Feasibility of Using the Hexoskin Smart Garment for Natural Environment Observation of Respiration Topography.

Feasibility of Using the Hexoskin Smart Garment for Natural Environment Observation of Respiration Topography.
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DOI:
10.3390/ijerph18137012
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发表时间:
2021-06-30
影响因子:
--
通讯作者:
Robinson R
Robinson R
中科院分区:
综合性期刊3区
文献类型:
--
作者:
Jayasekera S;Hensel E;Robinson R

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背景:由于缺乏监测技术,在自然环境中测量动态呼吸行为,特别是与烟草使用相关的呼吸行为的研究有限。呼吸地形参数为模拟肺部颗粒沉积和评估与烟草使用有关的接触风险和健康影响提供了有用的信息。市售的可穿戴呼吸监测仪(WRM),如Hexoskin智能服装,嵌入了测量胸部运动的传感器,可用于测量动态肺容量。方法:招募自述“每天”和“某些日子”的水烟和香烟吸烟者进行为期3天的自然环境观察研究。参与者穿着Hexoskin衬衫,同时使用他们喜欢的烟草产品。在观察期之前、期间和之后,对衬衫进行校准。提出了一种计算标定参数的新方法。结果:NH = 5名水烟受试者,NC = 3名卷烟受试者。获得校准参数,并将其应用于观察到的每位参与者的胸部运动波形,以获得其肺容量波形。呼吸地形参数由肺容积波形得出。结论:证明了Hexoskin用于自然环境下动态呼吸地形参数测量的可行性。
Background: Limited research has been done to measure ambulatory respiratory behavior, in particular those associated with tobacco use, in the natural environment due to a lack of monitoring techniques. Respiratory topography parameters provide useful information for modeling particle deposition in the lung and assessing exposure risk and health effects associated with tobacco use. Commercially available Wearable Respiratory Monitors (WRM), such as the Hexoskin Smart Garment, have embedded sensors that measure chest motion and may be adapted for measuring ambulatory lung volume. Methods: Self-reported “everyday” and “some days” Hookah and Cigarette smokers were recruited for a 3-day natural environment observation study. Participants wore the Hexoskin shirt while using their preferred tobacco product. The shirt was calibrated on them prior to, during, and after the observation period. A novel method for calculating the calibration parameters is presented. Results: NH = 5 Hookah and NC = 3 Cigarette participants were enrolled. Calibration parameters were obtained and applied to the observed chest motion waveform from each participant to obtain their lung volume waveform. Respiratory topography parameters were derived from the lung volume waveform. Conclusion: The feasibility of using the Hexoskin for measuring ambulatory respiratory topography parameters in the natural environment is demonstrated.
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DOI: 10.3390/ijerph18062990
发表时间: 2021-03-14
影响因子: --
作者:
Jayasekera S;Hensel E;Robinson R
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