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Extrapolating metal (Cu, Ni, Zn) toxicity from individuals to populations across daphnia species using mechanistic models : the roles of uncertainty propagation and combined physiological modes of action
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- Journal Article
- A1
- open access
Metal mixture effects of Ni, Cu, and Zn in a multispecies, two-trophic-level algal-daphnid microcosm can be predicted from single-trophic-level effects : the role of indirect toxicity
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- Journal Article
- A1
- open access
Investigating population-level toxicity of the antidepressant citalopram in harpacticoid copepods using in vivo methods and bioenergetics-based population modeling
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- Journal Article
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- open access
Metal mixture toxicity of Ni, Cu, and Zn in freshwater algal communities and the correlation of single-species sensitivities among single metals : a comparative analysis
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- Journal Article
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Development and validation of a mixture toxicity implementation in the dynamic energy budget-individual-based model : effects of copper and zinc on Daphnia magna populations
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The unexpected absence of nickel effects on a Daphnia population at three temperatures is correctly predicted by a dynamic energy budget individual-based model (DEB-IMB)
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A multivariate biomarker-based model predicting population-level responses of Daphnia magna