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可穿戴传感器在自由生活中监测吸烟情况的系统评价。

Wearable Sensors for Monitoring of Cigarette Smoking in Free-Living: A Systematic Review.

机构信息

Department of Electrical and Computer Engineering, The University of Alabama, Tuscaloosa, AL 35487, USA.

Department of Psychology, University at Buffalo, The State University of New York, Buffalo, NY 12246, USA.

出版信息

Sensors (Basel). 2019 Oct 28;19(21):4678. doi: 10.3390/s19214678.

Abstract

Globally, cigarette smoking is widespread among all ages, and smokers struggle to quit. The design of effective cessation interventions requires an accurate and objective assessment of smoking frequency and smoke exposure metrics. Recently, wearable devices have emerged as a means of assessing cigarette use. However, wearable technologies have inherent limitations, and their sensor responses are often influenced by wearers' behavior, motion and environmental factors. This paper presents a systematic review of current and forthcoming wearable technologies, with a focus on sensing elements, body placement, detection accuracy, underlying algorithms and applications. Full-texts of 86 scientific articles were reviewed in accordance with the Preferred Reporting Items for Systematic Review and Meta-Analyses (PRISMA) guidelines to address three research questions oriented to cigarette smoking, in order to: (1) Investigate the behavioral and physiological manifestations of cigarette smoking targeted by wearable sensors for smoking detection; (2) explore sensor modalities employed for detecting these manifestations; (3) evaluate underlying signal processing and pattern recognition methodologies and key performance metrics. The review identified five specific smoking manifestations targeted by sensors. The results suggested that no system reached 100% accuracy in the detection or evaluation of smoking-related features. Also, the testing of these sensors was mostly limited to laboratory settings. For a realistic evaluation of accuracy metrics, wearable devices require thorough testing under free-living conditions.

摘要

全球范围内,吸烟在各个年龄段都很普遍,吸烟者很难戒烟。设计有效的戒烟干预措施需要准确和客观地评估吸烟频率和烟雾暴露指标。最近,可穿戴设备已成为评估香烟使用的一种手段。然而,可穿戴技术存在固有局限性,其传感器响应通常受佩戴者行为、运动和环境因素的影响。本文对当前和即将推出的可穿戴技术进行了系统回顾,重点介绍了传感元件、身体位置、检测精度、底层算法和应用。根据系统评价和荟萃分析的首选报告项目 (PRISMA) 指南,对 86 篇科学文章的全文进行了回顾,以解决三个面向吸烟的研究问题,以便:(1) 研究可穿戴传感器用于吸烟检测的吸烟行为和生理表现;(2) 探索用于检测这些表现的传感器模式;(3) 评估底层信号处理和模式识别方法和关键性能指标。该综述确定了五种可被传感器检测的特定吸烟表现。结果表明,没有一个系统在检测或评估与吸烟相关的特征方面达到 100%的准确率。此外,这些传感器的测试大多仅限于实验室环境。为了对准确率指标进行实际评估,可穿戴设备需要在自由生活条件下进行彻底测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/588e/6864810/9de52da43b8c/sensors-19-04678-g001.jpg

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