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Parallel High Capacitance Capacitors Connected With Flexible Electrodes for Enhancement of cECG Signal Quality

机译:并联高电容电容器与柔性电极连接,可提高cECG信号质量

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In the application for sleeping cardiac monitoring utilizing capacitive electrocardiogram (cECG), a raw cECG signal with high-fidelity is typically difficult to be obtained due to the low coupling capacitance made up of human skin, low dielectric fabrics, and sensing electrodes. In order to overcome this challenge, this study proposed a parallel capacitor-flexible electrode for enhancing the performance of an electrocardiogram (ECG) monitoring system, and it investigated the influence of parallel capacitors on ECG monitoring. Parallel capacitors at both ends of the coupling capacitance could increase the coupling capacitance and reduce the equivalent impedance, which could improve the signal-to-noise ratio (SNR) (from about 10 dB to more than 30 dB) of the acquired cECG signals. In this study, first, the optimal connection point and parallel capacitor were determined; second, the application of the proposed system was demonstrated, and well-characterized cECG signals (SNR 35.066 dB) were obtained. The cECG signals acquired by the proposed reference system were in good agreement. The calculated intervals of all subjects extracted from the cECG signals were within the standard interval ranges, which was consistent with the health condition of the subjects. The results also showed that the proposed system had an average HR error of 1.4#x0025; for 20 min compared to the reference system. In conclusion, this study innovatively proposed a method to enhance cECG signal quality, which has a promising potential for long-term sleeping ECG monitoring.
机译:在利用电容式心电图 (cECG) 进行睡眠心脏监测的应用中,由于由人体皮肤、低介电织物和传感电极组成的低耦合电容,通常很难获得具有高保真度的原始 cECG 信号。为了克服这一挑战,本研究提出了一种用于增强心电图(ECG)监测系统性能的并联电容柔性电极,并研究了并联电容对ECG监测的影响。耦合电容两端的并联电容可以增加耦合电容并降低等效阻抗,从而提高采集的cECG信号的信噪比(SNR)(从约10 dB提高到30 dB以上)。首先,确定了最佳连接点和并联电容器;其次,演示了所提系统的应用,并获得了表征良好的cECG信号(信噪比35.066 dB)。所提出的参考系统获取的cECG信号吻合良好。从cECG信号中提取的所有受试者的计算间隔均在标准间隔范围内,这与受试者的健康状况一致。结果还表明,与参考系统相比,所提系统在20 min内的平均HR误差为1.4%。综上所述,本研究创新性地提出了一种提高cECG信号质量的方法,具有长期睡眠心电监测的潜力。

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