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Use of power-line interference for adaptive motion artifact removal in biopotential measurements

机译:电力线干扰在生物电势测量中用于自适应运动伪影去除的用途

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摘要

Motion artifacts (MA) have long been a problem in biopotential measurements. Adaptive filtering is widely used for optimal noise removal in many biomedical applications. However, the existing adaptive filtering methods involve the use of additional sensors, limiting the applicability of adaptive filtering for MA reduction. In the present study, a novel adaptive filtering method without need for additional sensors is proposed. In biopotential measurements, movement of the electrodes and their leads may cause variations not only in the skin and half-cell potential (motion artifacts), but also in the electrode-skin impedance. Such impedance variations may also cause power-line interference modulation (PLIM), resulting in additional spectral components around the power-line interference (PLI) in the frequency domain. Demodulation of the PLI may reflect the movement-induced electrode-skin impedance variation, and can therefore represent a reference signal for the adaptive filter. Preliminary validation on ECG measurements with seven volunteers showed a high correlation coefficient (R = 0.97) between MA and PLIM, and excellent MA removal by the proposed adaptive filter, possibly leading to improved analysis of biopotential signals.
机译:运动伪影(MA)长期以来一直是生物电势测量中的问题。自适应滤波已广泛用于许多生物医学应用中的最佳噪声去除。但是,现有的自适应滤波方法涉及使用附加传感器,从而限制了自适应滤波在降低MA方面的适用性。在本研究中,提出了一种无需额外传感器的新型自适应滤波方法。在生物电势测量中,电极及其引线的移动不仅会引起皮肤和半电池电势(运动伪影)的变化,还会导致电极皮肤的阻抗变化。这样的阻抗变化也可能导致电力线干扰调制(PLIM),从而导致频域中电力线干扰(PLI)周围的其他频谱分量。 PLI的解调可以反映运动引起的电极皮肤阻抗变化,因此可以代表自适应滤波器的参考信号。对七个志愿者进行的心电图测量的初步验证显示,MA和PLIM之间具有很高的相关系数(R = 0.97),并且通过提出的自适应滤波器可以很好地去除MA,这可能导致对生物电势信号的分析得到改善。

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