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视觉运动和眼球追踪任务中低频 EEG 对位置和速度的调节特性。

Tuning characteristics of low-frequency EEG to positions and velocities in visuomotor and oculomotor tracking tasks.

机构信息

Institute of Neural Engineering, Graz University of Technology, Graz, Austria.

出版信息

Sci Rep. 2018 Dec 7;8(1):17713. doi: 10.1038/s41598-018-36326-y.

Abstract

Movement decoders exploit the tuning of neural activity to various movement parameters with the ultimate goal of controlling end-effector action. Invasive approaches, typically relying on spiking activity, have demonstrated feasibility. Results of recent functional neuroimaging studies suggest that information about movement parameters is even accessible non-invasively in the form of low-frequency brain signals. However, their spatiotemporal tuning characteristics to single movement parameters are still unclear. Here, we extend the current understanding of low-frequency electroencephalography (EEG) tuning to position and velocity signals. We recorded EEG from 15 healthy participants while they performed visuomotor and oculomotor pursuit tracking tasks. Linear decoders, fitted to EEG signals in the frequency range of the tracking movements, predicted positions and velocities with moderate correlations (0.2-0.4; above chance level) in both tasks. Predictive activity in terms of decoder patterns was significant in superior parietal and parieto-occipital areas in both tasks. By contrasting the two tracking tasks, we found that predictive activity in contralateral primary sensorimotor and premotor areas exhibited significantly larger tuning to end-effector velocity when the visuomotor tracking task was performed.

摘要

运动解码器利用神经活动对各种运动参数的调谐,最终目标是控制末端执行器的动作。有创方法,通常依赖于尖峰活动,已经证明了其可行性。最近的功能神经影像学研究结果表明,关于运动参数的信息甚至可以以低频脑信号的形式非侵入式地获取。然而,它们对单个运动参数的时空调谐特征仍然不清楚。在这里,我们扩展了对低频脑电图(EEG)调谐到位置和速度信号的现有理解。我们在 15 名健康参与者执行视觉运动和眼球追踪跟踪任务时记录了 EEG。在线性解码器中,拟合到跟踪运动频率范围内的 EEG 信号,可以在两个任务中以中等相关性(0.2-0.4;高于随机水平)预测位置和速度。在两个任务中,在顶叶和顶枕区域的解码器模式的预测活动是显著的。通过对比两种跟踪任务,我们发现,当执行视觉运动跟踪任务时,对侧初级感觉运动和运动前区的预测活动对末端执行器速度的调谐明显更大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0876/6286357/9ba65233fd35/41598_2018_36326_Fig1_HTML.jpg

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