DocumentCode :
674119
Title :
An algorithm for the analysis of fetal ECGs from 4-channel non-invasive abdominal recordings
Author :
Di Maria, Costanzo ; Wenfeng Duan ; Bojarnejad, Marjan ; Fan Pan ; King, Simon ; Dingchang Zheng ; Murray, A. ; Langley, Philip
Author_Institution :
Regional Med. Phys. Dept., Newcastle upon Tyne Hosp. NHS Found. Trust, Newcastle upon Tyne, UK
fYear :
2013
fDate :
22-25 Sept. 2013
Firstpage :
305
Lastpage :
308
Abstract :
The fetal ECG (fECG) is one of the most valuable tools for monitoring the health of the fetus throughout pregnancy. However, its clinical use has been limited by the difficulty in analysing such non-invasive fECG recordings. The aim of this study was to develop a robust algorithm for the analysis of 4-channel abdominal fECG recordings and test its performance in the Computing in Cardiology Physionet Challenge 2013. Signals were pre-processed by a combination of frequency filtering and wavelet de-noising. Adaptive cancellation of the maternal ECG (mECG) was performed using maternal QRS time markers obtained from the principal component containing the largest mECG. Following further wavelet de-noising of the residuals, the fetal QRS time markers were computed with a local peak detection algorithm from the first principal component. The derived fetal HR (event 4) and fetal RR (event 5) time series were compared to the reference values obtained from a scalp electrode signal. This algorithm scored 223.23 for Challenge event 4 and 19.34 for Challenge event 5, outperforming the sample algorithm.
Keywords :
biomedical electrodes; electrocardiography; filters; medical signal detection; medical signal processing; obstetrics; patient monitoring; principal component analysis; signal denoising; source separation; time series; wavelet transforms; 4-channel abdominal fECG recordings analysis; 4-channel noninvasive abdominal recording; adaptive maternal ECG cancellation; fetal ECG analysis algorithm; fetal HR time series; fetal QRS time markers; fetal RR time series; fetus health monitoring; frequency filtering; local peak detection algorithm; mECG cancellation; maternal QRS time markers; noninvasive fECG recording; pregnancy; principal component method; scalp electrode signal; signal preprocessing; wavelet denoising; Abstracts; Biomedical monitoring; Electrocardiography; Electrodes; Monitoring; Noise reduction; Robustness;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computing in Cardiology Conference (CinC), 2013
Conference_Location :
Zaragoza
ISSN :
2325-8861
Print_ISBN :
978-1-4799-0884-4
Type :
conf
Filename :
6712472
Link To Document :
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