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首页> 外文期刊>International Journal of Neuroscience >Neurophysiological substrates of stroke patients with motor imagery-based brain-computer interface training
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Neurophysiological substrates of stroke patients with motor imagery-based brain-computer interface training

机译:基于运动图像的脑机界面训练对中风患者的神经生理底物

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摘要

We investigated the efficacy of motor imagery-based Brain Computer Interface (MI-based BCI) training for eight stroke patients with severe upper extremity paralysis using longitudinal clinical assessments. The results were compared with those of a control group (n = 7) that only received FES (Functional Electrical Stimulation) treatment besides conventional therapies. During rehabilitation training, changes in the motor function of the upper extremity and in the neurophysiologic electroencephalographic (EEG) were observed for two groups. After 8 weeks of training, a significant improvement in the motor function of the upper extremity for the BCI group was confirmed (p < 0.05 for ARAT), simultaneously with the activation of bilateral cerebral hemispheres. Additionally, event-related desynchronization (ERD) of the affected sensorimotor cortexes (SMCs) was significantly enhanced when compared to the pretraining course, which was only observed in the BCI group (p < 0.05). Furthermore, the activation of affected SMC and parietal lobe were determined to contribute to motor function recovery (p < 0.05). In brief, our findings demonstrate that MI-based BCI training can enhance the motor function of the upper extremity for stroke patients by inducing the optimal cerebral motor functional reorganization.
机译:我们使用纵向临床评估调查了基于运动图像的脑计算机接口(基于MI的BCI)训练对八名重度上肢瘫痪的中风患者的疗效。将结果与对照组(n = 7)进行比较,对照组仅接受常规治疗之外的FES(功能性电刺激)治疗。在康复训练期间,两组观察到上肢运动功能和神经生理脑电图(EEG)的变化。经过8周的训练,BCI组的上肢运动功能得到了明显改善(对于ARAT,p <0.05),同时激活了双侧大脑半球。此外,与预训练过程相比,受影响的感觉运动皮层(SMC)的事件相关去同步(ERD)显着增强,这仅在BCI组中观察到(p <0.05)。此外,确定受影响的SMC和顶叶的激活有助于运动功能的恢复(p <0.05)。简而言之,我们的研究结果表明,基于MI的BCI训练可通过诱导最佳的脑运动功能重组来增强中风患者的上肢运动功能。

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