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空气波治疗仪与代谢车在静息和运动时的比较。

Comparison between the Airgo™ Device and a Metabolic Cart during Rest and Exercise.

机构信息

Allergologia e Fisiopatologia respiratoria, Azienda Ospedaliera Santa Croce e Carle, 12100 Cuneo, Italy.

Dipartimento di Elettronica, Informazione e Bioingegneria, Politecnico di Milano, 20133 Milan, Italy.

出版信息

Sensors (Basel). 2020 Jul 15;20(14):3943. doi: 10.3390/s20143943.

Abstract

The aim of this study is to compare the accuracy of Airgo™, a non-invasive wearable device that records breath, with respect to a gold standard. In 21 healthy subjects (10 males, 11 females), four parameters were recorded for four min at rest and in different positions simultaneously by Airgo™ and SensorMedics 2900 metabolic cart. Then, a cardio-pulmonary exercise test was performed using the Erg 800S cycle ergometer in order to test Airgo™'s accuracy during physical effort. The results reveal that the relative error median percentage of respiratory rate was of 0% for all positions at rest and for different exercise intensities, with interquartile ranges between 3.5 (standing position) and 22.4 (low-intensity exercise) breaths per minute. During exercise, normalized amplitude and ventilation relative error medians highlighted the presence of an error proportional to the volume to be estimated. For increasing intensity levels of exercise, Airgo™'s estimate tended to underestimate the values of the gold standard instrument. In conclusion, the Airgo™ device provides good accuracy and precision in the estimate of respiratory rate (especially at rest), an acceptable estimate of tidal volume and minute ventilation at rest and an underestimation for increasing volumes.

摘要

本研究旨在比较 Airgo™——一种记录呼吸的非侵入式可穿戴设备——与金标准相比的准确性。在 21 名健康受试者(10 名男性,11 名女性)中,Airgo™ 和 SensorMedics 2900 代谢箱同时在休息和不同体位下记录四个参数,持续 4 分钟。然后,使用 Erg 800S 功率自行车进行心肺运动测试,以测试 Airgo™ 在体力活动期间的准确性。结果表明,在休息和不同运动强度的所有体位下,呼吸频率的相对误差中位数百分比为 0%,四分位间距在 3.5(站立位)和 22.4(低强度运动)次/分钟之间。在运动期间,归一化幅度和通气相对误差中位数突出显示存在与要估计的体积成比例的误差。随着运动强度的增加,Airgo™ 的估计值往往低估了金标准仪器的值。总之,Airgo™ 设备在呼吸率(尤其是在休息时)的估计方面具有良好的准确性和精密度,在休息时对潮气量和分钟通气量的估计可以接受,而对增加的体积估计不足。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/204c/7412454/c40390976004/sensors-20-03943-g001.jpg

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