Références bibliographiques
Saraswat, S., Rai, J.P.N., 2018. Aquatic macrophytes mediated remediation of toxic metals
from moderately contaminated industrial effluent.International Journal of
Phytoremediation 20: 9.
Sarnowski, P., Jezierska B., 2007. A new coefficient for evaluation of condition of fish.
ElectronicJournal of Ichthyology. 2 :69-76.
Shekhawat, K., Chatterjee, S., Joshi, B., 2015. Chromium toxicity and its health hazards.
International Journal of Advanced Research.7(3):167-172.
Si, M., Lang, J., 2018. The roles of metallothioneins in carcinogenesis. J Hematol Oncol. 11,
107. https://doi.org/10.1186/s13045-018-0645-x.
Siddall, S. E., 1980. A clarification of the genus Perna (Mytilidae). Bull. Mar. Sci.30: 858-870.
Siedlecks, A., Krupa, Z., 1996. Interactions between cadmium and iron and its effects on
photosynthetic capacity of primary leaves of Phaseolus vulgaris. Plant Physiol. 34:833–841.
Simkiss, K., Taylor, M., Mason, A. Z., 1982. "Metal detoxification and bioaccumulation in
molluscs." Mar. Biol. Letters. 3: 197-201.
Sohail, M., Khan, M.N., Chaudhry, A.S., Qureshi, N.A., 2016. Bioaccumulation of heavy
metals and analysis of mineral element alongside proximate composition in foot, gills and
mantle of freshwater mussels (Anodonta anatina). Rend Fis Acc Lincei. 27:687–696.
Sreedevi, P., Suresh, A., Sivaramakrishna, B., Prabhavathl, B., Radhakrishnalah, K., 1992.
Bioaccumulation of nickel in the organs of the freshwater fish, Cyprinus carpio, and the
freshwater mussel, Lamellidens marginalis, under lethal and sublethal nickel stress.
Chemosphere 24(1):29–36.
Stankovic, S., Jovic, M., Stankovic, A.R., Katsikas, L., 2012. Health risks of heavy metals in
the Mediterranean mussels as seafood. Environ Chem Lett. 2:119–130.
Stien, X., Percic, P., Gnassia-Barelli, M., 1998. Evaluation of biomarkers in caged fishes and
mussels to assess the quality of waters in a bay of the NW Mediterranean Sea. Environ Pollut.
99 :339–345.
Taleb, M. Z., Boutiba, Z., 2007. La moule Mytilus galloprovincialis: bioindicatrice de pollution
marine – cas du port d’Oran. Sciences &Technologie C. 25:59-64.
Tierney, K.B., Baldwin, D.H., Hara, T.J., Ross, P.S., Scholz, N.L., Kennedy, C.J., 2010.
Olfactory toxicity in fishes. Aquatic Toxicology. 96(1): 2-26.
Treu, G., Slobodnik, J., Alygizakis, N. et al., 2022. Using environmental monitoring data from
apex predators for chemicals management: towards better use of monitoring data from apex
predators in support of prioritisation and risk assessment of chemicals in Europe. Environ
Sci Eur. 34, 82. https://doi.org/10.1186/s12302-022-00665-5
Saraswat, S., Rai, J.P.N., 2018. Aquatic macrophytes mediated remediation of toxic metals
from moderately contaminated industrial effluent.International Journal of
Phytoremediation 20: 9.
Sarnowski, P., Jezierska B., 2007. A new coefficient for evaluation of condition of fish.
ElectronicJournal of Ichthyology. 2 :69-76.
Shekhawat, K., Chatterjee, S., Joshi, B., 2015. Chromium toxicity and its health hazards.
International Journal of Advanced Research.7(3):167-172.
Si, M., Lang, J., 2018. The roles of metallothioneins in carcinogenesis. J Hematol Oncol. 11,
107. https://doi.org/10.1186/s13045-018-0645-x.
Siddall, S. E., 1980. A clarification of the genus Perna (Mytilidae). Bull. Mar. Sci.30: 858-870.
Siedlecks, A., Krupa, Z., 1996. Interactions between cadmium and iron and its effects on
photosynthetic capacity of primary leaves of Phaseolus vulgaris. Plant Physiol. 34:833–841.
Simkiss, K., Taylor, M., Mason, A. Z., 1982. "Metal detoxification and bioaccumulation in
molluscs." Mar. Biol. Letters. 3: 197-201.
Sohail, M., Khan, M.N., Chaudhry, A.S., Qureshi, N.A., 2016. Bioaccumulation of heavy
metals and analysis of mineral element alongside proximate composition in foot, gills and
mantle of freshwater mussels (Anodonta anatina). Rend Fis Acc Lincei. 27:687–696.
Sreedevi, P., Suresh, A., Sivaramakrishna, B., Prabhavathl, B., Radhakrishnalah, K., 1992.
Bioaccumulation of nickel in the organs of the freshwater fish, Cyprinus carpio, and the
freshwater mussel, Lamellidens marginalis, under lethal and sublethal nickel stress.
Chemosphere 24(1):29–36.
Stankovic, S., Jovic, M., Stankovic, A.R., Katsikas, L., 2012. Health risks of heavy metals in
the Mediterranean mussels as seafood. Environ Chem Lett. 2:119–130.
Stien, X., Percic, P., Gnassia-Barelli, M., 1998. Evaluation of biomarkers in caged fishes and
mussels to assess the quality of waters in a bay of the NW Mediterranean Sea. Environ Pollut.
99 :339–345.
Taleb, M. Z., Boutiba, Z., 2007. La moule Mytilus galloprovincialis: bioindicatrice de pollution
marine – cas du port d’Oran. Sciences &Technologie C. 25:59-64.
Tierney, K.B., Baldwin, D.H., Hara, T.J., Ross, P.S., Scholz, N.L., Kennedy, C.J., 2010.
Olfactory toxicity in fishes. Aquatic Toxicology. 96(1): 2-26.
Treu, G., Slobodnik, J., Alygizakis, N. et al., 2022. Using environmental monitoring data from
apex predators for chemicals management: towards better use of monitoring data from apex
predators in support of prioritisation and risk assessment of chemicals in Europe. Environ
Sci Eur. 34, 82. https://doi.org/10.1186/s12302-022-00665-5
