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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Spatially global representations in human primary visual cortex during working memory maintenance.
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Spatially global representations in human primary visual cortex during working memory maintenance.

机译:在工作记忆维护过程中人类主要视觉皮层的空间全局表示。

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Recent studies suggest that visual features are stored in working memory (WM) via sensory recruitment or sustained stimulus-specific patterns of activity in cortical regions that encode memoranda. One important question concerns the spatial extent of sensory recruitment. One possibility is that sensory recruitment is restricted to neurons that are retinotopically mapped to the positions occupied by the remembered items. Alternatively, specific feature values could be represented via a spatially global recruitment of neurons that encode the remembered feature, regardless of the retinotopic position of the remembered stimulus. Here, we evaluated these alternatives by requiring subjects to remember the orientation of a grating presented in the left or right visual field. Functional magnetic resonance imaging and multivoxel pattern analysis were then used to examine feature-specific activations in early visual regions during memory maintenance. Activation patterns that discriminated the remembered feature were found in regions of contralateral visual cortex that corresponded to the retinotopic position of the remembered item, as well as in ipsilateral regions that were not retinotopically mapped to the position of the stored stimulus. These results suggest that visual details are held in WM through a spatially global recruitment of early sensory cortex. This spatially global recruitment may enhance memory precision by facilitating robust population coding of the stored information.
机译:最近的研究表明,视觉特征通过编码备忘录的皮质区域中的感觉募集或持续刺激特定的活动模式存储在工作记忆(WM)中。一个重要的问题涉及感觉募集的空间范围。一种可能性是,感觉募集仅限于视网膜上定位到记忆物品所占据位置的神经元。备选地,可以通过对所记忆的特征进行编码的神经元的空间全局募集来表示特定的特征值,而不管所记忆的刺激的视网膜位置如何。在这里,我们通过要求受试者记住在左侧或右侧视野中呈现的光栅的方向来评估这些替代方案。然后使用功能磁共振成像和多体素模式分析来检查内存维护期间早期视觉区域中特定于特征的激活。区分记忆特征的激活模式在对侧视觉皮层的区域中找到,该区域对应于记忆项的视网膜位置,以及在同侧区域中没有视网膜位置映射到所存储刺激的位置。这些结果表明,视觉细节通过早期感觉皮层的空间全局募集而保留在WM中。通过促进对存储的信息进行鲁棒的总体编码,这种空间上的全局募集可以提高存储精度。

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