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第二代 wPUM 地形监测器的特征描述和验证。

Characterization and Validation of the Second-generation wPUM Topography Monitors.

机构信息

Kate Gleason College of Engineering, Rochester Institute of Technology, Rochester, NY, USA.

出版信息

Nicotine Tob Res. 2021 Jan 22;23(2):390-396. doi: 10.1093/ntr/ntaa153.

Abstract

INTRODUCTION

Little is known about the natural use behavior of new and emerging tobacco products due to the limited availability of reliable puff topography monitors suitable for ambulatory deployment. An understanding of use behavior is needed to assess the health impact of emerging tobacco products and inform realistic standardized topography profiles for emissions studies. The purpose of this study is to validate four monitors: the wPUM cigalike, vapepen, hookah, and cigarette monitors.

AIMS AND METHODS

Each wPUM monitor was characterized and validated for range, accuracy, and resolution for puff flow rate, duration, volume, and interpuff gap in a controlled laboratory environment. Monitor repeatability was assessed for each wPUM monitor using four separate week-long natural environment monitoring studies including cigalike, vapepen, hookah, and cigarette users.

RESULTS

The valid flow rate range was 10 to 100 mL/s for cigalike and cigarette monitors, 10 to 95 mL/s for vapepen monitors, and 50 to 400 mL/s hookah monitors. Flow rate accuracy was within ±2 mL/s for cigalike, vapepen, and cigarette monitors and ±6 mL/s for the hookah monitor. Durations and interpuff gaps as small as 0.2 s were measured to within ±0.07 s. Monitor calibrations changed by 4.7% (vapepen), 1.5% (cigarette), 0.5% (cigalike), and 0.1% (hookah) after 1 week of natural environment use.

CONCLUSIONS

The wPUM topography monitors were demonstrated to be reliable when deployed in the natural environment for a range of emerging tobacco products.

IMPLICATIONS

The current study addresses the lack of available techniques to reliably monitor topography in the natural environment, across multiple emerging tobacco products. Natural environment topography data will inform standardized puffing protocols for premarket tobacco product applications. The ability to quantify topography over extended periods of time will lead to a better understanding of use behavior and better-informed regulations to protect public health.

摘要

简介

由于可靠的可移动部署 puff 地形监测器的可用性有限,因此对于新型和新兴烟草产品的自然使用行为知之甚少。为了评估新兴烟草产品对健康的影响并为排放研究提供现实的标准化地形概况,需要了解使用行为。本研究的目的是验证四种监测器:wPUM 一次性电子烟、电子烟笔、水烟和香烟监测器。

目的和方法

在受控的实验室环境中,对每个 wPUM 监测器的流量率、持续时间、体积和吸之间间隔的 puff 流量率、持续时间、体积和吸之间间隔进行了范围、准确性和分辨率进行了特征描述和验证。使用四个单独的为期一周的自然环境监测研究,包括一次性电子烟、电子烟笔、水烟和香烟使用者,评估了每个 wPUM 监测器的监测器重复性。

结果

可验证的流量率范围为 cigalike 和香烟监测器为 10 至 100 毫升/秒,电子烟笔监测器为 10 至 95 毫升/秒,水烟监测器为 50 至 400 毫升/秒。cigalike、电子烟笔和香烟监测器的流量率精度在±2 毫升/秒内,水烟监测器的精度在±6 毫升/秒内。可测量小至 0.2 秒的持续时间和吸之间间隔,精度在±0.07 秒内。在自然环境中使用一周后,监测器校准变化了 4.7%(电子烟笔)、1.5%(香烟)、0.5%(一次性电子烟)和 0.1%(水烟)。

结论

wPUM 地形监测器在自然环境中用于一系列新型烟草产品时被证明是可靠的。

意义

本研究解决了缺乏可靠技术来监测多种新型烟草产品自然环境中的地形的问题。自然环境地形数据将为烟草产品上市前申请的标准化抽吸协议提供信息。长时间定量地形的能力将导致更好地了解使用行为,并制定更好的法规以保护公共健康。

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