212
K.-S. Jeong . F. Recknagel . G.-J. Joo
Kim HW, Ha K, Joo GJ (1998) Eutrophication of the lower Nakdong River after the
construction of an estuarine dam in 1987. Internat. Rev. Hydrobiol., 83: 65-72
King DL (1970) The role of carbon in eutrophication. 1. Water Poil. Contr. Fed., 42: 20352051
Köhler J (1994) Origin and succession of phytoplankton in a river-Iake system (Spree,
Germany). Hydrobiologia, 289: 73-83
Koste W (1978) Rotatoria. Die Radertiere Mitteleuropes. Ein Bestimmungswerk begrunder
von Max Voigt. 2nd ed. Borntrager, Stuttgart, Vol. 1, Textband 673 pp., Vol. 2.
Tafelband 234 pp
Krebs CJ (1994) Ecology: the Experimental Analysis of Distribution and Abundance.
Harper Collins College Publishers, NY, 801 pp
Krornkamp J, Walsby AE (1990) A computer model ofbuoyancy and vertical migration in
cyanobacteria.1. Plankton Res., 12: 161-183
Lee SK, Choi SH, Kim HW, Ha K, Joo GJ (1999) Inter-annual variability of nutrient
loadings in the lower Nakdong River, Mulgum, Korea. Acta Hydrobiol. Sinica, 23: 1723
Lek S, Delacoste M, Baran P, Dimopoulos I, Lauga J, Aulagnier S (1996) Application of
neural networks to modelling nonlinear relationships in ecology. Ecol. Modelling, 90:
39-52
Medsker LR (1996) Microcomputer applications of hybrid intelligent systems. 1. Networ.
Comput. Appl., 19: 213-234
Moss B (1998) Ecology of Fresh Waters: Man and Medium, Past to Future. 3rd ed.
Blackwell Science, Oxford, 557 pp
Murakarni T (1998) Flora and biomass of planktonic communities upstream of a river
mouth dam in Japan. Internat. Rev. Hydrobiol., 83: 463-466
NeuroDimension (1999) NeuroSolutions: The Neural Network Simulation Environment,
(Vers. 3.02 consultants level) and NeuroSolutions for Excel (Vers. 1.02)
Odum EP (1983) Basic Ecology. Saunders College Publishing, Florida, 613 pp
Paerl HW (1988) Nuisance phytoplankton blooms in coastal, estuarine, and inland waters.
Limnol. Oceanogr. 33: 823-847
Park SB (1998) Basic Water Quality of the Mid to Lower Part of Nakdong River and the
Influences of the Early Rainfall during Monsoon on the Water Quality. M. S. thesis.
Pusan National Univ., Pusan, 104 pp. (in Korean)
Pineda F (1987) Generalization of backpropagation to recurrent neural networks. Phys.
Rev. Lett., 19,59,2229-2232
Recknagel F (2001) Applications of machine leaming to ecological modeling. Ecol.
Modelling 146, 1-3, 303-310
Recknagel F, Wilson H (2000) Elucidation and prediction of aquatic ecosystems by
artificial neuronal networks. In: (Eds) S. Lek and 1. F. Guegan. Artificial Neuronal
Networks: Application to Ecology and Evolution. Springer-Verlag, Berlin, 143-155
Recknagel F (1997) ANNA-Artificial Neural Network model for predicting species
abundance and succession ofblue-green algae. Hydrobiologia, 349: 47-57
Recknagel F, French M, Harkonen P, Yabunaka KI (1997) Artificial neural network
approach for modelling and prediction of algal blooms. Ecol. Modelling, 96: 11-28
Reynolds CS (1984) The Ecology of Freshwater Phytoplankton. Cambridge University
Press, NY, 384 pp
K.-S. Jeong . F. Recknagel . G.-J. Joo
Kim HW, Ha K, Joo GJ (1998) Eutrophication of the lower Nakdong River after the
construction of an estuarine dam in 1987. Internat. Rev. Hydrobiol., 83: 65-72
King DL (1970) The role of carbon in eutrophication. 1. Water Poil. Contr. Fed., 42: 20352051
Köhler J (1994) Origin and succession of phytoplankton in a river-Iake system (Spree,
Germany). Hydrobiologia, 289: 73-83
Koste W (1978) Rotatoria. Die Radertiere Mitteleuropes. Ein Bestimmungswerk begrunder
von Max Voigt. 2nd ed. Borntrager, Stuttgart, Vol. 1, Textband 673 pp., Vol. 2.
Tafelband 234 pp
Krebs CJ (1994) Ecology: the Experimental Analysis of Distribution and Abundance.
Harper Collins College Publishers, NY, 801 pp
Krornkamp J, Walsby AE (1990) A computer model ofbuoyancy and vertical migration in
cyanobacteria.1. Plankton Res., 12: 161-183
Lee SK, Choi SH, Kim HW, Ha K, Joo GJ (1999) Inter-annual variability of nutrient
loadings in the lower Nakdong River, Mulgum, Korea. Acta Hydrobiol. Sinica, 23: 1723
Lek S, Delacoste M, Baran P, Dimopoulos I, Lauga J, Aulagnier S (1996) Application of
neural networks to modelling nonlinear relationships in ecology. Ecol. Modelling, 90:
39-52
Medsker LR (1996) Microcomputer applications of hybrid intelligent systems. 1. Networ.
Comput. Appl., 19: 213-234
Moss B (1998) Ecology of Fresh Waters: Man and Medium, Past to Future. 3rd ed.
Blackwell Science, Oxford, 557 pp
Murakarni T (1998) Flora and biomass of planktonic communities upstream of a river
mouth dam in Japan. Internat. Rev. Hydrobiol., 83: 463-466
NeuroDimension (1999) NeuroSolutions: The Neural Network Simulation Environment,
(Vers. 3.02 consultants level) and NeuroSolutions for Excel (Vers. 1.02)
Odum EP (1983) Basic Ecology. Saunders College Publishing, Florida, 613 pp
Paerl HW (1988) Nuisance phytoplankton blooms in coastal, estuarine, and inland waters.
Limnol. Oceanogr. 33: 823-847
Park SB (1998) Basic Water Quality of the Mid to Lower Part of Nakdong River and the
Influences of the Early Rainfall during Monsoon on the Water Quality. M. S. thesis.
Pusan National Univ., Pusan, 104 pp. (in Korean)
Pineda F (1987) Generalization of backpropagation to recurrent neural networks. Phys.
Rev. Lett., 19,59,2229-2232
Recknagel F (2001) Applications of machine leaming to ecological modeling. Ecol.
Modelling 146, 1-3, 303-310
Recknagel F, Wilson H (2000) Elucidation and prediction of aquatic ecosystems by
artificial neuronal networks. In: (Eds) S. Lek and 1. F. Guegan. Artificial Neuronal
Networks: Application to Ecology and Evolution. Springer-Verlag, Berlin, 143-155
Recknagel F (1997) ANNA-Artificial Neural Network model for predicting species
abundance and succession ofblue-green algae. Hydrobiologia, 349: 47-57
Recknagel F, French M, Harkonen P, Yabunaka KI (1997) Artificial neural network
approach for modelling and prediction of algal blooms. Ecol. Modelling, 96: 11-28
Reynolds CS (1984) The Ecology of Freshwater Phytoplankton. Cambridge University
Press, NY, 384 pp
