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Brain plasticity following MI-BCI training combined with tDCS in a randomized trial in chronic subcortical stroke subjects: a preliminary study

机译:一项针对慢性皮层下中风受试者的随机试验中MI-BCI训练与tDCS结合后的大脑可塑性:一项初步研究

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摘要

Brain-computer interface-assisted motor imagery (MI-BCI) or transcranial direct current stimulation (tDCS) has been used in stroke rehabilitation, though their combinatory effect is unknown. We investigated brain plasticity following a combined MI-BCI and tDCS intervention in chronic subcortical stroke patients with unilateral upper limb disability. Nineteen patients were randomized into tDCS and sham-tDCS groups. Diffusion and perfusion MRI, and transcranial magnetic stimulation were used to study structural connectivity, cerebral blood flow (CBF), and corticospinal excitability, respectively, before and 4 weeks after the 2-week intervention. After quality control, thirteen subjects were included in the CBF analysis. Eleven healthy controls underwent 2 sessions of MRI for reproducibility study. Whereas motor performance showed comparable improvement, long-lasting neuroplasticity can only be detected in the tDCS group, where white matter integrity in the ipsilesional corticospinal tract and bilateral corpus callosum was increased but sensorimotor CBF was decreased, particularly in the ipsilesional side. CBF change in the bilateral parietal cortices also correlated with motor function improvement, consistent with the increased white matter integrity in the corpus callosum connecting these regions, suggesting an involvement of interhemispheric interaction. The preliminary results indicate that tDCS may facilitate neuroplasticity and suggest the potential for refining rehabilitation strategies for stroke patients.
机译:脑机接口辅助运动图像(MI-BCI)或经颅直流电刺激(tDCS)已用于中风康复,尽管其联合作用尚不清楚。我们调查了MI-BCI和tDCS联合干预对单侧上肢残疾的慢性皮质下卒中患者的大脑可塑性。 19名患者被随机分为tDCS组和假tDCS组。在为期2周的干预之前和之后的4周,分别使用扩散和灌注MRI和经颅磁刺激来研究结构连接性,脑血流量(CBF)和皮质脊髓兴奋性。经过质量控制后,CBF分析中包括了13名受试者。 11名健康对照者接受了2次MRI检查,以进行可重复性研究。运动功能表现出可比较的改善,但仅在tDCS组中可以检测到持久的神经可塑性,在同侧皮质脊髓束和双侧体中白质完整性增加,但感觉运动CBF降低,特别是在同侧。双侧顶叶皮质的CBF变化也与运动功能改善相关,这与连接这些区域的call体中白质完整性增加有关,表明参与了半球间相互作用。初步结果表明,tDCS可能促进神经可塑性,并暗示了改善中风患者康复策略的潜力。

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