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Comparison and Noise Suppression of the Transmitted and Reflected Photoplethysmography Signals

机译:透射和反射光体积描记仪信号的比较和噪声抑制

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摘要

The photoplethysmography (PPG) is inevitably corrupted by many kinds of noise no matter whether its acquisition mode is transmittance or reflectance. To enhance the quality of PPG signals, many studies have made great progress in PPG denoising by adding extra sensors and developing complex algorithms. Considering the reasonable cost, compact size, and real-time and easy implementation, this study proposed a simple real-time denoising method based on double median filters which can be integrated in microcontroller of commercial or portable pulse oximeters without adding extra hardware. First, we used the boundary extension to preserve the signal boundary distortion and designed a first median filter with the time window at approximately 78 ms to eliminate the high-frequency components of the signal. Then, through the second median filter with a time window which was about 780 ms, we estimated the low-frequency components. Finally, we removed the estimated low-frequency components from the signal to obtain the denoised signal. Through comparing the multiple sets of signals under calmly sitting and slightly moving postures, the PPG signals contained noises no matter whether collected by the transmittance-mode or the reflectance-mode. To evaluate the proposed method, we conducted measured, simulated experiments and a strong noisy environment experiment. Through comparing the morphology distortions, frequency spectra, and the signal-to-noise ratios (SNRs), the results showed that the proposed method can suppress noise effectively and preserve the essential morphological features from PPG signals. As a result, the proposed method can enhance the quality of PPG signals and, thus, can contribute to the improvement of the calculation accuracy of the subsequent physiological parameters. In addition, the proposed method could be a good choice to address the real-time noise reduction of portable PPG measuring instruments.
机译:光电容积描记术(PPG)不可避免地会受到多种噪声的破坏,无论其获取方式是透射率还是反射率。为了提高PPG信号的质量,通过增加额外的传感器并开发复杂的算法,许多研究在PPG去噪中取得了很大的进步。考虑到合理的成本,紧凑的尺寸以及实时性和易于实现性,本研究提出了一种基于双中值滤波器的简单实时去噪方法,该方法可以集成在商用或便携式脉搏血氧仪的微控制器中,而无需添加额外的硬件。首先,我们使用边界扩展来保留信号边界失真,并设计了第一个中值滤波器,其时窗约为78μms,以消除信号的高频分量。然后,通过具有大约780µms时间窗口的第二个中值滤波器,我们估计了低频分量。最后,我们从信号中去除了估计的低频分量,以获得降噪后的信号。通过比较在平稳坐姿和轻微移动姿势下的多组信号,无论是通过透射模式还是反射模式收集,PPG信号均包含噪声。为了评估该方法,我们进行了实测,模拟实验和强噪声环境实验。通过对形态失真,频谱以及信噪比(SNR)的比较,结果表明,该方法可以有效抑制噪声并保留PPG信号的基本形态特征。结果,所提出的方法可以提高PPG信号的质量,从而可以有助于提高后续生理参数的计算精度。此外,所提出的方法可能是解决便携式PPG测量仪器的实时降噪的好选择。

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