Jin Jing-Na, Wang Xin, Li Ying, Jin Fang, Liu Zhi-Peng, Yin Tao
Institute of Biomedical Engineering, Chinese Academy of Medical Sciences & Peking Union Medical College, Tianjin, China.
Neuroscience Center, Chinese Academy of Medical Sciences, Beijing, China.
Front Behav Neurosci. 2017 Nov 29;11:234. doi: 10.3389/fnbeh.2017.00234. eCollection 2017.
It has recently been reported that repetitive transcranial magnetic stimulation combined with motor training (rTMS-MT) could improve motor function in post-stroke patients. However, the effects of rTMS-MT on cortical function using functional connectivity and graph theoretical analysis remain unclear. Ten healthy subjects were recruited to receive rTMS immediately before application of MT. Low frequency rTMS was delivered to the dominant hemisphere and non-dominant hand performed MT over 14 days. The reaction time of Nine-Hole Peg Test and electroencephalography (EEG) in resting condition with eyes closed were recorded before and after rTMS-MT. Functional connectivity was assessed by phase synchronization index (PSI), and subsequently thresholded to construct undirected graphs in alpha frequency band (8-13 Hz). We found a significant decrease in reaction time after rTMS-MT. The functional connectivity between the parietal and frontal cortex, and the graph theory statistics of node degree and efficiency in the parietal cortex increased. Besides the functional connectivity between premotor and frontal cortex, the degree and efficiency of premotor cortex showed opposite results. In addition, the number of connections significantly increased within inter-hemispheres and inter-regions. In conclusion, this study could be helpful in our understanding of how rTMS-MT modulates brain activity. The methods and results in this study could be taken as reference in future studies of the effects of rTMS-MT in stroke patients.
最近有报道称,重复经颅磁刺激联合运动训练(rTMS-MT)可改善中风后患者的运动功能。然而,使用功能连接和图论分析来研究rTMS-MT对皮质功能的影响仍不明确。招募了10名健康受试者,在进行运动训练前立即接受rTMS。对优势半球施加低频rTMS,非优势手进行为期14天的运动训练。在rTMS-MT前后记录九孔插板测试的反应时间以及闭眼静息状态下的脑电图(EEG)。通过相位同步指数(PSI)评估功能连接,随后进行阈值处理以构建α频段(8-13Hz)的无向图。我们发现rTMS-MT后反应时间显著缩短。顶叶和额叶皮质之间的功能连接以及顶叶皮质中节点度和效率的图论统计值增加。除了运动前区和额叶皮质之间的功能连接外,运动前区皮质的度和效率呈现相反的结果。此外,半球间和区域间的连接数量显著增加。总之,本研究有助于我们理解rTMS-MT如何调节大脑活动。本研究的方法和结果可为未来rTMS-MT对中风患者影响的研究提供参考。