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Original Articles

Life strategies, energetics and growth characteristics of Calanoides carinatus (Copepoda) in the Angola-Benguela frontal region

Pages 641-651 | Published online: 08 Jan 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Janet M. Bradford-Grieve, Leocadio Blanco-Bercial & Irina Prusova. (2017) Calanoides natalis Brady, 1914 (Copepoda: Calanoida: Calanidae): identity and distribution in relation to coastal oceanography of the eastern Atlantic and western Indian Oceans. Journal of Natural History 51:13-14, pages 807-836.
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JanetM. Bradford-Grieve & ShaneT. Ahyong. (2010) Phylogenetic relationships among genera in the Calanidae (Crustacea: Copepoda) based on morphology. Journal of Natural History 44:5-6, pages 279-299.
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Articles from other publishers (30)

Jérôme Pinti, Sigrún H. Jónasdóttir, Nicholas R. Record & André W. Visser. (2023) The global contribution of seasonally migrating copepods to the biological carbon pump. Limnology and Oceanography 68:5, pages 1147-1160.
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Maya Bode-Dalby, Randi Würth, Lívia Dias Fernandes de Oliveira, Tarron Lamont, Hans M Verheye, Anna Schukat, Wilhelm Hagen & Holger Auel. (2023) Small is beautiful: the important role of small copepods in carbon budgets of the southern Benguela upwelling system. Journal of Plankton Research 45:1, pages 110-128.
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Jana C. Massing, Anna Schukat, Holger Auel, Dominik Auch, Leila Kittu, Elda Luz Pinedo Arteaga, Jonathan Correa Acosta & Wilhelm Hagen. (2022) Toward a Solution of the “Peruvian Puzzle”: Pelagic Food-Web Structure and Trophic Interactions in the Northern Humboldt Current Upwelling System Off Peru. Frontiers in Marine Science 8.
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Eleonora Puccinelli, Fany Sardenne, Laure Pecquerie, Sarah E. Fawcett, Eric Machu & Philippe Soudant. (2021) Omega-3 Pathways in Upwelling Systems: The Link to Nitrogen Supply. Frontiers in Marine Science 8.
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Anna Schukat, Wilhelm Hagen, Sabrina Dorschner, Jonathan Correa Acosta, Elda Luz Pinedo Arteaga, Patricia Ayón & Holger Auel. (2021) Zooplankton ecological traits maximize the trophic transfer efficiency of the Humboldt Current upwelling system. Progress in Oceanography 193, pages 102551.
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Stefania Cohen, Marina V. Diaz & Alcira O. Díaz. (2020) Development of the digestive system of Argentine hake, Merluccius hubbsi , larvae . Journal of Morphology 281:6, pages 578-590.
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Valeria C. D’Agostino, Mónica S. Hoffmeyer & Mariana Degrati. (2020) Morphology of the mandibular gnathobases of the copepods Calanus australis and Calanoides carinatus: Evidence of omnivory. Zoologischer Anzeiger 286, pages 64-71.
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Fernández de Puelles, Gazá, Cabanellas-Reboredo, Santandreu, Irigoien, González-Gordillo & Duarte. (2019) Zooplankton Abundance and Diversity in the Tropical and Subtropical Ocean. Diversity 11:11, pages 203.
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Lena Teuber, Wilhelm Hagen, Maya Bode & Holger Auel. (2019) Who is who in the tropical Atlantic? Functional traits, ecophysiological adaptations and life strategies in tropical calanoid copepods. Progress in Oceanography 171, pages 128-135.
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Nicholas R. Record, Rubao Ji, Frédéric Maps, Øystein Varpe, Jeffrey A. Runge, Colleen M. Petrik & David Johns. (2018) Copepod diapause and the biogeography of the marine lipidscape. Journal of Biogeography 45:10, pages 2238-2251.
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Cristina de Oliveira Dias, Adriana Valente de Araujo & Sérgio Luiz Costa Bonecker. (2018) Vertical distribution and structure of copepod (Arthropoda: Copepoda) assemblages in two different seasons down to 1,200 m in the tropical Southwestern Atlantic. Zoologia 35, pages 1-11.
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Maya Bode, Wilhelm Hagen, Astrid Cornils, Patricia Kaiser & Holger Auel. (2018) Copepod distribution and biodiversity patterns from the surface to the deep sea along a latitudinal transect in the eastern Atlantic Ocean (24°N to 21°S). Progress in Oceanography 161, pages 66-77.
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Anneke Denda, Benjamin Stefanowitsch & Bernd Christiansen. (2017) From the epipelagic zone to the abyss: Trophic structure at two seamounts in the subtropical and tropical Eastern Atlantic - Part I zooplankton and micronekton. Deep Sea Research Part I: Oceanographic Research Papers 130, pages 63-77.
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F. Höring, A. Cornils, H. Auel, M. Bode & C. Held. (2017) Population genetic structure of Calanoides natalis (Copepoda, Calanoida) in the eastern Atlantic Ocean and Benguela upwelling system. Journal of Plankton Research 39:4, pages 618-630.
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Maya Bode, Wilhelm Hagen, Anna Schukat, Lena Teuber, Debany Fonseca-Batista, Frank Dehairs & Holger Auel. (2015) Feeding strategies of tropical and subtropical calanoid copepods throughout the eastern Atlantic Ocean – Latitudinal and bathymetric aspects. Progress in Oceanography 138, pages 268-282.
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S. J. Geist, A. Kunzmann, H. M. Verheye, A. Eggert, A. Schukat & W. Ekau. (2015) Distribution, feeding behaviour, and condition of Cape horse mackerel early life stages, Trachurus capensis, under different environmental conditions in the northern Benguela upwelling ecosystem. ICES Journal of Marine Science 72:2, pages 543-557.
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B. Temperoni, M.D. Vi?as, P. Martos & M. Marrari. (2014) Spatial patterns of copepod biodiversity in relation to a tidal front system in the main spawning and nursery area of the Argentine hake Merluccius hubbsi. Journal of Marine Systems 139, pages 433-445.
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Lena Teuber, Anna Schukat, Wilhelm Hagen & Holger Auel. (2014) Trophic interactions and life strategies of epi- to bathypelagic calanoid copepods in the tropical Atlantic Ocean. Journal of Plankton Research 36:4, pages 1109-1123.
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Anna Schukat, Holger Auel, Lena Teuber, Niko Lahajnar & Wilhelm Hagen. (2014) Complex trophic interactions of calanoid copepods in the Benguela upwelling system. Journal of Sea Research 85, pages 186-196.
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B. Temperoni & M.D. Vi?as. (2013) Food and feeding of Argentine hake (Merluccius hubbsi) larvae in the Patagonian nursery ground. Fisheries Research 148, pages 47-55.
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Maya Bode, Anna Schukat, Wilhelm Hagen & Holger Auel. (2013) Predicting metabolic rates of calanoid copepods. Journal of Experimental Marine Biology and Ecology 444, pages 1-7.
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Anna Schukat, Lena Teuber, Wilhelm Hagen, Norbert Wasmund & Holger Auel. (2013) Energetics and carbon budgets of dominant calanoid copepods in the northern Benguela upwelling system. Journal of Experimental Marine Biology and Ecology 442, pages 1-9.
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W. Ekau, H. Auel, H.-O. Pörtner & D. Gilbert. (2010) Impacts of hypoxia on the structure and processes in pelagic communities (zooplankton, macro-invertebrates and fish). Biogeosciences 7:5, pages 1669-1699.
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Holger Auel & Werner Ekau. (2009) Distribution and respiration of the high-latitude pelagic amphipod Themisto gaudichaudi in the Benguela Current in relation to upwelling intensity. Progress in Oceanography 83:1-4, pages 237-241.
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Gerhard Kattner & Wilhelm Hagen. 2009. Lipids in Aquatic Ecosystems. Lipids in Aquatic Ecosystems 257 280 .
S. B. Schnack-Schiel, B. Niehoff, W. Hagen, R. Bottger-Schnack, A. Cornils, M. M. Dowidar, A. Pasternak, N. Stambler, D. Stubing & C. Richter. (2008) Population dynamics and life strategies of Rhincalanus nasutus (Copepoda) at the onset of the spring bloom in the Gulf of Aqaba (Red Sea). Journal of Plankton Research 30:6, pages 655-672.
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Holger Auel & Hans M. Verheye. (2007) Hypoxia tolerance in the copepod Calanoides carinatus and the effect of an intermediate oxygen minimum layer on copepod vertical distribution in the northern Benguela Current upwelling system and the Angola–Benguela Front. Journal of Experimental Marine Biology and Ecology 352:1, pages 234-243.
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Marina E. Sabatini, Fernando C. Ramírez & Janet Bradford-Grieve. (2007) Redescription of Calanoides carinatus (Krøyer) (Copepoda:Calanoida:Calanidae) with a discussion on the status of related species. Invertebrate Systematics 21:4, pages 341.
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Sara Ceballos & Florentina Álvarez-Marqués. (2006) Seasonal dynamics of reproductive parameters of the calanoid copepods Calanus helgolandicus and Calanoides carinatus in the Cantabrian Sea (SW Bay of Biscay). Progress in Oceanography 70:1, pages 1-26.
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Larry Hutchings, Hans M. Verheye, Jenny A. Huggett, Hervé Demarcq, Rudi Cloete, Ray G. Barlow, Deon Louw & Antonio da Silva. 2006. Benguela - Predicting a Large Marine Ecosystem. Benguela - Predicting a Large Marine Ecosystem 91 124 .

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