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1
Self-titration by cigarette smokers.吸烟者的自我滴定。
Br Med J. 1979 Aug 11;2(6186):357-60. doi: 10.1136/bmj.2.6186.357.
2
Plasma and urine changes after smoking different brands of cigarettes.吸食不同品牌香烟后血浆和尿液的变化。
Clin Pharmacol Ther. 1980 May;27(5):652-8. doi: 10.1038/clpt.1980.92.
3
Relative intakes of tar, nicotine, and carbon monoxide from cigarettes of different yields.不同焦油、尼古丁和一氧化碳含量香烟的相对摄入量。
Thorax. 1984 May;39(5):361-4. doi: 10.1136/thx.39.5.361.
4
Relationship between cigarette yields, puffing patterns, and smoke intake: evidence for tar compensation?香烟产量、抽吸模式与烟雾吸入量之间的关系:焦油补偿的证据?
Br Med J (Clin Res Ed). 1982;285(6342):600-3. doi: 10.1136/bmj.285.6342.600.
5
The tar reduction study: randomised trial of the effect of cigarette tar yield reduction on compensatory smoking.焦油减量研究:降低香烟焦油含量对代偿性吸烟影响的随机试验
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6
Nicotine yield from machine-smoked cigarettes and nicotine intakes in smokers: evidence from a representative population survey.机器抽吸香烟的尼古丁产量与吸烟者的尼古丁摄入量:来自一项代表性人群调查的证据。
J Natl Cancer Inst. 2001 Jan 17;93(2):134-8. doi: 10.1093/jnci/93.2.134.
7
Smoking behaviour and compensation: a review of the literature.吸烟行为与补偿:文献综述
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8
Nicotine and carbon monoxide intake from high- and low-yield cigarettes.高焦油和低焦油香烟的尼古丁及一氧化碳摄入量。
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9
Would a medium-nicotine, low-tar cigarette be less hazardous to health?中等尼古丁含量、低焦油的香烟对健康危害会更小吗?
Br Med J (Clin Res Ed). 1981 Nov 14;283(6302):1292-6. doi: 10.1136/bmj.283.6302.1292.
10
Relation of nicotine yield of cigarettes to blood nicotine concentrations in smokers.吸烟者香烟的尼古丁产量与血液中尼古丁浓度的关系。
Br Med J. 1980 Apr 5;280(6219):972-6. doi: 10.1136/bmj.280.6219.972.

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8
Increases in Cigarette Consumption and Decreases in Smoking Intensity When Nondaily Smokers Are Provided With Free Cigarettes.当为非吸烟者提供免费香烟时,香烟消费量增加,吸烟强度降低。
Nicotine Tob Res. 2018 Sep 4;20(10):1237-1242. doi: 10.1093/ntr/ntx221.
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Electronic cigarette user plasma nicotine concentration, puff topography, heart rate, and subjective effects: Influence of liquid nicotine concentration and user experience.电子烟使用者的血浆尼古丁浓度、抽吸特征、心率及主观效应:液体尼古丁浓度和使用者经验的影响
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本文引用的文献

1
Determination of nicotine and its metabolite, cotinine, in urine by gas chromatography.采用气相色谱法测定尿液中的尼古丁及其代谢物可替宁。
Nature. 1966 Sep 24;211(5056):1415-7. doi: 10.1038/2111415a0.
2
The effect of varying the nicotine content of cigarettes on human smoking behaviour.改变香烟尼古丁含量对人类吸烟行为的影响。
Psychopharmacologia. 1971;19(2):188-92. doi: 10.1007/BF00402641.
3
Some effects of changing to low-tar and low-nicotine cigarettes.改用低焦油和低尼古丁香烟的一些影响。
Lancet. 1974 Sep 28;2(7883):737-9. doi: 10.1016/s0140-6736(74)90938-6.
4
Nicotine regulation and cigarette smoking.尼古丁调节与吸烟
Clin Pharmacol Ther. 1975 Jan;17(1):93-7. doi: 10.1002/cpt197517193.
5
Changes of smoking habits and cough in men smoking cigarettes with 30% NSM tobacco substitute.使用30%非吸烟烟草替代品的男性吸烟习惯和咳嗽的变化。
Br Med J. 1976 Jun 12;1(6023):1427-30. doi: 10.1136/bmj.1.6023.1427.
6
Improved gas chromatographic method and micro-extraction technique for the measurement of nicotine in biological fluids.用于测量生物体液中尼古丁的改进气相色谱法和微萃取技术。
J Pharm Pharmacol. 1979 Feb;31(2):73-6. doi: 10.1111/j.2042-7158.1979.tb13435.x.

吸烟者的自我滴定。

Self-titration by cigarette smokers.

作者信息

Ashton H, Stepney R, Thompson J W

出版信息

Br Med J. 1979 Aug 11;2(6186):357-60. doi: 10.1136/bmj.2.6186.357.

DOI:10.1136/bmj.2.6186.357
PMID:486932
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1596095/
Abstract

An 11-week crossover study was carried out in which 12 subjects smoked high-nicotine (1.84 mg standard yield) and low-nicotine (0.6 mg) cigarettes after an initial period of smoking their usual brands with a medium-nicotine yield (mean 1.4 mg). Plasma and urine nicotine concentrations, carboxyhaemoglobin (COHb) concentration, puffing behaviour, 24-hour cigarette consumption, and butt nicotine content were measured. The changes in plasma nicotine and blood COHb concentrations showed that the smokers compensated for about two-thirds of the difference in standard yields when switched to either high- or low-nicotine cigarettes. Thus, compared with the medium-nicotine brand, the intake of nicotine and carbon monoxide was only about 10% higher when subjects smoked the high-nicotine cigarettes, which had a standard yield 30-40% higher than the medium brands; and only about 15% lower when they smoked the low-nicotine cigarettes, which had a standard yield about 50% lower than the medium brands. But nicotine content and urine nicotine concentrations followed a similar pattern. Changes in puffing behaviour and in 24-hour cigarette consumption were only slight.The results show clear evidence of both upward and downward self-titration of nicotine and carbon monoxide (and tar) intakes when smokers change to cigarettes with standard yields that differ over the range studied.

摘要

开展了一项为期11周的交叉研究,12名受试者在最初一段时间吸食他们常用的中等尼古丁含量(平均1.4毫克)品牌香烟后,改吸高尼古丁含量(标准产率1.84毫克)和低尼古丁含量(0.6毫克)香烟。测量了血浆和尿液中的尼古丁浓度、碳氧血红蛋白(COHb)浓度、抽吸行为、24小时香烟消耗量以及烟蒂尼古丁含量。血浆尼古丁和血液COHb浓度的变化表明,吸烟者在改吸高尼古丁或低尼古丁香烟时,能补偿约三分之二的标准产率差异。因此,与中等尼古丁含量品牌香烟相比,受试者吸食标准产率比中等品牌高30 - 40%的高尼古丁香烟时,尼古丁和一氧化碳摄入量仅高约10%;而吸食标准产率比中等品牌低约50%的低尼古丁香烟时,摄入量仅低约15%。但尼古丁含量和尿液尼古丁浓度呈现类似模式。抽吸行为和24小时香烟消耗量的变化很小。结果清楚地表明,当吸烟者改吸在所研究范围内标准产率不同的香烟时,尼古丁、一氧化碳(以及焦油)摄入量存在明显的向上和向下自我滴定现象。