Redfern M, Hughes R, Chaffin D
Movement Analysis Laboratory, The Eye & Ear Institute of Pittsburgh, The University of Pittsburgh, USA.
Clin Biomech (Bristol). 1993 Jan;8(1):44-8. doi: 10.1016/S0268-0033(05)80009-9. Epub 2005 Nov 21.
Removal of electrocardiographic (ECG) contamination of electromyographic (EMG) signals from torso muscles is often attempted by high-pass filtering. This study investigated the effects of the cut-off frequency used in this high-pass filtering technique on the resulting EMG signal. Surface EMGs were recorded on five subjects from the rectus abdominis, external oblique, and erector spinae muscles. These signals were then digitally high-pass filtered at cut-off frequencies of 10, 30, and 60 Hz. Integration and power analyses of the filtered EMGs were subsequently performed. It was found that an increase in the cut-off frequency affects the integrated EMG signal by (1) reducing the ECG contamination, (2) decreasing the amplitude, and (3) smoothing the signal. It was concluded that the use of a high-pass filter is effective in reducing ECG interference in integrated EMG recordings, and a cut-off frequency of approximately 30 Hz was optimal.
Electromyographic recordings of torso muscles are often used in the development of low-back biomechanical models. Unfortunately, these recordings are usually contaminated by electrocardiographic interference. High-pass filtering methods are sometimes used to diminish the influence of ECG from surface EMGs; however, the effects of these filters on the recorded and processed EMG have not been reported. The findings show that high-pass filtering is effective in reducing ECG contamination and motion artefact from integrated EMGs when the appropriate cut-off frequency is used. Inappropriate cut-off frequencies lead to either incomplete ECG removal or excess filtering of the EMG signal.
通常尝试通过高通滤波去除来自躯干肌肉的肌电图(EMG)信号中的心电图(ECG)干扰。本研究调查了这种高通滤波技术中使用的截止频率对所得EMG信号的影响。在五名受试者的腹直肌、腹外斜肌和竖脊肌上记录表面肌电图。然后将这些信号在10、30和60Hz的截止频率下进行数字高通滤波。随后对滤波后的肌电图进行积分和功率分析。结果发现,截止频率的增加对积分肌电图信号的影响为:(1)减少心电图干扰;(2)降低幅度;(3)使信号平滑。得出的结论是,使用高通滤波器可有效减少积分肌电图记录中的心电图干扰,约30Hz的截止频率是最佳的。
躯干肌肉的肌电图记录常用于下背部生物力学模型的开发。不幸的是,这些记录通常受到心电图干扰的污染。有时使用高通滤波方法来减少心电图对表面肌电图的影响;然而,这些滤波器对记录和处理的肌电图的影响尚未见报道。研究结果表明,当使用适当的截止频率时,高通滤波可有效减少积分肌电图中的心电图干扰和运动伪影。不合适的截止频率会导致心电图去除不完全或对肌电图信号过度滤波。