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Focusing Narrowly or Broadly Attention When Judging Categorical and Coordinate Spatial Relations: A MEG Study

机译:判断分类和坐标空间关系时应集中注意力于狭窄或广泛的注意力:一项MEG研究

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摘要

We measured activity in the dorsal system of the human cortex with magnetoencephalography (MEG) during a matching-to-sample plus cueing paradigm, where participants judged the occurrence of changes in either categorical or coordinate spatial relations (e.g., exchanges of left versus right positions or changes in the relative distances) between images of pairs of animals. The attention window was primed in each trial to be either small or large by using cues that immediately preceded the matching image. In this manner, we could assess the modulatory effects of the scope of attention on the activity of the dorsal system of the human cortex during spatial relations processing. The MEG measurements revealed that large spatial cues yielded greater activations and longer peak latencies in the right inferior parietal lobe for coordinate trials, whereas small cues yielded greater activations and longer peak latencies in the left inferior parietal lobe for categorical trials. The activity in the superior parietal lobe, middle frontal gyrus, and visual cortex, was also modulated by the size of the spatial cues and by the type of spatial relation change. The present results support the theory that the lateralization of each kind of spatial processing hinges on differences in the sizes of regions of space attended to by the two hemispheres. In addition, the present findings are inconsistent with the idea of a right-hemispheric dominance for all kinds of challenging spatial tasks, since response times and accuracy rates showed that the categorical spatial relation task was more difficult than the coordinate task and the cortical activations were overall greater in the left hemisphere than in the right hemisphere.
机译:我们在样本匹配和提示范例期间使用磁脑电图(MEG)测量了人类皮层背侧系统的活动,其中参与者判断类别或坐标空间关系发生了变化(例如,左右位置的交换)或成对动物图像之间的相对距离变化)。通过使用紧随匹配图像之前的提示,在每个试验中将注意窗口设置为较小或较大。通过这种方式,我们可以评估在空间关系处理过程中注意范围对人类皮质背侧系统活动的调节作用。 MEG测量结果显示,大的空间提示在右下顶叶中产生更大的激活和更长的峰值潜伏期,以进行协调试验,而小提示则在左下顶叶中产生更大的激活和更长的峰值潜伏期,以进行分类试验。顶叶上叶,中额回和视觉皮层的活动也受到空间线索大小和空间关系变化类型的调节。本研究结果支持以下理论:每种空间处理的侧向化取决于两个半球所参与的空间区域大小的差异。此外,本研究结果与所有挑战性空间任务的右半球优势概念不一致,因为响应时间和准确率表明分类空间关系任务比协调任务更困难,皮层激活更困难。总的来说,左半球比右半球更大。

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