Aninat, C., André, F., Delaforge, M., 2005. Oxidative metabolism by P450 and function coupling to efflux systems: Modulation of mycotoxin toxicity. Food Additives and Contaminants 22(4): 361-368.
CrossrefGoogle Scholar
Bakker, G.J.I., Schothorst, R.C., Jekel, A.A., Sizoo, E.A., Pereboom, D. and Van Egmond, H.P., 2009. Determination of mean daily intakes of aflatoxin B1, aflatoxin M1, ochratoxin A, fumonisins and trichothecenes in 24-hour diets of children in the Netherlands. World Mycotoxin Journal 2: 451-459.
Wageningen Academic PublishersGoogle Scholar
Battilani, P., Costa, L.G., Dossena, A., Gullino, M.L., Marchelli, R., Galaverna, G., Pietri, A., Dall’Asta, C., Giorni, P., Spadaro, D. and Gualla, A., 2008. Scientific information on mycotoxins and natural plant toxicants. Scientific/technical report. CFP/EFSA/CONTAM/2008/01, pp. 1-467. Available at: http://tinyurl.com/os8ldq6. Google Scholar
Benford, D., Bolger, P.M., Carthew, P., Coulet, M., DiNovi, M., Leblanc, J-C., Renwick, A.G., Setzer, R.W., Schlatter, J., Smith, B., Slob, W., Williams, G. and Wildemann, T., 2010a. Application of the margin of exposure (MoE) approach to substances in food that are genotoxic and carcinogenic. Food and Chemical Toxicology 48 Suppl. 1: S2-S24.
CrossrefGoogle Scholar
Benford, D., Leblanc, J-C. and Setzer, R.W., 2010b. Application of the margin of exposure (MoE) approach to substances in food that are genotoxic and carcinogenic. Example: aflatoxin B1 (AFB1). Food and Chemical Toxicology 48 Suppl. 1: S34-S41.
CrossrefGoogle Scholar
Boon, P.E., Bakker, M.I., Van Klaveren, J.D. and Van Rossum, C.T.M., 2009. Risk assessment of the dietary exposure to contaminants and pesticide residues in young children in the Netherlands. RIVM report 350070002/2009. National Institute for Public Health and the Environment (RIVM), Bilthoven, the Netherlands. Available at: http://tinyurl.com/pvt3mks. Google Scholar
Cano-Sancho, G., Gauchi, J.P., Sanchis, V., Marin, S. and Ramos, A.J., 2011. Quantitative dietary exposure assessment of the Catalonian population (Spain) to the mycotoxin deoxynivalenol. Food Additives and Contaminants Part A 28: 1098-1109.
CrossrefGoogle Scholar
Cano-Sancho, G., Marín, S., Ramos, A.J. and Sanchis, V., 2012a. Exposure assessment of T2 and HT2 toxins in Catalonia (Spain). Food and Chemical Toxicology 50: 511-517.
CrossrefGoogle Scholar
Cano-Sancho, G., Sanchis, V., Marin, S. and Ramos, A.J., 2013. Occurrence and exposure assessment of aflatoxins in Catalonia (Spain). Food and Chemical Toxicology 51: 188-193.
CrossrefGoogle Scholar
Coronel, M.B., Marin, S., Cano-Sancho, G., Ramos, A.J. and Sanchis, V., 2012. Exposure assessment to ochratoxin A in Catalonia (Spain) based on the consumption of cereals, nuts, coffee, wine, and beer. Food Additives and Contaminants Part A 29: 979-993.
CrossrefGoogle Scholar
De Boer, W.J., Goedhart, P.W., Hart, A., Kennedy, M.C., Kruisselbrink, J., Owen, H., Roelofs, W. and Van der Voet, H., 2013. MCRA 8.0 reference manual. Available at: http://MCRA8.rivm.nl. Google Scholar
De Boer, W.J., Van der Voet, H., Bokkers, B.G.H., Bakker, M.I. and Boon, P.E., 2009. Comparison of two models for the estimation of usual intake addressing zero consumptions and non-normality. Food Additives and Contaminants Part A 26: 1433-1449.
CrossrefGoogle Scholar
De Boevre, M., Jacxsens, L., Lachat, C., Eeckhout, M., Di Mavungu, J.D., Audenaert, K., Maene, P., Haesaert, G., Kolsteren, P., De Meulenaer, B. and De Saeger, S., 2013. Human exposure to mycotoxins and their masked forms through cereal-based foods in Belgium. Toxicology Letters 218: 281-292.
CrossrefGoogle Scholar
Efron, B., 1979. Bootstrap methods: another look at the jackknife. Annals of Statistics 7: 1-26.
CrossrefGoogle Scholar
Efron, B. and Tibshirani, R., 1993. An introduction to the bootstrap. Chapman & Hall, New York, NY, USA.
Google Scholar
European Food Safety Authority (EFSA), 2005a. Opinion of the scientific committee on a request from EFSA related to a harmonised approach for risk assessment of substances which are both genotoxic and carcinogenic. EFSA Journal 282: 1-31. Google Scholar
European Food Safety Authority (EFSA), 2005b. Opinion of the scientific panel on contaminants in the food chain on a request from the commission related to fumonisins as undesirable substances in animal feed. EFSA Journal 235: 1-32. Google Scholar
European Food Safety Authority (EFSA), 2006. Opinion of the scientific panel on contaminants in the food chain on a request from the commission related to ochratoxin A in food. EFSA Journal 365: 1-56. Google Scholar
European Food Safety Authority (EFSA), 2007. Opinion of the scientific panel on contaminants in the food chain on a request from the commission related to the potential risk by a possible increase of the existing maximum levels for aflatoxins in almonds, hazelnuts and pistachios and derived products. EFSA Journal 446: 1-127. Google Scholar
European Food Safety Authority (EFSA), 2009a. Scientific opinion on risk assessment for a selected group of pesticides from the triazole group to test possible methodologies to assess cumulative effects from exposure through food from these pesticides on human health. The EFSA Journal 7: 1167. Google Scholar
European Food Safety Authority (EFSA), 2009b. General principles for the collection of national food consumption data in the view of a pan-European dietary survey. EFSA Journal 7: 1435. Google Scholar
European Food Safety Authority (EFSA), 2009c. Scientific opinion on the use of the benchmark dose approach in risk assessment. Guidance of the scientific committee. EFSA Journal 7: 1150. Google Scholar
European Food Safety Authority (EFSA), 2011a. Towards a harmonised total diet study approach: a guidance document. EFSA Journal 9: 2450. Google Scholar
European Food Safety Authority (EFSA), 2011b. Scientific opinion on the risks for animal and public health related to the presence of Alternaria toxins in feed and food. EFSA Journal 9: 2407. Google Scholar
European Food Safety Authority (EFSA), 2011c. Scientific opinion on the risks for animal and public health related to the presence of T-2 and HT-2 toxin in food and feed. EFSA Journal 9: 2481. Google Scholar
European Food Safety Authority (EFSA), 2011d. Scientific opinion on the risks for public health related to the presence of zearalenone in food. EFSA Journal 9: 2197. Google Scholar
European Food Safety Authority (EFSA), 2012a. Scientific opinion on the risks for public and animal health related to the presence of citrinin in food and feed. EFSA Journal 10: 2605. Google Scholar
European Food Safety Authority (EFSA), 2012b. Scientific opinion on ergot alkaloids in food and feed. EFSA Journal 10: 2798. Google Scholar
European Food Safety Authority (EFSA), 2012c. Cadmium dietary exposure in the European population. EFSA Journal 10: 2551. Google Scholar
European Food Safety Authority (EFSA), 2012d. Lead dietary exposure in the European population. EFSA Journal 10: 2831. Google Scholar
European Food Safety Authority (EFSA), 2012e. Guidance on the use of probabilistic methodology for modelling dietary exposure to pesticide residues. EFSA Journal 10: 2839. Google Scholar
European Food Safety Authority (EFSA), 2013a. Scientific report of EFSA on deoxynivalenol in food and feed: occurrence and exposure. EFSA Journal 11: 3379. Google Scholar
European Food Safety Authority (EFSA), 2013b. Scientific opinion on risks for animal and public health related to the presence of nivalenol in food and feed. EFSA Journal 11: 3262. Google Scholar
European Food Safety Authority (EFSA), 2013c. Scientific opinion on the risk for public and animal health related to the presence of sterigmatocystin in food and feed. EFSA Journal 11(6): 3254. Google Scholar
European Food Safety Authority (EFSA), 2014a. Scientific opinion on the risks to human and animal health related to the presence of beauvericin and enniatins in food and feed. EFSA Journal 12: 3802. Google Scholar
European Food Safety Authority (EFSA), 2014b. Scientific opinion on the risks for human and animal health related to the presence of modified forms of certain mycotoxins in food and feed. EFSA Journal 12: 3916. Google Scholar
Fleck, S.C., Burkhardt, B., Pfeiffer, E. and Metzler, M., 2012. Alternaria toxins: altertoxin II is a much stronger mutagen and DNA strand breaking mycotoxin than alternariol and its methyl ether in cultured mammalian cells. Toxicology Letters 214: 27-32.
CrossrefGoogle Scholar
Goedhart, P.W., Van der Voet, H., Knüppel, S., Dekkers, A.L.M., Dodd, K.W., Boeing, H. and Van Klaveren, J.D., 2012. A comparison by simulation of different methods to estimate the usual intake distribution for episodically consumed foods. Supporting Publications 2012:EN-299, 65 pp. Available at: http://tinyurl.com/nh8ez3b. Google Scholar
Hoffmann, K., Boeing, H., Dufour, A., Volatier, J.L., Telman, J., Virtanen, M., Becker, W. and De Henauw, S., 2002. Estimating the distribution of usual dietary intake by short-term measurements. European Journal of Clinical Nutrition 56 Suppl. 2: S53-S62.
CrossrefGoogle Scholar
International Agency for Research on Cancer (IARC), 1986. Some naturally occurring and synthetic food components, furocoumarins and ultraviolet radiation. IARC Monographs on the evaluation of carcinogenic risks to humans. Vol. 40. IARC, Lyon, France. Google Scholar
International Agency for Research on Cancer (IARC), 1987. Sterigmatocystin. In: Overall evaluations of carcinogenicity: an updating of IARC Monographs 1 to 42. IARC Monographs on the Evaluation of Carcinogenic Risks to Humans. Supplement 7. IARC, Lyon, France, p. 72. Google Scholar
International Agency for Research on Cancer (IARC), 1993. Some naturally occurring substances: food items and constituents, heterocyclic aromatic amines and mycotoxins. IARC Monographs on the evaluation of carcinogenic risks to humans. Vol. 56. IARC, Lyon, France. Google Scholar
International Agency for Research on Cancer (IARC), 2002. Fumonisins. In: Monograph on the evaluation of carcinogenic risks to humans. Vol. 82. Some traditional herbal medicines, some mycotoxins, naphthalene and styrene. IARC, Lyon, France, pp. 301-366. Google Scholar
International Agency for Research on Cancer (IARC), 2012. Aflatoxins. In: Chemical agents and related occupations. IARC Monographs on the evaluation of carcinogenic risks to humans. Vol. 100F. IARC, Lyon, France, pp. 226-248. Google Scholar
Janssen, E.M., Sprong, R.C., Wester, P.M., De Boevre, M., and Mengelers, M.J.B., in press. Risk assessment of chronic dietary exposure to the conjugated mycotoxin deoxynivalenol-3-β-glucoside in the Dutch population. World Mycotoxin Journal, DOI: http://dx.doi.org/WMJ2015.1876. Google Scholar
Jekel, A.A. and Van Egmond, H.P., 2014. Determination ofT-2/HT-2 toxins in duplicate diet studies in the Netherlands by GC-MS/MS: method development and estimation of human exposure. World Mycotoxin Journal 7: 267-276.
Wageningen Academic PublishersGoogle Scholar
Joint FAO/WHO Expert Committee on Food Additives (JECFA), 1995. Evaluation of certain food additives and contaminants: forty-fourth report of the JECFA. WHO Technical Report Series no. 859. WHO, Geneva, Switzerland. Google Scholar
Joint FAO/WHO Expert Committee on Food Additives (JECFA), 2011. Evaluation of certain food additives and contaminants: seventy-fourth report of the JECFA. WHO Technical Report Series no. 966. WHO, Geneva, Switzerland. Google Scholar
Lopez, P., De Rijk, T., Sprong, R.C. Mengelers, M.J.B. and Castenmiller, J.J.M. and Alewijn, M., in press. A mycotoxin-dedicated total diet study in the Netherlands in 2013: Part II – occurrence. World Mycotoxin Journal, DOI: http://dx.doi.org/10.3920/WMJ2015.1906. Google Scholar
Mengelers, M.J.B., Geraets, L. and Jeurissen, S.M.F., 2013. Ranking of chemical risks in food. In: Proceedings SCICOM symposium 2013. November 29, 2013. Brussels, Belgium, pp. 75-80.
Google Scholar
Nusser, S.M., Carriquiry, A.L., Dodd, K.W. and Fuller, W.A., 1996. A semiparametric transformation approach to estimating usual daily intake distributions. Journal of the American Statistical Association 91: 1440-1449.
CrossrefGoogle Scholar
O’Brien, J., Renwick, A.G., Constable, A., Dybing, E., Müller, D.J.G., Schlatter, J., Slob, W., Tueting, W., Van Benthem, J., Williams, G.M. and Wolfreys, A., 2006 Approaches to the risk assessment of genotoxic carcinogens in food: a critical appraisal. Food and Chemical Toxicology 44: 1613-1635.
CrossrefGoogle Scholar
Ocké, M.C., Van Rossum, C.T.M., Fransen, H.P., Buurma, E.J.M., De Boer, E.J., Brants, H.A.M., Niekerk, E.M., Van der Laan, J.D., Drijvers, J.J.M.M. and Ghameshlou, Z., 2008. Dutch national food consumption survey – young children 2005/2006. RIVM Report 350070001. National Institute for Public Health and the Environment (RIVM), Bilthoven, the Netherlands. Available at: http://tinyurl.com/qaaebpu. Google Scholar
Pronk, M.E.J., Schothorst, R.C. and Van Egmond, H.P., 2002. Toxicology and occurrence of nivalenol, fusarenon X, diacetoxyscirpenol, neosolaniol and 3- and 15-acetyldeoxynivalenol: a review of six trichothecenes. RIVM Report 388802024. National Institute for Public Health and the Environment (RIVM), Bilthoven, the Netherlands. Available at: http://tinyurl.com/nk9v5mg. Google Scholar
Rodríguez-Carrasco, Y., Moltó, J.C., Berrada, H. and Mañes, J., 2014. A survey of trichothecenes, zearalenone and patulin in milled grain-based products using GC-MS/MS. Food Chemistry 146: 212-219.
CrossrefGoogle Scholar
Rowland, M. and Tozer, T.N., 1995. Clinical pharmacokinetics: concepts and applications, 3th edition. Williams and Wilkins, Baltimore, MD, USA.
Google Scholar
Schollenberger, M., Drochner, W. and Müller, H.-M., 2007. Fusarium toxins of the scirpentriol subgroup: a review. Mycopathologica 164: 101-118.
CrossrefGoogle Scholar
Schuchardt, S., Ziemann, C. and Hansen, T., 2014. Combined toxicokinetic and in vivo genotoxicity study on Alternaria toxins. External scientific report. EFSA supporting publication 2014: EN-679. Available at: http://tinyurl.com/pbalq7q. Google Scholar
Schwarz, C., Kreutzer, M. and Marko, D., 2012. Minor contribution of alternariol, alternariol monomethyl ether and tenuazonic acid to the genotoxic properties of extracts from Alternaria alternata infested rice. Toxicology Letters 214: 46-52.
CrossrefGoogle Scholar
Scientific Committee on Food (SCF), 2003. Updated opinion of the Scientific Committee on Food on Fumonisin B1, B2 and B3. Available at: http://tinyurl.com/p2heyw3. Google Scholar
Scott, P.M., 2012. Recent research on fumonisins: a review. Food Additives and Contaminants Part A 29: 242-248.
CrossrefGoogle Scholar
Sirot, V., Fremy, J.-M. and LeBlanc, J.-C., 2013. Dietary exposure to mycotoxins and health risk assessment in the second French total diet study. Food and Chemical Toxicology 52: 1-11.
CrossrefGoogle Scholar
Sirot, V., Volatier, J.L., Calamassi-Tran, G., Dubuisson, C., Ménard, C., Dufou, A. and Leblanc, J.C., 2009. Core food of the French food supply: second total diet study. Food Additives and Contaminants Part A 26: 623-639.
CrossrefGoogle Scholar
Sizoo, E.A. and Van Egmond, H.P., 2005. Analysis of duplicate 24-hour diet samples for aflatoxin B1, aflatoxin M1 and ochratoxin A. Food Additives and Contaminants 22: 163-172.
CrossrefGoogle Scholar
Slob, W., 1993. Modeling long-term exposure of the whole population to chemicals in food. Risk Analysis 13: 525-530.
CrossrefGoogle Scholar
Slob, W., Bakker, M.I., Te Biesebeek, J.D. and Bokkers, B.G.H., 2014. Exploring the uncertainties in cancer risk assessment using the integrated probabilistic risk assessment (IPRA) approach. Risk Analysis 34: 1401-1422.
CrossrefGoogle Scholar
Spadaro, D., Garibaldi, A. and Gullino, M.L., 2008. Occurrence of patulin and its dietary intake through pear, peach, and apricot juices in Italy. Food Additives and Contaminants: Part B 1: 134-139.
CrossrefGoogle Scholar
Sprong, R.C., De Wit-Bos, L., Zeilmaker, M.J., Alewijn, M., Castenmiller, J.J.M. and Mengelers, M.J.B., in press. A mycotoxin-dedicated Total Diet Study in the Netherlands in 2013: Part I – design. World Mycotoxin Journal, DOI: http://dx.doi.org/WMJ2015.1904. Google Scholar
Trucksess, M.W. and Scott, P.M., 2008. Mycotoxins in botanicals and dried fruits: a review. Food Additives and Contaminants Part A 25: 181-192.
CrossrefGoogle Scholar
United States Environmental Protection Agency (US EPA), 2014. Guidance for assessing pesticide risks to bees. US EPA, Washington, DC, USA. Available at: http://tinyurl.com/q8lern7. Google Scholar
Van de Perre, E., Jacxsens, L., Van der Hauwaert, W., Haesaert, I. and De Meulenaer, B., 2014. Journal of Agricultural and Food Chemistry 62: 304-309.
CrossrefGoogle Scholar
Van Klaveren, J.D., Goedhart, P.W., Wapperom, D. and Van der Voet, H., 2012. A European tool for usual intake distribution estimation in relation to data collection by EFSA. Supporting Publications EN-300. Available at: http://tinyurl.com/ovvgdte. Google Scholar
Van Rossum, C.T.M., Fransen, H.P., Verkaik-Kloosterman, J., Buurma-Rethans, E.J.M. and Ocké, M.C., 2011. Dutch National Food Consumption Survey 2007-2010. Diet of children and adults aged 7 to 69 years. Report nr.:350050006. National Institute for Public Health and the Environment (RIVM), Bilthoven, the Netherlands. Available at: http://tinyurl.com/pjzoj4h. Google Scholar
Wogan, G.N., Paglialunga, S. and Newberne, P.M., 1974. Carcinogenic effects of low dietary levels of aflatoxin B1 in rats. Food and Cosmetics Toxicology 12: 681-685.
CrossrefGoogle Scholar
World Health Organization (WHO), 2009. Principles and methods for the risk assessment of chemicals in food. Environmental Health Criteria 240. WHO, Rome, Italy. Google Scholar

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