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Denoising of surface EMG with a modified Wiener filtering approach

机译:使用改进的维纳滤波方法对表面肌电图进行去噪

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摘要

The correlation dimension D2 yields good results in several biomedical fields. Nonetheless, no clinical application to electromyography has been developed yet. One reason is the high electromagnetic noise typical of clinical environments. This noise is characterized by sharp spectral lines of variable intensity and frequency. The filtering techniques commonly implemented in electromyographs can efficiently deal with this kind of noise. They allow a safe estimate of linear quantities like the root mean square (r.m.s.) or the median frequency (MF). Their performance is not as good for nonlinear purposes. The filters may modify the nonlinear properties of the signal, leading to unacceptable estimates of D2. We consider a simple procedure based on a modified Wiener filter. Its performance is compared with that from a bandpass followed by multiple notch filters. Our procedure leads to a gain in precision and accuracy when estimating D2. The two filtering approaches are also compared with respect to a biomedical application proposed by others. Using data from 12 healthy subjects, the modified Wiener procedure raises the percentage of successes in that application from 17% to 83%. New experimental data suggest D2 carries information not carried by r.m.s. or MF.
机译:相关维数D2在几个生物医学领域都产生了良好的结果。但是,尚未开发肌电图的临床应用。原因之一是临床环境中典型的高电磁噪声。这种噪声的特点是强度和频率可变的尖锐光谱线。通常在肌电图仪中实施的滤波技术可以有效地处理这种噪声。它们允许安全估计线性量,例如均方根(r.m.s.)或中值频率(MF)。对于非线性目的,它们的性能不佳。滤波器可能会修改信号的非线性特性,导致无法接受的D2估算值。我们考虑基于修改后的维纳滤波器的简单过程。将其性能与带通后接多个陷波滤波器的性能进行比较。当估算D2时,我们的过程将导致精度和准确性的提高。还针对其他人提出的生物医学应用比较了这两种过滤方法。使用来自12位健康受试者的数据,改进的维纳程序将在该应用程序中的成功百分比从17%提高到83%。新的实验数据表明D2携带的信息不是r.m.s.或MF。

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