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Cited article:

A quantitative Apis mellifera hazard and risk assessment model (AMHRA) illustrated with the insecticide sulfoxaflor: sulfoxaflor environmental science review part VI

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Weight of evidence assessment from field studies on effects of the insecticide sulfoxaflor on hymenopteran pollinators: sulfoxaflor environmental science review part V

J. R. Purdy, K. R. Solomon, V. J. Kramer and J. P. Giesy
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Contamination of Honeybee (Apis mellifera L.) Royal Jelly by Pesticides and Sample Preparation Methods for Its Determination: A Critical Appraisal

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What about honey bee jelly? Pesticide residues in larval food jelly of the Western honey bee Apis mellifera

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The BEEHAVEecotox Model—Integrating a Mechanistic Effect Module into the Honeybee Colony Model

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Colony-level pesticide exposure affects honey bee (Apis mellifera L.) royal jelly production and nutritional composition

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Pollen Treated with a Combination of Agrochemicals Commonly Applied During Almond Bloom Reduces the Emergence Rate and Longevity of Honey Bee (Hymenoptera: Apidae) Queens

Dylan F Ricke, Chia-Hua Lin, Reed M Johnson and Michael Simone-Finstrom
Journal of Insect Science 21 (6) (2021)
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Dietary requirements of individual nectar foragers, and colony-level pollen and nectar consumption: a review to support pesticide exposure assessment for honey bees

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From field to food II – will pesticide-contaminated pollen diet lead to a contamination of worker jelly?

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Acetylcholine and Its Receptors in Honeybees: Involvement in Development and Impairments by Neonicotinoids

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From field to food—will pesticide-contaminated pollen diet lead to a contamination of royal jelly?

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Apidologie 49 (1) 112 (2018)
https://doi.org/10.1007/s13592-017-0533-3

Immunosuppression in Honeybee Queens by the Neonicotinoids Thiacloprid and Clothianidin

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Scientific Reports 7 (1) (2017)
https://doi.org/10.1038/s41598-017-04734-1

Mechanistic modeling of pesticide exposure: The missing keystone of honey bee toxicology

Douglas B. Sponsler and Reed M. Johnson
Environmental Toxicology and Chemistry 36 (4) 871 (2016)
https://doi.org/10.1002/etc.3661

Ecological Risk Assessment for Chlorpyrifos in Terrestrial and Aquatic Systems in the United States

G. Christopher Cutler, John Purdy, John P. Giesy and Keith R. Solomon
Reviews of Environmental Contamination and Toxicology, Ecological Risk Assessment for Chlorpyrifos in Terrestrial and Aquatic Systems in the United States 231 219 (2014)
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Standard methods for toxicology research in Apis mellifera

Piotr Medrzycki, Hervé Giffard, Pierrick Aupinel, et al.
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The potential impacts of insecticides on the life-history traits of bees and the consequences for pollination

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Basic and Applied Ecology 12 (4) 321 (2011)
https://doi.org/10.1016/j.baae.2010.12.004

Biological and Biochemical Effects of Chronic Exposure to Very Low Levels of Dietary Cypermethrin (Cymbush) on Honeybee Colonies (Hymenoptera: Apidae)

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Ecotoxicology and Environmental Safety 44 (2) 147 (1999)
https://doi.org/10.1006/eesa.1999.1812