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Arm-ECG bipolar leads signal recovery methods for wearable long-term heart rate and rhythm monitoring

机译:Arm-ECG双极导线信号恢复方法,可穿戴式长期心率和心律监测

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A clinical database of distal electrogram recordings was created in conjunction with the Craigavon Area Hospital Cardiac Research Department. Signal averaged ECG (SAECG) methods were then used to inspect electrograms recorded bilaterally in a pilot study and the evidence based outcome of which directed the WASTCArD research group to consider the left arm as a prime location for a potential long term cardiac monitor. Empirical mode decomposition (EMD), ensemble empirical mode decomposition (EEMD) and data fusion (DF) techniques were developed due to their ability to extract morphologically intact information from a dynamic data stream and their performance compared to the control SAECG reference method and clinically accepted denoising approach in high-resolution electrocardiography. EEMD was found to be a robust, low latency denoising technique, in comparison to SAECG performance; achieving signal to noise enhancement figures that, in some cases, improved on the SAECG control method, when used with far-field bipolar leads along the left arm ECG data.
机译:与Craigavon Area Hospital心脏研究部门共同创建了远端电描记图记录的临床数据库。然后,将信号平均ECG(SAECG)方法用于检查在一项先导研究中双边记录的电描记图,其基于证据的结果指示WASTCArD研究小组将左臂视为潜在的长期心脏监护仪的主要位置。经验模态分解(EMD),整体经验模态分解(EEMD)和数据融合(DF)技术的开发是由于它们具有从动态数据流中提取形态完整信息的能力,以及与对照SAECG参考方法和临床认可方法相比的性能。高分辨率心电图中的降噪方法。与SAECG性能相比,发现EEMD是一种强大的,低延迟的降噪技术。当与沿左臂ECG数据的远场双极导线一起使用时,在某些情况下,可以实现SAECG控制方法上改进的信噪比提升值。

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