Références bibliographiques
Page
135
Mota VC, Nilsen TO, Gerwins J, et al (2019).The effects of carbon dioxide on growth performance,
welfare, and health of Atlantic salmon post-smolt (Salmo salar) in recirculating aquaculture systems.
Aquaculture 498:578Ŕ586. https://doi.org/10.1016/j.aquaculture.2018.08.075
Moullec F, Velez L, Verley P, et al (2019). Capturing the big picture of Mediterranean marine
biodiversity with an end-to-end model of climate and fishing impacts. Prog Oceanogr 178:102179.
https://doi.org/10.1016/j.pocean.2019.102179
MPRH 2014. Secteur de la pêche et de l’aquaculture bilan (2012-2014). http://madrp.gov.dz/dgpa/wpcontent/uploads/sites/3/2019/05/Plan-Aquap%C3%AAche-2025-et-Strat%C3%A9gie-2035-1.pdf
MPRH 2018. Evaluation finale du projet « Appui à la formulation de la stratégie de la pêche et de
l’aquaculture (avec une attention particulière sur la pêche artisanale) 2015-2020 et lancement d’actions
prioritaires préparatoires »
file:///C:/Users/ESPI/Downloads/Evaluation%20Strat%C3%A9gie%20Peche%20finale%20(12%20A
out).pdf
MPRH (2019).Ministère de la pêche et des ressources halieutiques.
Muñiz O, Revilla M, Rodríguez JG, et al (2019). Annual cycle of phytoplankton community through
the water column: Study applied to the implementation of bivalve offshore aquaculture in the
southeastern Bay of Biscay. Oceanologia 61:114Ŕ130. https://doi.org/10.1016/j.oceano.2018.08.001
Muñoz-Barbosa A, Gutiérrez-Galindo EA, Daesslé LW, et al (2012). Relationship between metal
enrichments and a biological adverse effects index in sediments from Todos Santos Bay, northwest
coast of Baja California, México. Mar Pollut Bull 64:405Ŕ409.
https://doi.org/10.1016/j.marpolbul.2011.11.023
Murussi CR, Costa MD, Leitemperger JW, et al (2016). Acute exposure to the biopesticide
azadirachtin affects parameters in the gills of common carp (Cyprinus carpio). Comp Biochem Physiol
Part - C Toxicol Pharmacol 180:49Ŕ55. https://doi.org/10.1016/j.cbpc.2015.12.003
Nácher-mestre J, Serrano R, Benedito-palos L, et al (2009). Effects of fish oil replacement and refeeding on the bioaccumulation of organochlorine compounds in gilthead sea bream ( Sparus aurata L
.) of market size. Chemosphere 76:811Ŕ817. https://doi.org/10.1016/j.chemosphere.2009.04.046
Nakayama N, Hamaguchi M, Yamaguchi H, et al (2020). Evaluation of a virus-based control method
to protect cultured oysters from the harmful dinoflagellate Heterocapsa circularisquama. Aquaculture
529:735625. https://doi.org/10.1016/j.aquaculture.2020.735625
Natale F, Hofherr J, Fiore G, Virtanen J (2013). Interactions between aquaculture and fisheries. Mar
Policy 38:205Ŕ213. https://doi.org/10.1016/j.marpol.2012.05.037
Navarrete-Mier F, Sanz-Lázaro C, Marín A (2010). Does bivalve mollusc polyculture reduce marine
fin fish farming environmental impact? Aquaculture 306:101Ŕ107.
https://doi.org/10.1016/J.AQUACULTURE.2010.06.013
Nerici C, Silva A, Merino G (2012). Effect of two temperatures on ammonia excretion rates of
Seriolella violacea ( Palm fish ) juveniles under rearing conditions. Aquac Eng 46:47Ŕ52.
https://doi.org/10.1016/j.aquaeng.2011.11.003
Page
135
Mota VC, Nilsen TO, Gerwins J, et al (2019).The effects of carbon dioxide on growth performance,
welfare, and health of Atlantic salmon post-smolt (Salmo salar) in recirculating aquaculture systems.
Aquaculture 498:578Ŕ586. https://doi.org/10.1016/j.aquaculture.2018.08.075
Moullec F, Velez L, Verley P, et al (2019). Capturing the big picture of Mediterranean marine
biodiversity with an end-to-end model of climate and fishing impacts. Prog Oceanogr 178:102179.
https://doi.org/10.1016/j.pocean.2019.102179
MPRH 2014. Secteur de la pêche et de l’aquaculture bilan (2012-2014). http://madrp.gov.dz/dgpa/wpcontent/uploads/sites/3/2019/05/Plan-Aquap%C3%AAche-2025-et-Strat%C3%A9gie-2035-1.pdf
MPRH 2018. Evaluation finale du projet « Appui à la formulation de la stratégie de la pêche et de
l’aquaculture (avec une attention particulière sur la pêche artisanale) 2015-2020 et lancement d’actions
prioritaires préparatoires »
file:///C:/Users/ESPI/Downloads/Evaluation%20Strat%C3%A9gie%20Peche%20finale%20(12%20A
out).pdf
MPRH (2019).Ministère de la pêche et des ressources halieutiques.
Muñiz O, Revilla M, Rodríguez JG, et al (2019). Annual cycle of phytoplankton community through
the water column: Study applied to the implementation of bivalve offshore aquaculture in the
southeastern Bay of Biscay. Oceanologia 61:114Ŕ130. https://doi.org/10.1016/j.oceano.2018.08.001
Muñoz-Barbosa A, Gutiérrez-Galindo EA, Daesslé LW, et al (2012). Relationship between metal
enrichments and a biological adverse effects index in sediments from Todos Santos Bay, northwest
coast of Baja California, México. Mar Pollut Bull 64:405Ŕ409.
https://doi.org/10.1016/j.marpolbul.2011.11.023
Murussi CR, Costa MD, Leitemperger JW, et al (2016). Acute exposure to the biopesticide
azadirachtin affects parameters in the gills of common carp (Cyprinus carpio). Comp Biochem Physiol
Part - C Toxicol Pharmacol 180:49Ŕ55. https://doi.org/10.1016/j.cbpc.2015.12.003
Nácher-mestre J, Serrano R, Benedito-palos L, et al (2009). Effects of fish oil replacement and refeeding on the bioaccumulation of organochlorine compounds in gilthead sea bream ( Sparus aurata L
.) of market size. Chemosphere 76:811Ŕ817. https://doi.org/10.1016/j.chemosphere.2009.04.046
Nakayama N, Hamaguchi M, Yamaguchi H, et al (2020). Evaluation of a virus-based control method
to protect cultured oysters from the harmful dinoflagellate Heterocapsa circularisquama. Aquaculture
529:735625. https://doi.org/10.1016/j.aquaculture.2020.735625
Natale F, Hofherr J, Fiore G, Virtanen J (2013). Interactions between aquaculture and fisheries. Mar
Policy 38:205Ŕ213. https://doi.org/10.1016/j.marpol.2012.05.037
Navarrete-Mier F, Sanz-Lázaro C, Marín A (2010). Does bivalve mollusc polyculture reduce marine
fin fish farming environmental impact? Aquaculture 306:101Ŕ107.
https://doi.org/10.1016/J.AQUACULTURE.2010.06.013
Nerici C, Silva A, Merino G (2012). Effect of two temperatures on ammonia excretion rates of
Seriolella violacea ( Palm fish ) juveniles under rearing conditions. Aquac Eng 46:47Ŕ52.
https://doi.org/10.1016/j.aquaeng.2011.11.003
