Elgendi Mohamed, Liang Yongbo, Ward Rabab
Faculty of Medicine, University of British Columbia, Vancouver, BC V1Y 1T3, Canada.
BC Children's & Women's Hospital, Vancouver, BC V6H 3N1, Canada.
Diseases. 2018 Mar 11;6(1):20. doi: 10.3390/diseases6010020.
Photoplethysmogram (PPG) signals collected using a pulse oximeter are increasingly being used for screening and diagnosis purposes. Because of the non-invasive, cost-effective, and easy-to-use nature of the pulse oximeter, clinicians and biomedical engineers are investigating how PPG signals can help in the management of many medical conditions, especially for global health application. The study of PPG signal analysis is relatively new compared to research in electrocardiogram signals, for instance; however, we anticipate that in the near future blood pressure, cardiac output, and other clinical parameters will be measured from wearable devices that collect PPG signals, based on the signal's vast potential. This article attempts to organize and standardize the names of PPG waveforms to ensure consistent terminologies, thereby helping the rapid developments in this research area, decreasing the disconnect within and among different disciplines, and increasing the number of features generated from PPG waveforms.
使用脉搏血氧仪收集的光电容积脉搏波描记图(PPG)信号越来越多地用于筛查和诊断目的。由于脉搏血氧仪具有非侵入性、成本效益高且易于使用的特点,临床医生和生物医学工程师正在研究PPG信号如何有助于管理多种医疗状况,特别是在全球健康应用方面。例如,与心电图信号的研究相比,PPG信号分析的研究相对较新;然而,基于该信号的巨大潜力,我们预计在不久的将来,血压、心输出量和其他临床参数将通过收集PPG信号的可穿戴设备进行测量。本文试图对PPG波形的名称进行整理和规范,以确保术语的一致性,从而有助于该研究领域的快速发展,减少不同学科内部和之间的脱节,并增加从PPG波形中生成的特征数量。