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Poor BCI Performers Still Could Benefit from Motor Imagery Training

机译:糟糕的BCI表演者仍然可以从汽车图像训练中受益

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Nowadays, there is a growing number of studies suggesting that coupled with the brain-computer interface (BCI) the motor imagery practice could be a helpful tool in neurorehabilitation therapy, but the actual neurophysiological correlates of such exercise are poorly understood. In this study we examined two of the most notable neurophysiological effects of motor imagery - the EEG murhythm desynchronization and the increase in cortical excitability assessed with transcranial magnetic stimulation (TMS). We have found that subjects' BCI performance was highly correlated with mu-rhythm features and was not associated with the cortical excitability increase. Subjects with the lowest accuracy in BCI all had a statically significant excitability raise during motor imagery and did not differ from better performers. Our results suggest that poor BCI performers with weak EEG response still could benefit from the motor imagery training, and in that case cortex excitability level had to be considered for the control measurement.
机译:如今,存在越来越多的研究表明,与脑电器界面(BCI)相结合,电动机图像实践可能是神经晕疗法中有用的工具,但这种运动的实际神经生理学相关性却很难理解。在这项研究中,我们检查了Motor Imagery的两个最值得注意的神经生理学效果 - 脑电图Murhythm去同步和随经颅磁刺激评估的皮质兴奋性的增加(TMS)。我们发现受试者的BCI性能与MU-Rhythm特征高度相关,并且与皮质兴奋性增加无关。 BCI中最低精度的受试者在电机图像期间都具有静态显着的兴奋性,并且没有与更好的表演者不同。我们的研究结果表明,具有弱EEG反应的糟糕的BCI表演者仍然可以从电机图像训练中受益,并且在这种情况下,必须考虑控制测量来考虑皮质兴奋性水平。

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