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Comparative sensor analysis for an electronic wearable and non-invasive respiratory signal acquisition system

机译:电子耐磨和非侵入性呼吸信号采集系统的比较传感器分析

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The capability of three different sensors was analyzed in this study with the aim to build a simple electronic, wearable and non-invasive system to accurately capture human respiratory signals in free-living conditions. Two of the sensors were based in the piezoelectric effect and the third one was resistive in nature. These sensors were compared to the Respiratory Inductive Plethysmograph (RIP) technique used as a gold standard. RIP utilizes elastic belts to capture the expansion and contraction of the lungs based on changes in the belt inductance. The possibility of using less expensive sensors was explored in this study and the compared to the RIP reference respiration signal. Results suggest that data collected using a single piezoelectric belt correlates significantly with the reference signal (ρ>O.81), regardless of the position of the sensor for passive activities like sitting and reading. However, lower correlation was observed for activities (such as like walking and eating) that involve substantial motion of body parts.
机译:本研究分析了三种不同传感器的能力,目的是建立一个简单的电子,可穿戴和非侵入性系统,以准确地捕获自由生活条件下的人类呼吸信号。其中两个传感器基于压电效果,第三种传感器本质上是电阻的。将这些传感器与用作金标准的呼吸感应体积素(RIP)技术进行比较。 RIP利用弹性带,基于皮带电感的变化来捕获肺的膨胀和收缩。在该研究中探讨了使用更便宜的传感器的可能性,与RIP参考呼吸信号相比。结果表明,使用单个压电带收集的数据与参考信号(ρ> o.81)显着关联,无论传感器都是坐着和读物等被动活动的位置。然而,观察到涉及体重大量运动的活动(例如步行和进食)的较低的相关性。

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