Références bibliographiques
Page
126
Hadj-Taieb A, Ghorbel M, Hadj-Hamida N, Jarboui O (2013). Sex ratio, reproduction, and growth of
the gilthead sea bream, Sparus aurata (Pisces: Sparidae), in the Gulf of Gabes, Tunisia Ciencias
Marinas, vol. 39, núm. 1, pp. 101-112
Hai N Van (2015). findings from the use of probiotics in tilapia aquaculture : A review. Fish Shellfish
Immunol 45:592Ŕ597. https://doi.org/10.1016/j.fsi.2015.05.026
Hallegraeff, G.M.; Anderson, D.M.; Cembella, A.D. and Enevoldsen, H.O. (eds) (2004)
Manual on Harmful Marine Microalgae. 2nd revised edition. Paris, France, UNESCO, 793pp.
(Monographs on Oceanographic Methodology, 11). http://hdl.handle.net/11329/282.
Hallmann A, Smolarz K, Konieczna L, Belka M (2016). LC Ŕ MS measurment of free steroids in
mussels ( Mytilus trossulus ) from the southern Baltic Sea. Journal of Pharmaceutical and Biomedical
Analysis 117:311Ŕ315. https://doi.org/10.1016/j.jpba.2015.09.013
Hampl R, Kubátová J, Stárka L (2016). History , recent state of art and open questions. J Steroid
Biochem Mol Biol 155:217Ŕ223. https://doi.org/10.1016/j.jsbmb.2014.04.013
Handå A, Min H, Wang X, et al (2012a) Incorporation of fish feed and growth of blue mussels
(Mytilus edulis ) in close proximity to salmon ( Salmo salar ) aquaculture : Implications for integrated
multi-trophic aquaculture in Norwegian coastal waters. Aquaculture 356Ŕ357:328Ŕ341.
https://doi.org/10.1016/j.aquaculture.2012.04.048
Handå A, Ranheim A, Johny A, et al (2012b) Incorporation of salmon fish feed and feces components
in mussels (Mytilus edulis): Implications for integrated multi-trophic aquaculture in cool-temperate
North Atlantic waters. Aquaculture 370Ŕ371:40Ŕ53. https://doi.org/10.1016/j.aquaculture.2012.09.030
Hardy RW (2010). Utilization of plant proteins in fish diets: Effects of global demand and supplies of
fishmeal. Aquac. Res. 41:770Ŕ776
Hattour A (2011). Le thon rouge (Thunnus thynnus thynnus L. 1758) des eaux tunisiennes : Etats des
lieux, pêche et activités d’engraissement. Bull. Inst. Natn. Scien. Tech. Mer de Salammbô, Vol. 38,
2011
Hecht, T. and Jones, C.L.W (2009). Use of wild fish and other aquatic organisms as feed in
aquaculture Ŕ a review of practices and implications in Africa and the Near East. In M.R. Hasan and
M. Halwart (eds). Fish as feed inputs for aquaculture: practices, sustainability and implications. FAO
Fisheries and Aquaculture Technical Paper. No. 518. Rome, FAO. pp. 129Ŕ157.
Herbeck LS, Unger D, Wu Y, Jennerjahn TC (2013). Effluent , nutrient and organic matter export
from shrimp and fish ponds causing eutrophication in coastal and back-reef waters of NE Hainan ,
tropical China. Cont Shelf Res 57:92Ŕ104. https://doi.org/10.1016/j.csr.2012.05.006
Hogstrand C (2011. Zinc. In Fish Physiology. Academic Press Volume 31, Part A, pages 135-200.
Holmer M, Argyrou M, Dalsgaard T, et al (2008). Effects of fish farm waste on Posidonia oceanica
meadows : Synthesis and provision of monitoring and management tools. Mar Pol Bul 56:1618Ŕ1629.
https://doi.org/10.1016/j.marpolbul.2008.05.020
Page
126
Hadj-Taieb A, Ghorbel M, Hadj-Hamida N, Jarboui O (2013). Sex ratio, reproduction, and growth of
the gilthead sea bream, Sparus aurata (Pisces: Sparidae), in the Gulf of Gabes, Tunisia Ciencias
Marinas, vol. 39, núm. 1, pp. 101-112
Hai N Van (2015). findings from the use of probiotics in tilapia aquaculture : A review. Fish Shellfish
Immunol 45:592Ŕ597. https://doi.org/10.1016/j.fsi.2015.05.026
Hallegraeff, G.M.; Anderson, D.M.; Cembella, A.D. and Enevoldsen, H.O. (eds) (2004)
Manual on Harmful Marine Microalgae. 2nd revised edition. Paris, France, UNESCO, 793pp.
(Monographs on Oceanographic Methodology, 11). http://hdl.handle.net/11329/282.
Hallmann A, Smolarz K, Konieczna L, Belka M (2016). LC Ŕ MS measurment of free steroids in
mussels ( Mytilus trossulus ) from the southern Baltic Sea. Journal of Pharmaceutical and Biomedical
Analysis 117:311Ŕ315. https://doi.org/10.1016/j.jpba.2015.09.013
Hampl R, Kubátová J, Stárka L (2016). History , recent state of art and open questions. J Steroid
Biochem Mol Biol 155:217Ŕ223. https://doi.org/10.1016/j.jsbmb.2014.04.013
Handå A, Min H, Wang X, et al (2012a) Incorporation of fish feed and growth of blue mussels
(Mytilus edulis ) in close proximity to salmon ( Salmo salar ) aquaculture : Implications for integrated
multi-trophic aquaculture in Norwegian coastal waters. Aquaculture 356Ŕ357:328Ŕ341.
https://doi.org/10.1016/j.aquaculture.2012.04.048
Handå A, Ranheim A, Johny A, et al (2012b) Incorporation of salmon fish feed and feces components
in mussels (Mytilus edulis): Implications for integrated multi-trophic aquaculture in cool-temperate
North Atlantic waters. Aquaculture 370Ŕ371:40Ŕ53. https://doi.org/10.1016/j.aquaculture.2012.09.030
Hardy RW (2010). Utilization of plant proteins in fish diets: Effects of global demand and supplies of
fishmeal. Aquac. Res. 41:770Ŕ776
Hattour A (2011). Le thon rouge (Thunnus thynnus thynnus L. 1758) des eaux tunisiennes : Etats des
lieux, pêche et activités d’engraissement. Bull. Inst. Natn. Scien. Tech. Mer de Salammbô, Vol. 38,
2011
Hecht, T. and Jones, C.L.W (2009). Use of wild fish and other aquatic organisms as feed in
aquaculture Ŕ a review of practices and implications in Africa and the Near East. In M.R. Hasan and
M. Halwart (eds). Fish as feed inputs for aquaculture: practices, sustainability and implications. FAO
Fisheries and Aquaculture Technical Paper. No. 518. Rome, FAO. pp. 129Ŕ157.
Herbeck LS, Unger D, Wu Y, Jennerjahn TC (2013). Effluent , nutrient and organic matter export
from shrimp and fish ponds causing eutrophication in coastal and back-reef waters of NE Hainan ,
tropical China. Cont Shelf Res 57:92Ŕ104. https://doi.org/10.1016/j.csr.2012.05.006
Hogstrand C (2011. Zinc. In Fish Physiology. Academic Press Volume 31, Part A, pages 135-200.
Holmer M, Argyrou M, Dalsgaard T, et al (2008). Effects of fish farm waste on Posidonia oceanica
meadows : Synthesis and provision of monitoring and management tools. Mar Pol Bul 56:1618Ŕ1629.
https://doi.org/10.1016/j.marpolbul.2008.05.020
