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Independent components analysis for fetal electrocardiogram extraction: a case for the data efficient Mermaid algorithm

机译:胎儿心电图提取的独立成分分析:以数据高效的美人鱼算法为例

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Fetal heart rate (FHR) monitoring is currently the primary methodology for antenatal determination of fetal well-being. Currently, the FHR can be detected with ultrasonography, but the additional information from fetal electrocardiogram (FECG) is only available via an invasive scalp electrode. A cost effective noninvasive monitoring through standard ECG electrodes could be used on nearly every patient in lieu of the ultrasound monitors. In this method, a number of electrodes are positioned on the abdomen of the mother to collect, simultaneously, various combinations of the signals including the heartbeats of the mother and the fetus. For accurate fetal heart-rate estimation, a clean FECG must be extracted from the collected mixtures. It is well known that this can be achieved using blind source separation (BSS) techniques. In this paper, the performance of the Mermaid algorithm, which is based on minimizing Renyi's mutual information, is evaluated on this problem of great practical importance. The effectiveness and data efficiency of Mermaid and its superiority over alternative information theoretic BSS algorithms are illustrated using artificially mixed ECG signals as well as fetal heart rate estimates in real ECG mixtures.
机译:胎儿心率(FHR)监控目前是产前确定胎儿健康状况的主要方法。目前,可以通过超声检查检测FHR,但是只能通过侵入性头皮电极获得胎儿心电图(FECG)的其他信息。通过标准ECG电极进行的经济有效的非侵入性监护可以代替超声波监护仪在几乎每位患者上使用。在这种方法中,将多个电极放置在母亲的腹部上,以同时收集包括母亲和胎儿心跳的信号的各种组合。为了准确估算胎儿心率,必须从收集的混合物中提取干净的FECG。众所周知,这可以使用盲源分离(BSS)技术来实现。本文对具有最小实际意义的这一问题进行了评估,该算法基于最小化人一族的互信息的美人鱼算法的性能。使用人工混合的ECG信号以及真实ECG混合物中的胎儿心率估算值,可以说明人鱼的有效性和数据效率以及其在替代信息理论BSS算法上的优越性。

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