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Approaches to test the neurotoxicity of environmental contaminants in the zebrafish model - from behavior to molecular mechanisms
Fitzgerald, J. A., Könemann, S., Krümpelmann, L., Županič, A., & vom Berg, C. (2021). Approaches to test the neurotoxicity of environmental contaminants in the zebrafish model - from behavior to molecular mechanisms. Environmental Toxicology and Chemistry, 40(4), 989-1006. https://doi.org/10.1002/etc.4951
Sub-lethal peak exposure to insecticides triggers olfaction-mediated avoidance in zebrafish larvae
Könemann, S., Meyer, S., Betz, A., Županič, A., & vom Berg, C. (2021). Sub-lethal peak exposure to insecticides triggers olfaction-mediated avoidance in zebrafish larvae. Environmental Science and Technology, 55(17), 11835-11847. https://doi.org/10.1021/acs.est.1c01792
Sampling rates for passive samplers exposed to a field-relevant peak of 42 organic pesticides
Schreiner, V. C., Bakanov, N., Kattwinkel, M., Könemann, S., Kunz, S., Vermeirssen, E. L. M., & Schäfer, R. B. (2020). Sampling rates for passive samplers exposed to a field-relevant peak of 42 organic pesticides. Science of the Total Environment, 740, 140376 (10 pp.). https://doi.org/10.1016/j.scitotenv.2020.140376
Monitoring estrogenic activities of waste and surface waters using a novel <em>in vivo</em> zebrafish embryonic (EASZY) assay: comparison with <em>in vitro</em> cell-based assays and determination of effect-based trigger values
Brion, F., De Gussem, V., Buchinger, S., Hollert, H., Carere, M., Porcher, J. M., … Aït-Aïssa, S. (2019). Monitoring estrogenic activities of waste and surface waters using a novel in vivo zebrafish embryonic (EASZY) assay: comparison with in vitro cell-based assays and determination of effect-based trigger values. Environment International, 130, 104896 (9 pp.). https://doi.org/10.1016/j.envint.2019.06.006
Fish-gut-on-chip: development of a microfluidic bioreactor to study the role of the fish intestine <em>in vitro</em>
Drieschner, C., Könemann, S., Renaud, P., & Schirmer, K. (2019). Fish-gut-on-chip: development of a microfluidic bioreactor to study the role of the fish intestine in vitro. Lab on a Chip, 19(19), 3268-3276. https://doi.org/10.1039/C9LC00415G
Combination of in situ feeding rate experiments and chemical body burden analysis to assess the influence of micropollutants in wastewater on <i>Gammarus pulex</i>
Könemann, S., Müller, Y., Tschentscher, D., Krauss, M., Inostroza, P. A., Brückner, I., … Hollert, H. (2019). Combination of in situ feeding rate experiments and chemical body burden analysis to assess the influence of micropollutants in wastewater on Gammarus pulex. International Journal of Environmental Research and Public Health, 16(5), 883 (13 pp.). https://doi.org/10.3390/ijerph16050883
Screening and risk management solutions for steroidal estrogens in surface and wastewater
Kase, R., Javurkova, B., Simon, E., Swart, K., Buchinger, S., Könemann, S., … Werner, I. (2018). Screening and risk management solutions for steroidal estrogens in surface and wastewater. Trends in Analytical Chemistry, 102, 343-358. https://doi.org/10.1016/j.trac.2018.02.013
Effect-based and chemical analytical methods to monitor estrogens under the European Water Framework Directive
Könemann, S., Kase, R., Simon, E., Swart, K., Buchinger, S., Schlüsener, M., … Carere, M. (2018). Effect-based and chemical analytical methods to monitor estrogens under the European Water Framework Directive. Trends in Analytical Chemistry, 102, 225-235. https://doi.org/10.1016/j.trac.2018.02.008