226
References
Prairie Y T (1988) A test of the sedimentation assumptions of phosphorus input-output
models. Arch Hydrobiol111: 321-327
Prairie Y T (1989) Statistical models for the estimation of net phosphorus sedimentation in
lakes. Aquat Sci 51: 192-210
Press W H Flannery B P Teukolsky S A Vetterling W T (1986) Numerical recipes. The art of
scientific computing. Cambridge University Press. Cambridge. 818 pp
Reckhow K H Chapra S C (1983) Engineering approaches for lake management. vol 1: Data
analysis and empirical modeling. Butterworth. London
Redfield A C (1958) The biological control of chemical factors in the environment. Am Sci 46:
205-222
Reiners W A (1986) Complementary models for ecosystems. Am Nat 127: 59-73
Reinertsen H Jensen A Koksvik J I Langeland A Olsen Y (1989) Effects of fish removal on the
limnetic ecosystem of a eutrophic lake. Can J Fish Aquat Sci 47: 166-173
Reynolds C S (1984) The ecology of freshwater phytoplankton. Cambridge University Press.
Cambridge. 384 pp
Reynolds C S (1989) Physical determinants of phytoplankton succession. In: Sommer U (ed)
Plankton Ecology. Springer. Berlin. Heidelberg, New York. pp 9-58
Rhee G-Y (1973) A continuous culture study of phosphate uptake. growth rate and polyphosphate in Scenedesmus sp. J phycol 9: 495-506
Rhee G-Y Gotham I J (1980) Optimum N:P ratios and coexistence of planktonic algae. J
Phycol16: 468-489
Rhee G-Y Gotham I J (1981) The effect of environmental factors on phytoplankton growth:
light and the interaction oflight with nitrate limitation. Limnol Oceanogr 26: 649-660
Richman S (1958) The transformation of energy by Daphnia pulex. Beol Monogr 28: 273-291
Richman S Dodson S I (1983) The effect of food quality on feeding and respiration by
Daphnia and Diaptomus. Limnol Oceanogr 28: 948-956
Ricker W E (1973) Linear regressions in fishery research. J Fish Res Board Can 30: 409-434
Riegman R Mur L R (1984) Regulation of phosphate uptake kinetics in Oscillatoria agardhii.
Arch Microbiol139: 28-32
Riemann B Sendergaard M (eds) (1986) Carbon dynamics in eutrophic. temperate lakes.
Elsevier, Amsterdam
Rigler F H (1961) The relation between concentration of food and feeding rate of Daphnia
magna Straus. Can J Zoo139: 857-868
Rigler F H (1964) The phosphorus fractions and turnover time of inorganic phosphorus in
different types oflakes. Limnol Oceanogr 9: 511-514
Rodhe W (1978) Algae in culture and nature. Verh Int Ver Limnol21: 7-20
Rogers T D (1981) Chaos in systems in population biology. Prog Theor BioI 6: 92-146
Rognerud S Kjellberg G (1984) Relationships between phytoplankton and zooplankton
biomasses in large lakes. Verh Int Ver Limnol22: 666-671
Rosenzweig M L (1969) Why the prey curve has a hump. Am Nat 103: 81-87
Rosenzweig M L (1971) Paradox of enrichment: Destabilization of exploitation ecosystems in
ecological time. Science 171: 385-387
Rosenzweig M L MacArthur R H (1963) Graphical representation and stability conditions of
predator-prey interactions. Am Nat 97: 209-223
Roughgarden J (I979) Theory of population genetics and evolutionary ecology: an introduction.
Macmillan. New York. 634 pp
-
Sakamoto M (1966) Primary production by phytoplankton community in some Japanese
lakes and its dependence on lake depth. Arch Hydrobiol62: 1-28
Sakshaug E Andresen K Myklestad S Olsen Y (1983) Nutrient status of phytoplankton
communities in Norwegian waters (marine. brackish. and fresh) as revealed by their
chemical composition. J Plankton Res 5: 175-196
Sanni S W zrvlgen S B (1990) Oligotrophication as a result of planktivorous fish removal with
rotenone in the small. eutrophic lake. Mosvatn. Norway. Hydrobiologia 2001201: 263-274
References
Prairie Y T (1988) A test of the sedimentation assumptions of phosphorus input-output
models. Arch Hydrobiol111: 321-327
Prairie Y T (1989) Statistical models for the estimation of net phosphorus sedimentation in
lakes. Aquat Sci 51: 192-210
Press W H Flannery B P Teukolsky S A Vetterling W T (1986) Numerical recipes. The art of
scientific computing. Cambridge University Press. Cambridge. 818 pp
Reckhow K H Chapra S C (1983) Engineering approaches for lake management. vol 1: Data
analysis and empirical modeling. Butterworth. London
Redfield A C (1958) The biological control of chemical factors in the environment. Am Sci 46:
205-222
Reiners W A (1986) Complementary models for ecosystems. Am Nat 127: 59-73
Reinertsen H Jensen A Koksvik J I Langeland A Olsen Y (1989) Effects of fish removal on the
limnetic ecosystem of a eutrophic lake. Can J Fish Aquat Sci 47: 166-173
Reynolds C S (1984) The ecology of freshwater phytoplankton. Cambridge University Press.
Cambridge. 384 pp
Reynolds C S (1989) Physical determinants of phytoplankton succession. In: Sommer U (ed)
Plankton Ecology. Springer. Berlin. Heidelberg, New York. pp 9-58
Rhee G-Y (1973) A continuous culture study of phosphate uptake. growth rate and polyphosphate in Scenedesmus sp. J phycol 9: 495-506
Rhee G-Y Gotham I J (1980) Optimum N:P ratios and coexistence of planktonic algae. J
Phycol16: 468-489
Rhee G-Y Gotham I J (1981) The effect of environmental factors on phytoplankton growth:
light and the interaction oflight with nitrate limitation. Limnol Oceanogr 26: 649-660
Richman S (1958) The transformation of energy by Daphnia pulex. Beol Monogr 28: 273-291
Richman S Dodson S I (1983) The effect of food quality on feeding and respiration by
Daphnia and Diaptomus. Limnol Oceanogr 28: 948-956
Ricker W E (1973) Linear regressions in fishery research. J Fish Res Board Can 30: 409-434
Riegman R Mur L R (1984) Regulation of phosphate uptake kinetics in Oscillatoria agardhii.
Arch Microbiol139: 28-32
Riemann B Sendergaard M (eds) (1986) Carbon dynamics in eutrophic. temperate lakes.
Elsevier, Amsterdam
Rigler F H (1961) The relation between concentration of food and feeding rate of Daphnia
magna Straus. Can J Zoo139: 857-868
Rigler F H (1964) The phosphorus fractions and turnover time of inorganic phosphorus in
different types oflakes. Limnol Oceanogr 9: 511-514
Rodhe W (1978) Algae in culture and nature. Verh Int Ver Limnol21: 7-20
Rogers T D (1981) Chaos in systems in population biology. Prog Theor BioI 6: 92-146
Rognerud S Kjellberg G (1984) Relationships between phytoplankton and zooplankton
biomasses in large lakes. Verh Int Ver Limnol22: 666-671
Rosenzweig M L (1969) Why the prey curve has a hump. Am Nat 103: 81-87
Rosenzweig M L (1971) Paradox of enrichment: Destabilization of exploitation ecosystems in
ecological time. Science 171: 385-387
Rosenzweig M L MacArthur R H (1963) Graphical representation and stability conditions of
predator-prey interactions. Am Nat 97: 209-223
Roughgarden J (I979) Theory of population genetics and evolutionary ecology: an introduction.
Macmillan. New York. 634 pp
-
Sakamoto M (1966) Primary production by phytoplankton community in some Japanese
lakes and its dependence on lake depth. Arch Hydrobiol62: 1-28
Sakshaug E Andresen K Myklestad S Olsen Y (1983) Nutrient status of phytoplankton
communities in Norwegian waters (marine. brackish. and fresh) as revealed by their
chemical composition. J Plankton Res 5: 175-196
Sanni S W zrvlgen S B (1990) Oligotrophication as a result of planktivorous fish removal with
rotenone in the small. eutrophic lake. Mosvatn. Norway. Hydrobiologia 2001201: 263-274
