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电子烟功率设置对烟嘴外观和尼古丁消耗的影响。

Changes in Puffing Topography and Nicotine Consumption Depending on the Power Setting of Electronic Cigarettes.

机构信息

Onassis Cardiac Surgery Center, Sygrou, Kallithea, Greece.

Department of Pharmacy, University of Patras, Rio, Greece.

出版信息

Nicotine Tob Res. 2018 Jul 9;20(8):993-997. doi: 10.1093/ntr/ntx219.

Abstract

INTRODUCTION

The study purpose was to evaluate changes in puffing topography of experienced electronic cigarette users (vapers) when changing power settings in electronic cigarette battery devices.

METHODS

Experienced adult vapers (n = 21) were recruited. Participants used their own liquids and an atomizer and battery provided by the researchers. Two 30-minute sessions were performed, with the device power set at 6 W and 10 W, in a randomized, crossover, participant-blinded design. Puff number and duration (mean [SD]) were recorded in the provided electronic cigarette battery device, whereas the atomizers were weighted before and after use to determine liquid and nicotine consumption.

RESULTS

Puff number and puff duration were lower at 10 W (46 [16] puffs and 3.8 [0.8] s) compared with 6 W (57 [20] puffs and 4.6 [1.0] s). Liquid and nicotine consumption was higher at 10 W (373 [176] mg and 4.2 [2.4] mg, respectively) compared with 6 W (308 [165] mg and 3.5 [2.3] mg, respectively). Vapers reported more aerosol volume and ease of use at 10 W compared with 6 W.

CONCLUSIONS

The study identified an attempt for compensatory puffing patterns and nicotine self-titration, with a change in puffing patterns (puff number and duration) observed when changing the power settings of an e-cigarette device.

IMPLICATIONS

Compensatory smoking behavior and nicotine self-titration is a well-established phenomenon. In electronic cigarettes, changing nicotine concentration in the liquid has been shown to trigger a compensatory puffing pattern. Herein, power setting of the electronic cigarette device was found to be a parameter associated with changes in puffing behavior, whereas higher power was preferable for the participants. These findings could contribute to the understanding of patterns of electronic cigarette use and could explain the preference of dedicated vapers to higher power devices. Additionally, laboratory studies evaluating aerosol emissions should consider using different puffing patterns according to the power settings tested.

摘要

简介

本研究旨在评估有经验的电子烟使用者(vape)在改变电子烟电池设备功率设置时,吸嘴模式的变化。

方法

招募了 21 名有经验的成年 vape。参与者使用自己的液体和研究人员提供的雾化器和电池。采用随机、交叉、参与者盲法设计,进行了两次 30 分钟的测试,设备功率分别设置为 6W 和 10W。在提供的电子烟电池设备中记录了吸嘴的数量和持续时间(平均值[标准差]),使用前后对雾化器进行称重,以确定液体和尼古丁的消耗。

结果

与 6W(57[20]吸嘴和 4.6[1.0]秒)相比,10W(46[16]吸嘴和 3.8[0.8]秒)时吸嘴数量和吸嘴持续时间较低。与 6W(308[165]mg 和 3.5[2.3]mg,分别)相比,10W(373[176]mg 和 4.2[2.4]mg,分别)时液体和尼古丁的消耗更高。与 6W 相比,10W 时 vap 报告的气溶胶体积和易用性更高。

结论

该研究发现了一种尝试性的补偿性吸嘴模式和尼古丁自我滴定现象,当改变电子烟设备的功率设置时,观察到吸嘴模式(吸嘴数量和持续时间)发生了变化。

意义

补偿性吸烟行为和尼古丁自我滴定是一种已被证实的现象。在电子烟中,液体中尼古丁浓度的变化已被证明会引发补偿性吸嘴模式。在此,电子烟设备的功率设置被发现是与吸嘴行为变化相关的参数,而较高的功率对参与者更有利。这些发现有助于理解电子烟的使用模式,并解释了专用 vape 对更高功率设备的偏好。此外,评估气溶胶排放的实验室研究应根据测试的功率设置考虑使用不同的吸嘴模式。

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