The unique role of the EEG alpha rhythm in different states of cortical activity is still debated. The main theories regarding alpha function posit either sensory processing or attention allocation as the main processes governing its modulation. Closing and opening eyes, a well-known manipulation of the alpha rhythm, could be regarded as attention allocation from inward to outward focus though during light is also accompanied by visual change. To disentangle the effects of attention allocation and sensory visual input on alpha modulation, 14 healthy subjects were asked to open and close their eyes during conditions of light and of complete darkness while simultaneous recordings of EEG and fMRI were acquired. Thus, during complete darkness the eyes-open condition is not related to visual input but only to attention allocation, allowing direct examination of its role in alpha modulation. A data-driven ridge regression classifier was applied to the EEG data in order to ascertain the contribution of the alpha rhythm to eyes-open/eyes-closed inference in both lighting conditions. Classifier results revealed significant alpha contribution during both light and dark conditions, suggesting that alpha rhythm modulation is closely linked to the change in the direction of attention regardless of the presence of visual sensory input. Furthermore, fMRI activation maps derived from an alpha modulation time-course during the complete darkness condition exhibited a right frontal cortical network associated with attention allocation. These findings support the importance of top-down processes such as attention allocation to alpha rhythm modulation, possibly as a prerequisite to its known bottom-up processing of sensory input.

译文

EEG α 节律在不同皮质活动状态中的独特作用仍存在争议。有关alpha功能的主要理论将感觉处理或注意力分配视为控制其调制的主要过程。关闭和睁开眼睛是一种众所周知的对阿尔法节奏的操纵,尽管在光照过程中也伴随着视觉变化,但可以将注意力从内向向外向分配。为了弄清注意力分配和感觉视觉输入对 α 调制的影响,要求14名健康受试者在光线和完全黑暗的情况下睁开和闭上眼睛,同时同时记录脑电图和功能磁共振成像。因此,在完全黑暗的情况下,睁眼状态与视觉输入无关,而仅与注意力分配有关,从而可以直接检查其在alpha调制中的作用。将数据驱动的山脊回归分类器应用于EEG数据,以确定在两种光照条件下 α 节律对睁眼/闭眼推理的贡献。分类器结果显示,无论在明暗条件下,alpha都有显着贡献,这表明无论是否存在视觉感觉输入,alpha节律调制都与注意方向的变化密切相关。此外,在完全黑暗的条件下,从alpha调制时间过程中得出的fMRI激活图显示出与注意力分配相关的右额叶皮层网络。这些发现支持自上而下的过程的重要性,例如将注意力分配给alpha节奏调制,这可能是其已知的感觉输入自下而上处理的先决条件。

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