Fetal heart rate estimation by fitting half-wave rectified cosine functions to power spectra of fetal ecg waveforms

Ismet Sahin, N. Yilmazer
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引用次数: 1

Abstract

In this paper, we consider the fundamental period estimation problem for fetal ECG waveforms. In our previous paper, we established a new fundamental period estimator based on the minimization of a cost function which measures the differences between the discrete Fourier transform (DFT) of a fetal ECG waveform and the DFTs of its circularly shifted forms. We showed that the minimization of this cost function is equivalent to finding the cosine waveform which matches best to the ECG power spectrum. In other words, the Euclidean inner product between the optimal cosine waveform and the ECG power spectrum yields the largest value. The negative cycles of regular cosine waveforms cause some mismatch with the ECG power spectrum since the power spectrum has only nonnegative values. In order to deal with this problem, in this paper, we fit half-wave rectified cosine waveforms to the ECG power spectrum since rectified cosine waveforms have also only nonnegative values. With two examples, we demonstrate that this method achieves very accurate estimates for both synthetic and real fetal ECG waveforms when compared to the well-known generalized correlation method and the method with regular cosine waveforms.
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利用半波校正余弦函数拟合胎儿心电波形功率谱估算胎儿心率
本文研究了胎儿心电波形的基本周期估计问题。在我们之前的论文中,我们建立了一个新的基于最小化成本函数的基本周期估计器,它测量胎儿心电图波形的离散傅立叶变换(DFT)与其圆移位形式的DFT之间的差异。我们表明,最小化这个代价函数相当于找到与ECG功率谱最匹配的余弦波形。换句话说,最优余弦波形与心电功率谱的欧氏内积最大。常规余弦波形的负周期由于功率谱只有非负值,导致与心电功率谱存在一定的不匹配。为了解决这一问题,本文将半波整流余弦波形拟合到心电功率谱中,因为整流余弦波形也只有非负值。通过两个例子,我们证明了与众所周知的广义相关方法和规则余弦波形的方法相比,该方法对合成和真实胎儿心电图波形的估计都非常准确。
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