首页> 外文期刊>Journal of supercomputing >Semi-real-time removal of baseline fluctuations in electrocardiogram (ECG) signals by an infinite impulse response low-pass filter (IIR-LPF)
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Semi-real-time removal of baseline fluctuations in electrocardiogram (ECG) signals by an infinite impulse response low-pass filter (IIR-LPF)

机译:通过无限脉冲响应低通滤波器(IIR-LPF)半实时去除心电图(ECG)信号的基线波动

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The suppression of baseline disturbance in electrocardiogram (ECG) is necessary to avoid distorting diagnostic features in the data. In order to remove baseline drift, digital filter specifications had been designing along with detrending fluctuation algorithms. However, all these methods require a high amount of off-line computation. To address this, we propose a new method to remove baseline drift in ECG signals with semi-real-time computation while compensating for the phase distortion from the frequencies in the passband of the infinite impulse response low-pass filter and estimating its sample delay for the filtered signal. Regarding evaluation of the proposed filter, we can find the fact that the signal-to-noise ratio increases by approximately 3dB after applying the filter to the MIT-BIH stress data consisted of arrhythmias corrupted with the intentional baseline wander and the disturbances due to muscle interactions as well as electrode-skin impedance mismatch during the electrocardiogram recordings.
机译:为避免扭曲数据中的诊断特征,必须抑制心电图(ECG)中的基线干扰。为了消除基线漂移,已经设计了数字滤波器规格以及去趋势波动算法。但是,所有这些方法都需要大量的离线计算。为了解决这个问题,我们提出了一种通过半实时计算消除ECG信号中基线漂移的新方法,同时从无限冲激响应低通滤波器的通带频率补偿相位失真并估计其采样延迟。滤波后的信号。关于所提出的滤波器的评估,我们可以发现,将滤波器应用于MIT-BIH应力数据后,信噪比增加了约3dB,该应力数据包括心律失常和故意的基线漂移以及肌肉造成的干扰心电图记录过程中的相互作用以及电极-皮肤阻抗失配。

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