Allado Edem, Poussel Mathias, Renno Justine, Moussu Anthony, Hily Oriane, Temperelli Margaux, Albuisson Eliane, Chenuel Bruno
CHRU-Nancy, Exploration Fonctionnelle Respiratoire-Centre Universitaire de Médecine du Sport et Activités Physiques Adaptées, F-54000 Nancy, France.
DevAH, Université de Lorraine, F-54000 Nancy, France.
J Clin Med. 2022 Jun 24;11(13):3647. doi: 10.3390/jcm11133647.
Remote photoplethysmography imaging (rPPG) is a new solution proposed to measure vital signs, such as respiratory rate (RR) in teleconsultation, by using a webcam. The results, presented here, aim at evaluating the accuracy of such remote measurement methods, compared with existing measurement methods, in a real-life clinical setting. For each patient, measurement of RR, using the standard system (control), has been carried out concomitantly with the experimental system. A 60-s time frame was used for the measurements made by our rPPG system. Age, gender, BMI, and skin phototype were collected. We performed the intraclass correlation coefficient and Bland-Altman plot to analyze the accuracy and precision of the rPPG algorithm readings. Measurements of RR, using the two methods, have been realized on 963 patients. Comparison of the two techniques showed excellent agreement (96.0%), with most of the patients (n = 924-standard patients) being in the confidence interval of 95% in Bland-Altman plotting. There were no significant differences between standard patients and outlier patients for demographic and clinical characteristics. This study indicates a good agreement between the rPPG system and the control, thus allowing clinical use of this remote assessment of the respiratory rate.
远程光电容积脉搏波成像(rPPG)是一种新提出的解决方案,旨在通过网络摄像头测量生命体征,如远程会诊中的呼吸频率(RR)。本文展示的结果旨在评估在现实临床环境中,与现有测量方法相比,这种远程测量方法的准确性。对于每位患者,使用标准系统(对照)测量RR的同时,也使用了实验系统。我们的rPPG系统测量使用60秒的时间框架。收集了年龄、性别、体重指数(BMI)和皮肤光类型。我们进行了组内相关系数和布兰德-奥特曼图分析,以分析rPPG算法读数的准确性和精密度。使用这两种方法对963名患者进行了RR测量。两种技术的比较显示出极佳的一致性(96.0%),在布兰德-奥特曼图中,大多数患者(n = 924名标准患者)处于95%的置信区间内。标准患者和异常值患者在人口统计学和临床特征方面没有显著差异。这项研究表明rPPG系统与对照之间具有良好的一致性,从而使得这种呼吸频率的远程评估能够用于临床。