Scientific Opinion on the science behind the development of a risk assessment of Plant Protection Products on bees (Apis mellifera,Bombusspp. and solitary bees)
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Ecology: Bumblebees and pesticidesAssessment of the abrasion potential of pesticide-treated seeds using the Heubach testTowards a systems approach for understanding honeybee decline: a stocktaking and synthesis of existing models.A large-scale field study examining effects of exposure to clothianidin seed-treated canola on honey bee colony health, development, and overwintering successEnvironmental fate and exposure; neonicotinoids and fipronilCharacteristics of dust particles abraded from pesticide treated seeds: 1. Size distribution using different measuring techniques.Drone exposure to the systemic insecticide Fipronil indirectly impairs queen reproductive potentialBee Community of Commercial Potato Fields in Michigan and Bombus impatiens Visitation to Neonicotinoid-Treated Potato Plants.Pesticide-laden dust emission and drift from treated seeds during seed drilling: a review.A meta-analysis comparing the sensitivity of bees to pesticides.Effects of sublethal doses of thiacloprid and its formulation Calypso® on the learning and memory performance of honey bees.Biopesticide-induced behavioral and morphological alterations in the stingless bee Melipona quadrifasciata.In response: Challenges for future risk assessments--A governmental perspective.Dietary chlorantraniliprole suppresses reproduction in worker bumblebees.Pesticides and bees.An update of the Worldwide Integrated Assessment (WIA) on systemic insecticides. Part 2: impacts on organisms and ecosystems.Lethal and sublethal effects of azadirachtin on the bumblebee Bombus terrestris (Hymenoptera: Apidae).Risk assessment of plant protection productsConclusion on the peer review of the pesticide risk assessment for bees for the active substance clothianidinConclusion on the peer review of the pesticide risk assessment for bees for the active substance thiamethoxamConclusion on the peer review of the pesticide risk assessment for bees for the active substance imidaclopridScientific Opinion on the hazard assessment of endocrine disruptors: Scientific criteria for identification of endocrine disruptors and appropriateness of existing test methods for assessing effects mediated by these substances on human health and...Evaluation of the FERA study on bumble bees and consideration of its potential impact on the EFSA conclusions on neonicotinoidsGuidance on the risk assessment of plant protection products on bees (Apis mellifera,Bombusspp. and solitary bees)International Frameworks Dealing with Human Risk Assessment of Combined Exposure to Multiple ChemicalsScientific Opinion addressing the state of the science on risk assessment of plant protection products for non-target terrestrial plantsPrinciples and process for dealing with data and evidence in scientific assessmentsStatement on the suitability of the BEEHAVE model for its potential use in a regulatory context and for the risk assessment of multiple stressors in honeybees at the landscape levelConclusion on the peer review of the pesticide risk assessment for bees for the active substance imidacloprid considering all uses other than seed treatments and granulesGuidance to develop specific protection goals options for environmental risk assessment at EFSA, in relation to biodiversity and ecosystem servicesAdvancing environmental risk assessment of regulated products under EFSA's remitAssessing the health status of managed honeybee colonies (HEALTHY-B): a toolbox to facilitate harmonised data collectionEffects of solvent on the toxicity of dimethoate in a honey bee in vitro larval study.Neonicotinoid concentrations in UK honey from 2013.Standard methods for toxicology research inApis melliferaImpact of chronic exposure to a pyrethroid pesticide on bumblebees and interactions with a trypanosome parasiteMaintaining the Restriction on Neonicotinoids in the European Union – Benefits and Risks to Bees and Pollination Services
P2860
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P2860
Scientific Opinion on the science behind the development of a risk assessment of Plant Protection Products on bees (Apis mellifera,Bombusspp. and solitary bees)
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2012 nî lūn-bûn
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2012年の論文
@ja
2012年学术文章
@wuu
2012年学术文章
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2012年学术文章
@zh-cn
2012年学术文章
@zh-hans
2012年学术文章
@zh-my
2012年学术文章
@zh-sg
2012年學術文章
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2012年學術文章
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name
Scientific Opinion on the scie ...... ,Bombusspp. and solitary bees)
@de
Scientific Opinion on the scie ...... ,Bombusspp. and solitary bees)
@en
Scientific Opinion on the scie ...... ,Bombusspp. and solitary bees)
@nl
type
label
Scientific Opinion on the scie ...... ,Bombusspp. and solitary bees)
@de
Scientific Opinion on the scie ...... ,Bombusspp. and solitary bees)
@en
Scientific Opinion on the scie ...... ,Bombusspp. and solitary bees)
@nl
prefLabel
Scientific Opinion on the scie ...... ,Bombusspp. and solitary bees)
@de
Scientific Opinion on the scie ...... ,Bombusspp. and solitary bees)
@en
Scientific Opinion on the scie ...... ,Bombusspp. and solitary bees)
@nl
P2860
P356
P1433
P1476
Scientific Opinion on the scie ...... ,Bombusspp. and solitary bees)
@en
P2093
Efsa Panel On Plant Protection Products And Their Residues (ppr)
P2860
P356
10.2903/J.EFSA.2012.2668
P577
2012-05-01T00:00:00Z