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从光电容积脉搏波图估计瞬时呼吸频率。

Estimating instantaneous respiratory rate from the photoplethysmogram.

作者信息

Dehkordi Parastoo, Garde Ainara, Molavi Behnam, Petersen Christian L, Ansermino J Mark, Dumont Guy A

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2015;2015:6150-3. doi: 10.1109/EMBC.2015.7319796.

Abstract

The photoplethysmogram (PPG) obtained from pulse oximetry shows the local changes of blood volume in tissues. Respiration induces variation in the PPG baseline due to the variation in venous blood return during each breathing cycle. We have proposed an algorithm based on the synchrosqueezing transform (SST) to estimate instantaneous respiratory rate (IRR) from the PPG. The SST is a combination of wavelet analysis and a reallocation method which aims to sharpen the time-frequency representation of the signal and can provide an accurate estimation of instantaneous frequency. In this application, the SST was applied to the PPG and IRR was detected as the predominant ridge in the respiratory band (0.1 Hz - 1 Hz) in the SST plane. The algorithm was tested against the Capnobase benchmark dataset that contains PPG, capnography, and expert labelled reference respiratory rate from 42 subjects. The IRR estimation accuracy was assessed using the root mean square (RMS) error and Bland-Altman plot. The median RMS error was 0.39 breaths/min for all subjects which ranged from the lowest error of 0.18 breaths/min to the highest error of 13.86 breaths/min. A Bland-Altman plot showed an agreement between the IRR obtained from PPG and reference respiratory rate with a bias of -0.32 and limits agreement of -7.72 to 7.07. Extracting IRR from PPG expands the functionality of pulse oximeters and provides additional diagnostic power to this non-invasive monitoring tool.

摘要

通过脉搏血氧测定法获得的光电容积脉搏波图(PPG)显示了组织中血容量的局部变化。呼吸会导致PPG基线出现变化,这是由于每个呼吸周期中静脉血回流的变化所致。我们提出了一种基于同步挤压变换(SST)的算法,用于从PPG估计瞬时呼吸频率(IRR)。SST是小波分析和一种重分配方法的结合,旨在锐化信号的时频表示,并能提供对瞬时频率的准确估计。在本应用中,SST被应用于PPG,IRR被检测为SST平面中呼吸频段(0.1赫兹 - 1赫兹)的主要脊线。该算法针对包含42名受试者的PPG、二氧化碳图和专家标记的参考呼吸频率的Capnobase基准数据集进行了测试。使用均方根(RMS)误差和布兰德 - 奥特曼图评估IRR估计的准确性。所有受试者的RMS误差中位数为0.39次/分钟,范围从最低误差0.18次/分钟到最高误差13.86次/分钟。布兰德 - 奥特曼图显示,从PPG获得的IRR与参考呼吸频率之间具有一致性,偏差为 -0.32,一致性界限为 -7.72至7.07。从PPG中提取IRR扩展了脉搏血氧仪的功能,并为这种非侵入性监测工具提供了额外的诊断能力。

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