Giesbrecht, W. (1892-1893). Systematik und Faunistik der pelagischen Copepoden des Golfes von Neapel und der angrenzenden Meeres-Abschnitte. Systematics and faunistics of the pelagic copepods of the Gulf of Naples and the adjacent marine areas. <em>Fauna und Flora des Golfes von Neapel und der Angrenzenden Meeres-Abschnitte, Herausgegeben von der Zoologischen Station zu Neapel.</em> 19:1-831, pls. 1-54.[published in sections over 2 years, 1892-1893]]., available online athttps://www.biodiversitylibrary.org/page/798364[details]
Distribution Gulf of St. Lawrence (unspecified region), upstream and downstream part of middle St. Lawrence estuary, lower St. Lawrence...
Distribution Gulf of St. Lawrence (unspecified region), upstream and downstream part of middle St. Lawrence estuary, lower St. Lawrence estuary, Prince Edward Island (from the northern tip of Miscou Island, N.B. to Cape Breton Island south of Cheticamp, including the Northumberland Strait and Georges Bay to the Canso Strait causeway), upper Laurentian Channel (bathyal zone off Sept- Iles), middle North Shore (from Sept- Iles to Cape Whittle, including the Mingan Islands), Laurentian Channel (bathyal zone) to the northeast of Anticosti Island (=Jacques Cartier Strait), northern slope of Anticosti Island; western slope of Newfoundland, including the southern part of the Strait of Belle Isle but excluding the upper 50m in the area southwest of Newfoundland [details]
Walter, T.C.; Boxshall, G. (2025). World of Copepods Database. Acartia clausi Giesbrecht, 1889. Accessed through: World Register of Marine Species at: https://www.marinespecies.org/aphia.php?p=taxdetails&id=104251 on 2025-07-16
original descriptionGiesbrecht, W. (1892-1893). Systematik und Faunistik der pelagischen Copepoden des Golfes von Neapel und der angrenzenden Meeres-Abschnitte. Systematics and faunistics of the pelagic copepods of the Gulf of Naples and the adjacent marine areas. <em>Fauna und Flora des Golfes von Neapel und der Angrenzenden Meeres-Abschnitte, Herausgegeben von der Zoologischen Station zu Neapel.</em> 19:1-831, pls. 1-54.[published in sections over 2 years, 1892-1893]]., available online athttps://www.biodiversitylibrary.org/page/798364[details]
basis of recordBoxshall, G. (2001). Copepoda (excl. Harpacticoida), <B><I>in</I></B>: Costello, M.J. <i>et al.</i> (Ed.) (2001). <i>European register of marine species: a check-list of the marine species in Europe and a bibliography of guides to their identification. Collection Patrimoines Naturels,</i> 50: pp. 252-268 (look up in IMIS) [details]
Other
context source (Deepsea)Intergovernmental Oceanographic Commission (IOC) of UNESCO. The Ocean Biogeographic Information System (OBIS), available online athttp://www.iobis.org/[details]
context source (Bermuda)Wilson, C. B. (1936). Plankton of the Bermuda Oceanographic Expeditions
IV. Notes on Copepoda
. Zoologica Scientific Contributions of the New York Zoological Society
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additional sourceBrunel, P., L. Bosse & G. Lamarche. (1998). Catalogue of the marine invertebrates of the estuary and Gulf of St. Lawrence. <em>Canadian Special Publication of Fisheries and Aquatic Sciences, 126.</em> 405 pp. (look up in IMIS) [details] Available for editors [request]
additional sourceMuller, Y. (2004). Faune et flore du littoral du Nord, du Pas-de-Calais et de la Belgique: inventaire. [Coastal fauna and flora of the Nord, Pas-de-Calais and Belgium: inventory]. <em>Commission Régionale de Biologie Région Nord Pas-de-Calais: France.</em> 307 pp., available online athttp://www.vliz.be/imisdocs/publications/145561.pdf[details]
additional sourceAlcaraz, M. (1980). Niche width and overlap of two coexisting species of Acartia (Copepoda: Calanoida), in the ria of Vigo (NW of Spain). ICES CM 1980/L:16: 1-5.[details] Available for editors [request]
additional sourceAlcaraz, M. (1977). Ecología, competencia y segregación en especies congenéricas de copépodos (Acartia). [Ecology, competition and segregation of congeneric species of copepods (Acartia).]. <em>Doctoral Thesis, University of Barcelona, Spain.</em> 191 pp.[details] Available for editors [request]
additional sourceMoraitou-Apostolopoulou, M. & G. Verriopoulos. (1982). Toxicity of chromium to the marine planktonic copepod Acartia clausi, Giesbrecht. <em>Hydrobiologia.</em> 96(2):121-127, fig. 1, tabs. 1-3. (15-x-1982)., available online athttps://doi.org/10.1007/BF02185427[details] Available for editors [request]
additional sourceMoraitou-Apostolopoulou, M. & G. Verriopoulos. (1982). Egg laying in two populations of Acartia clausi exposed to different degrees of pollution. <em>Vie et Milieu.</em> 31(1):65-69. (v-1982, French summary.) [for 1981].[details] Available for editors [request]
additional sourceMoraïtou-Apostolopoulou, M. & G. Verriopoulos. (1979). Laboratory studies on the feeding of Acartia clausi Giesbr. (Copepoda Calanoida). Bollettino di Pesca, Piscicoltura e Idrobiologia, New Series 31(1-2):73-86, figs. 1-5.[details] Available for editors [request]
additional sourceSheveleva, N.G., N.F. Logacheva, A.E. Balayan & L.D. Zubareva. (1992). Kolichestvennyye aspekty pitaniya baykal'skoy epishury. [Quantitative aspects of the Baikal Epischura nutrition.]. <em>Gidrobiologicheskii Zhurnal.</em> 28(4):19-23.[details] Available for editors [request]
additional sourceAyukai, T. (1987). Feeding by the planktonic calanoid copepod Acartia clausi (Giesbrecht) on natural suspended particulate matter of varying quantity and quality (JEM 00829). Journal of Experimental Marine Biology and Ecology 106(2):137-150.[details] Available for editors [request]
additional sourceAyukai, T. (1987). Discriminate feeding of the calanoid copepod Acartia clausi in mixtures of phytoplankton and innert particles. Marine Biology, Berlin 94(4):579-587, figs. 1-3, tabs. 1-7. (v.1987)[details] Available for editors [request]
additional sourceAyukai, T. (1987). Predation by Acartia clausi (Copepoda: Calanoida) on two species of tintinnids. Marine Microbial Food Webs 2(1):45-52, figs. (French summary).[details] Available for editors [request]
additional sourceBarthélémy, R.M. (1999). Functional morphology and taxonomic relevance of the female genital structures in Acartiidae (Copepoda: Calanoida). <em>Journal of the Marine Biological Association of the United Kingdom, Cambridge, U.K.</em> 79(5):857-870. (x.1999)., available online athttps://doi.org/10.1017/S0025315499001022[details] Available for editors [request]
additional sourceChristou, E.D. & G.C. Verriopoulos. (1993). Analysis of the biological cycle of Acartia clausi (Copepoda) in a meso-oligotrophic coastal area of the eastern Mediterranean Sea using time-series analysis. <em>Marine Biology, Berlin.</em> 115(4):643-651, figs. 1-7, tabs. 1-4.[details] Available for editors [request]
additional sourceBrezeanu, G. & L. Elian. (1958). O infestare masivá cu Microniscus a copepodului Acartia clausi (Giesbrecht) în apele romînesti ale Marii Negre. [Massive infestation of the copepod Acartia clausi (Giesbrecht) with Microniscus in the Romanian waters of the Black Sea.]. <em>Comunicarle Academiei Republicii Populare Romine.</em> 8(11):1177-1182, figs. 1-2.[details]
additional sourceButtino, I. (1994). The effect of low concentrations of phenol and ammonia on egg production rates, fecal pellet production and egg viability of the calanoid copepod Acartia clausi. Marine Biology, Berlin 119(4):629-634, figs 1-4, tabs 1-2.[details] Available for editors [request]
additional sourceCarrillo, B.G., C.B. Miller & P.H. Wiebe. (1974). Failure of interbreeding between Atlantic and Pacific populations of the marine calanoid copepod Acartia clausi Giesbrecht. <em>Limnology and Oceanography.</em> 19(3): 452-458.[details] Available for editors [request]
additional sourceCervelli, M., B. Battaglia, P.M. Bisol, A. Comaschi Scaramuzza & F. Meneghetti. (1995). Genetic differentiation in the genus Acartia from the Lagoon of Venice. Vie et Milieu 45(2):117-122.[details] Available for editors [request]
additional sourceCervetto, G. (1996). Comparaison de la répartition spatio temporelle et de l'écophysiologie de deux espèces de copépodes calano des congeneriques (Acartia tonsa et Acartia clausi) en milieu cotier et lagunaire (Golf de Fos, Etang de Berre). [Comparison of the spatio-temporal distribution and ecophysiology of two species of congeneric calano copepods (Acartia tonsa and Acartia clausi) in coastal and lagoon environments (Golf de Fos, Etang de Berre).]. <em>Ph.D. Dissertation, Université d'Aix - Marseille II, Marseilles, France.</em> 225 pp.[details]
additional sourceChiba, T. (1956). Studies on the development and the systematics of Copepoda. Journal of the Shimonoseki College of Fisheries 6(1):1-90. (xi-1956). (In Japanese, English summary.)[details] Available for editors [request]
additional sourceChristou, E.D. & G.C. Verriopoulos. (1993). Length, weight and condition factor of Acartia clausi (Copepoda) in the eastern Mediterranean. Journal of the Marine Biological Association of the United Kingdom 73(2):343-353.[details] Available for editors [request]
additional sourceCorkett, C.J. (1968). La reproduction en laboratoire des Copépodes marins Acartia clausiGiesbrecht et Idya furcata (Baird). [Laboratory reproduction of the marine copepods Acartia clausiGiesbrecht and Idya furcata (Baird).]. <em>Pelagos.</em> 10:77-90, figs. 1-4.[details] Available for editors [request]
additional sourceDurbin, E.G. & A.G. Durbin. (1978). Length and weight relationship of Acartia clausi from Narragansett Bay, R.I. Limnology and Oceanography 23(5):958-969, figs. 1-8, tabs. 1-5.[details] Available for editors [request]
additional sourceDexter, B.L. (1984). Developmental grazing capabilities of Pseudocalanus sp. and Acartia clausi (C I to adult). Ph.D. Thesis, College of Oceanography, Oregon State University, Corvallis 166pp.[details] Available for editors [request]
additional sourceDonaghay, P.L. & L.F. Small. (1979). Food selection capabilities of the estuarine copepod Acartia clausi. Marine Biology, Berlin 52(2):137-146, figs. 1-3, tabs. 1-4. (21-v-1979)[details] Available for editors [request]
additional sourceDonaghay, P.L. & L.F. Small. (1979). Long-term food modification by Acartia clausi: a preliminary view. Marine Biology, Berlin 52(2):129-136, figs. 1-5. (21-v-1979)[details] Available for editors [request]
additional sourceDutz, J. (1998). Repression of fecundity in the neritid copepod Acartia clausi exposed to the toxic dinoflagellate Alexandrium lusitanicum: Relationship between feeding and egg production. Marine Ecology Progress Series 175:97-107. (17.xii.1998)[details] Available for editors [request]
additional sourceEsterly, C.O. (1928). The periodic occurrence of Copepoda in the marine plankton of two successive years at La Jolla, California. Bulletin of the Scripps Institution of Oceanography, Technical Series 1:247-345, figs. 1-19. (30-iii-1928)[details] Available for editors [request]
additional sourceGismervik, I. & T. Andersen. (1997). Prey switching by Acartia clausi; experimental evidence and implications of intraguild predation assessed by a model. Marine Ecology Progress Series 1997:247-259.[details] Available for editors [request]
additional sourceFurlan, L., M. Specchi & S. Fonda Umani. (1984). Osservazioni sulla popolazione di Acartia clausi del Golfo di Trieste. [Observations on the population of Acartia clausi in the Gulf of Trieste.]. <em>Bollettino di Zoologia.</em> 51, suppl.:49. (14-vi-1984) (Abstract).[details]
additional sourceGaudy, R. (1971). Étude expérimentale de la ponte chez trois espèces de Copépodes pélagiques (Centropages typicus, Acartia clausi et Temora stylifera). [Experimental study of spawning in three species of pelagic copepods (Centropages typicus, Acartia clausi and Temora stylifera).]. <em>Marine Biology, Berlin.</em> 9(1): 65-70, fig. 1, tab. 1.[details] Available for editors [request]
additional sourceIntegrated Taxonomic Information System (ITIS). , available online athttp://www.itis.gov[details]
additional sourceGill, C.W. (1987). Recording the beat pattern of the second antennae of calanoid copepods, with a microimpedance technique. Hydrobiologia 148(1):73-78.[details] Available for editors [request]
additional sourceKerambrun, P. (1987). Composition chimique élémentaire (C, H, N) et équivalent énergie d'Acartia clausi (Crustacea:Copepoda), espèce importante dans la bioénergétique des écosystèmes côtiers de Méditerranée Nord-occidentale. [Elemental chemical composition (C, H, N) and energy equivalent of Acartia clausi (Crustacea:Copepoda), an important species in the bioenergetics of coastal ecosystems of the Northwestern Mediterranean.]. <em>Marine Biology, Berlin.</em> 95(1):115-121, tab. 1. (English summary.).[details] Available for editors [request]
additional sourceHay, S.J., G.T. Evans & J.C. Gamble. (1988). Birth, growth and death rate for enclosed populations of calanoid copepods. Journal of Plankton Research 10(3):431-454.[details] Available for editors [request]
additional sourceKoga, F. (1984). Morphology, ecology, classification and specialization of copepods nauplius. Bulletin of the Nansei Regional Fisheries Research Laboratory 16:95-229, figs. 1-62, tabs. 1-3. (1-1984, Japanese with English summary).[details] Available for editors [request]
additional sourceKapiris, K., H. Miliou & M. Moraitou-Apostolopoulou. (1997). Effects of formaldehyde preservation on biometrical characters, biomass and biochemical composition of Acartia clausi (Copepoda, Calanoida). <em>Helgoländer Meeresuntersuchungen.</em> 51(1):95-106.[details] Available for editors [request]
additional sourceJohnson, W.H. (1938). The effect of light on the vertical movements of Acartia clausi (Giesbrecht). Biological Bulletin, Woods Hole 75(1):106-118, figs. 1-6. (viii-1938)[details] Available for editors [request]
additional sourceIanora, A. & B. Scotto di Carlo. (1988). Observations on egg production rates and seasonal changes in the internal morphology of Mediterranean populations of Acartia clausi and Centropages typicus. <em>In: Boxshall, G.A. & H.K. Schminke (eds.). Biology of Copepods. Proceedings of the Third International Conference on Copepoda. Developments in Hydrobiolology 47, Kluwer Academic Publishers, Dordrecht, Hydrobiologia.</em> 47(167/168):247-253, figs. 1-5.[details] Available for editors [request]
additional sourceIanora, A. & I. Buttino. (1990). Seasonal cycles in population abundances and egg production rates in the planktonic copepods Centropages typicus and Acartia clausi. Journal of Plankton Research 12(3):473-481.[details] Available for editors [request]
additional sourceIwasaki, H., H. Katoh & T. Fujiyama. (1977). Cultivation of marine copepod, Acartia clausi Giesbrecht - I. Factors affecting the generation time and egg production. Bulletin of the Plankton Society of Japan 24(1):55-61, fig. 1, tabs. 1-7. (vi-1977, Japanese with English summary).[details] Available for editors [request]
additional sourceIwasaki, H., K. Endo, J. Ishii & S. Nishihara. (1984). Cultivation of marine copepod, Acartia clausi Giesbrecht - II. Fundamental experiments on mass culture. Bulletin of the Faculty of Fisheries, Mie University 11:75-93, figs. 1-16, tabs. 1-3. (1-x-1984, Japanese with English summary).[details] Available for editors [request]
additional sourceLandry, M.R. (1975). Dark inhibition of egg hatching of the marine copepod Acartia clausi Giesbr. Journal of Experimental Marine Biology and Ecology 20(1):43-47, figs. 1-2. (iii-1975)[details] Available for editors [request]
additional sourceKurashova, E.K. & D.K. Tinekova. (1988). Number, biomass and distribution of Acartia clausi Giesbrecht (Calanoida, Acartiidae) in the northern and middle Caspian. Gidrobiologicheskii Zhurnal 24(2):23-27, figs. (Russian with English summary).[details] Available for editors [request]
additional sourceKang, Y.S. & S.S. Lee. (1990). Taxonomic re-examination and distribution of copepods known as Acartia clausi in the coastal waters of Korea. Bulletin of the Korean Fisheries Society 23(5):378-384.[details] Available for editors [request]
additional sourceKayama, M. &. M. Mankura. (1980). Hydrolysis and synthesis of wax ester by calanoid copepod, Acartia clausi, preparation. Bulletin of the Japanese Society of Scientific Fisheries (= Nippon Suisan Gakkaishi) 46(12):1501-1505, fig. 1, tabs. 1-3. (xii-1980, Japanese summary separate, unpaginated).[details]
additional sourceKlein Breteler, W.C.M. (1982). The life stages of four pelagic copepods (Copepoda: Calanoida), illustrated by a series of photographs. Netherlands Institute for Sea Research (N.I.O.Z.), Publications Series 6:1-32, figs. 1-4, tabs. 1-2.[details] Available for editors [request]
additional sourceKlein Breteler, W.C.M. & N. Schogt. (1994). Development of Acartia clausi (Copepoda, Calanoida) cultured at different conditions of temperature and food. In: Ferrari, F.D. & B.P. Bradley (eds.). Ecology and Morphology of Copepods. Developments in Hydrobiology 102, Hydrobiologia 292/293:469-479, fig.1-4, tab.1-4.[details] Available for editors [request]
additional sourceLandry, M.R. (1975). The relationship between temperature and the development of life stages of the marine copepod Acartia clausi Giesbr. Limnology and Oceanography 20(5):854-857, tab. 1. (ix-1975)[details] Available for editors [request]
additional sourceKouassi, E., M. Pagano, L. Saint Jean, R. Arfi & M. Bouvy. (2001). Vertical migrations and feeding rhythms of Acartia clausi and Pseudodiaptomus hessei (Copepoda: Calanoida) in a tropical lagoon (Ebrie, Cote d'Ivoire). Estuarine, Coastal and Shelf Science 52(6):715-728.[details] Available for editors [request]
additional sourceKovaleva, T.M. (1983). Vliyanie bioticheskikh faktorov na pitanie Acartia clausi Giesbr. i Pseudocalanus elongatus Boeck (Crustacea, Copepoda) v Chornom more. [The influence of biotic factors on feeding of Acartia clausi Giesbr. and Pseudocalanus elongatus Boeck (Crustacea, Copepoda) in the Black Sea.]. <em>Master's Thesis, Institute of the Biology of Southern Seas, Academy of Sciences of the Ukrainian SSR.</em> 214 pp. (Russian.).[details]
additional sourceLakkis, S. (1994). Coexistence and competition within Acartia (Copepoda, Calanoida) congeners from Lebanese coastal water: niche overlap measurements. In: Ferrari, F.D. & B.P. Bradley (eds.). Ecology and Morphology of Copepods. Developments in Hydrobiology 102, Hydrobiologia 292/293:481-490, fig.1-7, tab.1-8.[details] Available for editors [request]
additional sourceMordukhai-Boltovskoy, F.D., ed. (1969). Rakoobraznye. (Crustacea). Opredetel' fauny Chernogo i Azovskogo more, 2. Svobodnozhivushchie bespozvonochnye. [Crustacea. Identification key to the fauna of the Black and Azov Seas, 2. Freeliving invertebrates.]. <em>Institut Biologii Yuzh'nykh Morei, Akademiya Nauk USSR, Naukova Dumka, Kiev.</em> 536 pp. (In Russian.).[details] Available for editors [request]
additional sourceLee, W.Y. & B.J. McAlice. (1979). Seasonal succession and breeding cycles of three species of Acartia (Copepoda: Calanoida) in a Maine estuary. Estuaries 2(4):228-235, figs. 1-7.[details] Available for editors [request]
additional sourceLi, S.J. & J.C. Fang. (1990). Larval stages of marine planktonic copepods of China. China Ocean Press, Beijing 141 pp.[details] Available for editors [request]
additional sourceMuxagata, E.M. & J.A. Williams. (2004). The Mesozooplankton of the Solent-Southampton Water system: a photographic guide. Southampton Oceanography Centre, Southampton, U.K. 103 pp.[details] Available for editors [request]
additional sourcePagano, M. & L. Saint-Jean. (1983). Croissance en poids d'Acartia clausi en Lagune Ebrié (Côte d'Ivoire). [Weight growth of Acartia clausi in the Ebrié Lagoon (Ivory Coast).]. <em>Revue d'Hydrobiologie Tropicale.</em> 16(2):151-163, figs. 1-8, tabs. 1-2. (x-1983, English summary.).[details] Available for editors [request]
additional sourcePagano, M. & L. Saint-Jean. (1989). Biomass and production of the calanoid copepod Acartia clausi in a tropical coastal lagoon: Lagune Ebrié, Ivory Coast. In: Ros, J. (ed.). Topics in Marine Biology. Proceedings of the XXII. European Marine Biology Symposium. Scientia Marina 53(2-3):617-624, figs. 1-8, tabs. 1-5.[details] Available for editors [request]
additional sourcePechen-Finenko, G.A., T.V. Pavlovskaya & L.G. Dubilevich. (1975). Vremya Perevarivaniya Pishchi I Kolichestvennaya Otsenka Vydeleniya Zhidkikj Ekskretov Pri Pitanii Acartia clausi (Giesbr.). [Duration of Digestion and a Qualitative Evaluation of the Excretion of Liquid Substances in Feeding of Acartia clausi (Giesbr.).]. <em>Biologiya Morya, Kiev.</em> 34:71-80, figs. 1-6, tabs. 1-2. (20-viii-1975, Russian).[details] Available for editors [request]
additional sourcePesta, O. (1928). Krebstiere oder Crustacea. I: Ruderfüsser oder Copepoda (1. Calanoida, 2. Cyclopoida) (3. Ordnung) [Crustaceans or Crustacea. I: Copepods (1. Calanoida, 2. Cyclopoida) (3rd order).]. <em>In: Dahl, F. (ed.). Die Tierwelt Deutschlands und der Angrenzenden Meeresteile nach Ihren Merkmalen und nach Ihrer Lebensweise. Fischer, Jena.</em> 9:1-136, figs. 1-115.[details] Available for editors [request]
additional sourceSars, G.O. (1902). Copepoda Calanoida, Parts IX & X, Temoridae, Metridiidae, Heterorhabdidae. <em>An Account of the Crustacea of Norway, with short descriptions and figures of all the species. Bergen Museum.</em> 4: 97-120, pls. 65-80. (look up in IMIS) [details]
additional sourcePopova, E.V. & N.V. Shadrin. (1992). O fenotipicheskoy geterogennosti samok «krupnoy» formy Acartia clausi (Crustacea, Copepoda, Calanoida) v Sevastopol'skoy bukhte (Chernoye more). [On the phenotypic heterogeneity of females of the 'large' form of Acartia clausi (Crustacea, Copepoda, Calanoida) in the Sevastopol Bay (Black Sea).]. <em>Zoologicheskii Zhurnal.</em> 71(10):139-141. Russian.[details] Available for editors [request]
additional sourcePorumb, F.I. (1969). Contributions à l'étude de la réproduction, du développement et de la répartition des Copépodes pélagiques dans la zone néritique du littoral roumain de la mer Noire (Acartia clausi Giesbr. et Centropages kröyeri Giesbr.). <em>Travaux du Museum National d'Histoire Naturelle Grigore Antipa.</em> 8(1):243-250, fig. 1, tabs. 1-2.[details] Available for editors [request]
additional sourceProfant, W. (1981). Étude au microscope électronique à balayage du rôle nutritionnel des appendices de deux Copépodes pélagiques: Acartia clausi Giesbrecht et Temora longicornis O.F. Müller. [Scanning electron microscope study of the nutritional role of the appendages of two pelagic copepods: Acartia clausi Giesbrecht and Temora longicornis O.F. Müller.]. <em>Rapports et Procès-Verbaux des Réunions de la Commission Internationale pour l'Exploration Scientifique de la Mer Mediterranée, Monaco.</em> 27(7): 163-164. (26-x-1981, English summary).[details]
additional sourceRoche, K.F. (1987). Post-encounter vulnerability of some rotifer prey types to predation by the copepod Acanthocyclops robustus. Hydrobiologia, The Hague 147:229-233.[details] Available for editors [request]
additional sourceRodriguez, V., J. Rodriguez & F.X. Niell. (1985). Coexistencia de especies congenéricas de Acartia (Copepoda) en sistemas alterados: una aproximación empleando la teoria del nicho. [Coexistence of congeneric species of Acartia (Copepoda) in altered systems: an approach using niche theory.]. <em>Investigación Pesquera, Barcelona.</em> 49(1):15-34, figs. 1-7, tabs. 1-7. (iii-1985).[details] Available for editors [request]
additional sourceSaiz, E. & M. Alcaraz. (1992). Free-swimming behaviour of Acartia clausi (Copepoda): Calanoida) under turbulent water movement. Marine Ecology Progress Series 80(2-3):229-236.[details] Available for editors [request]
additional sourceSazhina, L.I. (1985). Naupliusy massovykh vidov pelagickeskikh kopepod Mirovogo okeana. [Nauplii of mass species pelagic copeopds of the world ocean.]. <em>Naukova Dumka, Kiev.</em> 238 pp.[details] Available for editors [request]
additional sourceScott, T. (1894). Report on Entomostraca from the Gulf of Guinea, collected by John Rattray, B.Sc. <em>Transactions of the Linnean Society of London, Series 2, Zoology.</em> 6(1):1-161, pls. 1-15., available online athttps://www.biodiversitylibrary.org/page/8598493[details]
additional sourceSekiguchi, H. (1978). Acartia clausi (Copepoda: Calanoida) in the guts of planktivorous sandeels. Bulletin of the Japanese Society of Scientific Fisheries (= Nippon Suisan Gakkaishi) 44(6):695. (vi-1978)[details] Available for editors [request]
additional sourceSeregin, S.A. & S. Piontkovski. (1998). Behavior of Acartia clausi Giesbrecht (Copepoda) in a salinity gradient. Oebalia 24:145-159.[details] Available for editors [request]
additional sourceShadrin, N.V. & E.V. Popova. (1994). Variability of Acartia clausi in the Black Sea. In: Ferrari, F.D. & B.P. Bradley (eds.). Ecology and Morphology of Copepods. Developments in Hydrobiology 102, Hydrobiologia 292/293:179-184, fig.1, tab.1-4.[details] Available for editors [request]
additional sourceSullivan, B.K., C.B. Miller, W.T. Peterson & A.H. Soeldner. (1975). A scanning electron microscope study of the mandibular morphology of boreal copepods. <em>Marine Biology, Berlin.</em> 30(2):175-182, figs. 1-7. (23-v-1975).[details] Available for editors [request]
additional sourceTirelli, V. & P. Mayzaud. (1998). Gut pigment destruction by the copepod Acartia clausi. Journal of Plankton Research 20(10):1953-1961. (x.1998)[details] Available for editors [request]
additional sourceVerriopoulos, G. (1992). Effects of sublethal concentrations of zinc, chromium and copper on the marine copepods Tisbe holothuriae and Acartia clausi. In: Gabrielides, G.P. (ed.). Proceedings of the FAO/UNEP/IOC Workshop on the Biological Effects of Pollutants on Marine Organisms, Malta, 10-14 Sept 1991, UNEP, Athens, Greece. MAP Technical Report Series 69:265-275.[details]
additional sourceUeda, H. (1986). Taxonomic reexamination and geographic distribution of copepods known as Acartia clausi in Japanese coastal and inlet waters. Journal of the Oceanographical Society of Japan 42(2):134-138.[details] Available for editors [request]
additional sourceUye, S.I. (1980). Development of neritic copepods Acartia clausi and A. steueri. II. Isochronal larval development at various temperatures. Bulletin of the Plankton Society of Japan 27(1):11-18. (vi-1980)[details] Available for editors [request]
additional sourceUye, S.I. (1980). Development of neritic copepods Acartia clausi and A. steueri. I. Some environmental factors affecting egg development and the nature of resting eggs. Bulletin of the Plankton Society of Japan 27(1):1-9, figs. 1-5. (vi-1980)[details] Available for editors [request]
additional sourceUye, S.I. (1981). Fecundity studies of neritic calanoid copepods Acartia clausi Giesbrecht and A. steueri Smirnov: a simple empirical model of daily egg production. Journal of Experimental Marine Biology and Ecology 50(2-3):255-271, figs. 1-13. (16-iii-1981)[details] Available for editors [request]
additional sourceUye, S.I. (1981). Population dynamics and production of Acartia clausi (Copepoda: Calanoida) in inlet waters. Thesis Ph.D. of Agriculture, Tohoku University, Tohoku, Japan. [details]
additional sourceWiadnyana, N.N. & F. Rassoulzadegan. (1989). Selective feeding of Acartia clausi and Centropages typicus on microzooplankton. Marine Ecology Progress Series 53(1):37-45.[details] Available for editors [request]
additional sourceWroblewski, J.S. (1980). A simulation of the distribution of Acartia clausi during Oregon upwelling, August, 1973. Journal of Plankton Research 2(1):43-68, figs. 1-14, tabs. 1-2, appendix. (ii-1980)[details] Available for editors [request]
additional sourceAyukai, T. (1986). Feeding elasticity of a planktonic marine copepod Acartia clausi (Copepoda : Calanoida). Ph.D. Thesis, Tohoku University, Sendai, Japan, 121 pp.[details]
additional sourceVerriopoulos, G., P. Kerambrun & M. Thessalou-Legaki. (1992). Effects of pollution on the physiology of Acartia clausi and total zooplankton from Saronikos gulf. Rapports de la Commission Internationale de la Mer Méditerranée, Monaco 33:188.[details] Available for editors [request]
additional sourceAnnabi-Trabelsi, N., M.N. Daly-Yahia, G. Belmonte, L. Aleya & H. Ayadi Neila, A.T., D.Y.M. Nejib, B. Genuario, A. Lotfi & A. Habib. (2012). Impacts of very warm temperature on egg production rates of three Acartiidae (Crustacea, Copepoda) in a Northern African lagoon. <em>Journal of Thermal Biology.</em> 37(6):445-453., available online athttps://doi.org/10.1016/j.jtherbio.2012.03.003[details] Available for editors [request]
additional sourceWilson, C.B. (1932). The copepods of the Woods Hole region, Massachusetts. <em>Bulletin of the United States National Museum.</em> 158:1-635, figs. 1-316, pls. 1-41.[details] Available for editors [request]
additional sourceLee, S.S. (1986). Morphological studies of developmental copepodid stages of calanoids in the southern coastal waters of Korea. <em>Bulletin of Fisheries Research & Development Agency.</em> 37:45-150.[details] Available for editors [request]
additional sourceBelmonte, G. (2021). Acartiidae Sars G.O, 1903. <em>International Council for the Exploration of the Sea Conseil International pour l'Exploration de la Mer, ICES Identification Leaflets for Plankton.</em> Leaflet No. 194: 1-29., available online athttps://doi.org/10.17895/ices.pub.7680[details] Available for editors [request]
Present Present in aphia/obis/gbif/idigbio Inaccurate Introduced: alien Containing type locality
Unreviewed
Distribution Gulf of St. Lawrence (unspecified region), upstream and downstream part of middle St. Lawrence estuary, lower St. Lawrence estuary, Prince Edward Island (from the northern tip of Miscou Island, N.B. to Cape Breton Island south of Cheticamp, including the Northumberland Strait and Georges Bay to the Canso Strait causeway), upper Laurentian Channel (bathyal zone off Sept- Iles), middle North Shore (from Sept- Iles to Cape Whittle, including the Mingan Islands), Laurentian Channel (bathyal zone) to the northeast of Anticosti Island (=Jacques Cartier Strait), northern slope of Anticosti Island; western slope of Newfoundland, including the southern part of the Strait of Belle Isle but excluding the upper 50m in the area southwest of Newfoundland [details] Habitat upper and glacial epipelagic regions of the Gulf and estuary [details]