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通过高效高分辨率谐波分析和最大似然跟踪估计 SpO。

Estimating SpO via Time-Efficient High-Resolution Harmonics Analysis and Maximum Likelihood Tracking.

出版信息

IEEE J Biomed Health Inform. 2018 Jul;22(4):1075-1086. doi: 10.1109/JBHI.2017.2769699.

DOI:10.1109/JBHI.2017.2769699
PMID:29969402
Abstract

The accuracy of noninvasive oxygen saturation (SpO), which is defined by the measurements based on photoplethysmographic (PPG) signals, is intensively affected by motion artifacts (MAs) and low perfusion. This study introduces a novel approach called ESPRIT-MLT to measure SpO when such interferences are present. In contrast to previous studies, the work focuses on the harmonic model of the PPG signal and the probability model of results from harmonic analysis. The optimized parametric ESPRIT method is applied to improve the accuracy of harmonic power estimation, and the maximum likelihood SpO tracking (MLT) technique is proposed to track the most probable uncontaminated harmonic of heart rate frequency. We construct an evaluation platform for testing the proposed method via generated signals and subject tests. Compared with the nonparametric periodogram method, the probability of correct harmonics being found is improved by 18.7% or 19.7%, when the signal is contaminated by motion artifacts or affected by low perfusion, respectively. In comparison with the reference methods, the proposed ESPRIT-MLT method exhibits a lower average root mean square error (RMSE) (1.17%) in the simulation using an MA-contaminated PPG signal, and a lower RMSE (2.70%) in the simulation using an extremely low (0.05%) perfusion index. A comprehensive subject test that consists of 4 activities and 20 subjects shows an average RMSE of 0.84% ( 0.44%). Furthermore, the time-efficiency is optimized to be adaptable with wearable devices. Therefore, the proposed method has potential in enhancing the performance of clinical pulse oximetry and wearable SpO measurement devices for daily use.

摘要

非侵入式血氧饱和度(SpO2)的准确性受到运动伪影(MA)和低灌注的强烈影响,其定义是基于光体积描记(PPG)信号的测量。本研究提出了一种新方法,称为 ESPRIT-MLT,用于在存在这些干扰时测量 SpO2。与以前的研究不同,这项工作侧重于 PPG 信号的谐波模型和谐波分析结果的概率模型。优化的参数 ESPRIT 方法用于提高谐波功率估计的准确性,并提出了最大似然 SpO2 跟踪(MLT)技术来跟踪最可能未受污染的心率频率谐波。我们通过生成信号和受试者测试构建了一个评估平台来测试所提出的方法。与非参数周期图方法相比,当信号受到运动伪影污染或低灌注影响时,正确找到谐波的概率分别提高了 18.7%或 19.7%。与参考方法相比,在使用 MA 污染的 PPG 信号进行模拟时,所提出的 ESPRIT-MLT 方法的平均均方根误差(RMSE)(1.17%)较低,在使用极低(0.05%)灌注指数进行模拟时,RMSE(2.70%)较低。一项包含 4 项活动和 20 名受试者的综合受试者测试显示平均 RMSE 为 0.84%(0.44%)。此外,时间效率得到了优化,以适应可穿戴设备。因此,所提出的方法在提高临床脉搏血氧仪和可穿戴 SpO2 测量设备的性能方面具有潜力,可用于日常使用。

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