Referenties Syngenta


[1] Rosemary Mason R., Tennekes H., Sánchez-Bayo F., Jepsen P.U. (in press) Immune Suppression by Neonicotinoid Insecticides at the Root of Global Wildlife Declines

[2] Claire Thompson for Grist January 12th 2012. http://www.guardian.co.uk/environment/2012/jan/13/honeybee-problem-critical-point

[3] http://www.efsa.europa.eu/en/efsajournal/pub/3066.htm

[4] http://www.efsa.europa.eu/en/efsajournal/pub/3067.htm

[5] http://www.efsa.europa.eu/en/efsajournal/pub/3068.htm

[6] http://www.plightofthebees.com

[7] www.merchantsofdoubt.org

[8] http://www.eea.europa.eu/publications/late-lessons-2, see part B Section 16

[9] Communication from the Commission to the European Parliament and the Council on Honeybee Health COM(2010) 714 final: http://ec.europa.eu/food/animal/liveanimals/bees/docs/honeybee_health_communication_en.pdf

[10] http://www.reterurale.it/downloads/APENET_2010_Report_EN%206_11.pdf

[11] A Common Pesticide Decreases Foraging Success and Survival in Honey Bees. Mickaël Henry et al., http://www.sciencemag.org/content/early/2012/03/28/science.1215025.full.pdf Science 1215025. Published online 29 March 2012.

[12] Neonicotinoid Pesticide Reduces Bumble Bee Colony Growth and Queen. Production. Science, Penelope R. Whitehorn et al., http://www.sciencemag.org/content/early/2012/03/28/science.1215025.full.pdf. Science 1215025. Published online 29 March 2012.

[13] Schneider C. W., Tautz J., Grünewald B., Fuchs S. (2012). RFID tracking of sublethal effects of two neonicotinoid insecticides on the foraging behavior of Apis mellifera. PLoS ONE 7, e30023.

[14] Krupke CH, Hunt GJ, Eitzer BD, et al. Multiple routes of exposure for honey bees living near agricultural fields. PLoS One 2012; 7(1):e29268.

[15] Ombudsman investigates whether the Commission should do more to combat increased bee mortality. European Ombudsman 2012. http://www.ombudsman.europa.eu/en/press/release.faces/en/11428/html.bookmark

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[17] Girolami, V.; Mazzon, L.; Squartini, A.; Mori, N.; Marzaro, M.; Di Bernardo, A.; Greatti, M.; Giorio, C. & Tapparo, A., 2009. Translocation of neonicotinoid insecticides from coated seeds to seedling guttation drops: a novel way of intoxication for bees. Journal of economic entomology. 102(5):1808-15.

[18] Kimura-Kuroda J, Komuta Y, Kuroda Y, Hayashi M, Kawano H (2012) Nicotine-Like Effects of the Neonicotinoid Insecticides Acetamiprid and Imidacloprid on Cerebellar Neurons from Neonatal Rats. PLoS ONE 7(2): e32432. doi:10.1371/journal.pone.0032432

[19] Sánchez-Bayo F, Tennekes HA, Goka K (2013) Impact of Systemic Insecticides on Organisms and Ecosystems http://cdn.intechopen.com/pdfs/40497/InTech-Impact_of_systemic_insecticides_on_organisms_and_ecosystems.pdf

Mullin, C. A., Frazier, M., Frazier, J. L., Ashcraft, S., Simonds, R., D.v, E., & Pettis, J. S. (2010). High levels of miticides and agrochemicals in North American apiaries: implications for honey bee health. PLoS One, 5(3), e9754.

Held, D. W., & Parker, S. (2011). Efficacy of soil applied neonicotinoid insecticides against the azalea lace bug, Stephanitis pyrioides, in the landscape. Florida Entomol.,94(3), 599-607.

Tapparo A., Giorio C, Marzaro M., Marton D, Solda L, Girolami V (2011) Rapid analysis of neonicotinoid insecticides in guttation drops of corn [maize] seedlings obtained from coated seeds. J. Environ. Monit., 13(6), 1564-1568

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[20 ] Gallai, N.; Salles, J.; Settele, J. & Vaissiere, B., 2009. Economic valuation of the vulnerability of world agriculture confronted with pollination decline. Ecological Economics. 68: 810-821.

[21]European Biodiversity Strategy - http://ec.europa.eu/environment/nature/info/pubs/docs/brochures/2020%20Biod%20brochure20final%20lowres.pdf

[22] Garibaldi, L.A., Marcelo, A.A., Klein, A.M., Cunningham, S.A., & Harder, L.D. (2011). Global growth and stability of agricultural yield decrease with pollinator dependence. Proceedings of the National Academy of Sciences. 108(4):5909-5914.

[23] PAN-Europe opinion on the Humboldt report on “The value of Neonicotinoids seed treatment in the European Union”. www.pan-europa.info

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[25] Sgolastra F., Renzi T., Draghetti S., Medrzycki P., Lodesani M., Maini S., Porrini C.(2012) Effects of neonicotinoid dust from maize seed-dressing on honey bees. Bulletin of Insectology (65), pp. 273-280

[26] Krupke CH, Hunt GJ, Eitzer BD, Andino G, Given K (2012) Multiple Routes of Pesticide Exposure for Honey Bees Living Near Agricultural Fields. PLoS ONE 7(1): e29268. doi:10.1371/journal.pone.0029268

[27] Sánchez-Bayo F, Tennekes HA, Goka K (2013) Impact of Systemic Insecticides on Organisms and Ecosystems http://cdn.intechopen.com/pdfs/40497/InTech-Impact_of_systemic_insecticides_on_organisms_and_ecosystems.pdf

[28] Jinguji H., Thuyet D.Q., Uéda T., Watanabe H. (2013) Effect of imidacloprid and fipronil pesticide application on Sympetrum infuscatum (Libellulidae: Odonata) larvae and adults. Paddy and Water Environment January 2013, Volume 11, Issue 1-4, pp 277-284

Van Dijk T. (2010) Effects of neonicotinoid pesticide pollution of Dutch surface water on non-target species abundance. MSc Thesis

[29] http://edepot.wur.nl/15512

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