脑机接口治疗后脑瘫患儿α-频带脑电图的变化

N. Larina, M. Nacharova, L. Korsunskaya, S. Vlasenko, V. Pavlenko
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引用次数: 3

摘要

先前的研究表明,使用bci控制的机器人装置Exohand-2进行神经康复,并结合常规治疗方式,可以显著改善脑瘫儿童的运动能力。然而,在以往的研究中没有对脑电图记录进行分析。本文的目的是描述在一系列10个基于脑机接口的神经康复疗程中脑电图α-节律的反应性模式。这项研究是在32名年龄在10到18岁之间患有右侧或左侧偏瘫的男孩和女孩中进行的。静息时和手指伸展动觉时分别用21个电极记录脑电图。在第一阶段,左偏瘫患者和右偏瘫患者在运动意象时α-节律反应模式不同。左手动作排练时,在Р2上差异有统计学意义(F1, 30 = 5.10;P < 0.05)。在最后阶段,α-节律反应的模式有所不同:在某些电极位置,同步被非同步所取代,表明新皮层的活动增加。左侧偏瘫患儿脑电图变化最明显(F20, 300 = 1.84;P < 0.05)。在康复疗程结束时,左右偏瘫患者之间的差异变得不那么明显了。α-频带的脑电图模式重排可视为负责规划和执行复杂手部动作的神经回路有益重组的迹象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Changes in EEG patterns in the α-frequency band following BCI-based therapy in children with cerebral palsy
It was demonstrated previously that neurorehabilitation with the BCI-controlled robotic device Exohand-2 combined with conventional therapeutic modalities resulted in significant motor improvement in children with cerebral palsy. However, EEG records were not analyzed in the previous study. The aim of this paper was to describe the reactivity patterns of the EEG α-rhythm during a series of 10 BCI-based neurorehabilitation sessions. The study was carried out in 32 boys and girls aged 10 to 18 years with right- or left-side hemiparesis. EEG was recorded from 21 electrodes at rest and during kinesthetic imagery of finger extension. During the first session, patterns of α-rhythm reactivity during motor imagery differed between patients with left- and right-side hemiparesis. The differences were statistically significant at Р2 during left hand movement rehearsal (F1, 30 = 5.10; p < 0.05). During the final session, the pattern of α-rhythm reactivity was different: synchronization was taken over by desynchronization at some electrode sites, suggesting increased activity of the neocortex. The most conspicuous EEG changes were observed in children with left-side hemiparesis (F20, 300 = 1.84; p < 0.05). By the end of the rehabilitation course, the differences between patients with left-and right-side hemiparesis became much less pronounced. Rearrangements in the EEG patterns in the α-frequency band can be regarded as signs of beneficial reorganization of neural circuits responsible for planning and executing complex hand movements.
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