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Original Articles

Repetitive testing of TBTO, sea‐nine 211 and farnesol using Balanus amphitrite (Darwin) cypris larvae: Variability in larval sensitivity

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Pages 133-147 | Accepted 11 Feb 1997, Published online: 09 Jan 2009

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Read on this site (9)

Luigi Petrone, Serina Siew Chen Lee, Serena Lay Ming Teo & William R. Birch. (2013) A novel geometry for a laboratory-based larval settlement assay. Biofouling 29:2, pages 213-221.
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JocelynA. Romano, Daniel Rittschof, PatriciaD. McClellan-Green & EricR. Holm. (2010) Variation in toxicity of copper pyrithione among populations and families of the barnacle, Balanus amphitrite . Biofouling 26:3, pages 341-347.
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Kuan Chun Chaw & WilliamR. Birch. (2009) Quantifying the exploratory behaviour of Amphibalanus amphitrite cyprids. Biofouling 25:7, pages 611-619.
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In Yee Phang, Kuan Chun Chaw, Sue Sok Hui Choo, Ryan Kok Chuan Kang, Serina Siew Chen Lee, WilliamR. Birch, Serena Lay Ming Teo & G. Julius Vancso. (2009) Marine biofouling field tests, settlement assay and footprint micromorphology of cyprid larvae of Balanus amphitrite on model surfaces. Biofouling 25:2, pages 139-147.
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Martin Sjögren, Mia Dahlström, Erik Hedner, PerR. Jonsson, Anders Vik, Lise-Lotte Gundersen & Lars Bohlin. (2008) Antifouling activity of the sponge metabolite agelasine D and synthesised analogs on Balanus improvisus . Biofouling 24:4, pages 251-258.
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Dan Rittschof, Chien-Houng Lai, Lai-Mun Kok & Serena Lay-Ming Teo. (2003) Pharmaceuticals as antifoulants: Concept and principles. Biofouling 19:sup1, pages 207-212.
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Mia Dahlström, LenaGE Mårtensson, PerR Jonsson, Thomas Arnebrant & Hans Elwing. (2000) Surface active adrenoceptor compounds prevent the settlement of cyprid larvae of Balanus improvisus . Biofouling 16:2-4, pages 191-203.
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Articles from other publishers (16)

Karin Steffen, Quentin Laborde, Sunithi Gunasekera, Colton D. Payne, K. Johan Rosengren, Ana Riesgo, Ulf Göransson & Paco Cárdenas. (2021) Barrettides: A Peptide Family Specifically Produced by the Deep-Sea Sponge Geodia barretti . Journal of Natural Products 84:12, pages 3138-3146.
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Joana Figueiredo, Susana Loureiro & Roberto Martins. (2020) Hazard of novel anti-fouling nanomaterials and biocides DCOIT and silver to marine organisms. Environmental Science: Nano 7:6, pages 1670-1680.
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Hye-Jin Eom, Md. Niamul Haque, Sang-Eun Nam, Do-Hee Lee & Jae-Sung Rhee. (2019) Effects of sublethal concentrations of the antifouling biocide Sea-Nine on biochemical parameters of the marine polychaete Perinereis aibuhitensis. Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology 222, pages 125-134.
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Ida Wendt, Thomas Backhaus, Hans Blanck & Åsa Arrhenius. (2016) The toxicity of the three antifouling biocides DCOIT, TPBP and medetomidine to the marine pelagic copepod Acartia tonsa. Ecotoxicology 25:5, pages 871-879.
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Tao He, Dominik Jańczewski, Satyasankar Jana, Anbanandam Parthiban, Shifeng Guo, Xiaoying Zhu, Serina Siew-Chen Lee, Fernando Jose Parra-Velandia, Serena Lay-Ming Teo & G. Julius Vancso. (2016) Efficient and robust coatings using poly(2-methyl-2-oxazoline) and its copolymers for marine and bacterial fouling prevention. Journal of Polymer Science Part A: Polymer Chemistry 54:2, pages 275-283.
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Xiaoying Zhu, Dominik Jańczewski, Shifeng Guo, Serina Siew Chen Lee, Fernando Jose Parra Velandia, Serena Lay-Ming Teo, Tao He, Sreenivasa Reddy Puniredd & G. Julius Vancso. (2014) Polyion Multilayers with Precise Surface Charge Control for Antifouling. ACS Applied Materials & Interfaces 7:1, pages 852-861.
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Agata M. Brzozowska, Fernando J. Parra-Velandia, Robert Quintana, Zhu Xiaoying, Serina S. C. Lee, Lim Chin-Sing, Dominik Jańczewski, Serena L.-M. Teo & Julius G. Vancso. (2014) Biomimicking Micropatterned Surfaces and Their Effect on Marine Biofouling. Langmuir 30:30, pages 9165-9175.
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Christina L.L. Chai, Serena L.M. Teo, Felicity K.M. Jameson, Serina S.C. Lee, Asawin Likhitsup, Chia-Lung Chen & Dan Rittschof. (2014) Loperamide-based compounds as additives for biofouling management. International Biodeterioration & Biodegradation 89, pages 82-87.
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Toshimitsu Onduka, Daisuke Ojima, Mana Ito, Katsutoshi Ito, Kazuhiko Mochida & Kazunori Fujii. (2013) Toxicity of the antifouling biocide Sea-Nine 211 to marine algae, crustacea, and a polychaete. Fisheries Science 79:6, pages 999-1006.
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Xiaoying Zhu, Dominik Jańczewski, Serina Siew Chen Lee, Serena Lay-Ming Teo & G. Julius Vancso. (2013) Cross-Linked Polyelectrolyte Multilayers for Marine Antifouling Applications. ACS Applied Materials & Interfaces 5:13, pages 5961-5968.
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Francisco Antonio Guardiola, Alberto Cuesta, José Meseguer & Maria Angeles Esteban. (2012) Risks of Using Antifouling Biocides in Aquaculture. International Journal of Molecular Sciences 13:2, pages 1541-1560.
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Francesca Cima, Marcantonio Bragadin & Loriano Ballarin. (2008) Toxic effects of new antifouling compounds on tunicate haemocytes. Aquatic Toxicology 86:2, pages 299-312.
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Lars Skattebøl, Nils Olav Nilsen, Yngve Stenstrøm, Petter Andreassen & Peter Willemsen. (2006) The antifouling activity of some juvenoids on three species of acorn barnacle, Balanus . Pest Management Science 62:7, pages 610-616.
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Ulf Göransson, Martin Sjögren, Erika Svangård, Per Claeson & Lars Bohlin. (2004) Reversible Antifouling Effect of the Cyclotide Cycloviolacin O2 against Barnacles. Journal of Natural Products 67:8, pages 1287-1290.
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Martin SjögrenUlf GöranssonAnn-Louise JohnsonMia DahlströmRolf AnderssonJan BergmanPer R. JonssonLars Bohlin. (2004) Antifouling Activity of Brominated Cyclopeptides from the Marine Sponge Geodia barretti . Journal of Natural Products 67:3, pages 368-372.
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Dorthe K Larsen, Inge Wagner, Kim Gustavson, Valery E Forbes & Torben Lund. (2003) Long-term effect of Sea-Nine on natural coastal phytoplankton communities assessed by pollution induced community tolerance. Aquatic Toxicology 62:1, pages 35-44.
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