首页> 外文期刊>Journal of medical engineering & technology >A novel stress monitoring method through stress-induced respiratory alterations: Non-contact measurement of respiratory V(T)/T(I) alterations induced by stressful sound using a 10 GHz microwave radar
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A novel stress monitoring method through stress-induced respiratory alterations: Non-contact measurement of respiratory V(T)/T(I) alterations induced by stressful sound using a 10 GHz microwave radar

机译:一种通过压力引起的呼吸变化的压力监测新方法:使用10 GHz微波雷达非接触式测量由压力声引起的呼吸V(T)/ T(I)变化

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摘要

We have developed a non-contact stress monitoring system which measures respiratory V(T)/T(I) (tidal volume/inspiration time) alterations using a 10 GHz microwave radar. The measurable distance of the system is 50cm, which is 10 times longer than our previously developed stress monitoring system which measures heart rate variability using a 24-GHz microwave-radar. The study was conducted with eight subjects (23±1years old) to evaluate the efficacy of the system. An audio stimulus at 95 dB sound pressure level was presented to the subjects following a silent period of 120 seconds. During the silent period, V(T)/T(I) averaged 826±384ml s-1, while it increased significantly (p 0.05) with an average of 1227±704ml s-1 during audio stimulus low frequency component (LF)/high frequency component (HF), which reflects sympatho-vagal valance, showed a peak during audio stimuli. This paper aims to study the efficacy of the non-contact stress monitoring system for its future applications in many fields including health and safety.
机译:我们开发了一种非接触式压力监测系统,该系统使用10 GHz微波雷达测量呼吸V(T)/ T(I)(潮气量/吸气时间)的变化。该系统的可测量距离为50厘米,比我们以前开发的压力监测系统长10倍,该压力监测系统使用24 GHz微波雷达测量心率变异性。该研究针对八名受试者(23±1岁)进行,以评估该系统的功效。在无声的120秒后,向受试者提供了95 dB声压级的音频刺激。在无声期间,V(T)/ T(I)平均为826±384ml s-1,而在音频刺激低频分量(LF)期间,V(T)/ T(I)则显着增加(p <0.05),平均为1227±704ml s-1。反映交感迷走肌价态的/高频成分(HF)在音频刺激过程中显示出峰值。本文旨在研究非接触式压力监测系统在包括健康和安全在内的许多领域中的未来应用的功效。

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