IEEE Trans Neural Syst Rehabil Eng. 2024;32:3506-3514. doi: 10.1109/TNSRE.2024.3436077. Epub 2024 Sep 20.
This study aims to explore alterations in corticomuscular and cortical coupling during the rehabilitation of stroke patients. We initiated the analysis by employing variational modal decomposition (VMD) on electromyography (EMG) data, followed by the application of VDM-transfer entropy (VMD-TE) to quantify the coupling strength between electroencephalogram (EEG) and EMG signals. Subsequently, we constructed the VMD-TE connection matrix and analyzed the clustering coefficient and small-world attributes within the cortico-muscular functional network (CMFN). Finally, a random forest algorithm was employed to extract features from the VMD-TE connection matrix across different rehabilitation periods. Beta waves in EEG were emerged as the key information carrier between the cortex and muscle, and the CMFN of patients with the beta frequency band has small-world characteristics. During rehabilitation, we observed a decrease in coupling between the initially affected motor cortex and muscle, accompanied by an increase in coupling between the frontal region and muscle. Our findings suggest potential neuro-remodeling in stroke patients after rehabilitation, with CFMN serving as a valuable metric for assessing cortico-muscular coupling.
本研究旨在探索脑卒中患者康复过程中皮质-肌肉和皮质间耦合的变化。我们首先对肌电图(EMG)数据进行变分模态分解(VMD)分析,然后应用 VDM 转移熵(VMD-TE)量化脑电(EEG)和 EMG 信号之间的耦合强度。接下来,我们构建了 VMD-TE 连接矩阵,并分析了皮质-肌肉功能网络(CMFN)中的聚类系数和小世界属性。最后,我们使用随机森林算法从不同康复阶段的 VMD-TE 连接矩阵中提取特征。EEG 中的β波是大脑皮层和肌肉之间的关键信息载体,具有β频带的 CMFN 具有小世界特性。在康复过程中,我们观察到最初受影响的运动皮层与肌肉之间的耦合减少,而额叶区域与肌肉之间的耦合增加。我们的研究结果表明,脑卒中患者在康复后可能存在神经重塑,CMFN 可作为评估皮质-肌肉耦合的有价值的指标。