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- W2018250010 abstract "Abstract Cyst‐based ecotoxicological tests are simple and low‐cost methods for assessing acute toxicity. Nevertheless, only a few comparative studies on their sensitivity are known. In the present study, the suitability of the use of two freshwater Anostracan species, Streptocephalus rubricaudatus and S. texanus , was assessed. The impact of 16 priority pollutants (4 heavy metals, 11 organic, and 1 organometallic compounds) on these two species, as well as on Artemia salina (Artoxkit M), Daphnia magna (International Organization for Standardization 6341), and S. proboscideus (Streptoxkit F) was assessed. For indicative comparison, bioassays using Brachionus calyciflorus (Rotoxkit F) and Photobacterium phosphoreum (Microtox) were also performed. For heavy metals (K 2 Cr 2 O 7 , Cd 2+ , Zn 2+ , Cu 2+ ), the sensitivity of the two studied Streptocephalus species was slightly higher than that of D. magna. It was significantly more elevated than for the marine A. salina . For organic and organometallic micropollutants [phenol, 3,5‐dichlorophenol, pentachlorophenol (PCP), hydroquinone, linear alkylbenzene sulfonate, sodium dodecyl sulfate, tributylphosphate, dimethylphthalate, atrazine, lindane, malathion, tributyltin chloride (TBT‐CI)], the sensitivity of the 4 anostracan species was of the same order of magnitude as that of D. magna. Artemia salina was slightly less sensitive to some organic compounds (PCP, hydroquinone, TBT‐CI). The sensitivity of S. rubricaudatus to organic solvents was low. On the other hand, this anostracan was quite sensitive to NaCI. Thus, its use is restricted to freshwater samples. The evaluation of global practicability of these two tests confirms that cyst‐based freshwater anostracans may be used to perform low‐cost tests at a sensitivity comparable to that of D. magna (24 h immobilization test). © 1994 by John Wiley & Sons, Inc. ." @default.
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- W2018250010 title "Cyst-based ecotoxicological tests using Anostracans: Comparison of two species ofStreptocephalus" @default.
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- W2018250010 doi "https://doi.org/10.1002/tox.2530090411" @default.
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