Response predictions for organisms water-exposed to metal mixtures: a meta-analysis.
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Quantifying synergy: a systematic review of mixture toxicity studies within environmental toxicologyMetal contamination in harbours impacts life-history traits and metallothionein levels in snails.Modeling and interpreting biological effects of mixtures in the environment: introduction to the metal mixture modeling evaluation project.MIXTURE TOXICITY IN THE MARINE ENVIRONMENT: MODEL DEVELOPMENT AND EVIDENCE FOR SYNERGISM AT ENVIRONMENTAL CONCENTRATIONS.Additive toxicity of zinc and arsenate on barley (Hordeum vulgare) root elongation.A test of the additivity of acute toxicity of binary-metal mixtures of ni with Cd, Cu, and Zn to Daphnia magna, using the inflection point of the concentration-response curves.Mixture toxicity of nickel and zinc to Daphnia magna is noninteractive at low effect sizes but becomes synergistic at high effect sizes.Iron and copper act synergistically to delay anaerobic growth of bacteria.Surface Electrical Potentials of Root Cell Plasma Membranes: Implications for Ion Interactions, Rhizotoxicity, and Uptake.Testing an application of a biotic ligand model to predict acute toxicity of metal mixtures to rainbow trout.Multimetal accumulation in crustaceans in surface water related to body size and water chemistry.Unexpected toxic interactions in the freshwater amphipod Gammarus pulex (L.) exposed to binary copper and nickel mixtures.Comparison of chronic mixture toxicity of nickel-zinc-copper and nickel-zinc-copper-cadmium mixtures between Ceriodaphnia dubia and Pseudokirchneriella subcapitata.Reproductive toxicity of binary and ternary mixture combinations of nickel, zinc, and lead to Ceriodaphnia dubia is best predicted with the independent action model.Acute Toxicity of Ternary Cd-Cu-Ni and Cd-Ni-Zn Mixtures to Daphnia magna: Dominant Metal Pairs Change along a Concentration Gradient.The effect of binary mixtures of zinc, copper, cadmium, and nickel on the growth of the freshwater diatom Navicula pelliculosa and comparison with mixture toxicity model predictions.Chronic toxicity of binary-metal mixtures of cadmium and zinc to Daphnia magna.Metal mixture modeling evaluation project: 2. Comparison of four modeling approaches.Synergistic effect of copper and low temperature over Listeria monocytogenes.Acute toxicity of binary-metal mixtures of copper, zinc, and nickel to Pimephales promelas: Evidence of more-than-additive effect.Application of a generalized linear mixed model to analyze mixture toxicity: survival of brown trout affected by copper and zinc.Aquatic toxicity of nanosilver colloids to different trophic organisms: contributions of particles and free silver ion.The joint toxicity of type I, II, and nonester pyrethroid insecticides.Risk assessment of environmental mixture effects
P2860
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P2860
Response predictions for organisms water-exposed to metal mixtures: a meta-analysis.
description
2011 nî lūn-bûn
@nan
2011年の論文
@ja
2011年学术文章
@wuu
2011年学术文章
@zh
2011年学术文章
@zh-cn
2011年学术文章
@zh-hans
2011年学术文章
@zh-my
2011年学术文章
@zh-sg
2011年學術文章
@yue
2011年學術文章
@zh-hant
name
Response predictions for organisms water-exposed to metal mixtures: a meta-analysis.
@en
Response predictions for organisms water-exposed to metal mixtures: a meta-analysis.
@nl
type
label
Response predictions for organisms water-exposed to metal mixtures: a meta-analysis.
@en
Response predictions for organisms water-exposed to metal mixtures: a meta-analysis.
@nl
prefLabel
Response predictions for organisms water-exposed to metal mixtures: a meta-analysis.
@en
Response predictions for organisms water-exposed to metal mixtures: a meta-analysis.
@nl
P2860
P356
P1476
Response predictions for organisms water-exposed to metal mixtures: a meta-analysis
@en
P2093
Geert R de Snoo
Martina G Vijver
P2860
P304
P356
10.1002/ETC.499
P577
2011-04-02T00:00:00Z