Department of Automatic Control Engineering, Feng Chia University, Taichung 40724, Taiwan.
Ph.D. Program of Electrical and Communications Engineering, Feng Chia University, Taichung 40724, Taiwan.
Sensors (Basel). 2023 Apr 7;23(8):3785. doi: 10.3390/s23083785.
Frequency estimation plays a critical role in vital sign monitoring. Methods based on Fourier transform and eigen-analysis are commonly adopted techniques for frequency estimation. Because of the nonstationary and time-varying characteristics of physiological processes, time-frequency analysis (TFA) is a feasible way to perform biomedical signal analysis. Among miscellaneous approaches, Hilbert-Huang transform (HHT) has been demonstrated to be a potential tool in biomedical applications. However, the problems of mode mixing, unnecessary redundant decomposition and boundary effect are the common deficits that occur during the procedure of empirical mode decomposition (EMD) or ensemble empirical mode decomposition (EEMD). The Gaussian average filtering decomposition (GAFD) technique has been shown to be appropriate in several biomedical scenarios and can be an alternative to EMD and EEMD. This research proposes the combination of GAFD and Hilbert transform that is termed the Hilbert-Gauss transform (HGT) to overcome the conventional drawbacks of HHT in TFA and frequency estimation. This new method is verified to be effective for the estimation of respiratory rate (RR) in finger photoplethysmography (PPG), wrist PPG and seismocardiogram (SCG). Compared with the ground truth values, the estimated RRs are evaluated to be of excellent reliability by intraclass correlation coefficient (ICC) and to be of high agreement by Bland-Altman analysis.
频率估计在生命体征监测中起着至关重要的作用。基于傅里叶变换和特征分析的方法是常用的频率估计技术。由于生理过程的非平稳和时变特性,时频分析(TFA)是进行生物医学信号分析的一种可行方法。在各种方法中,希尔伯特-黄变换(HHT)已被证明是生物医学应用中的一种有潜力的工具。然而,模式混合、不必要的冗余分解和边界效应等问题是经验模态分解(EMD)或集合经验模态分解(EEMD)过程中常见的缺陷。高斯平均滤波分解(GAFD)技术已在多个生物医学场景中得到证明,可作为 EMD 和 EEMD 的替代方法。本研究提出了将 GAFD 和希尔伯特变换相结合的方法,称为希尔伯特-高斯变换(HGT),以克服 TFA 和频率估计中 HHT 的传统缺点。该新方法已被证明可有效用于估计手指光体积描记图(PPG)、手腕 PPG 和心震图(SCG)中的呼吸率(RR)。与真实值相比,通过内类相关系数(ICC)评估,估计的 RR 值具有极好的可靠性,通过 Bland-Altman 分析评估,具有高度一致性。