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EEG-EMG Signal Processing and Analysis for the Neuromuscular Activity Patterns with Three Motion Modes under Two Time Intervals

机译:eEg-EMG在两次间隔下具有三种运动模式的神经肌肉活动模式的信号处理和分析

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To address the issue that how the EEG-EMG signals change according to different motion modes, an experiment was conducted on ten subjects with three tasks performing the voluntary, stimulated and imaginary finger flexion activities. The experiment was set two programs including 10s and 2s time intervals. Electroencephalogram (EEG) from C3/C4 channels and electromyogram (EMG) from flexor digitorum superficialis were recorded simultaneously. Besides the threshold detection of wave peaks between two points, morlet wavlet-based time-frequency analysis was adopted to study the independent variation mechanisms between EEG and EMG under different motion modes. The results indicated that EMG signals of 2s intervals exhibited a similar trend with 10s intervals. The EMG energy increased over 50 Hz when actions occurred. On the contrary, there were no significant changes in imaginary task. In addition, EEG signals performed obviously different. No pronounced similar changes were found in 10s and 2s intervals. Finally, the results demonstrated that EEG-EMG causality was high during 2s intervals in stimulation task.
机译:为了解决EEG-EGG信号如何根据不同的运动模式而改变的问题,在十个受试者上进行实验,其中三项任务执行自愿,刺激和假想的手指屈曲活动。实验设置了两个节目,包括10s和2s时间间隔。同时记录来自C3 / C4通道的脑电图(EEG)来自C3 / C4通道和肌电图(EMG)。除了两点之间波峰的阈值检测之外,采用Morlet波的时频分析来研究不同运动模式下EEG和EMG之间的独立变化机制。结果表明,2S间隔的EMG信号表现出具有10s间隔的类似趋势。当发生行动时,EMG能量增加超过50赫。相反,虚构任务没有重大变化。此外,EEG信号明显不同。在10S和2S间隔内没有发现类似的类似更改。最后,结果表明,在刺激任务中的2S间隔期间EEG-EMG因果关系很高。

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