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首页> 外文期刊>Journal of Cognitive Neuroscience >Induced Gamma-band Activity Elicited By Visual Representation Of Unattended Objects
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Induced Gamma-band Activity Elicited By Visual Representation Of Unattended Objects

机译:无人参与物体的视觉表示诱发的诱导伽马射线带活动

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Object recognition is achieved through neural mechanisms reliant on the activity of distributed neural assemblies that are thought to be coordinated by synchronous firing in the gamma-band range (> 20 Hz). An outstanding question focuses on the extent to which the role of gamma oscillations in object recognition is dependent on attention. Attentional mechanisms determine the allocation of perceptual resources to objects in complex scenes biasing the outcome of their mutual competitive interactions. Would object-related enhancements in gamma activity also occur for unattended objects when perceptual resources are traded off to the processing of concurrent visual material? The present electroencephalogram study investigated event-related potentials and evoked (time- and phase-locked) and induced (non-time- and phase-locked to stimulus onset) gamma-band activity (GBA) using a visual discrimination task of low or high perceptual load at fixation. The task was performed while task-irrelevant familiar or unfamiliar objects coappeared in the surrounding central area. Attentional focus was kept at fixation by varying perceptual load between trials; in such conditions, only holistic object processing or low-level perceptual processing, requiring little or no attention, are thought to occur. Although evoked GBA remained unmodulated, induced GBA enhancements, specific to familiar object presentations, were observed, thus providing evidence for cortical visual representation of unattended objects. In addition, the effect was mostly driven by object-specific activity under low load, implying that, in cluttered or complex scenes, attentional selection likely plays a more significant role in object representation.
机译:目标识别是通过依赖于分布式神经组件活动的神经机制来实现的,这些神经组件被认为是通过在γ波段范围(> 20 Hz)中进行同步发射来协调的。一个悬而未决的问题集中在伽玛振荡在物体识别中的作用在多大程度上取决于注意力。注意机制决定了感知资源在复杂场景中对对象的分配,从而使其相互竞争相互作用的结果产生偏差。当将感知资源权衡到并发视觉材料的处理时,无人照管对象也会发生与伽马活动相关的对象相关增强吗?当前的脑电图研究使用低或高的视觉辨别任务调查了与事件相关的电位,以及诱发(时间和相位锁定)和诱发(非时间和相位锁定到刺激发作)伽马带活动(GBA)固定时的感知负荷。在与任务无关的熟悉或不熟悉的对象同时出现在周围的中心区域时执行任务。通过改变两次试验之间的知觉负荷,将注意力集中在注视上。在这种情况下,仅需要很少或根本没有注意的整体对象处理或低级感知处理被认为会发生。尽管诱发的GBA仍未调节,但观察到诱导的GBA增强(特定于熟悉的物体呈现),从而为无人照管物体的皮层视觉表示提供了证据。此外,效果主要是由低负载下特定于对象的活动所驱动的,这意味着在杂乱或复杂的场景中,注意选择可能在对象表示中起着更为重要的作用。

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