stratigraphy in lake sediments for detecting past developments of phytoplankton , 1981 .
[76] G. Rosen. Phytoplankton indicators and their relations to certain chemical and physical factors , 1981 .
[77] C. D. Sandgren,et al. CHARACTERISTICS OF SEXUAL AND ASEXUAL RESTING CYST (STATOSPORE) FORMATION IN DINOBRYON CYLINDRICUM IMHOF (CHRYSOPHYTA) 1 , 1981 .
[78] H. H. Birks. Plant macrofossils in Quaternary lake sediments , 1980 .
[79] C. Forsberg,et al. EUTROPHICATION PARAMETERS AND TROPHIC STATE INDICES IN 30 SWEDISH WASTE-RECEIVING LAKES , 1980 .
[80] T. Wiederholm. Use of benthos in lake monitoring , 1980 .
[81] O. A. Sæther. Chironomid communities as water quality indicators , 1979 .
[82] W. Kerfoot,et al. Combat between predatory copepods and their prey: Cyclops, Epischura, and Bosmina 1 , 1978 .
[83] K. Keating,et al. Blue-Green Algal Inhibition of Diatom Growth: Transition from Mesotrophic to Eutrophic Community Structure , 1978, Science.
[84] J. Stenson. Significance of predator influence on composition of Bosmina spp. populations1 , 1976 .
[85] M. Hill. Diversity and Evenness: A Unifying Notation and Its Consequences , 1973 .
[86] J. Stockner. Preliminary Characterization of Lakes in the Experimental Lakes Area, Northwestern Ontario, Using Diatom Occurrences in Sediments , 1971 .
[87] M. C. Whiteside. Danish Chydorid Cladocera: Modern Ecology and Core Studies , 1970, Ecological Monographs.
[88] M. C. Whiteside,et al. Relation of Cladoceran Remains in Lake Sediments to Primary Productivity of Lakes , 1968 .
[89] R. V. Harmsworth. The Developmental History of Blelham Tarn (England) as Shown by Animal Microfossils, with Special Reference to the Cladocera , 1968 .
[90] J. Stockner,et al. THE SUCCESSION OF DIATOM ASSEMBLAGES IN THE RECENT SEDIMENTS OF LAKE WASHINGTON1 , 1967 .
[91] S. Dodson,et al. Predation, Body Size, and Composition of Plankton. , 1965, Science.
[92] 上野 益三. Thienemann, August : Chironomus. Leben, Verbreitung und wirtschaftliche Bedeutung der Chironomiden, Die Binnengewasser, Bd. XX. 1954. XVI, 834 S, 300 Abb. E. Schweizerbart'sche Verlagsbuchhandlung (Erwin Nagele), Stuttgart, 邦価約 15, 000 円 , 1955 .
[93] J. Iversen. Viscum, Hedera and Ilex as Climate Indicators , 1944 .
[94] H. Birks,et al. Modern diatom, cladocera, chironomid, and chrysophyte cyst assemblages as quantitative indicators for the reconstruction of past environmental conditions in the Alps. II. Nutrients , 1998 .
[95] J. O. Rawlings,et al. Applied Regression Analysis , 1998 .
[96] R. Hall,et al. Paleolimnological assessment of long-term water-quality changes in south-central Ontario lakes affected by cottage development and acidification , 1996 .
[97] I. Walker. Chironomids as indicators of past environmental change , 1995 .
[98] W. Vyverman,et al. Diatom-temperature transfer functions based on the altitudinal zonation of diatom assemblages in Papua New Guinea: a possible tool in the reconstruction of regional palaeoclimatic changes , 1995 .
[99] J. Smol,et al. Paleolimnological significance of observed distribution patterns of chrysophyte cysts in arctic pond environments , 1995 .
[100] J. Smol. Chrysophyte Algae: Application of chrysophytes to problems in paleoecology , 1995 .
[101] H. Birks,et al. Assessment of freshwater diatoms as quantitative indicators of past climatic change in the Yukon and Northwest Territories, Canada , 1995 .
[102] C. Lindegaard. Classification of water-bodies and pollution , 1995 .
[103] N. Anderson. Naturally eutrophic lakes: reality, myth or myopia? , 1995 .
[104] D. Livingstone,et al. The effects of deep-water siphoning on a small, shallow lake: a long-term case study , 1994 .
[105] R. Cook. Regression Graphics , 1994 .
[106] L. Cwynar,et al. A previously unrecognized late-glacial cold event in eastern North America , 1993, Nature.
[107] E. Reavie,et al. A palaeoenvironmental assessment of human impact on Wood Lake, okanagan valley, British Columbia, Canada , 1993 .
[108] Alexandra Schmäh. Variation among fossil chironomid assemblages in surficial sediments of Bodensee-Untersee (SW-Germany): implications for paleolimnological interpretation , 1993 .
[109] C.J.F. ter Braak,et al. Weighted Averaging Partial Least Squares regression (WA-PLS): definition and comparison with other methods for species-environment calibration , 1993 .
[110] J. Smol,et al. Aquatic invertebrates and climate change : a comment on Walker et al. (1991). Author's reply , 1992 .
[111] L. Håkanson. Considerations on representative water quality data , 1992 .
[112] A. Atkinson. Subset Selection in Regression , 1992 .
[113] John P. Smol,et al. An assessment of Chironomidae as quantitative indicators of past climatic change , 1991 .
[114] J. Smol,et al. Morphological descriptions and stratigraphic distributions of the chrysophycean stomatocysts from a recently acidified lake (Adirondack Park, N.Y.) , 1991 .
[115] B. Rossaro. Chironomids and water temperature , 1991 .
[116] K. Nicholls,et al. Sedimentary chrysophycean cyst assemblages as paleoindicators in acid sensitive lakes , 1991 .
[117] C.J.F. ter Braak,et al. Update notes: Canoco, version 3.10 , 1990 .
[118] D. Charles. A checklist for describing and documenting diatom and chrysophyte calibration data sets and equations for inferring water chemistry , 1990 .
[119] W. Hofmann. The significance of chironomid analysis (Insecta: Diptera) for paleolimnological research , 1988 .
[120] Walter Rast,et al. Eutrophication of lakes and reservoirs: A framework for making management decisions , 1988 .
[121] C.J.F. ter Braak,et al. CANOCO - a FORTRAN program for canonical community ordination by [partial] [etrended] [canonical] correspondence analysis, principal components analysis and redundancy analysis (version 2.1) , 1988 .
[122] C.J.F. ter Braak,et al. Partial canonical correspondence analysis , 1988 .
[123] R. Forester. Late Quaternary paleoclimate records from lacustrine ostracodes , 1987 .
[124] P. Kansanen. Assessment of pollution history from recent sediments in Lake Vanajavesi, southern Finland. II. Changes in the Chironomidae, Chaoboridae and Ceratopogonidae (Diptera) fauna , 1985 .
[125] M. Meijering. On the Occurrence of “Arctic” Cladocera with Special Reference to those along the Strait of Belle Isle (Quebec, Labrador, Newfoundland) , 1983 .
[126] U. Lieder. Introgression as a Factor in the Evolution of Polytypical Plankton Cladocera , 1983 .
[127] S. Servant-Vildary. ALTITUDINAL ZONATION OF MOUNTAINOUS DIATOM FLORA IN BOLIVIA: APPLICATION TO THE STUDY OF THE QUATERNARY , 1982 .
[128] I. Renberg. The pH history of lakes in Southwestern Sweden, as calculated from the subfossil diatom flora of the sediments , 1982 .
[129] O. A. Sæther. THE INFLUENCE OF EUTROPHICATION ON DEEP LAKE BENTHIC INVERTEBRATE COMMUNITIES , 1980 .
[130] Iain Colin Prentice,et al. Multidimensional scaling as a research tool in quaternary palynology: A review of theory and methods , 1980 .
[131] H. LANGE-BERTALOT. Pollution tolerance of diatoms as a criterion for water quality estimation , 1979 .
[132] T. Crisman,et al. Paleolimnological Studies on Small New England (USA) Ponds. Part Ii. Cladoceran Community Response to Trophic Oscillations , 1978 .
[133] H. Lange-Bertalot. Diatommen-Differentialarten anstelle von Leitformen : ein geeigneteres Kriterium der Gewasserbelastung , 1978 .
[134] T. Zaret,et al. FISH PREDATION ON BOSMINA LONGIROSTRIS: BODY-SIZE SELECTION VERSUS VISIBILITY SELECTION' , 1975 .
[135] J. Bradbury. Diatom stratigraphy and human settlement in Minnesota , 1975 .
[136] M. C. Whiteside. Chydorid (Cladocera) remains in surficial sediments of Danish lakes and their significance to paleolimnological interpretations: With 3 figures and 2 tables in the text , 1969 .
[137] D. G. Frey. Supplement to: The taxonomic and phylogenetic significance of the head pores of the Chydoridae (Cladocera)† , 1962 .
[138] David G. Frey,et al. The Taxonomic and Phylogenetic Significance Of the Head Pores of the Chydoridae (Cladoceha) , 1959 .
[139] R. Kolkwitz. Oekologie der Saprobien : Über die Beziehungen der Wasserorganismen zur Umwelt , 1950 .
[140] L. Brundin,et al. Chironomiden und andere Bodentiere der südschwedischen Urgebirgsseen. Ein Beitrag zur Kenntnis der bodenfaunistischen Charakterzüge schwedischer oligotropher Seen@@@Chironomiden und andere Bodentiere der sudschwedischen Urgebirgsseen. Ein Beitrag zur Kenntnis der bodenfaunistischen Charakterzuge sch , 1949 .