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10-day survival of <I>Hyalella azteca</I> as a function of water quality parameters
Javidmehr, A., Kass, P. H., Deanovic, L. A., Connon, R. E., & Werner, I. (2015). 10-day survival of Hyalella azteca as a function of water quality parameters. Ecotoxicology and Environmental Safety, 115, 250-256. https://doi.org/10.1016/j.ecoenv.2015.02.008
16th SETAC GLB (Society of Environmental Toxicology and Chemistry German Language Branch) annual meeting held under the main theme "ecoTOXICOlogy and Environmental CHEMISTRY: crossing borders" from 18th to 20th September 2011 at Landau
Brühl, C. A., Schäfer, R. B., Mittmann, F., Stahlschmidt, P., Bruns, E., Candolfi, M., Egeler, P., Hollert, H., Kaiser, D., Mohr, S., Ratte, T., Schaumann, G. E., Schlechtriem, C., Stock, F., Scheebaum, M. V., Von Der Ohe, P. C., Weltje, L., & Werner, I. (2012). 16th SETAC GLB (Society of Environmental Toxicology and Chemistry German Language Branch) annual meeting held under the main theme "ecoTOXICOlogy and Environmental CHEMISTRY: crossing borders" from 18th to 20th September 2011 at Landau. Environmental Sciences Europe, 24(1), 39 (8 pp.). https://doi.org/10.1186/2190-4715-24-39
1st Young Environmental Scientists (YES). Meeting—New challenges in environmental sciences. A meeting report by the Student Advisory council of SETAC Europe
Bundschuh, M., Dabrunz, A., Bollmohr, S., Brinkmann, M., Caduff, M., Gomez-Eyles, J. L., Kienle, C., Melato, M., Patrick-Iwuanyanwu, K. C., Van Hoecke, K., Seiler, T. B., & Brooks, A. (2009). 1st Young Environmental Scientists (YES). Meeting—New challenges in environmental sciences. A meeting report by the Student Advisory council of SETAC Europe. Environmental Science and Pollution Research, 16(4), 479-481. https://doi.org/10.1007/s11356-009-0158-9
20 Years of fish immunotoxicology – what we know and where we are
Rehberger, K., Werner, I., Hitzfeld, B., Segner, H., & Baumann, L. (2017). 20 Years of fish immunotoxicology – what we know and where we are. Critical Reviews in Toxicology, 47(6), 509-535. https://doi.org/10.1080/10408444.2017.1288024
50 Years of ecotoxicology since Silent Spring - a review
Werner, I., & Hitzfeld, B. (2012). 50 Years of ecotoxicology since Silent Spring - a review. GAIA: Ecological Perspectives for Science and Society, 21(3), 217-224. https://doi.org/10.14512/gaia.21.3.13
<I>Cedrus libani</I>: a promising tree species for Central European forestry facing climate change?
Messinger, J., Güney, A., Zimmermann, R., Ganser, B., Bachmann, M., Remmele, S., & Aas, G. (2015). Cedrus libani: a promising tree species for Central European forestry facing climate change? European Journal of Forest Research, 134(6), 1005-1017. https://doi.org/10.1007/s10342-015-0905-z
<I>Gammarus</I> spp. in aquatic ecotoxicology and water quality assessment: toward integrated multilevel tests
Kunz, P. Y., Kienle, C., & Gerhardt, A. (2010). Gammarus spp. in aquatic ecotoxicology and water quality assessment: toward integrated multilevel tests. Reviews of environmental contamination and toxicology: Vol. 205. (p. 76 pp.). https://doi.org/10.1007/978-1-4419-5623-1_1
<I>In vitro</I> bioassays to screen for endocrine active pharmaceuticals in surface and waste waters
Kunz, P. Y., Kienle, C., Carere, M., Homazava, N., & Kase, R. (2015). In vitro bioassays to screen for endocrine active pharmaceuticals in surface and waste waters. Journal of Pharmaceutical and Biomedical Analysis, 106, 107-115. https://doi.org/10.1016/j.jpba.2014.11.018
<i>Tetrahymena</i> spp. (Protista, Ciliophora) as test species in rapid multi-level ecotoxicity tests
Gerhardt, A., Ud-Daula, A., & Schramm, K. W. (2010). Tetrahymena spp. (Protista, Ciliophora) as test species in rapid multi-level ecotoxicity tests. Acta Protozoologica, 49(4), 271-280.
A decision tree for assessing effects from exposures to multiple substances
Price, P., Dhein, E., Hamer, M., Han, X., Heneweer, M., Junghans, M., Kunz, P., Magyar, C., Penning, H., & Rodriguez, C. (2012). A decision tree for assessing effects from exposures to multiple substances. Environmental Sciences Europe, 24(1), 26 (12 pp.). https://doi.org/10.1186/2190-4715-24-26
A perspective on modern pesticides, pelagic fish declines, and unknown ecological resilience in highly managed ecosystems
Scholz, N. L., Fleishman, E., Brown, L., Werner, I., Johnson, M. L., Brooks, M. L., Mitchelmore, C. L., & Schlenk, D. (2012). A perspective on modern pesticides, pelagic fish declines, and unknown ecological resilience in highly managed ecosystems. BioScience, 62(4), 428-434. https://doi.org/10.1525/bio.2012.62.4.13
A tentative environmental risk assessment of the UV-filters 3-(4-methylbenzylidene-camphor), 2-ethyl-hexyl-4-trimethoxycinnamate, benzophenone-3, benzophenone-4 and 3-benzylidene camphor
Fent, K., Kunz, P. Y., Zenker, A., & Rapp, M. (2010). A tentative environmental risk assessment of the UV-filters 3-(4-methylbenzylidene-camphor), 2-ethyl-hexyl-4-trimethoxycinnamate, benzophenone-3, benzophenone-4 and 3-benzylidene camphor. Marine Environmental Research, 69(Suppl. 1), S4-S6. https://doi.org/10.1016/j.marenvres.2009.10.010
Advantages of passive sampling
Vermeirssen, E., Hollender, J., & Zennegg, M. (2012). Advantages of passive sampling. Eawag News [engl. ed.], 73, 18-22.
Amphibians and plant-protection products: what research and action is needed?
Aldrich, A., Junghans, M., Aeberli, C., Brühl, C. A., Streissl, F., & Schmidt, B. R. (2016). Amphibians and plant-protection products: what research and action is needed? Environmental Sciences Europe, 28(1), 17 (8 pp.). https://doi.org/10.1186/s12302-016-0085-6
Amphibien und Pflanzenschutzmittel. Forschungs- und Handlungsbedarf
Aldrich, A., Junghans, M., Aeberli, C., Brühl, C. A., Streissl, F., & Schmidt, B. R. (2016). Amphibien und Pflanzenschutzmittel. Forschungs- und Handlungsbedarf. Aqua & Gas, 96(4), 14-20.
An analysis of lethal and sublethal interactions among type I and type II pyrethroid pesticide mixtures using standard <I>Hyalella azteca</I> water column toxicity tests
Hoffmann, K. C., Deanovic, L., Werner, I., Stillway, M., Fong, S., & Teh, S. (2016). An analysis of lethal and sublethal interactions among type I and type II pyrethroid pesticide mixtures using standard Hyalella azteca water column toxicity tests. Environmental Toxicology and Chemistry, 35(10), 2542-2549. https://doi.org/10.1002/etc.3422
An application of a decision tree for assessing effects from exposures to multiple substances to the assessment of human and ecological effects from combined exposures to chemicals observed in surface waters and waste water effluents
Price, P., Han, X., Junghans, M., Kunz, P., Watts, C., & Leverett, D. (2012). An application of a decision tree for assessing effects from exposures to multiple substances to the assessment of human and ecological effects from combined exposures to chemicals observed in surface waters and waste water effluents. Environmental Sciences Europe, 24(1), 34 (13 pp.). https://doi.org/10.1186/2190-4715-24-34
An ecotoxicological view on neurotoxicity assessment
Legradi, J. B., Di Paolo, C., Kraak, M. H. S., van der Geest, H. G., Schymanski, E. L., Williams, A. J., Dingemans, M. M. L., Massei, R., Brack, W., Cousin, X., Begout, M. L., van der Oost, R., Carion, A., Suarez-Ulloa, V., Silvestre, F., Escher, B. I., Engwall, M., Nilén, G., Keiter, S. H., … Hollert, H. (2018). An ecotoxicological view on neurotoxicity assessment. Environmental Sciences Europe, 30(1), 46 (34 pp.). https://doi.org/10.1186/s12302-018-0173-x
An interlaboratory study on passive sampling of emerging water pollutants
Vrana, B., Smedes, F., Prokeš, R., Loos, R., Mazzella, N., Miege, C., Budzinski, H., Vermeirssen, E., Ocelka, T., Gravell, A., & Kaserzon, S. (2016). An interlaboratory study on passive sampling of emerging water pollutants. Trends in Analytical Chemistry, 76, 153-165. https://doi.org/10.1016/j.trac.2015.10.013
Anhaltend hohe PSM-Belastung in Bächen. NAWA SPEZ 2017: kleine Gewässer in Gebieten mit intensiver Landwirtschaft verbreitet betroffen
Spycher, S., Teichler, R., Vonwyl, E., Longrée, P., Stamm, C., Singer, H., Daouk, S., Doppler, T., Junghans, M., & Kunz, M. (2019). Anhaltend hohe PSM-Belastung in Bächen. NAWA SPEZ 2017: kleine Gewässer in Gebieten mit intensiver Landwirtschaft verbreitet betroffen. Aqua & Gas, 99(4), 14-25.
 

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