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Beta but Not Gamma Band Oscillations Index Visual Form-Motion Integration

机译:Beta而不是Gamma带振荡指数视觉形式运动集成

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摘要

Electrophysiological oscillations in different frequency bands co-occur with perceptual, motor and cognitive processes but their function and respective contributions to these processes need further investigations. Here, we recorded MEG signals and seek for percept related modulations of alpha, beta and gamma band activity during a perceptual form/motion integration task. Participants reported their bound or unbound perception of ambiguously moving displays that could either be seen as a whole square-like shape moving along a Lissajou's figure (bound percept) or as pairs of bars oscillating independently along cardinal axes (unbound percept). We found that beta (15–25 Hz), but not gamma (55–85 Hz) oscillations, index perceptual states at the individual and group level. The gamma band activity found in the occipital lobe, although significantly higher during visual stimulation than during base line, is similar in all perceptual states. Similarly, decreased alpha activity during visual stimulation is not different for the different percepts. Trial-by-trial classification of perceptual reports based on beta band oscillations was significant in most observers, further supporting the view that modulation of beta power reliably index perceptual integration of form/motion stimuli, even at the individual level.
机译:不同频段的电生理振荡与知觉,运动和认知过程同时发生,但它们的功能及其对这些过程的贡献尚需进一步研究。在这里,我们记录了MEG信号,并在知觉形式/运动整合任务中寻找与alpha,beta和gamma谱带活动相关的知觉调制。参与者报告了他们对模棱两可的移动显示的绑定或未绑定的感知,这些显示既可以看作是沿着Lissajou的图形移动的整个正方形形状(绑定的感知),也可以是成对的沿基本轴独立振荡的条形(绑定的感知)。我们发现,β(15–25 Hz)而不是gamma(55–85 Hz)振动在个体和群体水平上指示了感知状态。尽管在视觉刺激期间比在基线期间显着更高,但是在枕叶中发现的伽玛谱带活动在所有感知状态下都相似。同样,对于不同的感知,视觉刺激过程中降低的alpha活性也没有不同。在大多数观察者中,基于beta波段振荡的感性报告的逐项分类意义重大,这进一步支持了这样一种观点,即即使在个体水平上,β功率的调制也能可靠地对形式/运动刺激的感性整合进行索引。

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