334
Toxicologie nucléaire environnementale et humaine
Domingo JL (2001). Reproductive and developmental toxicity of natural and depleted
uranium: a review. Reprod Toxicol, 15 .
603-609.
Dutrillaux B (2003). Les effets de 1’irradiation sur les fonctions de reproduction. In :
Calmet D, Flüry-Hérard A, Jimonet C,
Manaud N, Ménager MT, Ménétrier F et
Moulin V. Clefs CEA n° 48 - Toxicologie radiologique et chimique. CEA, Paris,
56-61.
Feugier A, Frelon S, Gourmelon P, Claraz M
(2008). Alteration of mouse oocyte quality
after a subchronic exposure to depleted
uranium. Reprod Toxicol, 26 : 273-277.
Fort DJ, Stover EL, Bantie JA, Dumont JN,
Finch RA (2001). Evaluation of a reproductive toxicity assay using Xenopus laevis:
boric acid, cadmium and ethylene glycol
monomethyl ether. J Appl Toxicol, 21 :
41-52.
Fraysse B, Mons R, Garric J (2006). Development of a zebrafish 4-day embryo-larval
bioassay to assess toxicity of chemicals.
Ecotox Environ Safe, 63 : 253-267.
Geras’kin SA, Fesenko SV, Alexakhin RM
(2008). Effects of non-human species irradiation after the Chernobyl NPP accident.
Environ Int, 34 : 880-897.
Henson MC, Chedrese PJ (2004). Endocrine disruption by cadmium, a common
environmental toxicant with paradoxical
effects on reproduction. Exp Biol Med, 29 :
383-392.
1NRS (2009). Fiches toxicologiques, disponibles sur http://www.inrs.fr
Jezierska B, Lugowska K, Witeska M (2008).
The effects of heavy metals on embryonic
development of fish (a review). Fish Physiol Biochem, online first™ press, DOI
10.1007/S10695-008-9284-4.
Kumar G, Rai P (2007). Comparative genotoxic potential of mercury and cadmium in
soybean. Turkish J Biol, 31 : 13-18.
Lambrot R, Coffigny H, Pairault C, Frydman
R, Habert R, Rouiller-Fabre V (2006). Use
ot organ culture to study the human fetal
testis development: effect of retinoic acid.
4 Clin Endoc Metab, 91 : 2696-2703.
Laskey JW, Parrish JL, Cahill DF (1973).
Some effects of lifetime parental exposure
to low levels of tritium on the F2 generation. Radiat Res, 56 : 171-179.
Leoni G, Bogliolo L, Deiana G, Berlinguer
F, Rosati I, Pintus PP, Ledda S, Naitana S
(2002). Influence of cadmium exposure on
in vitro ovine gamete dysfunction. Reproi
Toxicol, 16 : 371-377.
Lienesch LA, Dumont JN, Bantie JA (2000).
The effect of cadmium on oogenesis in
Xenopus laevis. Chemosphere, 41 : 16511658.
McDiarmid MA, Keogh JP, Hooper FJ,
McPhaul K, Squibb K, Kane AR, DiPino
R, Kabat M, Kaup B, Anderson L, Hoover
D, Brown L, Hamilton AM, JacobsonKram D, Burrows B, Walsh M (2000).
Health effects of depleted uranium on
exposed Gulf War veterans. Environ Res,
82 : 168-180.
McDonald DG, Wood CM (1993). Branchia!
mechanisms of acclimation to metals in
freshwater fish. In: Rankin JC, Jensen FB
(Eds). Fish Ecophysiology, Chapman &
Hall, London, 297-321.
Minouflet M, Ayrault S, Badot PM, CotelleS,
Férard JF (2005). Assessment of the genotoxicity of l37Cs radiation using Ffc/a-micronucleus, Tradescantia-micronucleus and
Tradescantia-stamen hair mutation bioassays. J Environ Radiaoactiv, 81 : 143-153.
Paksy K, Varga B, Horvath E, Tatrai E,
Ung vary G (1989). Acute effects of cadmium on preovulatory serum FSH, EH.
and prolactin levels and on ovulation and
ovarian hormone secretion in estrous rats.
Reprod Toxicol, 3 ; 241-247.
Pellmar TC, Fuciarelli AF, Ejnik JW, Hamilton M, Hogan J, Strocko S, Emond C, Mottaz HM, Landauer MR (1999). Distribution j
of uranium in rats implanted with depleted ,
uranium pellets. ToxicolSci, 49 :29-39.
Raymond-Whish S, Mayer LP, O’Neal T,Mar- ; ■
tinez A, Sellers MA, Christian PJ, Marion :
SL, Begay C, Propper CR, Hoyer PB, Dyer :
CA (2007). Drinking water with uranium ■
below the U.S. EPA water standard causes ;
estrogen receptor-dependent responses in ;
female mice. Environ Health Persped ;
115 : 1711-1716.
Rodriguez Tellez BE, Marcano L, Villame- ;
diana Monreal PC (2005). Effects of cad- j
mium chloride exposure on in vitro matu
Toxicologie nucléaire environnementale et humaine
Domingo JL (2001). Reproductive and developmental toxicity of natural and depleted
uranium: a review. Reprod Toxicol, 15 .
603-609.
Dutrillaux B (2003). Les effets de 1’irradiation sur les fonctions de reproduction. In :
Calmet D, Flüry-Hérard A, Jimonet C,
Manaud N, Ménager MT, Ménétrier F et
Moulin V. Clefs CEA n° 48 - Toxicologie radiologique et chimique. CEA, Paris,
56-61.
Feugier A, Frelon S, Gourmelon P, Claraz M
(2008). Alteration of mouse oocyte quality
after a subchronic exposure to depleted
uranium. Reprod Toxicol, 26 : 273-277.
Fort DJ, Stover EL, Bantie JA, Dumont JN,
Finch RA (2001). Evaluation of a reproductive toxicity assay using Xenopus laevis:
boric acid, cadmium and ethylene glycol
monomethyl ether. J Appl Toxicol, 21 :
41-52.
Fraysse B, Mons R, Garric J (2006). Development of a zebrafish 4-day embryo-larval
bioassay to assess toxicity of chemicals.
Ecotox Environ Safe, 63 : 253-267.
Geras’kin SA, Fesenko SV, Alexakhin RM
(2008). Effects of non-human species irradiation after the Chernobyl NPP accident.
Environ Int, 34 : 880-897.
Henson MC, Chedrese PJ (2004). Endocrine disruption by cadmium, a common
environmental toxicant with paradoxical
effects on reproduction. Exp Biol Med, 29 :
383-392.
1NRS (2009). Fiches toxicologiques, disponibles sur http://www.inrs.fr
Jezierska B, Lugowska K, Witeska M (2008).
The effects of heavy metals on embryonic
development of fish (a review). Fish Physiol Biochem, online first™ press, DOI
10.1007/S10695-008-9284-4.
Kumar G, Rai P (2007). Comparative genotoxic potential of mercury and cadmium in
soybean. Turkish J Biol, 31 : 13-18.
Lambrot R, Coffigny H, Pairault C, Frydman
R, Habert R, Rouiller-Fabre V (2006). Use
ot organ culture to study the human fetal
testis development: effect of retinoic acid.
4 Clin Endoc Metab, 91 : 2696-2703.
Laskey JW, Parrish JL, Cahill DF (1973).
Some effects of lifetime parental exposure
to low levels of tritium on the F2 generation. Radiat Res, 56 : 171-179.
Leoni G, Bogliolo L, Deiana G, Berlinguer
F, Rosati I, Pintus PP, Ledda S, Naitana S
(2002). Influence of cadmium exposure on
in vitro ovine gamete dysfunction. Reproi
Toxicol, 16 : 371-377.
Lienesch LA, Dumont JN, Bantie JA (2000).
The effect of cadmium on oogenesis in
Xenopus laevis. Chemosphere, 41 : 16511658.
McDiarmid MA, Keogh JP, Hooper FJ,
McPhaul K, Squibb K, Kane AR, DiPino
R, Kabat M, Kaup B, Anderson L, Hoover
D, Brown L, Hamilton AM, JacobsonKram D, Burrows B, Walsh M (2000).
Health effects of depleted uranium on
exposed Gulf War veterans. Environ Res,
82 : 168-180.
McDonald DG, Wood CM (1993). Branchia!
mechanisms of acclimation to metals in
freshwater fish. In: Rankin JC, Jensen FB
(Eds). Fish Ecophysiology, Chapman &
Hall, London, 297-321.
Minouflet M, Ayrault S, Badot PM, CotelleS,
Férard JF (2005). Assessment of the genotoxicity of l37Cs radiation using Ffc/a-micronucleus, Tradescantia-micronucleus and
Tradescantia-stamen hair mutation bioassays. J Environ Radiaoactiv, 81 : 143-153.
Paksy K, Varga B, Horvath E, Tatrai E,
Ung vary G (1989). Acute effects of cadmium on preovulatory serum FSH, EH.
and prolactin levels and on ovulation and
ovarian hormone secretion in estrous rats.
Reprod Toxicol, 3 ; 241-247.
Pellmar TC, Fuciarelli AF, Ejnik JW, Hamilton M, Hogan J, Strocko S, Emond C, Mottaz HM, Landauer MR (1999). Distribution j
of uranium in rats implanted with depleted ,
uranium pellets. ToxicolSci, 49 :29-39.
Raymond-Whish S, Mayer LP, O’Neal T,Mar- ; ■
tinez A, Sellers MA, Christian PJ, Marion :
SL, Begay C, Propper CR, Hoyer PB, Dyer :
CA (2007). Drinking water with uranium ■
below the U.S. EPA water standard causes ;
estrogen receptor-dependent responses in ;
female mice. Environ Health Persped ;
115 : 1711-1716.
Rodriguez Tellez BE, Marcano L, Villame- ;
diana Monreal PC (2005). Effects of cad- j
mium chloride exposure on in vitro matu
