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Human non-phase-locked gamma oscillations in experience-based perception of visual scenes.

机译:在基于经验的视觉场景感知中,人类非锁相伽马振荡。

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摘要

Perception results from ongoing interactions between stimulus-driven visual processes and cognitive context. These reciprocal relations are emphasized when a visual stimulus is degraded, forcing the perceiver to fill the missing information in, based on internal representations. The neural mechanisms by which internal representations facilitate visual perception are still unclear. Here we investigated the role of EEG oscillations in the gamma band, thought to reflect the elaboration of internal visual representations, in the experience-based perception of visual scenes. Twelve subjects were trained with degraded images of natural scenes. EEG was recorded while they performed a detection task on trained and untrained degraded stimuli. Non-phase-locked gamma band responses in a large frequency spectrum (55-85 Hz) were observed around 200 ms post-stimulus onset at posterior sites, and were larger when subjects reported an accurate perception based on previous experience. These results suggest that mid-latency gamma oscillations in the visual cortex underlie the experience-based perception of visual scenes.
机译:知觉是由刺激驱动的视觉过程和认知环境之间不断进行的交互作用产生的。当视觉刺激降级时,这些互惠关系会得到强调,从而迫使感知者根据内部表示来填充缺失的信息。内部表示促进视觉感知的神经机制仍不清楚。在这里,我们研究了在基于经验的视觉场景感知中,EEG振荡在伽玛波段中的作用,认为这反映了内部视觉表示的精细化。对十二名对象进行了自然场景降级图像训练。当他们对训练有素和未经训练的退化刺激物执行检测任务时,记录了脑电图。刺激后约200毫秒在后部发作,观察到大频谱(55-85 Hz)中的非锁相伽马谱带响应,当受试者根据以前的经验报告准确的感知时,该响应会更大。这些结果表明,视觉皮质中的潜伏期伽马振荡是基于经验的视觉场景感知的基础。

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