Zhang Yuanyuan, Zou Ce, Chen Xiaoling, Yin Yonghao, Cheng Shengcui, Chen Yingya, Xie Ping
Key Lab of Measurement Technology and Instrumentation of Hebei Province, Institute of Electric Engineering, Yanshan University, Qinhuangdao, Hebei 066004, P.R.China.
Key Lab of Measurement Technology and Instrumentation of Hebei Province, Institute of Electric Engineering, Yanshan University, Qinhuangdao, Hebei 066004,
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2017 Dec 1;34(6):850-856. doi: 10.7507/1001-5515.201608018.
Synchronization analysis of electroencephalogram (EEG) and electromyogram (EMG) could reveal the functional corticomuscular coupling (FCMC) during the motor task in human. A novel method combining Gabor wavelet and transfer entropy (Gabor-TE) is proposed to quantitatively analyze the nonlinearly synchronous corticomuscular function coupling and direction characteristics under different steady-state force. Firstly, the Gabor wavelet transform method was used to acquire the local frequency-band signals of the EEG and EMG signals recorded from nine healthy controls simultaneously during performing grip task with four different steady-state forces. Secondly, the TE of local frequency-band was calculated and the unit area index of the transfer ( ) was defined to quantitatively analyze the synchronous corticomuscular function coupling and direction characteristics under steady-state force. Lastly, the effect of EEG and EMG signal power spectrum on Gabor-TE analysis was explored. The results showed that the coupling strength in the beta band was stronger in EEG→EMG direction than in EMG→EEG direction, and the values in the beta band in EEG→EMG direction decreased with the force increasing. It is also shown that the difference in TE values of gamma band present a varying regularity as the increase of force in both directions. In addition, EMG power spectrum was significantly correlated with the result of Gabor-TE inspecific frequency band. The results of our study confirmed that Gabor-TE can quantitatively describe the nonlinearly synchronous corticomuscular function coupling in both local frequency band and information transmission. The analysis of FCMC provides basic information for exploring the motor control and the evaluation of clinical rehabilitation.
脑电图(EEG)与肌电图(EMG)的同步分析能够揭示人类运动任务期间的功能性皮质-肌肉耦合(FCMC)。本文提出了一种结合Gabor小波和转移熵的新方法(Gabor-TE),用于定量分析不同稳态力下非线性同步皮质-肌肉功能耦合及方向特征。首先,采用Gabor小波变换方法,在9名健康对照者以四种不同稳态力执行握力任务的同时,获取记录的EEG和EMG信号的局部频带信号。其次,计算局部频带的转移熵,并定义转移的单位面积指数( ),以定量分析稳态力下的同步皮质-肌肉功能耦合及方向特征。最后,探讨了EEG和EMG信号功率谱对Gabor-TE分析的影响。结果表明,β波段中EEG→EMG方向的耦合强度强于EMG→EEG方向,且EEG→EMG方向β波段的 值随力的增加而降低。还表明,γ波段转移熵值在两个方向上均随力的增加呈现出变化规律。此外,EMG功率谱在特定频带与Gabor-TE结果显著相关。我们的研究结果证实,Gabor-TE能够在局部频带和信息传输两方面定量描述非线性同步皮质-肌肉功能耦合。FCMC分析为探索运动控制和临床康复评估提供了基础信息。