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Schoo, K., N. Aberle, A.M. Malzahn & M. Boersma 2012 Food quality affects secondary consumers even at low quantities: An experimental test with larval european lobster. PLoS ONE
Volume: 7(3):e33550, 1-5.
 
Stenson, J.A.E. & J.E. Svensson 1995 Food quality and population density in Asplanchna priodonta. Limnologica, Berlin
Volume: 25(1):43-47.
 
Schindler, J.E. 1971 Food quality and zooplankton nutrition. Journal of Animal Ecology
Volume: 40:589-595, figs. 1-2, tabs. 1-3. (x-1971)
 
Dahl, U. & M. Breitholz 2005 Food quality effects on copepods in toxicity tests. SETAC Globe
Volume: September. 22 pp.
 
Persson, J. 2007 Food quality effects on zooplankton growth and energy transfer in pelagic freshwater food webs. Doctoral Thesis, Uppsala University, Uppsala, Sweden.
Volume: 43 pp.
 
Von Elert, E. & P. Stampfl 2000 Food quality for Eudiaptomus gracilis: The importance of particular highly unsaturated fatty acids. Freshwater Biology
Volume: 45(2):189-200.
 
Gutseit, K. 2007 Food quality for zooplankton in humic lakes. Ph.D. Dissertation, Lund University, Lund, Sweden.
No Volume Data Available
 
Stutzman, P.L. 1995 Food quality of gelatinous colonial chlorophytes to the freshwater zooplankters Daphnia pulicaria and Diaptomus oregonensis. Freshwater Biology
Volume: 34(1):149-153.
 
Sushchenya, L.M. 1970 Food rations metabolism and growth of crustaceans. In: Steele, J.H. (ed.). Marine Food Chains. Proceedings of the International Symposium on Marine Food Chains. Aarhus, Denmark
Volume: :127-141, figs. 1-7, tabs. 1-4.
 
Conover, R.J. 1964 Food relations and nutrition of zooplankton. Proc. Symp. exp. mar. Biol., Occ. Publ.
Volume: 2: 81-91.
Wilson: paper
Kawabata, K. 1986 Food relations around planktonic crustaceans. Japanese Journal of Limnology
Volume: 47(2):196-197. (Japanese.)
 
Hunt, B.P. 1952 Food relationships between Florida spotted gar and other organisms in the Tamiami Canal, Dade County, Florida. Transactions of the American Fisheries Society
Volume: 82:13-33.
Wilson: paper
Ebneeva, N.I. 1982 Food requirements and availability of food for the stint and cisco of Pskov-Chud body of water. Sb. nauch. Trud. gos. nauchno-issled. Inst. ozern. rechn. rybn. Khozyaist.
Volume: 182: 50-58, 249-250, figs. (Russian with separately paginated English summary).
 
Itôh, K. 1973 Food requirements of copepods estimated from their metabolic rates. Bulletin of the Plankton Society of Japan
Volume: 20(1):78-83, figs. 1-2, tabs. 1-2. (x-1973, Japanese with English summary).
 
Yannopoulos, C. 1986 Food requirements of the Atherina boyeri larvae and postlarvae, in natural environment. Rapports et Procès-Verbaux des Réunions de la Commission Internationale pour l'Exploration Scientifique de la Mer Méditerranée, Monaco
Volume: 30(2):231.
 
Ahrenstorff, T.D., T.R. Hrabik, P.C. Jacobson & D.L. Pereira 2013 Food resource effects on diel movements and body size of cisco in north-temperate lakes. Oecologia
Volume: 173(4):1309-1320. 10.1007/s00442-013-2719-3
 
Legeżyńska, J. 2008 Food resource partitioning among Arctic sublittoral lysianassoid amphipods in summer. Polar Biology
Volume: 31(6):663-670.
 
Castellanos-Galindo, G.A. & A. Giraldo 2008 Food resource use in a tropical eastern Pacific tidepool fish assemblage. Marine Biology, Berlin
Volume: 153(6):1023-1025.
 
Crippa, V.E.L., N.S. Hahn & R. Fugi 2009 Food resource used by small-sized fish in macrophyte patches in ponds of the upper Paraná river floodplain. Uso do alimento por peixes de pequeno porte associados às macrófitas aquáticas em lagoas da planície de inundação do alto rio Paraná. Acta Scientiarum, Biological Sciences
Volume: 31(2):119-125. [In English; abstract in Portuguese.]
 
Huessy, K., M.A. St. John & U. Boettcher 1997 Food resource utilization by juvenile Baltic cod Gadus morhua: A mechanism potentially influencing recruitment success at the demersal juvenile stage? Marine Ecology Progress Series
Volume: 155:199-208.
 
Alvim, M.C.C. & A.C. Peret 2004 Food resources sustaining the fish fauna in a section of the upper Sao Francisco River in Três Marias, MG, Brazil. Brazilian Journal of Biology
Volume: 64(2):195-202. (English; abstract in Portuguese.)
 
Schulze, P.C. & C.L. Folt 1990 Food resources, survivorship, and reproduction of the omnivorous calanoid copepod Epischura lacustris. Ecology
Volume: 71(6):2224-2240.
 
Harrington, R.W., Jr. & E.S. Harrington 1961 Food selection among fishes invading a high subtropical salt marsh: from onset of flooding through the progress of a mosquito brood. Ecology
Volume: 42(4):646-666.
 
Karjalainen, J., T. Turunen, H. Helminen, J. Sarvala & H. Huuskonen 1997 Food selection and consumption of 0+ smelt (Osmerus eperlanus (L.)) and vendace (Coregonus albula (L.)) in pelagial zone of Finnish lakes. Archiv für Hydrobiologie, Special Issues on Advances in Limnology
Volume: 49:37-49. (v-1997)
 
Pihl, L. 1985 Food selection and consumption of mobile epibenthic fauna in shallow marine areas. Marine Ecology Progress Series
Volume: 22:169-179.
 
Viherluoto, M. 2001 Food selection and feeding behavior of Baltic Sea mysid shrimps. Doctoral Dissertation, University of Helsinki, Helsinki, Finland. Walter and Andrée de Nottbeck Foundation Scientific Report
Volume: No. 23. 35 pp.
 
Qin, J.G. & A.W. Fast 1997 Food selection and growth of young snakehead Channa striatus. Journal of Applied Ichthyology
Volume: 13(1):21-25.
 
Suwanrumpha, W. 1983 Food selection by Caranx leptolepsis off the western coast of the Gulf of Thailand. Technical Papers of the Marine Fisheries Laboratory, Bangkok
Volume: MFL/82/10:1-8.
 
DeMott, W.R. 1995 Food selection by calanoid copepods in response to between-lake variation in food abundance. Freshwater Biology
Volume: 33(2):171-180.
 
Meyer, H.B., M. Reckermann, M. Voss, S. Heike & B. Von Bodungen 1999 Food selection by calanoid copepods in the euphotic layer of the Gotland Sea (Baltic Proper) during mass occurrence of N2-fixing cyanobacteria. Marine Ecology Progress Series
Volume: 191:243-250.
 
Cowles, T.J., R.J. Olson & S.W. Chisholm 1988 Food selection by copepods: discrimination on the basis of food quality. Marine Biology, Berlin
Volume: 100(1):41-49.
 
Pyka, J. & R. Kolman 1999 Food selection by pond-reared Siberian sturgeaon Acipenser baeri (Brandt) fry. Archiwum Rybactwa Polskiego, Archives of Polish Fisheries
Volume: 7(1):123-128.
 
Donaghay, P.L. & L.F. Small 1979 Food selection capabilities of the estuarine copepod Acartia clausi. Marine Biology, Berlin
Volume: 52(2):137-146, figs. 1-3, tabs. 1-4. (21-v-1979)
 
Hangelin, C. & I. Vuorinen 1988 Food selection in juvenile three-spined sticklebacks studied in relation to size, abundance and biomass of prey. Hydrobiologia
Volume: 157(2):169-177.
 
Toledo, J.D., M.S. Golez, M. Doi & A. Ohno 1997 Food selection of early grouper, Epinephelus coioides, larvae reared by the semi-intensive method. Suisan Zoshoku
Volume: 45(3):327-337.
 
Furgala-Selezniow, G., A. Mamcarz & A. Skrzypczak 2006 Food selection of peled larvae (Coregonus peled Gmel.), reared in illuminated cages in different water bodies. Electronic Journal of Polish Agricultural Universities
Volume: 8(2): Article 34. http://www.ejpau.media.pl/volume8/issue2/art-34.html
 
Irvine, K. 1997 Food selectivity and diel vertical distribution of Chaoborus edulis (Diptera, Chaoboridae) in Lake Malawi. Freshwater Biology
Volume: 37(3):605-620.
 
Kozlowsky-Suzuki, B., P. Carlsson, A. Rühl & E. Granéli 2006 Food selectivity and grazing impact on toxic Dinophysis spp. by copepods feeding on natural plankton assemblages. Harmful Algae
Volume: 5(1):57-68.
 
Prudkovsky, A.A. 2006 Food selectivity in Aglantha digitale (Hydrozoa, Trachymedusae) in the White Sea. Zoologicheskii Zhurnal
Volume: 85(11): 1294-1302.
 
Barkoh, A. 1984 Food selectivity of bluegill and green sunfish fry. M.Sc. Thesis, South Dakota State University, Brookings, South Dakota, U.S.A.
Volume: 39 pp.
 
Pyka, J. 1995 Food selectivity of pond-reared pike (Esox lucius L.) during the period of its feeding on zooplankton. Archiwum Rybactwa Polskiego
Volume: 3(2):173-180.
 
Wilson, D.S. 1973 Food size selection among copepods. Ecology, Brooklyn
Volume: 54(4):909-914, figs. 1-6.
Wilson: paper
Söderlund, B. 1994 Food size selection and functional response among Acartia bifilosa (Giesbrecht)/Acartia longiremis (Lilljeborg) and Eurytemora affinis (Poppe), the dominant copepod species in the coastal Northern Baltic proper. Examensarbete, Institute of Systems Ecology, University of Stockholm
Volume: 1994(7):1-22.
Wilson: paper
Gliwicz, Z.M. 1977 Food size selection and seasonal succession of filter feeding zooplankton in an eutrophic lake. Ekologia Polska, Warsaw
Volume: 25(2):179-225, figs. 1-12, tabs. 1-3.
 
Llanos-Rivera, A., G. Herrera & P. Bernal 2004 Food size selectivity and diet overlap in larvae of Clupeiform species from central Chile Cahiers de Biologie Marine
Volume: 45(1): 1-8.
 
Ishimaru, T., S. Nishida & R. Marumo 1988 Food size selectivity of zooplankton evaluated from the occurrence of coccolethophorids in the guts. Bulletin of Plankton Society of Japan
Volume: 35(2):101-114.
Wilson: paper
Hessen, D.O., J.P. Nilssen & T.O. Eriksen 1986 Food size spectra and species replacement within herbivorous zooplankton. Internationale Revue der Gesamten Hydrobiologie
Volume: 71(1):1-10, figs. 1-5, tab. 1.
 
Berggreen, U., B. Hansen & T. Kiörboe 1988 Food size spectra, ingestion and growth of the copepod Acartia tonsa during development: implications for determination of copepod production. Marine Biology, Berlin
Volume: 99(3):341-352. (x.1988)
 
Branco, C.W.C., T. Aguiaro, F.A. Esteves & E.P. Caramaschi 1997 Food sources of the teleost Eucinostomus argenteus in two coastal lagoons of Brazil. Studies on Neotropical Fauna and Environment
Volume: 32(1):33-40.
 
Gophen, M. 1980 Food sources, feeding behaviour and growth rates of Sarotherodon galilaeum (Linnaeus) fingerlings. Aquaculture
Volume: 20(2):101-115, figs. 1-2, tabs. 1-9. (vi-1980)
 
Dzyuba, E.V., N.G. Mel'nik & E.Y. Naumova 2000 Food spectra of Cottocomephorus inermis (Cottidae) juveniles in the Lake Baikal. Voprosy Ikhtiologii
Volume: 40(3):421-424. (In Russian.)
 
Saxena, A. 2003 Food spectrum during maturation of Channa punctatus. Uttar Pradesh Journal of Zoology
Volume: 23(3): 213-217.
 
Clemens, W.A., J.R. Dymond & N.K. Bigelow 1924 Food studies of Lake Nipigon fishes. Univ. Toronto Stud. biol. Ser.
Volume: 25: 103-165.
 
Roelofs, E.W. 1954 Food studies of young sciaenid fishes, Micropogon undulatus and Leiostomus xanthurus from North Carolina. Copeia
Volume: 1954:51-153.
 
Orlova, E.L., N.G. Ushakov, V.N. Nesterova & V.D. Boitsov 2002 Food supply and feeding of capelin (Mallotus villosus) of different size in the central latitudinal zone of the Barents Sea during intermediate and warm years. ICES (International Council for the Exploration of the Sea) Journal of Marine Science
Volume: 59(5):968-975.
 
Bohl, E. 1982 Food supply and prey selection in planktivorous Cyprinidae. Oecologia, Berlin
Volume: 53(2):134-138.
 
Edmondson, W.T. 1962 Food supply and reproduction of zooplankton in relation to phytoplankton population. Rapports et Procès-Verbaux des Réunions du Conseil Permanent International pour l'Exploration de la Mer
Volume: 153:137-141, figs. 1-3. (ix-1962)
 
Antipova, L.F. & N.Ya. Kontsevaya 1980 Food supply of Kuleisk Bay in Pskov Lake with regard to its consumption by fish fry. Sbornik Nauchnykh Trudov Gosudarstvennyi Nauchno-Issledovatel'skii Institut Ozernogo i Rechnogo Rybnogo Khozyaistva
Volume: 158:8-12, 103.
 
McLeroy-Etheridge, S.L. & G.B. McManus 1999 Food type and concentration affect chlorophyll and carotenoid destruction during copepod feeding. Limnology and Oceanography
Volume: 44(8):2005-2011. (xii.1999)
 
Miralto, A., A. Ianora & S.A. Poulet 1995 Food type induces different reproductive responses in the copepod Centropages typicus. Journal of Plankton Research
Volume: 17(7):1521-1534.
 
Barthel, K.G. 1983 Food uptake and growth efficiency of Eurytemora affinis (Copepoda: Calanoida). Marine Biology, Berlin
Volume: 74(3):269-274, figs. 1-3, tab. 1. (vii-1983)
Wilson: paper
Viherluoto, M., H. Kuosa, J. Flinkman & M. Viitasalo 2000 Food utilisation of pelagic mysids, Mysis mixta and M. relicta, during their growing season in the northern Baltic Sea. Marine Biology
Volume: 136(3):553-559.
 
Fukusho, K., T. Arakawa & T. Watanabe 1980 Food value of a copepod, Tigriopus japonicus, cultured with -yeast for larvae and juveniles of mud dab Limanda yokohamae. Bulletin of the Japanese Society of Scientific Fisheries (= Nippon Suisan Gakkaishi)
Volume: 46(4):499-503, tabs. 1-3. (iv-1980)
 
Lokman, S. 1994 Food value of indigenous zooplankton from the South China Sea on the east coast of peninsular Malaysia. Journal of the World Aquaculture Society
Volume: 25(2):208-213.
 
Shamsudin, L. 1994 Food value of indigenous zooplankton species collected from various coastal waters of South China Sea for aquaculture. Third Asian Fisheries Forum. Asian Fisheries Society, Manila.
Volume: Pp. 752-755.
 
Svensson, C.J., G.A. Hyndes & P.S. Lavery 2007 Food web analysis in two permanently open temperate estuaries: Consequences of saltmarsh loss? Marine Environmental Research
Volume: 64(3):286-304.
 
Hoshika, A., M.J. Sarker, S. Ishida, Y. Mishima & N. Takai 2006 Food web analysis of an eelgrass (Zostera marina L.) meadow and neighbouring sites in Mitsukuchi Bay (Seto Inland Sea, Japan) using carbon and nitrogen stable isotope ratios. Aquatic Botany
Volume: 85(3):191-197.
 
Hoeinghaus, D.J. 2006 Food web architecture in natural and impounded rivers of the Upper Parana drainage basin, Brazil. Ph.D. Thesis, Texas A&M University, College Station, Texas, U.S.A.
Volume: 118 pp.
 
Johnson, B.M. & J.P. Goettl, Jr. 1999 Food web changes over fourteen years following introduction of rainbow smelt into a Colorado reservoir. North American Journal of Fisheries Management
Volume: 19(3):629-642.
 
Liess, A., J. Olsson, M. Quevedo, P. Eklöv, T. Vrede & H. Hillebrand 2006 Food web complexity affects stoichiometric and trophic interactions. Oikos
Volume: 114(1):117-125.
 
Froneman, P.W. 2004 Food web dynamics in a temperate temporarily open/closed estuary (South Africa). Estuarine, Coastal and Shelf Science
Volume: 59(1):87-95.
 
Nejstgaard, J.C. 1997 Food web dynamics in flagellate-dominated marine enironemnts. Trophic interactions between haptophytes, calanoid copepods and microzooplankton. Dr. Scient. Thesis, University of Bergen, Norway
Volume: 116pp.
Wilson: paper
Kerfoot, W.C. & W.R. DeMott 1984 Food web dynamics: dependent chains and vaulting. In: Meyers, D.G. & J.R. Strickler (eds.). Trophic interactions within aquatic ecosystems. American Association for the Advancement of Science Selected Symposium 85. Westview Press, Inc., Boulder, Colorado, 472pp.
Volume: :347-382.
 
Matthews, B. 2005 Food web ecology of zooplankton communities in lakes. Ph.D. Thesis, University of Victoria, Victoria, British Columbia, Canada
Volume: 264 pp.
 
Olson, R.J., B.N. Popp, B.S. Graham, G.A. López-Ibarra, F. Galván-Magaña, C.E. Lennert-Cody, N. Bocanegra-Castillo, N.J. Wallsgrove, E. Gier, V. Alatorre-Ramírez, L.T. Ballance & B.D. Fry 2010 Food web inferences of stable isotope spatial patterns in copepods and yellowfin tuna in the pelagic eastern Pacific Ocean. Progress in Oceanography
Volume: 86(1-2):124-138.
 
Rahman, M.M. 2006 Food web interactions and nutrients dynamics in polyculture ponds. Ph.D. Thesis, Wageningen Institute of Animal Sciences, Wageningen University, Wageningen, The Netherlands
Volume: 168 pp.
 
Raikow, D.F 2004 Food web interactions between larval bluegill (Lepomis macrochirus) and exotic zebra mussels (Dreissena polymorpha). Canadian Journal of Fisheries and Aquatic Sciences
Volume: 61(3):497-504.
 
Hansen, B.W., B.H. Hygum, M. Brozek, F. Jensen & C. Rey 2000 Food web interactions in a Calanus finmarchicus dominated pelagaic ecosytem - mesocosm study. Journal of Plankton Research
Volume: 22(3):569-588.
 
Lonsdale, D.J., E.M. Cosper, W.S. Kim, M. Doall, A. Divadeenam & S.Jónasdóttir 1996 Food web interactions in the plankton of Long Island bays, with preliminary observations on brown tide effects. Marine Ecology Progress Series
Volume: 143(1-3):247-263. (25-iv-1996)
Wilson: paper
Fulford, R.S. 2004 Food web interactions of larval yellow perch, Perca flavescens, in Lake Michigan: Implications for recruitment. Ph.D. Thesis, North Carolina State University, Raleigh, North Carolina, U.S.A.
Volume: 273 pp.
 
Hop, H., K. Borga, G.W. Gabrielsen, L. Kleivane & J.U. Skaare 2002 Food web magnification of persistent organic pollutants in poikilotherms and homeotherms from the Barents Sea. Environmental Science and Technology
Volume: 36(12): 2589-2597.
 
Benndorf, J., B. Wissel, A.F. Sell, U. Hornig, P. Ritter & W. Boing 2000 Food web manipulation by extreme enhancement of piscivory: an invertebrate predator compensates for the effects of planktivorous fish on a plankton community. Limnologica
Volume: 30(3):235-245.
 
Angelini, R. & A.A. Agostinho 2005 Food web model of the Upper Paraná River Floodplain: description and aggregation effects. Ecological Modelling
Volume: 181(2-3):109-121.
 
Rodríguez-Graña, L., D. Calliari, D. Conde, J. Sellanes & R. Urrutia 2008 Food web of a SW Atlantic shallow coastal lagoon: spatial environmental variability does not impose substantial changes in the trophic structure. Marine Ecology Progress Series
Volume: 362:69-83.
 
Hopkins, T.L. 1985 Food web of an Arctic midwater ecosystem. Marine Biology, Berlin
Volume: 89:197-212.
 
Lesutiene, J. 2009 Food web of the Curonian Lagoon: Organic matter sources and feeding of mysids. Ph.D. Thesis, Biomedical Sciences: Ecology and Environmental Sciences, Coastal Research and Planning Institute, Klaipeda University, Klaipeda, Lithiania.
Volume: 140 pp. + appendices 1 and 2.
 
Müller-Navarra, D.C. 2008 Food web paradigms: The biochemical view on trophic interactions. International Review of Hydrobiology
Volume: 93(4-5):489-505.
 
Stewart, A.R., S.N. Luoma, C.E. Schlekat, M.A. Doblin & K.A. Hieb 2004 Food web pathway determines how selenium affects aquatic ecosystems: a San Francisco Bay case study. Environmental Science and Technology
Volume: 38(17):4519-4526.
 
Pulido-Villena, E., I. Reche & R. Morales-Baquero 2005 Food web reliance on allochthonous carbon in two high mountain lakes with contrasting catchments: a stable isotope approach. Canadian Journal of Fisheries and Aquatic Sciences
Volume: 62(11):2640-2648.
 
Laws, E.A. 2008 Food web structure and planktonic predator-prey relationships in two eutrophic European lakes: Stability constraints on carbon fluxes. Limnology and Oceanography
Volume: 53(2):760-772.
 
Scheinberg, R.D. 2004 Food web structure and trophic dynamics of a subtropical plankton community, with an emphasis on appendicularians. Ph.D. Thesis, University of Hawaii, Manoa, Hawaii, U.S.A.
Volume: 263 pp.
 
Fetahi, T., M. Schagerl, S. Mengistou & S. Libralato 2011 Food web structure and trophic interactions of the tropical highland lake Hayq, Ethiopia. Ecological Modelling
Volume: 222(3):804-813.
 
Motta, R.L. & V.S. Uieda 2005 Food web structure in a tropical stream ecosystem. Austral Ecology
Volume: 30(1):58-73.
 
Waite, A.M., B.A. Muhling, C.M. Holl, L.E. Beckley, J.P. Montoya, J. Strzelecki, P.A. Thompson & S. Pesant 2007 Food web structure in two counter-rotating eddies based on δ15N and δ13C isotopic analyses. Deep Sea Research Part II: Topical Studies in Oceanography
Volume: 54(8-10):1055-1075.
 
McMeans, B.C., N. Rooney, M.T. Arts & A.T. Fisk 2013 Food web structure of a coastal Arctic marine ecosystem and implications for stability. Marine Ecology Progress Series
Volume: 482():17. 10.3354/meps10278
 
Lazareva, V.I., N.N. Zhgareva, V.A. Gusakov & V.K. Ivanov 2003 Food web structure of invertebrates communities in three small lakes with different water ?? level: zooplankton. Biology of Inland Waters, Institute for Biology of Inland Waters RAS / Biologiya Vnutrennikh Vod
Volume: 2003(1):49-57. (In Russian; abstract in English.)
 
Dzialowski, A.R., J.T. Lennon & V.H. Smith 2007 Food web structure provides biotic resistance against plankton invasion attempts. Biological Invasions
Volume: 9(3):257-267.
 
Dahlgren, K. 2010 Food web structures and carbon transfer efficiencies in a brackish water ecosystem. Institutionen för Ekologi, Umea Universitet, Umea, Sweden.
Volume: 25 pp.
 
Wassmann, P., M. Reigstad, T. Haug, B. Rudels, M.L. Carroll, H. Hop, G.W. Gabrielsen, S. Falk-Petersen, S.G. Denisenko, E. Arashkevich, D. Slagstad & O. Pavlova 2006 Food webs and carbon flux in the Barents Sea. Progress in Oceanography
Volume: 71(2-4):232-287.
 
Marcogliese, D.J. 2002 Food webs and the transmission of parasites to marine fish. Parasitology
Volume: 124(7), Supplement: S83-S99.
 
Delong, M.D. 2010 Food webs and the Upper Mississippi River: contributions to our understanding of ecosystem function in large rivers. Hydrobiologia
Volume: 640(1):89-101.
 
Kitching, R.L. 2001 Food webs in phytotelmata: “bottom-up” and “top-down” explanations for community structure. Annual Review of Entomology
Volume: 46:729-760.
 
Hansson, L.A. & L.J. Tranvik 2003 Food webs in sub-Antarctic lakes: a stable isotope approach. Polar Biology
Volume: 26(12):783-788.
 
Compte Ciurana, J. 2010 Food webs of Mediterranean coastal wetlands. Ph.D. Dissertation, Institut d’Ecologia Aquàtica, Universitat de Girona, Girona, Spain.
Volume: 173 pp. [In English; abstracts in Castilian and Catalan.]
 
Naumenko, E.N. 1988 Food zooplankton development in relation to the hydrographic conditions in the Kurshsky Bay, Baltic Sea. In: Palii, N.F. (ed.). Commercial oceanological studies in the Atlantic and south-east Pacific. Promyslovo-okeanologicheskie issledovaniya v Atlanticheskom okeane i Yugo-Vostochnoi chasti Tikhogo okeana. Atlanticheskii nauchno-issledovatel'skii institut rybnogo khozyaistva i okeanografii (AtlantNIRO), Kaliningrad. 144pp.
Volume: :109-115, 129, 136-137.
 
Hansen, D.J. 1969 Food, growth, migration, reproduction, and abundance of pinfish, Lagodon rhomboides, and Atlantic croaker, Micropogon undulatus, near Pensacola, Florida. 1963-65. Fishery Bulletin
Volume: 68:135-146. Hart, R.C. & C. Boane
 
Huntley, M.E. & C. Boyd 1984 Food-limited growth of marine zooplankton. American Naturalist
Volume: 124(4):455-478.
Wilson: paper
Kimmerer, W.J., T.R. Ignoffo, A.M. Slaughter & A.L. Gould 2014 Food-limited reproduction and growth of three copepod species in the low-salinity zone of the San Francisco Estuary. Journal Of Plankton Research
Volume: 36(3):722-735. 10.1093/plankt/fbt128 MAY-JUN 2014
 
Watson, J.M., C. Sykes & T.H. Bonner 2009 Foods of age-0 Rio Grande silvery minnows (Hybognathus amarus) reared in hatchery ponds. The Southwestern Naturalist
Volume: 54(4):475-479.
 
Nemoto, T. & T. Kasuya 1965 Foods of Baleen Whales in the Gulf of Alaska and in the North Pacific. Scient. Rep. Whales Res. Inst., Tokyo
Volume: 19: 45-51, figs. 1-7. (Iv-1965).
 
Nemoto, T. 1957 Foods of Baleen Whales in the Northern Pacific. Scient. Rep. Whales Res. Inst., Tokyo
Volume: 12: 33-90, figs. 1-26, tabs. 1-15. (Vi-1957).
 
Mason, W.T., Jr. & S.A. Zengel 1996 Foods of juvenile spotted seatrout in seagrasses at Seahorse Key, Florida. Gulf of Mexico Science
Volume: 14(2):89-104.
 
Manooch, C.S., III 1977 Foods of the red porgy, Pagrus pagrus Lineaus (Pisces: Sparidae), from North Carolina and South Carolina. Bulletin of Marine Science
Volume: 27:776-787.
 
Gauzens, B., S. Legendre, X. Lazzaro & G. Lacroix 2013 Food-web aggregation, methodological and functional issues. Oikos
Volume: 122(11):1606-1615. 10.1111/j.1600-0706.2013.00266.x
 
Dorazio, R.M., J.A. Bowers & J.T. Lehman 1987 Food-web manipulations influence grazer control of phytoplankton growth rates in Lake Michigan. Journal of Plankton Research
Volume: 9(5):891-899.
 
Fanelli, E., J.E. Cartes, P. Rumolo & M. Sprovieri 2009 Food-web structure and trophodynamics of mesopelagic-suprabenthic bathyal macrofauna of the Algerian Basin based on stable isotopes of carbon and nitrogen. Deep-Sea Research Part I Oceanographic Research Papers
Volume: 56(9):1504-1520.
 
Mantel, S.K., M. Salas & D. Dudgeon 2004 Foodweb structure in a tropical Asian forest stream. Journal of the North American Benthological Society
Volume: 23(4):728-755.
 
Tsagarakis, K., M. Coll, M. Giannoulaki, S. Somarakis, C. Papaconstantinou & A. Machias 2010 Food-web traits of the North Aegean Sea ecosystem (Eastern Mediterranean) and comparison with other Mediterranean ecosystems. Estuarine, Coastal and Shelf Science
Volume: 88(2):233-248.
 
Gotto, R.V. 2004 Footprints in the Sea: Tales of a Marine Biologist. Ballyhay Books, Donaghadee, Northern Ireland
Volume: 127 pp. ISBN 1 900935384
Wilson: paper
Wassmann, P., C.M. Duarte, S. Augustí & M.K. Sejr 2011 Footprints of climate change in the Arctic Marine Ecosystem. Global Change Biology
Volume: 17(2):1235-1249.
 
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Yin, W.Y. 1960 Four new species and a new genus of lernaeans, parasitizing Ctenopharyngodon and Ophiocephalus in China. Acta Hydrobiologica Sinica / Shuisheng Shengwu Xuebao
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Gómez, S., J. Fleeger, A. Rocha-Olivares & D. Foltz 2004 Four new species of Cletocamptus Schmankewitsch, 1875, closely related to Cletocamptus deitersi (Richard, 1897) (Copepoda: Harpacticoida). Journal of Natural History
Volume: 38(21):2669-2732.
Wilson: paper, PDF
Rocha, C.E.F. 1984 Four new species of Halicyclops Norman, 1903 (Copepoda, Cyclopoida) from Brazil. Hydrobiologia, The Hague
Volume: 119(2):107-117, figs. 1-60. (20-xii-1984)
Wilson: paper
Castro-Romero, R. & H. Baeza-Kuroki 1987 Four new species of Neobrachiella (Copepoda: Lernaeopodidae), parasitic on Sciaena genus (Teleostei: Sciaenidae) in the South Pacific. Cuatro especies nuevas de Neobrachiella (Copepoda: Lernaeopodidae) parasitando sobre el genero Sciaena (Teleostei: Sciaenidae) en el Pacifico sur. Estudios Oceanológicos, Univ. Antofagasta, Chile
Volume: 6:1-24, figs. 1-52, tab. 1. (Spanish summary)
Wilson: paper
Bowman, T.E. & J.G. González 1961 Four new species of Pseudocyclops (Copepoda: Calanoida) from Puerto Rico. Proceedings of the United States National Museum
Volume: 113(3452):37-59, figs. 1-11. (20-iii-1961)
Wilson: paper, PDF
Kim, I.H. 2005 Four new species of copepods (Crustacea) associated with gorgonacean corals (Cnidaria) from Bohol Island, the Philippines. The Korean Journal of Systematic Zoology
Volume: 21(2):171-191.
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Humes, A.G. & R.F. Cressey 1958 Four new species of lichomolgid copepods parasitic on West African starfishes. Bulletin de l'Institut Français d'Afrique Noire
Volume: (A)20(2):330-341, figs. 1-94 on pls. 1-10. (iv-1958)
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Björnberg, T.K.S. 1968 Four new species of Megacalanidae (Crustacea: Copepoda). Biology of the Antarctic Seas, III. Antarctic Research Series, American Geophysical Union, Washington, DC
Volume: 11:73-90, figs. 1-78. (21-v-1968; summaries in Portuguese and German.)
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Redkar, M.V., P.G. Rangnekar & N.N. Murti 1949 Four new species of parasitic copepods from the marine fishes of Bombay. Journal of the University of Bombay
Volume: (B)18(3):36-50, figs. 1-44 on pls. 1-4. (xi-1949)
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Kim, I.H. 2005 Four new species of the genus Panjakus (Copepoda, Cyclopoida, Anchimolgidae) associated with scleractinian corals (Cnidaria) from the Moluccas. Integrative Biosciences
Volume: 9:215-228.
Wilson: paper
Leong, T.S. 1986 Four parasitic copepods (families Lernanthropodidae and Lernaeopodidae) of Malaysian fishes. Tropical Biomedicine
Volume: 3(2):147-155.
 
Oguz, M.C. & A. Öktener 2007 Four parasitic crustacean species from marine fishes of Turkey. Türkiye Parazitoloji Dergisi / Acta Parasitologica Turcica
Volume: 31(1):79-83.
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Nair, B. Unnikrishnam 1985 Four species of Scambicornus (Copepoda: Cyclopoida, Sabelliphilidae) associated with invertebrates in the Indian waters. Aquatic Biology
Volume: 5:96-109.
Wilson: paper
Lin, C.L. & J.S. Ho 2006 Four species of Unicolax Cressey and Cressey, 1980 (Copepoda: Bomolochidae) parasitic on marine fishes of Taiwan. Zoological Studies
Volume: 45(3):339-356.
Wilson: paper
Ho, J.S., C.L. Lin & W.B. Chang 2007 Four species of Caligus Müller, 1785 (Copepoda, Siphonostomatoida, Caligidae) parasitic on marine fishes of Taiwan. Journal of Natural History
Volume: 41(5-8):401-417.
Wilson: paper
Suh, H.L., J.D. Shim & S.D. Choi 1992 Four species of Copepoda (Poecilostomatoida) parasitic on marine fishes of Korea. Bulletin of the Korean Fisheries Society
Volume: 25(4):291-300.
 
Pillai, N.K., C. Prabha & K. Balaraman 1982 Four species of lernaeopodid copepods new to the fauna of India. Journal of the Marine Biological Association of India
Volume: 19(1):10-15, fig. 1. (vii-1982)
Wilson: paper
Ooishi, S. 1962 Four species of notodelphyoid copepods newly found in Japan. Report of the Faculty of Fisheries, Prefectural University of Mie
Volume: 4(2):8-25, figs. 1-8. (15-Xii-1962)
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Lin, C.L. & J.S. Ho 2000 Four species of unrecorded caligid copepods (Siphonostomatoida0 parasitic on marine fishes of Taiwan. Journal of the Fisheries Society of Taiwan
Volume: 27(3):201-224. (ix.2000) (In English; summary in Chinese.)
Wilson: paper
Morioka, Y. 1972 Four types of vertical distribution of plankton copepods in the southern Sea of Japan. In: Sugawara, K. (ed.). Proceedings of the second symposium on the results of the cooperative study of the Kuroshio and adjacent regions, Saikon Publ. Cy Ltd. Tokyo.
Volume: :241-243, figs. 1-2.
 
Guilizzoni, P., A. Lami, A. Marchetto, P.G. Appleby & F. Alvisi 2001 Fourteen years of palaeolimnological research of a past industrial polluted lake (L. Orta, Northern Italy): An overview. Journal of Limnology
Volume: 60(2): 249-262.
 
Herdman, W.A. 1901 Fourteenth annual report of the Liverpool Marine Biology Committee and their Biological Station at Port Erin. Proceedings and Transactions of the Liverpool Biological Society
Volume: 15:19-84, pls. 1-7.
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Herdman, W.A. 1891 Fourth annual report of the Liverpool Marine Biological Station on Puffin Island. Proceedings and Transactions of the Liverpool Biological Society
Volume: 5:19-72.
 
World Association of Copepodologists 1990 Fourth International Conference on Copepoda, Karuizawa, Japan. Program and abstracts
Volume: 63pp.
Wilson: paper
Esterly, C.O. 1913 Fourth taxonomic report on the Copepoda of the San Diego region. University of California Publications in Zoology
Volume: 11(10):181-196, pls. 10-12. (26-xi-1913)
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Zander, C.D. 2003 Four-year monitoring of parasite communities in gobiid fishes of the south-western Baltic. I. Guild and component community. Parasitology Research
Volume: 90(6):502-511.
 

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