36. Dedourge-Geffard O, Palais F, Biagianti-Risbourg S, Geffard O, Geffard A (2009) Effects of
metals on feeding rate and digestive enzymes in Gammarus fossarum: an in situ experiment.
Chemosphere 77:1569–1576
37. Bervoets L, Voets J, Chu S et al (2004) Comparison of accumulation of micropollutants
between indigenous and transplanted zebra mussels (Dreissena polymorpha). Environ Toxicol
Chem 23(8):1973–1983
38. Bourgeault A, Gourlay-Francé C, Vincent-Hubert F et al (2010) Lessons from a transplantation
of zebra mussels in a small urban river: an integrated ecotoxicological assessment. Environ
Toxicol 25:468–478
39. Palais F, Dedourge-Geffard O, Beaudon A et al (2012) One-year monitoring of core biomarker
and digestive enzyme responses in transplanted zebra mussels (Dreissena polymorpha). Ecotoxicology 21(3):888–905
40. Coulaud R, Geffard O, Xuereb B et al (2011) In situ feeding assay with Gammarus fossarum
(Crustacea): modelling the influence of confounding factors to improve water quality
biomonitoring. Water Res 45:6417–6429
41. Lacaze E, Devaux A, Mons R et al (2011) DNA damage in caged Gammarus fossarum
amphipods: a tool for freshwater genotoxicity assessment. Environ Pollut 159:1682–1691
42. Borcherding J (2010) Steps from ecological and ecotoxicological research to the monitoring for
water quality using the zebra mussel in a biological warning system. In: van der Velde G,
Rajagopal S, bij de Vaate A (eds) The zebra mussel in Europe. Backhuys Publishers/Margraf
Publishers, Leiden/Welkersheim, pp 279–283
43. Voets J, Bervoets L, Smolders R et al (2010) Biomonitoring environmental pollution in
freshwater ecosystems using Dreissena polymorpha. In: van der Velde G, Rajagopal S, bij de
Vaate A (eds) The zebra mussel in Europe. Backhuys Publishers/Margraf Publishers, Leiden/
Welkersheim, pp 301–321
44. Valavanidis A, Vlahogianni T, Dassenakis M et al (2006) Molecular biomarkers of oxidative
stress in aquatic organisms in relation to toxic environmental pollutants. Ecotoxicol Environ Saf
64(2):178–189
45. Lushchak V (2011) Environmentally induced oxidative stress in aquatic animals. Aquat Toxicol
101:13–30
46. Goutte A, Alliot F, Azimi S et al (2018) Influence du niveau trophique sur l’imprégnation des
chesvesnes par les micropolluants organiques en agglomération parisienne. Rapport PIRENSeine
47. Goutte A (2018) Métabolisation des micropolluants: Imprégnation et dommages potentiels chez
les poissons d’eau douce de la Marne et de ses affluents. Rapport Agence de l’Eau Seine
Normandie
48. Qu R, Feng M, Sun P et al (2015) A comparative study on antioxidant status combined with
integrated biomarker response in Carassius Auratus fish exposed to nine phthalates. Environ
Toxicol 30(10):1125–1134. https://doi.org/10.1002/tox.21985
49. Ferguson KK, McElrath TF, Chen YH et al (2014) Urinary phthalate metabolites and biomarkers of oxidative stress in pregnant women: a repeated measures analysis. Environ Health
Perspect 123(3):210–216
50. Vega-López A, Galar-Martínez M, Jiménez-Orozco FA et al (2007) Gender related differences
in the oxidative stress response to PCB exposure in an endangered goodeid fish (Girardinichthys
viviparus). Comp Biochem Physiol A Mol Integr Physiol 146(4):672–678
51. Dedourge-Geffard O, Palais F, Geffard A et al (2013) Origin of energy metabolism impairments. In: Amiard-Triquet C, Amiard JC, Rainbow PS (eds) Ecological biomarkers – indicators
of Ecotoxicological effects. CRC Press, Taylor & Francis Group, Boca Raton, pp 279–306
52. Charron L, Geffard O, Chaumot A et al (2013) Effect of water quality and confounding factors
on digestive enzyme activities in Gammarus fossarum. Environ Sci Pollut Res 20:9044–9056
53. Charron L, Geffard O, Chaumot A et al (2014) Influence of molting and starvation on digestive
enzyme activities and energy storage in Gammarus fossarum. PLoS One 9(4):e96393. https://
doi.org/10.1371/journal.pone.0096393
Experience Gained from Ecotoxicological Studies in the Seine River and. . .
267
metals on feeding rate and digestive enzymes in Gammarus fossarum: an in situ experiment.
Chemosphere 77:1569–1576
37. Bervoets L, Voets J, Chu S et al (2004) Comparison of accumulation of micropollutants
between indigenous and transplanted zebra mussels (Dreissena polymorpha). Environ Toxicol
Chem 23(8):1973–1983
38. Bourgeault A, Gourlay-Francé C, Vincent-Hubert F et al (2010) Lessons from a transplantation
of zebra mussels in a small urban river: an integrated ecotoxicological assessment. Environ
Toxicol 25:468–478
39. Palais F, Dedourge-Geffard O, Beaudon A et al (2012) One-year monitoring of core biomarker
and digestive enzyme responses in transplanted zebra mussels (Dreissena polymorpha). Ecotoxicology 21(3):888–905
40. Coulaud R, Geffard O, Xuereb B et al (2011) In situ feeding assay with Gammarus fossarum
(Crustacea): modelling the influence of confounding factors to improve water quality
biomonitoring. Water Res 45:6417–6429
41. Lacaze E, Devaux A, Mons R et al (2011) DNA damage in caged Gammarus fossarum
amphipods: a tool for freshwater genotoxicity assessment. Environ Pollut 159:1682–1691
42. Borcherding J (2010) Steps from ecological and ecotoxicological research to the monitoring for
water quality using the zebra mussel in a biological warning system. In: van der Velde G,
Rajagopal S, bij de Vaate A (eds) The zebra mussel in Europe. Backhuys Publishers/Margraf
Publishers, Leiden/Welkersheim, pp 279–283
43. Voets J, Bervoets L, Smolders R et al (2010) Biomonitoring environmental pollution in
freshwater ecosystems using Dreissena polymorpha. In: van der Velde G, Rajagopal S, bij de
Vaate A (eds) The zebra mussel in Europe. Backhuys Publishers/Margraf Publishers, Leiden/
Welkersheim, pp 301–321
44. Valavanidis A, Vlahogianni T, Dassenakis M et al (2006) Molecular biomarkers of oxidative
stress in aquatic organisms in relation to toxic environmental pollutants. Ecotoxicol Environ Saf
64(2):178–189
45. Lushchak V (2011) Environmentally induced oxidative stress in aquatic animals. Aquat Toxicol
101:13–30
46. Goutte A, Alliot F, Azimi S et al (2018) Influence du niveau trophique sur l’imprégnation des
chesvesnes par les micropolluants organiques en agglomération parisienne. Rapport PIRENSeine
47. Goutte A (2018) Métabolisation des micropolluants: Imprégnation et dommages potentiels chez
les poissons d’eau douce de la Marne et de ses affluents. Rapport Agence de l’Eau Seine
Normandie
48. Qu R, Feng M, Sun P et al (2015) A comparative study on antioxidant status combined with
integrated biomarker response in Carassius Auratus fish exposed to nine phthalates. Environ
Toxicol 30(10):1125–1134. https://doi.org/10.1002/tox.21985
49. Ferguson KK, McElrath TF, Chen YH et al (2014) Urinary phthalate metabolites and biomarkers of oxidative stress in pregnant women: a repeated measures analysis. Environ Health
Perspect 123(3):210–216
50. Vega-López A, Galar-Martínez M, Jiménez-Orozco FA et al (2007) Gender related differences
in the oxidative stress response to PCB exposure in an endangered goodeid fish (Girardinichthys
viviparus). Comp Biochem Physiol A Mol Integr Physiol 146(4):672–678
51. Dedourge-Geffard O, Palais F, Geffard A et al (2013) Origin of energy metabolism impairments. In: Amiard-Triquet C, Amiard JC, Rainbow PS (eds) Ecological biomarkers – indicators
of Ecotoxicological effects. CRC Press, Taylor & Francis Group, Boca Raton, pp 279–306
52. Charron L, Geffard O, Chaumot A et al (2013) Effect of water quality and confounding factors
on digestive enzyme activities in Gammarus fossarum. Environ Sci Pollut Res 20:9044–9056
53. Charron L, Geffard O, Chaumot A et al (2014) Influence of molting and starvation on digestive
enzyme activities and energy storage in Gammarus fossarum. PLoS One 9(4):e96393. https://
doi.org/10.1371/journal.pone.0096393
Experience Gained from Ecotoxicological Studies in the Seine River and. . .
267
