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EEG Theta Dynamics within Frontal and Parietal Cortices for Error Processing during Reaching Movements in a Prism Adaptation Study Altering Visuo-Motor Predictive Planning

机译:在改变适应力电动机预测计划的棱镜适应研究中,在到达运动期间额叶和顶叶皮层内的EEG Theta动力学用于误差处理

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摘要

Modulation of frontal midline theta (fmθ) is observed during error commission, but little is known about the role of theta oscillations in correcting motor behaviours. We investigate EEG activity of healthy partipants executing a reaching task under variable degrees of prism-induced visuo-motor distortion and visual occlusion of the initial arm trajectory. This task introduces directional errors of different magnitudes. The discrepancy between predicted and actual movement directions (i.e. the error), at the time when visual feedback (hand appearance) became available, elicits a signal that triggers on-line movement correction. Analysis were performed on 25 EEG channels. For each participant, the median value of the angular error of all reaching trials was used to partition the EEG epochs into high- and low-error conditions. We computed event-related spectral perturbations (ERSP) time-locked either to visual feedback or to the onset of movement correction. ERSP time-locked to the onset of visual feedback showed that fmθ increased in the high- but not in the low-error condition with an approximate time lag of 200 ms. Moreover, when single epochs were sorted by the degree of motor error, fmθ started to increase when a certain level of error was exceeded and, then, scaled with error magnitude. When ERSP were time-locked to the onset of movement correction, the fmθ increase anticipated this event with an approximate time lead of 50 ms. During successive trials, an error reduction was observed which was associated with indices of adaptations (i.e., aftereffects) suggesting the need to explore if theta oscillations may facilitate learning. To our knowledge this is the first study where the EEG signal recorded during reaching movements was time-locked to the onset of the error visual feedback. This allowed us to conclude that theta oscillations putatively generated by anterior cingulate cortex activation are implicated in error processing in semi-naturalistic motor behaviours.
机译:在错误调试期间观察到额中线theta(fmθ)的调制,但是关于theta振荡在纠正电机行为中的作用知之甚少。我们调查健康参与者的脑电图活动在可变程度的棱镜诱发的视觉运动畸变和初始手臂轨迹的视觉遮挡下执行到达任务。该任务引入了不同幅度的方向误差。当视觉反馈(手形)变得可用时,预测运动方向与实际运动方向之间的差异(即错误)会引发触发在线运动校正的信号。在25个EEG通道上进行了分析。对于每个参与者,将所有达到的试验的角度误差的中值用于将EEG时期划分为高误差和低误差条件。我们计算了时间相关的事件相关频谱扰动(ERSP),以视觉反馈或运动校正开始。 ERSP时间锁定到视觉反馈的开始,表明fmθ在高误差条件下增加,但在低误差条件下没有增加,大约有200 ms的时间滞后。此外,当按电机误差的程度对单个历元进行分类时,当超过一定误差水平时,fmθ开始增加,然后按误差幅度进行缩放。当ERSP被时间锁定到运动校正开始时,fmθ的增加预料到该事件,大约50 ms的时间提前。在连续的试验中,观察到误差减少与适应指数(即后效应)有关,这表明需要探索θ振荡是否可以促进学习。据我们所知,这是第一项研究,其中在到达运动期间记录的EEG信号被时间锁定到错误视觉反馈的开始。这使我们可以得出结论,由前扣带回皮层激活推测产生的θ振荡与半自然运动行为的错误处理有关。

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