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首页> 外文期刊>The European Journal of Neuroscience >Temporal dynamics of the knowledge-mediated visual disambiguation process in humans: a magnetoencephalography study
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Temporal dynamics of the knowledge-mediated visual disambiguation process in humans: a magnetoencephalography study

机译:人类知识介导的视觉消歧过程的时间动态:磁脑图研究

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Disambiguation of a noisy visual scene with prior knowledge is an indispensable task of the visual system. To adequately adapt to a dynamically changing visual environment full of noisy visual scenes, the implementation of knowledge-mediated disambiguation in the brain is imperative and essential for proceeding as fast as possible under the limited capacity of visual image processing. However, the temporal profile of the disambiguation process has not yet been fully elucidated in the brain. The present study attempted to determine how quickly knowledge-mediated disambiguation began to proceed along visual areas after the onset of a two-tone ambiguous image using magnetoencephalography with high temporal resolution. Using the predictive coding framework, we focused on activity reduction for the two-tone ambiguous image as an index of the implementation of disambiguation. Source analysis revealed that a significant activity reduction was observed in the lateral occipital area at approximately 120ms after the onset of the ambiguous image, but not in preceding activity (about 115ms) in the cuneus when participants perceptually disambiguated the ambiguous image with prior knowledge. These results suggested that knowledge-mediated disambiguation may be implemented as early as approximately 120ms following an ambiguous visual scene, at least in the lateral occipital area, and provided an insight into the temporal profile of the disambiguation process of a noisy visual scene with prior knowledge.
机译:用先验知识消除嘈杂的视觉场景是视觉系统必不可少的任务。为了充分适应充满嘈杂视觉场景的动态变化视觉环境,在视觉图像处理能力有限的情况下,在大脑中实施知识介导的消歧是必不可少的,并且对于尽快进行是必不可少的。但是,消歧过程的时间特征尚未在大脑中得到充分阐明。本研究试图确定具有高时间分辨力的脑磁图在两色调模糊图像开始后,视觉介导的歧义消除在视觉区域上开始进行的速度有多快。使用预测编码框架,我们将重点放在两色调模糊图像的活动减少上,作为消除歧义实施的指标。资料分析显示,在模棱两可的图像出现后约120毫秒后,在枕骨外侧区域观察到了明显的活动减少,但当参与者通过先验知识将模棱两可的图像进行歧义消除时,未在楔骨的先前活动(约115毫秒)中观察到活动减少。这些结果表明,至少在外侧枕骨区域,可以在模糊的视觉场景后最早约120ms内实现知识介导的消歧,并且可以了解具有先验知识的嘈杂视觉场景的消歧过程的时间分布。 。

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