References
221
Ingle L Wood T R Banta A M (1937) A study oflongevity, growth, reproduction and heart rate
in Daphnia longispina as influenced by limitations in quantity of food. J Exp Zoo176: 325-352
Jacobs J (1974) Quantitative measurement of food selection. Oecologia 14: 413-417
Jacoby J M Lynch D D Welch E B Perkins M A (1982) Internal phosphorus loading in a
shallow eutrophiclake. Water Res 16: 911-919
Jassby A D Goldman C R (1974) Loss rates from a lake phytoplankton community. Limnol
Oceanogr 19: 618-627
Jensen A (1984) Excretion of organic carbon as function of nutrient stress. In: Holm-Hansen
o Bolis L Gilles R (eds) Marine phytoplankton and productivity. Springer, Berlin;
Heidelberg, New York, pp 61-72
Jeppesen E Sendergaard M Mortensen E Kristensen P Riemann B Jensen H J Milller J P
Sortkjzr 0 Jensen J P Christoffersen K Bosselmann S Dall E (1990) Fish manipulation as a
lake restoration tool in shallow, eutrophic temperate lakes 1: cross-analysis of three Danish
case-studies. Hydrobiologia 2001201: 205-218
Kalff J Knoechel R (1978) Phytoplankton and their dynamics in oligotrophic and eutrophic
lakes. Annu Rev Ecol Syst 9: 475-495
Kappers F I (1984) On population dynamics of the cyanobacterium Microcystis aeruginosa.
PhD Thesis. University of Amsterdam, Amsterdam
Kerfoot W C Sih A (eds) (1987) Predation, direct and indirect impacts on aquatic communities.
University Press of New England, Hanover
Kersting K (1983) Direct determination of the "threshold food concentration" for Daphnia
magna. Arch Hydrobiol96: 510-514
Kieber D J McDaniel J Mopper K (1989) Photochemical source of biological substrates in sea
water: implications for carbon cycling. Nature 341: 637-639
Kilham P Hecky R E (1988) Comparative ecology of marine and freshwater phytoplankton.
Limnol Oceanogr 33: 776-795
Kilham P Kilham S S (1980) The evolutionary ecology of phytoplankton. In: Morris I (ed) The
physiological ecology of phytoplankton. Blackwell, Oxford, pp 571-592
Kilham S S (1987) Phytoplankton responses to changes in mortality rates. Verh Int Ver
Limnol23: 677-682
Kilham S S Kott C L Tilman D (1977) Phosphate and silicate kinetics for the Lake Michigan
diatom Diatoma elongatum. J Great Lakes Res 3: 93-99
Knisely K Geller W (1986) Selective feeding of four zooplankton species on natural lake
phytoplankton. Oecologia 69: 86-94
Kohl J-G Nicklisch A (1988) Okophysiologie der Algen. Gustav Fischer, Stuttgart, 253 pp
Kooijman SAL M (1986) Population dynamics on the basis of budgets. In: Metz J A J
Diekman 0 (eds) The dynamics of physiologically structured populations. Springer, Berlin,
Heidelberg, New York, pp 266-297
Kring L R O'Brien W J (1976) Effect of varying oxygen concentration on the filtring rate of
Daphnia pulex. Ecology 57: 808-814
Lampert W (1976) A directly coupled artificial two-step food chain for long term experiments
with filter feeders at constant food concentrations. Mar Bioi 37: 349-355
Lampert W (1977) Studies on the carbon balance of Daphnia pulex de Geer as related to
environmental conditions. I - IV. Arch Hydrobiol Beih 48: 287-368
Lampert W (1978) Release of dissolved organic carbon by grazing zooplankton. Limnol
Oceanogr 23: 831-834
Lampert W (1987) Feeding and nutrition in Daphnia. Mem 1st Ital Idrobiol45: 143-192
Lampert W Bohrer R (1984) Effect of food availability on the respiratory quotient of Daphnia
magna. Comp Biochem Physiol78a: 221-224
Lampert W Gabriel W (1984) Tracer kinetics in Daphnia: an improved two-compartment
model and experimental test. Arch HydrobiollOO: 1-20
Lampert W Muck P (1985) Multiple aspects of food limitation in zooplankton communities:
the Daphnia-Eudiaptomus example. Arch Hydrobiol Beih 21: 311-322
221
Ingle L Wood T R Banta A M (1937) A study oflongevity, growth, reproduction and heart rate
in Daphnia longispina as influenced by limitations in quantity of food. J Exp Zoo176: 325-352
Jacobs J (1974) Quantitative measurement of food selection. Oecologia 14: 413-417
Jacoby J M Lynch D D Welch E B Perkins M A (1982) Internal phosphorus loading in a
shallow eutrophiclake. Water Res 16: 911-919
Jassby A D Goldman C R (1974) Loss rates from a lake phytoplankton community. Limnol
Oceanogr 19: 618-627
Jensen A (1984) Excretion of organic carbon as function of nutrient stress. In: Holm-Hansen
o Bolis L Gilles R (eds) Marine phytoplankton and productivity. Springer, Berlin;
Heidelberg, New York, pp 61-72
Jeppesen E Sendergaard M Mortensen E Kristensen P Riemann B Jensen H J Milller J P
Sortkjzr 0 Jensen J P Christoffersen K Bosselmann S Dall E (1990) Fish manipulation as a
lake restoration tool in shallow, eutrophic temperate lakes 1: cross-analysis of three Danish
case-studies. Hydrobiologia 2001201: 205-218
Kalff J Knoechel R (1978) Phytoplankton and their dynamics in oligotrophic and eutrophic
lakes. Annu Rev Ecol Syst 9: 475-495
Kappers F I (1984) On population dynamics of the cyanobacterium Microcystis aeruginosa.
PhD Thesis. University of Amsterdam, Amsterdam
Kerfoot W C Sih A (eds) (1987) Predation, direct and indirect impacts on aquatic communities.
University Press of New England, Hanover
Kersting K (1983) Direct determination of the "threshold food concentration" for Daphnia
magna. Arch Hydrobiol96: 510-514
Kieber D J McDaniel J Mopper K (1989) Photochemical source of biological substrates in sea
water: implications for carbon cycling. Nature 341: 637-639
Kilham P Hecky R E (1988) Comparative ecology of marine and freshwater phytoplankton.
Limnol Oceanogr 33: 776-795
Kilham P Kilham S S (1980) The evolutionary ecology of phytoplankton. In: Morris I (ed) The
physiological ecology of phytoplankton. Blackwell, Oxford, pp 571-592
Kilham S S (1987) Phytoplankton responses to changes in mortality rates. Verh Int Ver
Limnol23: 677-682
Kilham S S Kott C L Tilman D (1977) Phosphate and silicate kinetics for the Lake Michigan
diatom Diatoma elongatum. J Great Lakes Res 3: 93-99
Knisely K Geller W (1986) Selective feeding of four zooplankton species on natural lake
phytoplankton. Oecologia 69: 86-94
Kohl J-G Nicklisch A (1988) Okophysiologie der Algen. Gustav Fischer, Stuttgart, 253 pp
Kooijman SAL M (1986) Population dynamics on the basis of budgets. In: Metz J A J
Diekman 0 (eds) The dynamics of physiologically structured populations. Springer, Berlin,
Heidelberg, New York, pp 266-297
Kring L R O'Brien W J (1976) Effect of varying oxygen concentration on the filtring rate of
Daphnia pulex. Ecology 57: 808-814
Lampert W (1976) A directly coupled artificial two-step food chain for long term experiments
with filter feeders at constant food concentrations. Mar Bioi 37: 349-355
Lampert W (1977) Studies on the carbon balance of Daphnia pulex de Geer as related to
environmental conditions. I - IV. Arch Hydrobiol Beih 48: 287-368
Lampert W (1978) Release of dissolved organic carbon by grazing zooplankton. Limnol
Oceanogr 23: 831-834
Lampert W (1987) Feeding and nutrition in Daphnia. Mem 1st Ital Idrobiol45: 143-192
Lampert W Bohrer R (1984) Effect of food availability on the respiratory quotient of Daphnia
magna. Comp Biochem Physiol78a: 221-224
Lampert W Gabriel W (1984) Tracer kinetics in Daphnia: an improved two-compartment
model and experimental test. Arch HydrobiollOO: 1-20
Lampert W Muck P (1985) Multiple aspects of food limitation in zooplankton communities:
the Daphnia-Eudiaptomus example. Arch Hydrobiol Beih 21: 311-322
