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Occipital Alpha Activity during Stimulus Processing Gates the Information Flow to Object-Selective Cortex

机译:刺激处理过程中的枕骨α活动将信息流控制到对象选择皮层

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摘要

Given the limited processing capabilities of the sensory system, it is essential that attended information is gated to downstream areas, whereas unattended information is blocked. While it has been proposed that alpha band (8–13 Hz) activity serves to route information to downstream regions by inhibiting neuronal processing in task-irrelevant regions, this hypothesis remains untested. Here we investigate how neuronal oscillations detected by electroencephalography in visual areas during working memory encoding serve to gate information reflected in the simultaneously recorded blood-oxygenation-level-dependent (BOLD) signals recorded by functional magnetic resonance imaging in downstream ventral regions. We used a paradigm in which 16 participants were presented with faces and landscapes in the right and left hemifields; one hemifield was attended and the other unattended. We observed that decreased alpha power contralateral to the attended object predicted the BOLD signal representing the attended object in ventral object-selective regions. Furthermore, increased alpha power ipsilateral to the attended object predicted a decrease in the BOLD signal representing the unattended object. We also found that the BOLD signal in the dorsal attention network inversely correlated with visual alpha power. This is the first demonstration, to our knowledge, that oscillations in the alpha band are implicated in the gating of information from the visual cortex to the ventral stream, as reflected in the representationally specific BOLD signal. This link of sensory alpha to downstream activity provides a neurophysiological substrate for the mechanism of selective attention during stimulus processing, which not only boosts the attended information but also suppresses distraction. Although previous studies have shown a relation between the BOLD signal from the dorsal attention network and the alpha band at rest, we demonstrate such a relation during a visuospatial task, indicating that the dorsal attention network exercises top-down control of visual alpha activity.
机译:鉴于感觉系统的处理能力有限,至关重要的是将有人参与的信息选通到下游区域,而无人参与的信息则被阻止。尽管有人提出,α波段(8-13 Hz)的活动可通过抑制与任务无关的区域中的神经元加工来将信息传递至下游区域,但这一假设仍未经检验。在这里,我们研究了在工作记忆编码过程中,脑电图在视觉区域中检测到的神经元振荡如何起到门控信息的作用,该信息同时反映在下游腹侧区域的功能性磁共振成像所记录的血氧水平依赖性(BOLD)信号中。我们使用了一个范例,其中向16位参与者展示了左右半场的面孔和风景;一个半场出席了会议,另一个无人参加。我们观察到,与照管对象相对的降低的α功率预测了代表腹侧对象选择区域中照管对象的BOLD信号。此外,与照管对象同侧的alpha功率增加预示着代表无人照管对象的BOLD信号将减少。我们还发现,背注意力网络中的BOLD信号与视觉alpha功率成反比。据我们所知,这是第一个证明,阿尔法带的振荡与从视觉皮层到腹侧流的信息门控有关,如代表特定的BOLD信号所反映。感觉阿尔法与下游活动的这种联系为刺激过程中选择性注意的机制提供了神经生理学基础,这不仅增强了参与的信息,而且抑制了注意力分散。尽管以前的研究已经显示了来自背部注意网络的BOLD信号与静止的alpha波段之间的关系,但我们在视觉空间任务期间证明了这种关系,表明背部注意网络对视觉alpha活动进行了自上而下的控制。

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