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MONOCULUSCopepod Newsletter - World Association of ...

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Fleeger, J.W. 2005. The potential to mass-cultureharpacticoid copepods for use as food for larval fish. Pp.11-24 In: Lee, C.-S., P. O’Bryen & N. Marcus (eds.).Copepods in Aquaculture. Blackwell Publishing, Oxford,U.K. 352 pp.Fossheim, M., M. Zhou, K. S. Tande, O.-P. Pedersen, Y.Zhu & A. Edvardsen. 2005. Interactions betweenbiological and environmental structures along the coast<strong>of</strong> northern Norway. Marine Ecology Progress Series300:147-158.Frangoulis, C., E.D. Christou & J.H. Hecq. 2005.Comparison <strong>of</strong> marine copepod outfluxes: nature, rate,fate and role in the carbon and nitrogen cycles. Advancesin Marine Biology 47:254-309.Frank, K.T., B. Petrie, J.S. Choi & W.C. Leggett. 2005.Trophic cascades in a formerly cod-dominatedecosystem. Science 308:1621-1623.Frimpong, E.A. & S.E. Lochmann. 2005. Mortality <strong>of</strong> fishlarvae exposed to varying concentrations <strong>of</strong> cyclopoidcopepods. North American Journal <strong>of</strong> Aquaculture67(1):66-71.Frost, B.W. 2005. Editorial: Diatom blooms and copepodresponses: Paradigm or paradox? Progress inOceanography 67(3-4):283-285.Fulmer, J.H. & S.M. Bollens. 2005. Responses <strong>of</strong> thechaetognath, Sagitta elegans, and larval Pacific hake,Merluccius productus, to spring diatom and copepodblooms in a temperate fjord (Dabob Bay, Washington,USA). Progress in Oceanography 67(3-4):442-461.Galbraith, M. 2005. Identification <strong>of</strong> larval stages <strong>of</strong> Caligusclemensi and Lepeophtheirus salmonis from theBroughton Archipelago. Canadian Technical Report <strong>of</strong>Fisheries and Aquatic Sciences 548:1-21.Gannefors, C., M. Böer, G. Kattner, M. Graeve, K. Eiane,B. Gulliksen, H. Hop & S. Falk-Petersen. 2005. TheArctic sea butterfly Limacina helicina: lipids and lifestrategy. Marine Biology 147(1):169-177.Geffard, O., A. Geffard, H. Budzinski, C. Crouzet, R.Menasria, J. Amiard & C. Amiard-Triquet. 2005.Mobility and potential toxicity <strong>of</strong> sediment-bound metalsin a tidal estuary. Environmental Toxicology 20(4):407-417.Geinrikh, A.K. 2005. Features <strong>of</strong> the distribution anddevelopment <strong>of</strong> the common copepods Neocalanusflemingeri and Neocalanus plumchrus in thenorthwestern part <strong>of</strong> the Bering Sea. Oceanology/Okeanologiya 45(3):391-398.Geng, H., P. Xie, D. Beng & Q. Zhou. 2005. The rotiferassemblage in a shallow, eutrophic Chinese lake and itsrelationships with cyanobacterial blooms and crustaceanzooplankton. Journal <strong>of</strong> Freshwater Ecology 20(1):93-100.Genna, R.L., W. Mordue, A.W. Pike & A.J. Mordue(Luntz). 2005. Light intensity, salinity, and host velocityinfluence presettlement intensity and distribution onhosts by copepodids <strong>of</strong> sea lice, Lepeophtheirus24salmonis. Canadian Journal <strong>of</strong> Fisheries and AquaticSciences / Journal Canadien des Sciences Halieutiques etAquatiques 62(12):2675-2682.George, K.H. & P. Martínez-Arbizu. Discovery <strong>of</strong>Superornatiremidae Huys (Copepoda, Harpacticoida)outside anchialine caves, with the description <strong>of</strong>Gideonia noncavernicola gen. et sp. nov. from thePatagonian continental slope (Chile). Mei<strong>of</strong>auna Marina14:75-89.George, K.H. & H.K. Schminke. 2005. Harpacticoida(Crustacea, Copepoda) <strong>of</strong> the Great Meteor Seamount,with first conclusions as to the origin <strong>of</strong> the plateaufauna. Marine Biology 147(2):571. [Erratum.]Gerecke, R., F. Stoch, C. Meisch & I. Schrankel. 2005. DieFauna der Quellen und des hyporheischen Interstitials inLuxemburg: Unter besonderer Berücksichtigung derMilben (Acari), Muschelkrebse (Ostracoda) undRuderfusskrebse (Copepoda). Ferrantia, Travauxscientifiques du Musée national d'histoire naturelle 41:1-134.Gheskiere, T., M. Vincx, J.M. Weslawski, F. Scapini & S.Degraer. 2005. Mei<strong>of</strong>auna as descriptor <strong>of</strong> tourisminducedchanges at sandy beaches. MarineEnvironmental Research 60(2)245-265.Gillooly, J.F., A.P. Allen, J.H. Brown, J.J. Elser, C. Martínezdel Río, V.M. Savage, G.B. West, W.H. Woodruff &H.A. Woods. 2005. The metabolic basis <strong>of</strong> wholeorganismRNA and phosphorus content. Proceedings <strong>of</strong>the National Academy <strong>of</strong> Sciences 102(33):11923-11927.Gilmanov, A. & F. Sotiropoulos. 2005. A hybridCartesian/immersed boundary method for simulatingflows with 3D, geometrically complex, moving bodies.Journal <strong>of</strong> Computational Physics 207(2):457-492.Gómez, S. 2005. New species <strong>of</strong> Cletocamptus and a newand fully illustrated record <strong>of</strong> C. sinaloensis (Copepoda:Harpacticoida) from Brazil. Journal <strong>of</strong> Natural History39(34):3101-3135.González, M.T. & C.A. Moreno. 2005. The distribution <strong>of</strong> theectoparasite fauna <strong>of</strong> Sebastes capensis from thesouthern hemisphere does not correspond withzoogeographical provinces <strong>of</strong> free-living marine animals.Journal <strong>of</strong> Biogeography 32(9):1539-1547.González, M.T. & R. Poulin. 2005. Nested patterns inparasite component communities <strong>of</strong> a marine fish alongits latitudinal range on the Pacific coast <strong>of</strong> SouthAmerica. Parasitology 131(4):569-577.González, M.T. & R. Poulin. 2005. Spatial and temporalpredictability <strong>of</strong> the parasite community structure <strong>of</strong> abenthic marine fish along its distributional range.International Journal for Parasitology 35(13):1369-1377.Gophen, M. 2005. Seasonal rotifer dynamics in the longterm(1969–2002) record from Lake Kinneret (Israel).Hydrobiologia 546(1):433-450.Gordina, A.D., Ju.A. Zagorodnyaya, A.E. Kideys, L. Bat &H.H. Satilmis. 2005. Summer ichthyoplankton, food

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