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Dedicated Algorithm for Unobtrusive Fetal Heart Rate Monitoring Using Multiple Dry Electrodes

机译:一种使用多个干电极不引起胎儿心率监测的专用算法

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摘要

Multi-channel measurements from the maternal abdomen acquired by means of dry electrodes can be employed to promote long-term monitoring of fetal heart rate (fHR). The signals acquired with this type of electrode have a lower signal-to-noise ratio and different artifacts compared to signals acquired with conventional wet electrodes. Therefore, starting from the benchmark algorithm with the best performance for fHR estimation proposed by Varanini et al., we propose a new method specifically designed to remove artifacts typical of dry-electrode recordings. To test the algorithm, experimental textile electrodes were employed that produce artifacts typical of dry and capacitive electrodes. The proposed solution is based on a hybrid (hardware and software) pre-processing step designed specifically to remove the disturbing component typical of signals acquired with these electrodes (triboelectricity artifacts and amplitude modulations). The following main processing steps consist of the removal of the maternal ECG by blind source separation, the enhancement of the fetal ECG and identification of the fetal QRS complexes. Main processing is designed to be robust to the high-amplitude motion artifacts that corrupt the acquisition. The obtained denoising system was compared with the benchmark algorithm both on semi-simulated and on real data. The performance, quantified by means of sensitivity, F1-score and root-mean-square error metrics, outperforms the performance obtained with the original method available in the literature. This result proves that the design of a dedicated processing system based on the signal characteristics is necessary for reliable and accurate estimation of the fHR using dry, textile electrodes.
机译:通过通过干电极获得的母体腹部的多通道测量可用于促进胎儿心率(FHR)的长期监测。与用传统湿电极获取的信号相比,用这种类型的电极获取的信号具有较低的信噪比和不同的伪像。因此,从基准算法开始,具有varanini等人提出的FHR估计的最佳性能。,我们提出了一种专门设计用于去除典型的干电极记录的伪像的新方法。为了测试该算法,采用实验纺织电极,从而产生典型的干燥和电容电极的伪像。所提出的解决方案基于混合(硬件和软件)预处理步骤,专门设计用于去除用这些电极获取的信号的典型信号(摩擦电伪像和幅度调制)。以下主要处理步骤包括通过盲源分离去除母体ECG,增强胎儿ECG和胎儿QRS复合物的鉴定。主要处理设计为损坏采集的高幅度运动伪影稳健。将获得的去噪系统与半模拟和实际数据上的基准算法进行了比较。通过灵敏度,F1分数和根均方误差度量的性能,优于使用文献中可用的原始方法获得的性能。该结果证明,基于信号特性的专用处理系统的设计是使用干燥纺织电极的可靠和准确估计FHR的必要条件。

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