18. Kinani S, Bouchonnet S, Creusot N et al (2010) Bioanalytical characterisation of multiple
endocrine- and dioxin-like activities in sediments from reference and impacted small rivers.
Environ Pollut 158(1):74–83
19. Creusot N, Dévier MH, Budzinski H et al (2016) Evaluation of an extraction method for a
mixture of endocrine disrupters in sediment using chemical and in vitro biological analyses.
Environ Sci Pollut Res 23(11):10349–10360. https://doi.org/10.1007/s11356-016-6062-1
20. Barjhoux I, Fechner LC, Lebrun JD et al (2018) Application of a multidisciplinary and
integrative weight-of-evidence approach to a 1-year monitoring survey of the Seine River.
Environ Sci Pollut Res 25:23404–23429. https://doi.org/10.1007/s11356-016-6993-6
21. Brack W, Dulio V, Ågerstrand M et al (2017) Towards the review of the European Union Water
Framework management of chemical contamination in European surface water resources. Sci
Total Environ 576(2017):720–737
22. Zuykov M, Pelletier E, Harper D (2013) Bivalve mollusks in metal pollution studies: from
bioaccumulation to biomonitoring. Chemosphere 93:201–208
23. Vives I, Grimalt JO, Ventura M et al (2005) Age dependence of the accumulation of organochlorine pollutants in brown trout (Salmo trutta) from a remote high mountain lake (Redo,
Pyrenees). Environ Pollut 133(2):343–350
24. Kelly BC, Ikonomou MG, Blair JD et al (2007) Food web–specific biomagnification of
persistent organic pollutants. Science 317(5835):236–239
25. Rowe CL (2008) The calamity of so long live: life histories, contaminants, and potential
emerging threats to long-lived vertebrates. Bioscience 58(7):623–631. https://doi.org/10.1641/
B580709
26. Flammarion P, Devaux A, Nehls S et al (2002) Multibiomarker responses in fish from the
Moselle River (France). Ecotoxicol Environ Saf 51(2):145–153
27. Winter MJ, Verweij F, Garofalo E et al (2005) Tissue levels and biomarkers of organic
contaminants in feral and caged chub (Leuciscus cephalus) from rivers in the West Midlands,
UK. Aquat Toxicol 73:394–405
28. Krča S, Žaja R, Calic V et al (2007) Hepatic biomarker responses to organic contaminants in
feral chub (Leuciscus cephalus) – laboratory characterization and field study in the Sava river,
Croatia. Environ Toxicol Chem 26:2620–2633
29. Durand JD, Persat H, Bouve Y (1999) Phylogeography and postglacial dispersion of the chub
Leuciscus cephalus in Europe. Mol Ecol 8:989–997
30. Devaux A, Flammarion P, Bernardon V et al (1998) Monitoring of the chemical pollution of the
River Rhone through measurement of DNA damage and cytochrome P4501A induction in chub
(Leuciscus cephalus). Mar Environ Res 46:257–262
31. Larno V, Laroche J, Launey S et al (2001) Responses in chub (Leuciscus cephalus) populations
to chemical stress assessed by genetic markers, DNA damage and cytochrome P4501A induction. Ecotoxicology 10:145–158
32. Viganò L, Camoirano A, Izzotti A et al (2002) Mutagenicity of sediments along the Po River
and genotoxicity biomarkers in fish from polluted areas. Mutat Res Genet Toxicol 515
(1):125–134
33. Binelli A, Della Torre C, Magni S et al (2015) Does zebra mussel (Dreissena polymorpha)
represent the freshwater counterpart of Mytilus in ecotoxicological studies? A critical review.
Environ Pollut 196:386–403
34. Forrow DM, Maltby L (2000) Toward a mechanistic understanding of contaminant-induced
changes in detritus processing in streams: direct and indirect effects on detritivore feeding.
Environ Toxicol Chem 19:2100–2106
35. Palos Ladeiro M, Barjhoux I, Bigot-Clivot A et al (2017) Mussel as a tool to define continental
watershed. Quality in organismal and molecular malacology. InTech, London. https://doi.org/
10.5772/67995. Available via https://www.intechopen.com/books/organismal-and-molecularmalacology/mussel-as-a-tool-to-define-continental-watershed-quality
266
M. Bonnard et al.
endocrine- and dioxin-like activities in sediments from reference and impacted small rivers.
Environ Pollut 158(1):74–83
19. Creusot N, Dévier MH, Budzinski H et al (2016) Evaluation of an extraction method for a
mixture of endocrine disrupters in sediment using chemical and in vitro biological analyses.
Environ Sci Pollut Res 23(11):10349–10360. https://doi.org/10.1007/s11356-016-6062-1
20. Barjhoux I, Fechner LC, Lebrun JD et al (2018) Application of a multidisciplinary and
integrative weight-of-evidence approach to a 1-year monitoring survey of the Seine River.
Environ Sci Pollut Res 25:23404–23429. https://doi.org/10.1007/s11356-016-6993-6
21. Brack W, Dulio V, Ågerstrand M et al (2017) Towards the review of the European Union Water
Framework management of chemical contamination in European surface water resources. Sci
Total Environ 576(2017):720–737
22. Zuykov M, Pelletier E, Harper D (2013) Bivalve mollusks in metal pollution studies: from
bioaccumulation to biomonitoring. Chemosphere 93:201–208
23. Vives I, Grimalt JO, Ventura M et al (2005) Age dependence of the accumulation of organochlorine pollutants in brown trout (Salmo trutta) from a remote high mountain lake (Redo,
Pyrenees). Environ Pollut 133(2):343–350
24. Kelly BC, Ikonomou MG, Blair JD et al (2007) Food web–specific biomagnification of
persistent organic pollutants. Science 317(5835):236–239
25. Rowe CL (2008) The calamity of so long live: life histories, contaminants, and potential
emerging threats to long-lived vertebrates. Bioscience 58(7):623–631. https://doi.org/10.1641/
B580709
26. Flammarion P, Devaux A, Nehls S et al (2002) Multibiomarker responses in fish from the
Moselle River (France). Ecotoxicol Environ Saf 51(2):145–153
27. Winter MJ, Verweij F, Garofalo E et al (2005) Tissue levels and biomarkers of organic
contaminants in feral and caged chub (Leuciscus cephalus) from rivers in the West Midlands,
UK. Aquat Toxicol 73:394–405
28. Krča S, Žaja R, Calic V et al (2007) Hepatic biomarker responses to organic contaminants in
feral chub (Leuciscus cephalus) – laboratory characterization and field study in the Sava river,
Croatia. Environ Toxicol Chem 26:2620–2633
29. Durand JD, Persat H, Bouve Y (1999) Phylogeography and postglacial dispersion of the chub
Leuciscus cephalus in Europe. Mol Ecol 8:989–997
30. Devaux A, Flammarion P, Bernardon V et al (1998) Monitoring of the chemical pollution of the
River Rhone through measurement of DNA damage and cytochrome P4501A induction in chub
(Leuciscus cephalus). Mar Environ Res 46:257–262
31. Larno V, Laroche J, Launey S et al (2001) Responses in chub (Leuciscus cephalus) populations
to chemical stress assessed by genetic markers, DNA damage and cytochrome P4501A induction. Ecotoxicology 10:145–158
32. Viganò L, Camoirano A, Izzotti A et al (2002) Mutagenicity of sediments along the Po River
and genotoxicity biomarkers in fish from polluted areas. Mutat Res Genet Toxicol 515
(1):125–134
33. Binelli A, Della Torre C, Magni S et al (2015) Does zebra mussel (Dreissena polymorpha)
represent the freshwater counterpart of Mytilus in ecotoxicological studies? A critical review.
Environ Pollut 196:386–403
34. Forrow DM, Maltby L (2000) Toward a mechanistic understanding of contaminant-induced
changes in detritus processing in streams: direct and indirect effects on detritivore feeding.
Environ Toxicol Chem 19:2100–2106
35. Palos Ladeiro M, Barjhoux I, Bigot-Clivot A et al (2017) Mussel as a tool to define continental
watershed. Quality in organismal and molecular malacology. InTech, London. https://doi.org/
10.5772/67995. Available via https://www.intechopen.com/books/organismal-and-molecularmalacology/mussel-as-a-tool-to-define-continental-watershed-quality
266
M. Bonnard et al.
