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1.
A histochemical study of the biological effects of sodium dodecyl sulfate on the intestine of the Gilthead seabream, Sparus aurata L. // Ecotoxicol. and Environ. Safety, 1995. Vol. 32, N 2.-С.131-138

2.
A pharmacokinetic study of flumequine in sea bass, Dicentrarchus labrax (L.), after a single intravascular injection // J. Fish Diseases, 2002. Vol. 25, N 2.-С.101-105

3.
A shortcut method for sexing juvenile European sea bass, Dicentrarchus labrax L. // Aquacult. Res., 2005. Vol. 36, N 1.-С.41

4.
A variant of the interleukin-1'бета' gene in European sea bass, Dicentrarchus labrax L., is associated with increased resistance against Vibrio anguillarum // J. Fish Diseases, 2010. Vol. 33, N 9.-С.759-767

5.
Abelli L. Peptide immunohistochemistry of the enteric nervous system of a teleost, Dicentrarchus labrax (L.) // Neuropeptides, 1998. Vol. 32, N 4.-С.362

6.
Abelli L. Thymus development and selection of lymphocytes in the sea bass Dicentrarchus labrax (L.) // Anim. Biol., 1997. Vol. 6, N 3.-С.118

7.
Abelli L. Thymus development and selection of lymphocytes in the sea bass Dicentrarchus labrax (L.) // Anim. Biol., 1997. Vol. 6, N 3.-С.118

8.
Abnormal hepatic copper storage in a teleost fish (Morone americana) // Vet. Pathol., 1987. Vol. 24, N 6.-С.515-524

9.
Abnormalities in the juvenile stage of sea bass (Dicentrarchus labrax L.) reared at different temperatures: Types, prevalence and effect on growth // Aquacult. Int., 2004. Vol. 12, N 6.-С.523-538

10.
Acceleration performance of individual European sea bass Dicentrarchus labrax measured with a sprint performance chamber: Comparison with high-speed cinematography and correlates with ecological performance // Physiol. and Biochem. Zool., 2012. Vol. 85, N 6.-С.704-717

11.
Acclimation of the European sea bass to freshwater: monitoring genetic changes by RAPD polymerase chain reaction to detect DNA polymorphisms // Mar. Biol., 1995. Vol. 121, N 4.-С.591-599

12.
Acute toxicity of chemically and mechanically dispersed crude oil to juvenile sea bass (Dicentrarchus labrax): Absence of synergistic effects between oil and dispersants // Environ. Toxicol. and Chem., 2015. Vol. 34, N 7.-С.1543-1551

13.
Adaptive bone formation in acellular vertebrae of sea bass (Dicentrarchus labrax L.) // J. Exp. Biol., 2005. Vol. 208, N 18.-С.3493-3502

14.
Alami-Durante New insights into temperature-induced white muscle growth plasticity during Dicentrarchus labrax early life: A developmental and allometric study // Mar. Biol., 2006. Vol. 149, N 6.-С.1551-1565

15.
Allegrucci G. Cytochrome b sequence divergence in the European sea bass (Dicentrarchus labrax) and phylogenetic relationships among some Perciformes species // J. Zool. Syst. and Evol. Res., 1999. Vol. 37, N 3.-С.149-156

16.
Allograft rejection in the teleost Dicentrarchus labrax (L.): Immunohistochemical studies // Anim. Biol., 1998. Vol. 7, N 3.-С.158

17.
Almeida Joana R. Effects of Temperature in Juvenile Seabass (Dicentrarchus labrax L.) Biomarker Responses and Behaviour: Implications for Environmental Monitoring // Estuaries and Coasts, 2015. Vol. 38, N 1.-С.45-55

18.
An attempt to determine variability of RNA/DNA ratios during Dicentrarchus labrax larval development // Boll. Soc. hist. natur. Balears, 2002. Vol. 45.-С.15-20

19.
An investigation of metabolic prioritization in the European sea bass, Dicentrarchus labrax // Physiol. and Biochem. Zool., 2010. Vol. 83, N 1.-С.68-77

20.
Anaemia only causes a small reduction in the upper critical temperature of sea bass: Is oxygen delivery the limiting factor for tolerance of acute warming in fishes? // J. Exp. Biol., 2014. Vol. 217, N 24.-С.4275-4278

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