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Alpha coherence predicts accuracy during a visuomotor tracking task.

机译:Alpha相干性可以在视觉运动跟踪任务中预测准确性。

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It has been shown that synchrony of neuronal oscillations plays a critical role in effective communication between functionally distinct brain areas involving motor-sensory integration. However, the patterns of cortico-cortical coupling and their relation to behavioural success are widely unknown. Here, we analysed changes in cortico-cortical coherence during an unimanual visuomotor task and their correlation with performance. A 28-channel-EEG was attained in 27 healthy subjects during the tracking of an irregularly fluctuating target on a screen by manipulating a force sensor with the right index finger and thumb. For oscillatory power in the alpha (8-12 Hz) and the lower beta-band (beta1, 13-20 Hz), we found a decrease in central and occipital areas during performance. Interregional coherence between contralateral frontal and central areas was enhanced in the alpha band. In beta1, we observed a marked increase of coherence in centroparietal regions of both hemispheres extending to occipital and frontal regions in beta2 (21-30 Hz). Most prominently, correlation analysis between alpha coherence and performance accuracy indicated that higher occipitocentral (i.e. visuomotor) coherence is associated with better visuomotor performance whereas high tracking error is associated with enhanced frontocentral coupling, suggesting additional activation of a frontoparietal control network. These results provide further evidence that coherent brain oscillations in alpha and beta bands significantly contribute to effective functional integration of visual and motor areas.
机译:已经显示,神经元振荡的同步性在涉及运动感觉整合的功能不同的大脑区域之间的有效交流中起着关键作用。然而,皮质-皮质耦合的模式及其与行为成功的关系是众所周知的。在这里,我们分析了在单手视觉运动任务期间皮质-皮质相干性的变化及其与性能的关系。通过用右手食指和拇指操纵力传感器,在屏幕上跟踪不规则波动的目标期间,在27位健康受试者中获得了28通道EEG。对于alpha(8-12 Hz)和较低的beta频段(beta1,13-20 Hz)中的振荡功率,我们发现演奏期间中枢和枕骨区域减小。对侧额叶和中央区域之间的区域间连贯性在alpha波段得到增强。在beta1中,我们观察到在beta2(21-30 Hz)延伸到枕叶和额叶区域的两个半球的向心区域的相干性显着增加。最显着的是,α相干性和性能准确性之间的相关性分析表明,枕心(即粘稠运动)相干性越高,粘粘运动性能越好,而高跟踪误差与额中枢耦合增强有关,提示额外额叶控制网络的额外激活。这些结果提供了进一步的证据,证明在α和β谱带中相干的大脑振荡显着促进了视觉和运动区域的有效功能整合。

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