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Extraction of the fetal ECG in noninvasive recordings by signal decompositions

机译:通过信号分解提取无创记录中的胎儿心电图

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摘要

No signal processing technique has been able to reliably deliver an undistorted fetal electrocardiographic (fECG) signal from electrodes placed on the maternal abdomen because of the low signal-to-noise ratio of the fECG recorded from the maternal body surface. As a result, this led to increased rates of Caesarean deliveries of healthy infants. In an attempt to solve the problem, Physionet/ Computing in Cardiology announced the 2013 Challenge: noninvasive fetal ECG. We are suggesting a method for cancellation of the maternal ECG consisting of: maternal QRS detection, heart rate dependant P-QRS-T interval selection, location of the fiducial points inside this interval for best matching by cross correlation, superimposition of the intervals, calculation of the mean signal of the P-QRS-T interval, and sequential subtraction of the mean signal from the whole fECG recording. Three signal decomposition methods were further applied in order to enhance the fetal QRSs (fQRS): principal component analysis, root-mean-square and Hotelling's T-squared. A combined lead of all decompositions was synthesized and fQRS detection was performed on it. The current research differs from the Challenge in that it uses three signal decomposition methods to enhance the fECG. The new results for 97 recordings of test set B are: 305.657 for Event 4: Fetal heart rate (FHR) and 23.062 for Event 5: Fetal RR interval (FRR).
机译:由于从孕妇体表记录的fECG的信噪比低,因此没有信号处理技术能够从放置在孕妇腹部的电极可靠地传递未畸变的胎儿心电图(fECG)信号。结果,这导致健康婴儿剖腹产的比率增加。为了解决这个问题,《 Physionet /心脏病学计算》宣布了2013年的挑战:无创胎儿心电图。我们建议取消母体ECG的方法,包括:母体QRS检测,依赖心率的P-QRS-T间隔选择,该间隔内基准点的位置,以便通过互相关,间隔的叠加,计算来实现最佳匹配P-QRS-T间隔的均值信号的平均值,并从整个fECG记录中依次减去均值信号。为了增强胎儿QRSs(fQRS),进一步应用了三种信号分解方法:主成分分析,均方根和Hotelling's T平方。合成了所有分解的合并前导并对其进行了fQRS检测。当前的研究与“挑战”的不同之处在于,它使用三种信号分解方法来增强fECG。测试集B的97个记录的新结果是:事件4:胎儿心率(FHR)305.657和事件5:胎儿RR间隔(FRR)23.062。

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