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Calanoid copepod

Frost, R. W. (1987). Grazing control of phytoplankton stock in the open subarctic Pacific ocean a model assessing the role of mesozooplankton, particularly the large calanoid copepods Neocalanus spp. Mar. Ecol. Prog. Ser. 39, 49-68. [Pg.275]

Lewis, A.G., P.H. Whitfield, and A. Ramnarine. 1972. Some particulate and soluble agents affecting the relationship between metal toxicity and organism survival in the calanoid copepod Euchaeta japonica. Mar. Biol. 17 215-221. [Pg.225]

Meyer-Harms, B., and von Bodungen, B. (1997) Taxon-specific ingestion rates of natural phytoplankton by calanoid copepods in an estuarine environment (Pomeranian Bight, Baltic Sea) determined by cell counts and HPLC analyses of marker pigments. Mar. Ecol. Prog. Ser. 153, 181-190. [Pg.628]

Sargent, J.R., and Falk-Petersen, S. (1988) The lipid biochemistry of calanoid copepods. Hydrobiologia 167/168, 101-114. [Pg.657]

Hansen FC, van Boekel WHM (1991) Grazing pressure of the calanoid copepod Temora longicornis on a Phaeocystis dominated spring bloom in a Dutch tidal inlet. Mar Ecol Prog Ser 78 123-129... [Pg.169]

Friedman MM, Strickler JR (1975) Chemoreception and feeding in the calanoid copepods. Proc Nat Acad Sd USA 72 4185-4188... [Pg.327]

Reinikainen, M., Lindvall, F., Meriluoto, J.A.O., Repka, S., Sivonen, K., Spoof, L., and Wahlsten, M. 2002. Effects of dissolved cyanobacterial toxins on the survival and egg hatching of estuarine calanoid copepods. Mar Biol 140, 577-583. Richard, D.S., Beattie, K. A., and Codd, G. A. 1983. Toxicity of cyanobacterial blooms from Scottish freshwater. Environ Tech-Tjo/Leff 4, 377-382. [Pg.157]

Miller, C. A., and Gilbert, P. M. (1998). Nitrogen excretion by the calanoid copepod Acartia tonsa Results from mesocosm experiments. /. Plankton Res. 20(9), 1767—1780. [Pg.461]

Abou Debs, C. (1984). Carbon and nitrogen budget of the calanoid copepod Temora stylifera Effect of food concentration and composition of food. Mar. Ecol. Prog. Ser. 15, 213—223. [Pg.1182]

Broglio, E., Jonasdottir, S. H., Calbet, A., Jakobsen, H. H., and Saiz, E. (2003). Effect of heterotrophic versus autotrophic food on feeding and reproduction of the calanoid copepod Acartia tonsa Relationship with prey fatty acid composition. Aquat. Microb. Ecol. 31, 267—278. [Pg.1184]

Miller, C. A., and Roman, M. R. (2008). Effects of food nitrogen content and concentration on the forms of nitrogen excreted by the calanoid copepod, Acartia tonsa. J. Exp. Mar. Biol. Ecol. 359, 11—17. [Pg.1191]

Bioluminescence Observations in Isolated Plankters. The use of plankton chambers for the photoelectric recording of flash responses from luminescent dinoflagellates (35, 36), calanoid copepods, and other zoo-plankters (8, 37, 38) is not novel. Although artificial stimuli (electrical and condenser shocks or vacuum and formaldehyde-solution stimulation) were... [Pg.221]

Free-living copepods are planktonic or benthic in a wide variety of freshwater environments. Some species of cyclopoid and calanoid copepods occur in extremely high densities. Some of the planktonic copepods have a daily vertical migration in lakes, similar to that of some water fleas. Parasitic copepods can become a serious economic problem in fish hatcheries. Many free-living copepods are important in the food chain of many fishes. [Pg.113]

Hansen, F. C., Mollmann, C., Schutz, LI, Neumann, T, 2006. Spatio-temporal distribution and production of calanoid copepods in the Central Baltic Sea. Journal of Plankton Research, 28,39-54. [Pg.575]

Mollmann, C., Koster, F. W., Kornilovs, G., Sidrevics, L., 2003b. Interannual variability in population dynamics of calanoid copepods in the Central Baltic Sea. ICES Marine Science Symposia, 219, 294-306. [Pg.578]

Bottger-Schnack, R. (1996) Vertical structure of small metazoan plankton, especially non-calanoid copepods. 1. Deep Arabian Sea. Journal of Plankton Research, 18, 1073—1101. [Pg.199]

Madhupratap, M. and Haridas, P. (1986) Epipelagic calanoid copepods of the northern Indian Ocean. Oceanologica Acta, 9, 105—117. [Pg.202]

Whitfield, P.H. and Lewis, R.G., 1976. Control of the biological availability of trace metals to a calanoid copepod in a coastal fjord. Estuarine Coastal Mar. Sci., 4 255— 266. [Pg.222]

Soluble Agents Affecting the Relationship Between Metal Toxicity and Organisms Survival in the Calanoid Copepod Euchaeta japonica/ Mar. Biol 1972,17, 215-221. [Pg.212]

Stages of Some Estuarine Calanoid Copepods, Mar. Biol. 1977, 43(4), 317-331. [Pg.240]

Many species of calanoid copepods doubled the number of aesthetascs (for description of aesthetascs see Hallberg and Skog, Chap. 6) on the male antennules (Ohtsuka and Huys 2001 Bradford-Grieve 2002) when they colonized the pelagic realm. These chemoreceptors are expressed at the last developmental stage, often... [Pg.179]

Blades PI, Youngbluth MI (1980) Morphological, physiological and behavioral aspects of mating in Calanoid copepods. In Kerfoot WC (ed) Evolution of zooplankton communities. University Press, Hanover, pp 39-51... [Pg.194]

Bradford-Grieve JM (2002) Colonization of the pelagic realm by calanoid copepods. Hydrobio-logia 485 223-244... [Pg.194]


See other pages where Calanoid copepod is mentioned: [Pg.390]    [Pg.46]    [Pg.149]    [Pg.1150]    [Pg.1176]    [Pg.1189]    [Pg.1191]    [Pg.285]    [Pg.343]    [Pg.313]    [Pg.560]    [Pg.343]    [Pg.406]    [Pg.410]    [Pg.420]    [Pg.458]    [Pg.560]    [Pg.179]    [Pg.194]    [Pg.730]    [Pg.181]   
See also in sourсe #XX -- [ Pg.49 , Pg.313 , Pg.319 ]




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