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Journal Abstract Search
1060 related items for PubMed ID: 27329202
1. Comparative chronic toxicity of imidacloprid, clothianidin, and thiamethoxam to Chironomus dilutus and estimation of toxic equivalency factors. Cavallaro MC, Morrissey CA, Headley JV, Peru KM, Liber K. Environ Toxicol Chem; 2017 Feb; 36(2):372-382. PubMed ID: 27329202 [Abstract] [Full Text] [Related]
2. Cumulative toxicity of neonicotinoid insecticide mixtures to Chironomus dilutus under acute exposure scenarios. Maloney EM, Morrissey CA, Headley JV, Peru KM, Liber K. Environ Toxicol Chem; 2017 Nov; 36(11):3091-3101. PubMed ID: 28636110 [Abstract] [Full Text] [Related]
3. Can chronic exposure to imidacloprid, clothianidin, and thiamethoxam mixtures exert greater than additive toxicity in Chironomus dilutus? Maloney EM, Morrissey CA, Headley JV, Peru KM, Liber K. Ecotoxicol Environ Saf; 2018 Jul 30; 156():354-365. PubMed ID: 29573726 [Abstract] [Full Text] [Related]
4. Neonicotinoid insecticide mixtures: Evaluation of laboratory-based toxicity predictions under semi-controlled field conditions. Maloney EM, Liber K, Headley JV, Peru KM, Morrissey CA. Environ Pollut; 2018 Dec 30; 243(Pt B):1727-1739. PubMed ID: 30408860 [Abstract] [Full Text] [Related]
5. Chronic toxicity of 6 neonicotinoid insecticides to Chironomus dilutus and Neocloeon triangulifer. Raby M, Zhao X, Hao C, Poirier DG, Sibley PK. Environ Toxicol Chem; 2018 Oct 30; 37(10):2727-2739. PubMed ID: 30055027 [Abstract] [Full Text] [Related]
6. Chronic Toxicities of Neonicotinoids to Nymphs of the Common New Zealand Mayfly Deleatidium spp. Macaulay SJ, Hageman KJ, Alumbaugh RE, Lyons SM, Piggott JJ, Matthaei CD. Environ Toxicol Chem; 2019 Nov 30; 38(11):2459-2471. PubMed ID: 31373707 [Abstract] [Full Text] [Related]
7. Sensitivity of the early-life stages of freshwater mollusks to neonicotinoid and butenolide insecticides. Prosser RS, de Solla SR, Holman EAM, Osborne R, Robinson SA, Bartlett AJ, Maisonneuve FJ, Gillis PL. Environ Pollut; 2016 Nov 30; 218():428-435. PubMed ID: 27450416 [Abstract] [Full Text] [Related]
8. Comprehensive characterization of the acute and chronic toxicity of the neonicotinoid insecticide thiamethoxam to a suite of aquatic primary producers, invertebrates, and fish. Finnegan MC, Baxter LR, Maul JD, Hanson ML, Hoekstra PF. Environ Toxicol Chem; 2017 Oct 30; 36(10):2838-2848. PubMed ID: 28493485 [Abstract] [Full Text] [Related]
9. Sublethal effects on wood frogs chronically exposed to environmentally relevant concentrations of two neonicotinoid insecticides. Robinson SA, Richardson SD, Dalton RL, Maisonneuve F, Trudeau VL, Pauli BD, Lee-Jenkins SS. Environ Toxicol Chem; 2017 Apr 30; 36(4):1101-1109. PubMed ID: 28248437 [Abstract] [Full Text] [Related]
10. Lethal and sublethal toxicity of neonicotinoid and butenolide insecticides to the mayfly, Hexagenia spp. Bartlett AJ, Hedges AM, Intini KD, Brown LR, Maisonneuve FJ, Robinson SA, Gillis PL, de Solla SR. Environ Pollut; 2018 Jul 30; 238():63-75. PubMed ID: 29544197 [Abstract] [Full Text] [Related]
11. Binding properties to nicotinic acetylcholine receptors can explain differential toxicity of neonicotinoid insecticides in Chironomidae. Maloney EM, Taillebois E, Gilles N, Morrissey CA, Liber K, Servent D, Thany SH. Aquat Toxicol; 2021 Jan 30; 230():105701. PubMed ID: 33249296 [Abstract] [Full Text] [Related]
12. Acute toxicity of 6 neonicotinoid insecticides to freshwater invertebrates. Raby M, Nowierski M, Perlov D, Zhao X, Hao C, Poirier DG, Sibley PK. Environ Toxicol Chem; 2018 May 30; 37(5):1430-1445. PubMed ID: 29336495 [Abstract] [Full Text] [Related]
13. Neonicotinoid Insecticides from a Marine Perspective: Acute and Chronic Copepod Testing and Derivation of Environmental Quality Standards. Moeris S, Vanryckeghem F, Demeestere K, De Schamphelaere KAC. Environ Toxicol Chem; 2021 May 30; 40(5):1353-1367. PubMed ID: 33465261 [Abstract] [Full Text] [Related]
14. Relative chronic sensitivity of neonicotinoid insecticides to Ceriodaphnia dubia and Daphnia magna. Raby M, Zhao X, Hao C, Poirier DG, Sibley PK. Ecotoxicol Environ Saf; 2018 Nov 15; 163():238-244. PubMed ID: 30056337 [Abstract] [Full Text] [Related]
15. Community-level and phenological responses of emerging aquatic insects exposed to 3 neonicotinoid insecticides: An in situ wetland limnocorral approach. Cavallaro MC, Liber K, Headley JV, Peru KM, Morrissey CA. Environ Toxicol Chem; 2018 Sep 15; 37(9):2401-2412. PubMed ID: 29877579 [Abstract] [Full Text] [Related]
16. Neonicotinoids target distinct nicotinic acetylcholine receptors and neurons, leading to differential risks to bumblebees. Moffat C, Buckland ST, Samson AJ, McArthur R, Chamosa Pino V, Bollan KA, Huang JT, Connolly CN. Sci Rep; 2016 Apr 28; 6():24764. PubMed ID: 27124107 [Abstract] [Full Text] [Related]
17. Comparing the Acute Toxicity of Imidacloprid with Alternative Systemic Insecticides in the Aquatic Insect Chironomus dilutus. Maloney EM, Sykes H, Morrissey C, Peru KM, Headley JV, Liber K. Environ Toxicol Chem; 2020 Mar 28; 39(3):587-594. PubMed ID: 31751493 [Abstract] [Full Text] [Related]
18. Oral acute toxicity of imidacloprid, thiamethoxam and clothianidin in eared doves: A contribution for the risk assessment of neonicotinoids in birds. Addy-Orduna LM, Brodeur JC, Mateo R. Sci Total Environ; 2019 Feb 10; 650(Pt 1):1216-1223. PubMed ID: 30308809 [Abstract] [Full Text] [Related]
19. Neonicotinoids and bumblebees (Bombus terrestris): effects on nectar consumption in individual workers. Thompson HM, Wilkins S, Harkin S, Milner S, Walters KF. Pest Manag Sci; 2015 Jul 10; 71(7):946-50. PubMed ID: 25132051 [Abstract] [Full Text] [Related]