References
- Pediatrics v.106 Technical report: Irradiation of food Shea,K.M.;Balk,S.J.;Gitterman,B.A.;Miller,M.D.;Shannon,M.W.;Weil,W.B.;Galson,S.K.;Linet,M.;Miller,R.W.;Rogan,W.;Coven,B.;Bearer,C.F.;Etzel,R.A.;Goldman,L.;Halbrook,B.;Kaferstein,F.;Keener,K.;Thayer,D.W.;Hall,L.A. https://doi.org/10.1542/peds.106.6.1505
- Clearance database ICGFI
- Safety and Nutritional Adequacy of Irradiated Food no.Ch 2 Food irradiation WHO
- Roport of a Joint FAO/IAEA/WHO Study Group. WHO Technical Report Series 890 High-dose irradiation: Wholesomeness of food irradiated with dose above 10 kGy WHO
- J Korean Nutr Soc v.29 General survey of detection methods for irradiated foods Yang,J.S.
- Food Res Int v.30 Identification of irradiatied foodstuffs: a review of the recent literature. Haire,D.L.;Chen,G.;Janzen,E.G.;Fraser,L.;Lynch,J.A. https://doi.org/10.1016/S0963-9969(97)00036-7
- Trends Food Sci Technol v.9 Detection of food treated with ionizing radiation Delincee,H. https://doi.org/10.1016/S0924-2244(98)00002-8
- J Korean Soc Food Sci Nutr v.29 Identification of irradiated fishes by ESR spectroscopy Nam,H.S.;Woo,S.H.;Ly,S.Y.;Yang,J.S.
- Korean J Food Sci Technol v.32 Discrimination of irradiated beef using comet assay Jeong,S.K.;Park,J.H.;Ji,S.T.;Park,K.J.;Kim,H.H.;Hyun,C.K.;Shin,H.K.
- Korean J Food Sci Technol v.32 Detection of irradiated agricultural products by thermoluminescence (TL). Woo,S.H.;Yi,S.D.;Yang,J.S.
- J Korean Soc Food Sci Nutr v.30 Analysis of radiolytically proudced hydrocarbons and 2-alkylcyclobutanones from irradiated pinenut Lee,H.J.;Kim,K.Y.
- J Korean Soc Food Sci Nutr v.30 Detection characteristics of hydrocarbons from irradiated legumes of Korean and Chinese origins Lee,E.Y.;Kim,M.O.;Lee,H.J.;Kim,K.S.;Kwon,J.H.
- J Korean Soc Food Sci Nutr v.31 Analysis of radiolytic compounds of lipids for the detection of irradiation in dried Mytilus coruscus Lee,H.J.;Yun,I.N.;Seo,H.Y.;Song,H.P.;Hong,C.H.;Kim,K.S. https://doi.org/10.3746/jkfn.2002.31.4.599
- J Food Sci v.34 The volatile components of irradiated beef and pork fats Champagne,J.R.;Nawar,W.W. https://doi.org/10.1111/j.1365-2621.1969.tb10358.x
- J Agric Food Chem v.17 Effects of high-energy radiation on the lipids of fish Dubravcic,M.F.;Nawar,W.W. https://doi.org/10.1021/jf60163a042
- Lipids v.7 2-Alkylcyclobutanones from the radiolysis of triglycerides LeTellier,P.R.;Nawar,W.W. https://doi.org/10.1007/BF02531273
- JAOCS v.54 Effects of ionizing radiation on some vegetable fats Kavalam,J.R.;Nawar,W.W.
- Nature v.344 Irradiation detection Stevenson,M.H.;Corne,A.V.J.;Hamilton,J.T.G.
- J Agric Food Chem v.39 Synthesis, characterization and potential use of 2-dodecyl-cyclobutanone as a marker for irradiated chicken Boyd,D.R.;Crone,A.V.J.;Hamilton,J.T.G.;Hand,M.V. https://doi.org/10.1021/jf00004a035
- Trends Food Sci Technol v.3 Progress in the identification of irradiated food Stevenson,M.H. https://doi.org/10.1016/S0924-2244(10)80005-6
- Crone AVJ, Hamilton JTG, Stevenson MH. 1992. The detection of 2-dodecylcyclobutanone in radiation-sterillized chicken stored for several years. Int J Food Sci Technol 27: 691-696.
- Int J Food Sci Technol v.27 The detection of 2-dodecylcyclobutanone in radiation-sterillized chicken stored for several years. Crone,A.V.J.;Hamilton,J.T.G.;Stevenson,M.H. https://doi.org/10.1002/jsfa.2740620409
- J Sci Food Agric v.62 Synthesis, characterisation and use of 2-tetradecylcyclobutanone together with other cyclobutanones as markers for irradiated liquid whole egg Crone,A.V.J.;Hand,M.V.;Hamilton,J.T.G.;Sharma,N.D.;Boyd,D.R.;Stevenson,M.H. https://doi.org/10.1002/jsfa.2740620409
- Radiat Phys Chem v.42 The use of 2-dodecylcyclobutanone for the identification of irradiated chicken meat and eggs Stevenson,M.H.;Crone,A.V.J.;Hamilton,J.T.G.;McMurray,C.H. https://doi.org/10.1016/0969-806X(93)90267-X
- Detection methods for irradiated foods, current status Validation of the cyclobutanone protocol for detection of irradiated lipid containing foods by interlaboratory trials Stevenson,M.H. https://doi.org/10.1002/(SICI)1097-0010(20000101)80:1<121::AID-JSFA486>3.0.CO;2-L
- J Sci Food Agric v.80 2-Alkylcyclobutanones as markers for the detection of irradiated mango, papaya, camembert cheese and salmon meat Stewart,E.M.;Moore,S.;Grahm,W.D.;McRoberts,W.C.;Hamilton,J.T.G. https://doi.org/10.1002/(SICI)1097-0010(20000101)80:1<121::AID-JSFA486>3.0.CO;2-L
- Food Sci Ind v.36 Application of irradiation technology for food safety and security Byun,M.W.;Lee,J.W.
- Korean J Soc Food Sci v.13 Studies on the fatty acid composition of egg yolk oil Koh,M.S.;Kim,J.S.;Choi,O.J.;Kim,Y.D. https://doi.org/10.1007/BF02531273
- Lipids v.7 2-Alkyecyclobutanones from the radiolysis of triglycerides LeTellier,P.R.;Nawar,W.W. https://doi.org/10.1007/BF02531273
- Food Technol v.48 Identification of irradiated foods using electron spin resonance spectroscopy and by detection of 2-alkylcyclobutanones Stevenson,M.H.
- PhD Thesis. The Queen's University of Belfast The use of 2-alkylcyclobutanones as markers for the identification of irradiated lipid containing foods. Crone,A.V.J. https://doi.org/10.1002/jsfa.2740580213
- J Sci Food Agric v.58 Effect of storage and cooking on the dose response of 2-dodecylcy-clobutanone, a potential marker for irradiated chicken. Crone,A.V.J.;Hamilton,J.T.G.;Stevenson,M.H. https://doi.org/10.1002/jsfa.2740580213