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42.
Schriver, P. et al., Impact of submerged macrophytes on fish-zooplankton-phytoplankton
interaction: large-scale enclosure experiments in a shallow eutrophic lake, Freshwat.
Biol. , 33, 255, 1995.
43.
Sieburth, J..McN., Sea Microbes , Oxford University Press, New York, 1979, chap.1.
44.
Lehman, J.T., Interacting growth and loss rates: the balance of top-down and bottom-
up controls in plankton communities, Limnol. Oceanogr., 36, 1546, 1991.
45.
Landry, M.R., Switching between herbivory and carnivory by the planktonic marine
copepod Calanus pacificus , Mar. Biol. , 65, 77, 1981.
46.
Frost, B.W., Effects of size and concentration of food particles on the feeding behavior
of the marine planktonic copepod Calanus pacificus , Limnol. Oceanogr., 17, 805,
1972.
47.
Frost, B.W., A threshold feeding behavior in Calanus pacificus , Limnol. Oceanogr.,
20, 263, 1975.
48.
Bartram, W.C., Experimental development of a model for the feeding of neritic
copepods on plankton, J. Plankton Res., 3, 25, 1980.
49.
Herman, P.M.J. and Scholten, H., Can suspension-feeders stabilise estuarine ecosys-
tems? in Proc. 24th EMBS Trophic Relationships in the Marine Environment , Barnes,
M. and Gibson, R.N., Eds., Aberdeen University Press, Aberdeen, 1990, p. 104.
50.
Kristensen, E., Benthic fauna and biogeochemical processes in marine sediments:
microbial activities and fluxes, in Nitrogen Cycling in Coastal Marine Environments,
Blackburn, T.H. and Sorensen, J., Eds., John Wiley & Sons, New York, 1988, p. 275.
51.
Cammen, L.M., The significance of microbial carbon in the nutrition of the deposit
feeding polychaete Nereis succinea , Mar. Biol. , 61, 9, 1980.
52.
Hanson, R.B. and Tenore, K.R., Microbial metaboplism and incorporation by the
polychaete Capitella capitata of aerobically and anaerobically decomposed detritus,
Mar. Ecol. Prog. Ser. , 6, 299, 1981.
53.
Werner, E.E. and Gilliam, J.F., The ontogenetic niche and species interactions in size-
structured populations, Annu. Rev. Ecol. Syst. , 15, 393, 1984.
54.
Weatherley, A.H. and Gill, H.S., The Biology of Fish Growth , Academic Press,
London, 1987, chap.1.
55.
von Bertalanffy, L., Principles and theory of growth, in Fundamental Aspects of
Normal and Malignant Growth , Nowinski, W.W., Ed., Elsevier, Amsterdam, 1960,
chap. 2.
56.
Gamito, S., Growth models and their use in ecological modelling: an application to
a fish population, Ecol. Model., 113, 83, 1998.
57.
Gurney, W.S.C. and Nisbet, R.M., Ecological Dynamics , Oxford University Press,
Oxford, U.K., 1998, p. 204.
58.
Baretta-Bekker, J.G., Baretta, J.W. and Rasmussen, E.K., The microbial food web in
the European regional seas ecosystem model, Neth. J. Sea Res . , 33, 363, 1995.
59.
Blindow, I., Long- and short-term dynamics of submerged macrophytes on two
shallow eutrophic lakes, Freshwat. Biol., 28, 15, 1992.
60.
Duarte, C.M., Seagrass nutrient content , Mar. Ecol. Prog. Ser ., 67, 201, 1990.
61.
Duarte, C.M., Nutrient concentration of aquatic plants: patterns across species,
Limnol. Oceanogr., 37, 882, 1992.
62.
Knox, G.A., Estuarine Ecosystems: A Systems Approach, Vol. II , CRC Press, Boca
Raton, FL, 1986, chap. 4.
63.
Pérez-Ruzafa, A. and Marcos, C., Los sustratos arenosos y fangosos del Mar Menor
(Murcia), su cubiertavegetal y su posible relación con la disminución del mújol en
la laguna, Cuad. Marisq. Publ. Tec., 11, 111, 1987.
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