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Retinotopic Mapping of Categorical and Coordinate Spatial Relation Processing in Early Visual Cortex

机译:早期视觉皮层中分类和坐标空间关系处理的视网膜映射

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摘要

Spatial relations are commonly divided in two global classes. Categorical relations concern abstract relations which define areas of spatial equivalence, whereas coordinate relations are metric and concern exact distances. Categorical and coordinate relation processing are thought to rely on at least partially separate neurocognitive mechanisms, as reflected by differential lateralization patterns, in particular in the parietal cortex. In this study we address this textbook principle from a new angle. We studied retinotopic activation in early visual cortex, as a reflection of attentional distribution, in a spatial working memory task with either a categorical or a coordinate instruction. Participants were asked to memorize a dot position, with regard to a central cross, and to indicate whether a subsequent dot position matched the first dot position, either categorically (opposite quadrant of the cross) or coordinately (same distance to the centre of the cross). BOLD responses across the retinotopic maps of V1, V2, and V3 indicate that the spatial distribution of cortical activity was different for categorical and coordinate instructions throughout the retention interval; a more local focus was found during categorical processing, whereas focus was more global for coordinate processing. This effect was strongest for V3, approached significance in V2 and was absent in V1. Furthermore, during stimulus presentation the two instructions led to different levels of activation in V3 during stimulus encoding; a stronger increase in activity was found for categorical processing. Together this is the first demonstration that instructions for specific types of spatial relations may yield distinct attentional patterns which are already reflected in activity early in the visual cortex.
机译:空间关系通常分为两个全局类。分类关系涉及定义空间等价区域的抽象关系,而坐标关系则是公制并涉及精确距离。分类和坐标关系处理被认为依赖于至少部分独立的神经认知机制,这由不同的侧化模式反映出来,特别是在顶叶皮层中。在这项研究中,我们从新的角度探讨了这本教科书的原理。我们用分类或坐标指令研究了空间视觉记忆任务中早期视皮层的视黄醛激活,作为注意力分布的反映。要求参与者记住中心十字的点位置,并明确地(十字的相对象限)或协调地(距十字中心的距离)指示随后的点位置是否与第一个点位置匹配)。跨V1,V2和V3的视网膜位点图的粗体响应表明,在整个保留期内,分类和协调指令的皮质活动空间分布是不同的。在分类处理过程中发现了更局部的焦点,而在坐标处理中焦点更为全局。对于V3,此效果最强,在V2中接近,而在V1中则不存在。此外,在刺激表示期间,两条指令在刺激编码期间导致V3中的激活程度不同;发现分类处理的活性增加更强。在一起,这是第一个证明,对于特定类型的空间关系的指令可能会产生不同的注意力模式,这些模式已经反映在视觉皮层的早期活动中。

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