4.5 Article

Enhancement of low-quality fetal electrocardiogram based on time-sequenced adaptive filtering

期刊

MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING
卷 56, 期 12, 页码 2313-2323

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s11517-018-1862-8

关键词

Electrocardiography; Fetal ECG de-noising; Fetal ECG enhancement; Time-sequenced adaptive filter

资金

  1. Horizon 2020 [DLV-719500] Funding Source: Medline

向作者/读者索取更多资源

Extraction of a clean fetal electrocardiogram (ECG) from non-invasive abdominal recordings is one of the biggest challenges in fetal monitoring. An ECG allows for the interpretation of the electrical heart activity beyond the heart rate and heart rate variability. However, the low signal quality of the fetal ECG hinders the morphological analysis of its waveform in clinical practice. The time-sequenced adaptive filter has been proposed for performing optimal time-varying filtering of non-stationary signals having a recurring statistical character. In our study, the time-sequenced adaptive filter is applied to enhance the quality of multichannel fetal ECG after the maternal ECG is removed. To improve the performance of the filter in cases of low signal-to-noise ratio (SNR), we enhance the ECG reference signals by averaging consecutive ECG complexes. The performance of the proposed augmented time-sequenced adaptive filter is evaluated in both synthetic and real data from PhysioNet. This evaluation shows that the suggested algorithm clearly outperforms other ECG enhancement methods, in terms of uncovering the ECG waveform, even in cases with very low SNR. With the presented method, quality of the fetal ECG morphology can be enhanced to the extent that the ECG might be fit for use in clinical diagnostics. The extracted fetal ECG signals from non-invasive abdominal recordings still contain a substantial amount of noise. The time-sequenced adaptive filter provides a relatively accurate estimate of the underlying fetal ECG signal when the quality of the reference channels is enhanced prior to filtering.

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