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Modulations of EEG Beta Power during Planning and Execution of Grasping Movements

机译:规划和把握动作的执行过程中脑电图测试版电源的调制

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摘要

Although beta oscillations (≈ 13–35 Hz) are often considered as a sensorimotor rhythm, their functional role remains debated. In particular, the modulations of beta power during preparation and execution of complex movements in different contexts were barely investigated. Here, we analysed the beta oscillations recorded with electroencephalography (EEG) in a precued grasping task in which we manipulated two critical parameters: the grip type (precision vs. side grip) and the force (high vs. low force) required to pull an object along a horizontal axis. A cue was presented 3 s before a GO signal and provided full, partial or no information about the two movement parameters. We measured beta power over the centro-parietal areas during movement preparation and execution as well as during object hold. We explored the modulations of power in relation to the amount and type of prior information provided by the cue. We also investigated how beta power was affected by the grip and force parameters.We observed an increase in beta power around the cue onset followed by a decrease during movement preparation and execution. These modulations were followed by a transient power increase during object hold. This pattern of modulations did not differ between the 4 movement types (2 grips ×2 forces). However, the amount and type of prior information provided by the cue had a significant effect on the beta power during the preparatory delay. We discuss how these results fit with current hypotheses on the functional role of beta oscillations.
机译:尽管β振荡(≈13–35 Hz)通常被认为是感觉运动节律,但其功能作用仍存在争议。尤其是,几乎没有研究在不同情况下准备和执行复杂动作期间β功率的调制。在这里,我们分析了脑电图(EEG)在预先抓紧的任务中记录的β振荡,其中我们操纵了两个关键参数:抓地力类型(精确度与侧向抓地力)和拉动人体所需的力(高力与低力)。沿水平轴的对象。在GO信号之前3秒呈现提示,并提供有关两个运动参数的全部,部分或无信息。我们在运动准备和执行期间以及在物体保持期间测量了中心顶区的beta功率。我们探索了与提示提供的先验信息的数量和类型有关的功率调制。我们还研究了握力和力参数如何影响beta力量。我们观察到提示开始时beta力量增加,然后在运动准备和执行过程中降低。这些调制之后,在物体保持期间会出现瞬时功率增加。这种调制方式在4种运动类型(2个握柄×2个力)之间没有差异。但是,在准备延迟期间,提示提供的先验信息的数量和类型对beta功率有重大影响。我们讨论这些结果如何与关于β振荡功能作用的当前假设相吻合。

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