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Original Articles

Tissue Distribution and Elimination of Oxytetracycline in Sea-Pen Cultured Chinook Salmon, Oncorhynchus tshawytscha, and Atlantic Salmon, Salmo salar, Following Medicated-Feed Treatment

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Pages 39-51 | Published online: 17 Oct 2008

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G. Chen & G. Liu. (2009) Analysis of oxytetracycline residue in salmon muscle using a portable analyzer based on EuIII luminescence. Food Additives & Contaminants: Part A 26:8, pages 1172-1179.
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Articles from other publishers (13)

Fábio S. Zanuzzo, Ellen de Fátima C. Peroni, Rebeccah M. Sandrelli, Sophie St-Hilaire, Nicole O'Brien & Anthony K. Gamperl. (2022) Temperature has considerable effects on plasma and muscle antibiotic concentrations in Atlantic salmon (Salmo salar). Aquaculture 546, pages 737372.
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Betty San Martín, Marcela Fresno, Aldo Maddaleno, José Miguel Burgos, Arturo Anadón, Sebastián Zavala, Lisette Lapierre, Ekaterina Pokrant & Javiera Cornejo. (2021) Depletion of oxytetracycline plus epi-oxytetracycline residues in rainbow trout (Oncorhynchus mykiss) and Atlantic salmon (Salmo salar) under field conditions in Chile. Aquaculture 545, pages 737154.
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Samwel Mchele Limbu, Li‐Qiao Chen, Mei‐Ling Zhang & Zhen‐Yu Du. (2020) A global analysis on the systemic effects of antibiotics in cultured fish and their potential human health risk: a review. Reviews in Aquaculture 13:2, pages 1015-1059.
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Jonathan Happold, Anne Meyer, Rohan Sadler, Brendan Cowled, Catriona Mackenzie, Mark Stevenson, Michael P. Ward, Alicia L. Gallardo Lagno & Angus Cameron. (2020) Effectiveness of antimicrobial treatment of salmonid rickettsial septicaemia in commercial salmon and trout farms in Chile. Aquaculture 525, pages 735323.
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Pritam K. Sidhu, Stephen A. Smith, Corinne Mayer, Geraldine Magnin, David D. Kuhn, Majid Jaberi-Douraki & Johann F. Coetzee. (2018) Comparative pharmacokinetics of oxytetracycline in tilapia (Oreochromis spp.) maintained at three different salinities. Aquaculture 495, pages 675-681.
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George Rigos & Peter Smith. (2015) A critical approach on pharmacokinetics, pharmacodynamics, dose optimisation and withdrawal times of oxytetracycline in aquaculture. Reviews in Aquaculture 7:2, pages 77-106.
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Dong Liu, Luqing Pan, Huizan Yang & Jing Wang. (2014) A physiologically based toxicokinetic and toxicodynamic model links the tissue distribution of benzo[a]pyrene and toxic effects in the scallop Chlamys farreri. Environmental Toxicology and Pharmacology 37:2, pages 493-504.
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Qizhong Zhang & Xuemei Li. (2007) Pharmacokinetics and residue elimination of oxytetracycline in grass carp, Ctenopharyngodon idellus. Aquaculture 272:1-4, pages 140-145.
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Fangke Ding, Jiyue Cao, Libao Ma, Qiansheng Pan, Zhiping Fang & Xiaocong Lu. (2006) Pharmacokinetics and tissue residues of difloxacin in crucian carp (Carassius auratus) after oral administration. Aquaculture 256:1-4, pages 121-128.
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Carolyn S Friedman, George Trevelyan, Thea T Robbins, Eva P Mulder & Ray Fields. (2003) Development of an oral administration of oxytetracycline to control losses due to withering syndrome in cultured red abalone Haliotis rufescens. Aquaculture 224:1-4, pages 1-23.
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George Rigos, Maria Alexis, Argyro Andriopoulou & Ioannis Nengas. (2002) Pharmacokinetics and tissue distribution of oxytetracycline in sea bass, Dicentrarchus labrax, at two water temperatures. Aquaculture 210:1-4, pages 59-67.
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R. Namdari, S. Abedini & F. C. P. Law. (2001) A comparative tissue distribution study of oxytetracycline in rainbow trout, Oncorhynchus mykiss (Walbaum), and chinook salmon, Oncorhynchus tshawytscha (Walbaum) . Aquaculture Research 30:4, pages 279-286.
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F. C. P. Law. 1999. Xenobiotics in Fish. Xenobiotics in Fish 105 121 .

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