IEEE Trans Biomed Circuits Syst. 2020 Oct;14(5):1122-1134. doi: 10.1109/TBCAS.2020.3021186. Epub 2020 Sep 2.
Body bio-impedance is a unique parameter to monitor changes in body composition non-invasively. Continuous measurement of bio-impedance can track changes in body fluid content and cell mass and has widespread applications for physiological monitoring. State-of-the-art implementation of bio-impedance sensor devices is still limited for continuous use, in part, due to artefacts arising at the skin-electrode (SE) interface. Artefacts at the SE interface may arise due to various factors such as motion, applied pressure on the electrode surface, changes in ambient conditions or gradual drying of electrodes. This paper presents a novel bio-impedance sensor node that includes an artefact aware method for bio-impedance measurement. The sensor node enables autonomous and continuous measurement of bio-impedance and SE contact impedance at ten frequencies between 10 kHz to 100 kHz to detect artefacts at the SE interface. Experimental evaluation with SE contact impedance models using passive 2R1C electronic circuits and also with non-invasive in vivo measurements of SE contact impedance demonstrated high accuracy (with maximum error less than 1.5%) and precision of 0.6 Ω. The ability to detect artefacts caused by motion, vertically applied pressure and skin temperature changes was analysed in proof of concept experiments. Low power sensor node design achieved with 50mW in active mode and only 143 μW in sleep mode estimated a battery life of 90 days with a 250 mAh battery and duty-cycling impedance measurements every 60 seconds. Our method for artefact aware bio-impedance sensing is a step towards autonomous and unobtrusive continuous bio-impedance measurement for health monitoring at-home or in clinical environments.
人体生物阻抗是一种独特的参数,可以无创监测身体成分的变化。生物阻抗的连续测量可以跟踪体液含量和细胞质量的变化,在生理监测方面有广泛的应用。最先进的生物阻抗传感器设备的实现仍然受到限制,无法进行连续使用,部分原因是皮肤-电极(SE)界面上存在伪影。SE 界面上的伪影可能由于运动、电极表面施加的压力、环境条件变化或电极逐渐干燥等各种因素引起。本文提出了一种新的生物阻抗传感器节点,该节点包括一种用于生物阻抗测量的伪影感知方法。该传感器节点能够在 10kHz 至 100kHz 之间的十个频率上自动和连续测量生物阻抗和 SE 接触阻抗,以检测 SE 接口上的伪影。使用无源 2R1C 电子电路的 SE 接触阻抗模型和非侵入式体内 SE 接触阻抗测量进行的实验评估表明,该方法具有高精度(最大误差小于 1.5%)和 0.6Ω 的高精度。在概念验证实验中分析了运动、垂直施加压力和皮肤温度变化引起的伪影的检测能力。采用 50mW 的主动模式和仅 143μW 的睡眠模式实现的低功耗传感器节点设计,使用 250mAh 电池和每 60 秒进行一次阻抗测量的占空比循环,估计电池寿命为 90 天。我们的用于感知伪影的生物阻抗传感方法是朝着在家中或临床环境中进行自主和非侵入式连续生物阻抗测量以进行健康监测迈出的一步。