Department of Mechanical Engineering, Rochester Institute of Technology, Rochester, NY 14623, USA.
Int J Environ Res Public Health. 2021 Mar 14;18(6):2990. doi: 10.3390/ijerph18062990.
: Natural environment inhalation topography provides useful information for toxicant exposure, risk assessment and cardiopulmonary performance. Commercially available wearable respiratory monitors (WRMs), which are currently used to measure a variety of physiological parameters such as heart rate and breathing frequency, can be leveraged to obtain inhalation topography, yet little work has been done. This paper assesses the feasibility of adapting these WRMs for measuring inhalation topography. : Commercially available WRMs were compiled and assessed for the ability to report chest motion, data analysis software features, ambulatory observation capabilities, participant acceptability, purchasing constraints and affordability. : The following WRMs were found: LifeShirt, Equivital EQ02 LifeMonitor, Smartex WWS, Hexoskin Smart Garment, Zephyr BioHarness, Nox T3&A1, BioRadio, SleepSense Inductance Band, and ezRIP & zRIP Durabelt. None of the WRMs satisfied all six assessment criteria in a manner enabling them to be used for inhalation topography without modification and development. : The results indicate that there are WRMs with core technologies and characteristics that can be built upon for ambulatory inhalation topography measurement in the NE.
自然环境吸入地形为毒剂暴露、风险评估和心肺性能提供了有用的信息。目前可用于测量心率和呼吸频率等各种生理参数的商用可穿戴式呼吸监测器 (WRM) 可用于获取吸入地形,但相关工作却很少。本文评估了利用这些 WRM 测量吸入地形的可行性。
对市售的 WRM 进行了编译和评估,以评估其报告胸部运动的能力、数据分析软件功能、可移动观察能力、参与者接受度、购买限制和负担能力。
LifeShirt、Equivital EQ02 LifeMonitor、Smartex WWS、Hexoskin Smart Garment、Zephyr BioHarness、Nox T3&A1、BioRadio、SleepSense 感应带和 ezRIP & zRIP Durabelt。在没有修改和开发的情况下,没有任何 WRM 以满足所有六个评估标准的方式来使用吸入地形。
结果表明,在 NE 地区,存在具有核心技术和特征的 WRM,可以在此基础上进行可移动吸入地形测量。