Digital Image Analysis of Cigarette Filter Stains as an Indicator of Compensatory Smoking
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A. Strasser | R. O’Connor | E. Wileyto | M. Mooney | E. Wileyto | Andrew A. Strasser | Richard J. O'Connor | Marc E. Mooney
[1] L. Kozlowski,et al. Digital image analysis of cigarette filter staining to estimate smoke exposure. , 2007, Nicotine & tobacco research : official journal of the Society for Research on Nicotine and Tobacco.
[2] C. Lerman,et al. New lower nicotine cigarettes can produce compensatory smoking and increased carbon monoxide exposure. , 2007, Drug and alcohol dependence.
[3] T. Streibel,et al. Quantitative puff-by-puff-resolved characterization of selected toxic compounds in cigarette mainstream smoke. , 2006, Chemical research in toxicology.
[4] L. Kozlowski,et al. The effect of filter vent blocking and smoking topography on carbon monoxide levels in smokers , 2005, Pharmacology Biochemistry and Behavior.
[5] Merete Osler,et al. Effect of smoking reduction on lung cancer risk. , 2005, JAMA.
[6] Faith Allen,et al. Carcinogen Exposure during Short-term Switching from Regular to “Light” Cigarettes , 2005, Cancer Epidemiology Biomarkers & Prevention.
[7] J. Prignot,et al. What can be learnt from tobacco butts? An observational study in a realistic hospital setting. , 2005, The international journal of tuberculosis and lung disease : the official journal of the International Union against Tuberculosis and Lung Disease.
[8] L. Kozlowski,et al. A Digital Image Analysis System for Identifying Filter Vent Blocking on Ultralight Cigarettes , 2005, Cancer Epidemiology Biomarkers & Prevention.
[9] Caryn Lerman,et al. Smoking topography predicts abstinence following treatment with nicotine replacement therapy. , 2004, Cancer epidemiology, biomarkers & prevention : a publication of the American Association for Cancer Research, cosponsored by the American Society of Preventive Oncology.
[10] J. Harris. Incomplete compensation does not imply reduced harm: yields of 40 smoke toxicants per milligram nicotine in regular filter versus low-tar cigarettes in the 1999 Massachusetts Benchmark Study. , 2004, Nicotine & tobacco research : official journal of the Society for Research on Nicotine and Tobacco.
[11] Richard Joseph O'Connor,et al. REFINEMENT AND APPLICATION OF UNOBTRUSIVE METHODS FOR ASSESSING BEHAVIORAL BLOCKING OF FILTER VENTS ON LOW TAR CIGARETTES , 2004 .
[12] D. Hatsukami,et al. Effects of reduced cigarette smoking on levels of 1-hydroxypyrene in urine. , 2004, Cancer epidemiology, biomarkers & prevention : a publication of the American Association for Cancer Research, cosponsored by the American Society of Preventive Oncology.
[13] D. Hatsukami,et al. Effects of reduced cigarette smoking on the uptake of a tobacco-specific lung carcinogen. , 2004, Journal of the National Cancer Institute.
[14] D. Bernstein,et al. A Review of the Influence of Particle Size, Puff Volume, and Inhalation Pattern on the Deposition of Cigarette Smoke Particles in the Respiratory Tract , 2004, Inhalation toxicology.
[15] D. Barr,et al. Development of a method to assess cigarette smoke intake. , 2004, Environmental science & technology.
[16] A. Waters,et al. Smoking topography: reliability and validity in dependent smokers. , 2003, Nicotine & tobacco research : official journal of the Society for Research on Nicotine and Tobacco.
[17] C. Hansch,et al. IARC carcinogens reported in cigarette mainstream smoke and their calculated log P values. , 2003, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[18] D. Brainard. 5 – Color Appearance and Color Difference Specification , 2003 .
[19] P. Boyle,et al. Regulation of cigarette emissions. , 2002, Annals of oncology : official journal of the European Society for Medical Oncology.
[20] S. Stellman,et al. Doses of nicotine and lung carcinogens delivered to cigarette smokers. , 2000, Journal of the National Cancer Institute.
[21] D. Hatsukami,et al. Quantitation of urinary metabolites of a tobacco-specific lung carcinogen after smoking cessation. , 1999, Cancer research.
[22] M. T. Nielsen,et al. Tobacco : production, chemistry, and technology , 1999 .
[23] N. Benowitz. Pharmacology of nicotine: addiction and therapeutics. , 1996, Annual review of pharmacology and toxicology.
[24] L. Kozlowski,et al. The Fagerström Test for Nicotine Dependence: a revision of the Fagerström Tolerance Questionnaire. , 1991, British journal of addiction.
[25] L. Kozlowski,et al. Prevalence of the misuse of ultra-low-tar cigarettes by blocking filter vents. , 1988, American journal of public health.
[26] R. Griffiths,et al. Human cigarette smoking: effects of puff and inhalation parameters on smoke exposure. , 1987, The Journal of pharmacology and experimental therapeutics.
[27] S. Hall,et al. Reduced tar, nicotine, and carbon monoxide exposure while smoking ultralow- but not low-yield cigarettes. , 1986, JAMA.
[28] J. Robinson,et al. A comparison of the yields of tar, nicotine, and carbon monoxide of 36 brands of Canadian cigarettes tested under three conditions. , 1983, Preventive medicine.
[29] R. Herning,et al. How a cigarette is smoked determines blood nicotine levels , 1983, Clinical pharmacology and therapeutics.
[30] L. Kozlowski. Application of some physical indicators of cigarette smoking. , 1981, Addictive behaviors.
[31] W. Bushuk. Rye: Production, Chemistry, and Technology , 1976 .
[32] Gunther Wyszecki,et al. Color Science: Concepts and Methods, Quantitative Data and Formulae, 2nd Edition , 2000 .