48
JUSUP M., KLANJSCEK T., MATSUDAL H., et al. (2011). A Full Lifecycle Bioenergetic
Model for Bluefin Tuna. PLoS ONE 6(7): e21903. doi:10.1371/ journal.pone.0021903 : 17 p.
MARINARO, J.Y (1991). Eggs of the Microchirus species (Soleidae) from the bay of Algiers.
Laboratoire de Biologie Marine, Universite de Perpignan, 66025 Perpignan, Cedex, France :
125 p.
Marine Spieces (2018). [en ligne].[consulté le 01/04/2018]. Disponible sur le web :
http://species-identification.org/.
MATZELLE A., MONTALTO V., SARA B., et al. (2014). Dynamic Energy Budget model
parameter estimation for the bivalve Mytilus californianus: Application of the covariation
method. Environment and Sustainability Program, Columbia, SC 29208, USA : 6 p.
MEER J., KOOJMAN S.A.L.M (2014). Inference on energetics of deep-sea fish that cannot
be aged: The case of the hagfish. Royal NIOZ. Marine Ecology, Netherlands, 138 p.
MUELLER A., AUGUSTINE S., KOOJMAN S.A.L.M., et al. (2012). The trade-off between
maturation and growth during accelerated development in frogs. Ecology and Evolutionary
Biology. Adelaide: University of Adelaide, 95 p.
PANFILI, J. (1992). Estimation de l'âge individuel des poissons : méthodologies et
applications à des populations naturelles tropicales et tempérées. Thèse de doctorat.
Halieutique. France : Université Montpellier II, 456 p.
PITTMAN K., YUFERA M., PAVLIIDIS M., et al. (2006). Fantastically plastic: fish larvae
equipped for a new world. Rev.Aquac. 5 (Suppl. 1), S224–S267.
PANFILI J. DE PONTUAL H. TROADEC H., et al. (2002). Manuel de sclérochronologie
des poissons. Coédition Ifremer-IRD : 464 p.
PAPADAKIS I.E., KENTOURI M., DIVANACH P., et al. (2013). Ontogeny of the digestive
systemofmeagre Argyrosomus regius reared in amesocosm, and quantitative changes of lipids
in the liver from hatching to juvenile. Aquaculture 388–391, 76–88.
PARRA, G., YUFRA, M. (2001). Comparative energetics during early development of two
marine fish species, Solea senegalensis (Kaup) and Sparus aurata (L.). J. Exp. Biol. 204, 2175–
2183.
JUSUP M., KLANJSCEK T., MATSUDAL H., et al. (2011). A Full Lifecycle Bioenergetic
Model for Bluefin Tuna. PLoS ONE 6(7): e21903. doi:10.1371/ journal.pone.0021903 : 17 p.
MARINARO, J.Y (1991). Eggs of the Microchirus species (Soleidae) from the bay of Algiers.
Laboratoire de Biologie Marine, Universite de Perpignan, 66025 Perpignan, Cedex, France :
125 p.
Marine Spieces (2018). [en ligne].[consulté le 01/04/2018]. Disponible sur le web :
http://species-identification.org/.
MATZELLE A., MONTALTO V., SARA B., et al. (2014). Dynamic Energy Budget model
parameter estimation for the bivalve Mytilus californianus: Application of the covariation
method. Environment and Sustainability Program, Columbia, SC 29208, USA : 6 p.
MEER J., KOOJMAN S.A.L.M (2014). Inference on energetics of deep-sea fish that cannot
be aged: The case of the hagfish. Royal NIOZ. Marine Ecology, Netherlands, 138 p.
MUELLER A., AUGUSTINE S., KOOJMAN S.A.L.M., et al. (2012). The trade-off between
maturation and growth during accelerated development in frogs. Ecology and Evolutionary
Biology. Adelaide: University of Adelaide, 95 p.
PANFILI, J. (1992). Estimation de l'âge individuel des poissons : méthodologies et
applications à des populations naturelles tropicales et tempérées. Thèse de doctorat.
Halieutique. France : Université Montpellier II, 456 p.
PITTMAN K., YUFERA M., PAVLIIDIS M., et al. (2006). Fantastically plastic: fish larvae
equipped for a new world. Rev.Aquac. 5 (Suppl. 1), S224–S267.
PANFILI J. DE PONTUAL H. TROADEC H., et al. (2002). Manuel de sclérochronologie
des poissons. Coédition Ifremer-IRD : 464 p.
PAPADAKIS I.E., KENTOURI M., DIVANACH P., et al. (2013). Ontogeny of the digestive
systemofmeagre Argyrosomus regius reared in amesocosm, and quantitative changes of lipids
in the liver from hatching to juvenile. Aquaculture 388–391, 76–88.
PARRA, G., YUFRA, M. (2001). Comparative energetics during early development of two
marine fish species, Solea senegalensis (Kaup) and Sparus aurata (L.). J. Exp. Biol. 204, 2175–
2183.
