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从心电图、光电容积脉搏波和压电脉搏传感器信号估算呼吸率:时频方法的比较研究。

Estimation of respiratory rate from ECG, photoplethysmogram, and piezoelectric pulse transducer signals: a comparative study of time-frequency methods.

机构信息

Department of Electrical Engineering, State University of New York, Stony Brook, NY 11794, USA.

出版信息

IEEE Trans Biomed Eng. 2010 May;57(5):1099-107. doi: 10.1109/TBME.2009.2038226.

Abstract

We compare the performance of two different time-frequency-based breathing rate (BR) detection algorithms when used on three different physiological signals: the ECG, the photoplethysmogram (PPG), and the piezoelectric pulse transducer (PZO) signal. Studies carried out over the past have shown the existence of amplitude and/or FMs due to respiration in physiological signals, such as those mentioned. In a recent study, we analyzed the PPG signal and detected the FM and amplitude modulation effect that controlled breathing had on it, and inferred the rate of respiration using the time-frequency spectrum (TFS) (via a wavelet (WT) or complex demodulation (CDM) approach). We showed that such TFS BR detection methods were very accurate and consistently outperformed the exclusively time-domain autoregressive modeling (AR) method, especially in the real-time (data length of 1 min) case. We now explore the possibility of using these methods on the ECG and the finger PZO signal, of which only the former has been previously used with some success to derive BR. Testing performed on 15 healthy human subjects for a range of BR and two body positions showed that though the PPG signal gave the most consistently high performance, the ECG and PZO also proved to be reasonably accurate over longer time segments. Furthermore, the CDM approach was on average either better than or comparable to the WT method in terms of both accuracy and repeatability of the detection.

摘要

我们比较了两种不同的基于时频的呼吸率(BR)检测算法在三种不同生理信号上的性能:心电图(ECG)、光体积描记图(PPG)和压电脉搏传感器(PZO)信号。过去的研究表明,生理信号中存在由于呼吸引起的幅度和/或调频,如前所述。在最近的一项研究中,我们分析了 PPG 信号,并检测到它受到呼吸控制的调频和幅度调制效应,然后使用时频谱(通过小波(WT)或复解调(CDM)方法)推断呼吸率。我们表明,这种时频谱 BR 检测方法非常准确,并且始终优于仅使用时间域自回归建模(AR)方法,尤其是在实时(数据长度为 1 分钟)情况下。我们现在探索将这些方法应用于 ECG 和手指 PZO 信号的可能性,其中只有前者以前曾成功地用于衍生 BR。对 15 名健康人类受试者进行了一系列 BR 和两种体位的测试,结果表明,尽管 PPG 信号的性能最一致,但 ECG 和 PZO 在较长时间段内也被证明具有相当的准确性。此外,CDM 方法在检测的准确性和可重复性方面平均优于或可与 WT 方法相媲美。

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