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Original Articles

Comparative effects of inducers on metamorphosis of the Japanese oyster Crassostrea gigas and the great scallop Pecten maximus

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Pages 189-203 | Received 18 Jul 1996, Accepted 29 Dec 1996, Published online: 09 Jan 2009

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Tim Young, Andrea C. Alfaro, Clara Sánchez-Lazo & John Robertson. (2015) Putative involvement of adrenergic receptors in regulation of mussel (Perna canaliculus) larval settlement. Marine Biology Research 11:6, pages 655-665.
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Articles from other publishers (16)

Réjean Tremblay, Gyda Christophersen, Jean-Bruno Nadalini, Iften Redjah, Thorolf Magnesen & Sissel Andersen. (2020) Improving scallop (Pecten maximus and Placopecten magellanicus) spat production by initial larvae size and hydrodynamic cues used in nursery system. Aquaculture 516, pages 734650.
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Lars-Erik Petersen, Matthias Y. Kellermann & Peter J. Schupp. 2020. YOUMARES 9 - The Oceans: Our Research, Our Future. YOUMARES 9 - The Oceans: Our Research, Our Future 159 180 .
Susanne Vogeler, Gary H. Wikfors, Xiaoxu Li, David Veilleux, Penny Miller-Ezzy & Alyssa Joyce. (2019) Larval metamorphosis in four bivalve species in response to NMDA receptor ligands: The NMDA receptor pathway as potential regulator of bivalve transition to spat. Aquaculture 511, pages 634173.
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Mareen Moeller, Samuel Nietzer & Peter J. Schupp. (2019) Neuroactive compounds induce larval settlement in the scleractinian coral Leptastrea purpurea. Scientific Reports 9:1.
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A. Joyce & S. Vogeler. (2018) Molluscan bivalve settlement and metamorphosis: Neuroendocrine inducers and morphogenetic responses. Aquaculture 487, pages 64-82.
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Thomas H. Galley, Andy R. Beaumont, Lewis Le Vay & Jonathan W. King. (2017) Influence of exogenous chemicals on larval development and survival of the king scallop Pecten maximus (L.). Aquaculture 474, pages 48-56.
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Renato Pereira, Bernardo da & Daniela Sudatti. 2016. Marine Macrophytes as Foundation Species. Marine Macrophytes as Foundation Species 26 36 .
Simon M. Cragg. 2016. Scallops - Biology, Ecology, Aquaculture, and Fisheries. Scallops - Biology, Ecology, Aquaculture, and Fisheries 31 83 .
P. Kamermans, T. Galley, P. Boudry, J. Fuentes, H. McCombie, F.M. Batista, A. Blanco, L. Dominguez, F. Cornette, L. Pincot & A. Beaumont. 2013. Advances in Aquaculture Hatchery Technology. Advances in Aquaculture Hatchery Technology 339 373 .
C.P. Teh, Y. Zulfigar & S.H. Tan. (2012) Epinephrine and l-DOPA promote larval settlement and metamorphosis of the tropical oyster, Crassostrea iredalei (Faustino, 1932): An oyster hatchery perspective. Aquaculture 338-341, pages 260-263.
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S. AndersenG. ChristophersenT. Magnesen. (2011) Spat production of the great scallop ( Pecten maximus ): a roller coaster 1 This review is part of a virtual symposium on current topics in aquaculture of marine fish and shellfish. . Canadian Journal of Zoology 89:7, pages 579-598.
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Simon M. Cragg. 2006. Scallops: Biology, Ecology and Aquaculture. Scallops: Biology, Ecology and Aquaculture 45 122 .
Alexander Railkin, Tatiana Ganf & Oleg Manylov. 2003. Marine Biofouling. Marine Biofouling 235 280 .
M Le Pennec, A Paugam & G Le Pennec. (2003) The pelagic life of the pectinid Pecten maximus—a review. ICES Journal of Marine Science 60:2, pages 211-233.
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Laurence Nicolas & René Robert. (2001) The effect of food supply on metamorphosis and post-larval development in hatchery-reared Pecten maximus. Aquaculture 192:2-4, pages 347-359.
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René Robert, Laurence Nicolas, Christine Moisan & Georges Barbier. (1999) Morphological and biochemical characterizations of the great scallop Pecten maximus metamorphosis. Comptes Rendus de l'Académie des Sciences - Series III - Sciences de la Vie 322:10, pages 847-853.
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