Butorina A, Prokofyev A, Nazarova M, Litvak V, Stroganova T
The MEG Centre, Moscow State University of Psychology and Education, Moscow, Russian Federation; Wellcome Trust Centre for Neuroimaging, UCL Institute of Neurology, London WC1N 3BG, UK.
The MEG Centre, Moscow State University of Psychology and Education, Moscow, Russian Federation; Psychological Institute of the Russian Academy of Education, Laboratory of Developmental Behavioural Genetics, Moscow, Russian Federation.
Neuroimage. 2014 Dec;103:181-191. doi: 10.1016/j.neuroimage.2014.09.024. Epub 2014 Sep 19.
We tested whether mirror visual feedback (MVF) from a moving hand induced high gamma oscillation (HGO) response in the hemisphere contralateral to the mirror and ipsilateral to the self-paced movement. MEG was recorded in 14 subjects under three conditions: bilateral synchronous movements of both index fingers (BILATERAL), movements of the right hand index finger while observing the immobile left index finger (NOMIRROR), and movements of the right hand index finger while observing its mirror reflection (MIRROR). The right hemispheric spatiospectral regions of interests (ROIs) in the sensor space, sensitive to bilateral movements, were found by statistical comparison of the BILATERAL spectral responses to baseline. For these ROIs, the post-movement HGO responses were compared between the MIRROR and NOMIRROR conditions. We found that MVF from the moving hand, similarly to the real movements of the opposite hand, induced HGOs (55-85Hz) in the sensorimotor cortex. This MVF effect was frequency-specific and did not spread to oscillations in other frequency bands. This is the first study demonstrating movement-related HGO induced by MVF from the moving hand in the absence of proprioceptive feedback signaling. Our findings support the hypothesis that MVF can trigger the feedback-based control processes specifically associated with perception of one's own movements.
我们测试了来自移动手部的镜像视觉反馈(MVF)是否会在与镜子对侧且与自主运动同侧的半球中诱发高伽马振荡(HGO)反应。在三种条件下对14名受试者进行了脑磁图(MEG)记录:双侧食指同步运动(双侧)、观察静止的左手食指时右手食指运动(无镜像)以及观察右手食指的镜像反射时右手食指运动(镜像)。通过将双侧频谱反应与基线进行统计比较,在传感器空间中找到了对双侧运动敏感的右半球空间频谱感兴趣区域(ROIs)。对于这些ROIs,比较了镜像和无镜像条件下运动后的HGO反应。我们发现,来自移动手部的MVF与对侧手部的真实运动类似,在感觉运动皮层中诱发了HGO(55 - 85Hz)。这种MVF效应具有频率特异性,不会扩散到其他频段的振荡。这是第一项证明在没有本体感觉反馈信号的情况下,来自移动手部的MVF诱发与运动相关的HGO的研究。我们的研究结果支持这样的假设,即MVF可以触发与自身运动感知特别相关的基于反馈的控制过程。