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Functional roles of 10 Hz alpha-band power modulating engagement and disengagement of cortical networks in a complex visual motion task

机译:10 Hzα波段功率调制在复杂的视觉运动任务中对皮质网络的参与和脱离的功能作用

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摘要

Alpha band power, particularly at the 10 Hz frequency, is significantly involved in sensory inhibition, attention modulation, and working memory. However, the interactions between cortical areas and their relationship to the different functional roles of the alpha band oscillations are still poorly understood. Here we examined alpha band power and the cortico-cortical interregional phase synchrony in a psychophysical task involving the detection of an object moving in depth by an observer in forward self-motion. Wavelet filtering at the 10 Hz frequency revealed differences in the profile of cortical activation in the visual processing regions (occipital and parietal lobes) and in the frontoparietal regions. The alpha rhythm driving the visual processing areas was found to be asynchronous with the frontoparietal regions. These findings suggest a decoupling of the 10 Hz frequency into separate functional roles: sensory inhibition in the visual processing regions and spatial attention in the frontoparietal regions.
机译:Alpha频段功率(尤其是10 Hz频率)与感觉抑制,注意力调节和工作记忆密切相关。但是,皮质区域之间的相互作用及其与α波段振荡的不同功能作用之间的关系仍然知之甚少。在这里,我们在心理物理任务中检查了阿尔法谱带功率和皮质-皮质区域间相位同步性,该物理生理任务涉及检测观察者向前自我运动中深度运动的物体。在10 Hz频率下的小波滤波揭示了视觉处理区域(枕叶和顶叶)和额顶区的皮层激活特征存在差异。发现驱动视觉处理区域的阿尔法节奏与额顶区域是异步的。这些发现表明,将10 Hz频率解耦为单独的功能角色:视觉加工区域的感觉抑制和额顶区域的空间注意力。

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