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评估脑机接口训练中的运动想象:心理和神经生理相关性

Assessing motor imagery in brain-computer interface training: Psychological and neurophysiological correlates.

作者信息

Vasilyev Anatoly, Liburkina Sofya, Yakovlev Lev, Perepelkina Olga, Kaplan Alexander

机构信息

Lomonosov Moscow State University, Moscow, Russian Federation.

Lomonosov Moscow State University, Moscow, Russian Federation.

出版信息

Neuropsychologia. 2017 Mar;97:56-65. doi: 10.1016/j.neuropsychologia.2017.02.005. Epub 2017 Feb 4.

Abstract

Motor imagery (MI) is considered to be a promising cognitive tool for improving motor skills as well as for rehabilitation therapy of movement disorders. It is believed that MI training efficiency could be improved by using the brain-computer interface (BCI) technology providing real-time feedback on person's mental attempts. While BCI is indeed a convenient and motivating tool for practicing MI, it is not clear whether it could be used for predicting or measuring potential positive impact of the training. In this study, we are trying to establish whether the proficiency in BCI control is associated with any of the neurophysiological or psychological correlates of motor imagery, as well as to determine possible interrelations among them. For that purpose, we studied motor imagery in a group of 19 healthy BCI-trained volunteers and performed a correlation analysis across various quantitative assessment metrics. We examined subjects' sensorimotor event-related EEG events, corticospinal excitability changes estimated with single-pulse transcranial magnetic stimulation (TMS), BCI accuracy and self-assessment reports obtained with specially designed questionnaires and interview routine. Our results showed, expectedly, that BCI performance is dependent on the subject's capability to suppress EEG sensorimotor rhythms, which in turn is correlated with the idle state amplitude of those oscillations. Neither BCI accuracy nor the EEG features associated with MI were found to correlate with the level of corticospinal excitability increase during motor imagery, and with assessed imagery vividness. Finally, a significant correlation was found between the level of corticospinal excitability increase and kinesthetic vividness of imagery (KVIQ-20 questionnaire). Our results suggest that two distinct neurophysiological mechanisms might mediate possible effects of motor imagery: the non-specific cortical sensorimotor disinhibition and the focal corticospinal excitability increase. Acquired data suggests that BCI-based approach is unreliable in assessing motor imagery due to its high dependence on subject's innate EEG features (e.g. resting mu-rhythm amplitude). Therefore, employment of additional assessment protocols, such as TMS and psychological testing, is required for more comprehensive evaluation of the subject's motor imagery training efficiency.

摘要

运动想象(MI)被认为是一种很有前景的认知工具,可用于提高运动技能以及运动障碍的康复治疗。人们认为,通过使用脑机接口(BCI)技术,为个体的心理尝试提供实时反馈,可以提高MI训练效率。虽然BCI确实是一种方便且能激发积极性的MI练习工具,但尚不清楚它是否可用于预测或衡量训练的潜在积极影响。在本研究中,我们试图确定BCI控制能力是否与运动想象的任何神经生理或心理关联因素相关,以及确定它们之间可能的相互关系。为此,我们研究了一组19名经过BCI训练的健康志愿者的运动想象,并对各种定量评估指标进行了相关性分析。我们检查了受试者的感觉运动事件相关脑电图事件、用单脉冲经颅磁刺激(TMS)估计的皮质脊髓兴奋性变化、BCI准确性以及通过专门设计的问卷和访谈程序获得的自我评估报告。不出所料,我们的结果表明,BCI表现取决于受试者抑制脑电图感觉运动节律的能力,而这又与这些振荡的静息状态幅度相关。在运动想象过程中,未发现BCI准确性或与MI相关的脑电图特征与皮质脊髓兴奋性增加水平以及评估的想象生动性相关。最后,发现皮质脊髓兴奋性增加水平与想象的动觉生动性(KVIQ - 20问卷)之间存在显著相关性。我们的结果表明,两种不同的神经生理机制可能介导运动想象的可能影响:非特异性皮质感觉运动去抑制和局灶性皮质脊髓兴奋性增加。获得的数据表明,基于BCI的方法在评估运动想象方面不可靠,因为它高度依赖于受试者的先天脑电图特征(例如静息μ节律幅度)。因此,需要采用额外的评估方案,如TMS和心理测试,以更全面地评估受试者的运动想象训练效率。

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