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The UK Smoke Constituents Testing Study. Summary of Results and Comparison with Other Studies


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1. Baker, R.R. and C.J. Proctor: Where there's smoke; Chemistry in Britain 37 (2001) 38–41.Search in Google Scholar

2. IARC: Evaluation of the carcinogenic risk of chemicals to humans: Tobacco smoking, International Agency for Research on Cancer, Lyon, France, 1986, IARC Monograph 38.Search in Google Scholar

3. Baker, R.R.: Smoke chemistry; in: Tobacco: Production, chemistry and technology, edited by D.L. Davis and M.T. Nielsen, Blackwell Science, Oxford, 1999, Chapter 12.Search in Google Scholar

4. Green, C.R. and A. Rodgman: The Tobacco Chemists’ Research Conference: A half-century forum for ad-vances in analytical methodology of tobacco and its products; Rec. Avd, Tob. Sci. 22 (1996) 131–304.Search in Google Scholar

5. Rodgman, A., C.J. Smith, and T.A. Perfetti: The com-position of cigarette smoke: A retrospective, with em-phasis on polycyclic components; Human Exptl. Toxi-col. 19 (2000) 573–595.Search in Google Scholar

6. Hoffmann, D. and I. Hoffmann: The changing ciga-rette: Chemical studies and bioassays; in: Risks associated with smoking cigarettes with low machine-mea-sured yields of tar and nicotine; edited by DHHS, Smoking and Tobacco Control Monograph 13, NCI, NIH, Bethesda 2001, Chapter 5.Search in Google Scholar

7. DHSS: Fourth Report of the Independent Scientific Committee on Smoking and Health; HMSO, London, 1988.Search in Google Scholar

8. Darrall, K., J. Figgins, R. Brown, and G. Phillip: De-termination of benzene and associated volatile com-pounds in mainstream cigarette smoke; Analyst 123 (1998) 1095–1101.Search in Google Scholar

9. Phillips, G. and R. Waller: Yields of tar and other smoke components from UK cigarettes; Food Chem. Toxicol. 29 (1991) 469–474.Search in Google Scholar

10. LGC Reports to the Department of Health at www.doh.gov.uk/scoth/research.htm.Search in Google Scholar

11. Borgerding, M.F., J.A. Bodnar, and D.E. Wingate: The 1999 Massachusetts benchmark study – the final report; Presented to the Massachusetts Department of Public Health 24 July 2000.Search in Google Scholar

12. Borgerding, M.F., N. Cohen, S.R. Massey, and D.R.E. Thomas, in consultation with M.J. Kaiserman and W.S. Rickert: The 1999 Canadian benchmark study; Pro-vided to Health Canada on 24 May 2000.Search in Google Scholar

13. Australian cigarette emissions data (2001) www.health.gov.au/pubhlth/strateg/drugs/tobacco/ emis_data.htm.Search in Google Scholar

14. Tso, T.C., G. Rathkamp G, and D. Hoffmann: Chemical studies on tobacco smoke XXI: Correlation and multiple regression among selected cigarette-smoke constituents and leaf characteristics of bright tobacco; Beitr. Tabakforsch. 7 (1973) 190–194.Search in Google Scholar

15. Tso, T.C., J.F. Chaplin, J.D. Adams, and D. Hoffmann: Simple correlation and multiple regression among leaf and smoke characteristics of burley tobaccos; Beitr. Tabakforsch. Int. 11(1982) 141–150.Search in Google Scholar

16. ISO 5725: Accuracy (trueness and precision) of mea-surement methods and results – Part 1: General princi-ples and definitions; International Organisation for Standardisation, Geneva, 1994 (E).Search in Google Scholar

17. ISO 3402: Tobacco and tobacco products – Atmo-sphere for conditioning and testing; International Or-ganisation for Standardisation, Geneva, 1999.Search in Google Scholar

18. ISO 3308: Routine analytical smoking machine – Defi-nition and standard conditions; International Organisation for Standardisation, Geneva, 2000.Search in Google Scholar

19. Purkis, S.W., C.A. Hill, and I.A. Bailey: Current mea-surement reliability of selected smoke analytes; Beitr. Tabakforsch. Int. 20 (2003) 314–324.Search in Google Scholar

20. Weisberg, S.: Applied linear regression; Wiley, New York, 1985.Search in Google Scholar

21. Leffingwell, J.C.: Basic chemical constituents of tobacco leaf and differences among tobacco types; in: Tobacco: Production, chemistry and technology, edited by D.L. Davis and M.T. Nielsen, Blackwell Science, Oxford, 1999, Chapter 8.Search in Google Scholar

22. Norman, A.: Cigarette design and materials; in: Tobacco: Production, chemistry and technology, edited by D.L. Davis and M.T. Nielsen, Blackwell Science, Oxford, 1999, Chapter 11b.Search in Google Scholar

23. Baker, R. and R. Crellin: The diffusion of carbon mon-oxide out of cigarettes; Beitr. Tabakforsch. Int. 9 (1977) 131–140.Search in Google Scholar

24. Hoffmann, D. and E. Wynder: Filtration of phenols from tobacco smoke; J. Natl. Cancer Inst. 30 (1963) 67–84.Search in Google Scholar

25. Draper, N.R. and H. Smith: Applied regression analy-sis; Wiley, New York, 1966.Search in Google Scholar

26. ISO 8243: Sampling tobacco and tobacco products part 3. Method of sampling cigarettes; International Or-ganisation for Standardisation, Geneva, 1991.Search in Google Scholar

27. Horwitz, W., L.R. Kamps, and K.W. Boyer: Quality assurance in the analysis of food and trace constituents; J. Assoc. Off. Anal. Chem 63 (1980) 1344–1354.Search in Google Scholar

28. Rickert, W.S. and W.G. Wright: Stability of yields of Canadian mandated analytes from the Kentucky refer-ence cigarette; CORESTA Conference 2002, paper ST26, available at www.coresta.org.Search in Google Scholar

29. Hahn, J. and W.-D. Heller: Determination of carbon monoxide in cigarette smoke. Problems in evaluating results; Deutsche Lebensmittel Rundschau 98 (2002) 165–169.Search in Google Scholar

30. Task Force on smoking methods development, www.coresta.org and follow links to special analytes task force.Search in Google Scholar

31. Data on Canadian cigarettes’ smoke constituents yields, www.healthplanning.gov.bc.ca/ttdr/index.htmlSearch in Google Scholar

eISSN:
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Journal Subjects:
General Interest, Life Sciences, other, Physics