Références bibliographiques
Page
138
Pavaux AS, Julie R, Laurence GG, et al (2019). Effects of the toxic dinoflagellate Ostreopsis cf. ovata
on survival, feeding and reproduction of a phytal harpacticoid copepod. J Exp Mar Bio Ecol 516:103Ŕ
113. https://doi.org/10.1016/j.jembe.2019.05.004
Pelin M, Sosa S, Brovedani V, et al (2018). A Novel Sensitive Cell-Based Immunoenzymatic Assay
for Palytoxin Quantitation in Mussels. Toxins (Basel) 10:329. https://doi.org/10.3390/toxins10080329
Pelin M, Zanette C, De Bortoli M, et al (2011). Effects of the marine toxin palytoxin on human skin
keratinocytes: Role of ionic imbalance. Toxicology 282:30Ŕ38.
https://doi.org/10.1016/j.tox.2011.01.010
Pereira AMPT, Silva LJG, Meisel LM, et al (2015). Environmental impact of pharmaceuticals from
Portuguese wastewaters : geographical and seasonal occurrence , removal and risk assessment.
Environmental Research 136:108Ŕ119. https://doi.org/10.1016/j.envres.2014.09.041
Pereira JC, Abrantes I, Martins I, et al (2011). Ecological and morphological features of
Amyloodinium ocellatum occurrences in cultivated gilthead seabream Sparus aurata L.; A case study.
Aquaculture 310:289Ŕ297. https://doi.org/10.1016/j.aquaculture.2010.11.011
Pérez M, García T, Invers O, Ruiz JM (2008). Physiological responses of the seagrass Posidonia
oceanica as indicators of fish farm impact. Mar Pollut Bull 56:869Ŕ879.
https://doi.org/10.1016/j.marpolbul.2008.02.001
Perugini M, Manera M, Tavoloni T, et al (2013). Temporal trends of PCBs in feed and dietary
influence in farmed rainbow trout ( Oncorhynchus mykiss ). Food chemistry 141:2321Ŕ2327.
https://doi.org/10.1016/j.foodchem.2013.05.062
Pietsch C (2020). Risk assessment for mycotoxin contamination in fish feeds in Europe. Mycotoxin
Res 36:41Ŕ62. https://doi.org/10.1007/s12550-019-00368-6
Plessl C, Gilbert BM, Sigmund MF, et al (2019). Mercury, silver, selenium and other trace elements in
three cyprinid fish species from the Vaal Dam, South Africa, including implications for fish
consumers. Sci Total Environ 659:1158Ŕ1167. https://doi.org/10.1016/j.scitotenv.2018.12.442
PNUE/ PAM: Etat de l’environnement marin et côtier de la Méditerranée, PNUE/PAM - Convention
de Barcelone, Athènes, 2012 https://planbleu.org/sites/default/files/publications/sommcer_fre.pdf
Piccolotti F (2014). Pisciculture en cage à petite échelle, guide pratique. Organisation des nationsunies pour l’alimentation et l’agriculture. Programme SmartFish, Île Maurice, Mars 2014.pp 70.
Poole K (2017). At the Nexus of Antibiotics and Metals: The Impact of Cu and Zn on Antibiotic
Activity and Resistance. Trends Microbiol 25:820Ŕ832. https://doi.org/10.1016/J.TIM.2017.04.010
Pourabadehei M, Mulligan CN (2016). Resuspension of sediment , a new approach for remediation of
contaminated sediment . Environ Pollut 213:63Ŕ75. https://doi.org/10.1016/j.envpol.2016.01.082
Prato E, Biandolino F (2015). The Contribution of Fish to the Mediterranean Diet. In: The
Mediterranean Diet: An Evidence-Based Approach. Elsevier Inc., pp 165Ŕ174
Page
138
Pavaux AS, Julie R, Laurence GG, et al (2019). Effects of the toxic dinoflagellate Ostreopsis cf. ovata
on survival, feeding and reproduction of a phytal harpacticoid copepod. J Exp Mar Bio Ecol 516:103Ŕ
113. https://doi.org/10.1016/j.jembe.2019.05.004
Pelin M, Sosa S, Brovedani V, et al (2018). A Novel Sensitive Cell-Based Immunoenzymatic Assay
for Palytoxin Quantitation in Mussels. Toxins (Basel) 10:329. https://doi.org/10.3390/toxins10080329
Pelin M, Zanette C, De Bortoli M, et al (2011). Effects of the marine toxin palytoxin on human skin
keratinocytes: Role of ionic imbalance. Toxicology 282:30Ŕ38.
https://doi.org/10.1016/j.tox.2011.01.010
Pereira AMPT, Silva LJG, Meisel LM, et al (2015). Environmental impact of pharmaceuticals from
Portuguese wastewaters : geographical and seasonal occurrence , removal and risk assessment.
Environmental Research 136:108Ŕ119. https://doi.org/10.1016/j.envres.2014.09.041
Pereira JC, Abrantes I, Martins I, et al (2011). Ecological and morphological features of
Amyloodinium ocellatum occurrences in cultivated gilthead seabream Sparus aurata L.; A case study.
Aquaculture 310:289Ŕ297. https://doi.org/10.1016/j.aquaculture.2010.11.011
Pérez M, García T, Invers O, Ruiz JM (2008). Physiological responses of the seagrass Posidonia
oceanica as indicators of fish farm impact. Mar Pollut Bull 56:869Ŕ879.
https://doi.org/10.1016/j.marpolbul.2008.02.001
Perugini M, Manera M, Tavoloni T, et al (2013). Temporal trends of PCBs in feed and dietary
influence in farmed rainbow trout ( Oncorhynchus mykiss ). Food chemistry 141:2321Ŕ2327.
https://doi.org/10.1016/j.foodchem.2013.05.062
Pietsch C (2020). Risk assessment for mycotoxin contamination in fish feeds in Europe. Mycotoxin
Res 36:41Ŕ62. https://doi.org/10.1007/s12550-019-00368-6
Plessl C, Gilbert BM, Sigmund MF, et al (2019). Mercury, silver, selenium and other trace elements in
three cyprinid fish species from the Vaal Dam, South Africa, including implications for fish
consumers. Sci Total Environ 659:1158Ŕ1167. https://doi.org/10.1016/j.scitotenv.2018.12.442
PNUE/ PAM: Etat de l’environnement marin et côtier de la Méditerranée, PNUE/PAM - Convention
de Barcelone, Athènes, 2012 https://planbleu.org/sites/default/files/publications/sommcer_fre.pdf
Piccolotti F (2014). Pisciculture en cage à petite échelle, guide pratique. Organisation des nationsunies pour l’alimentation et l’agriculture. Programme SmartFish, Île Maurice, Mars 2014.pp 70.
Poole K (2017). At the Nexus of Antibiotics and Metals: The Impact of Cu and Zn on Antibiotic
Activity and Resistance. Trends Microbiol 25:820Ŕ832. https://doi.org/10.1016/J.TIM.2017.04.010
Pourabadehei M, Mulligan CN (2016). Resuspension of sediment , a new approach for remediation of
contaminated sediment . Environ Pollut 213:63Ŕ75. https://doi.org/10.1016/j.envpol.2016.01.082
Prato E, Biandolino F (2015). The Contribution of Fish to the Mediterranean Diet. In: The
Mediterranean Diet: An Evidence-Based Approach. Elsevier Inc., pp 165Ŕ174
