University of Pennsylvania.
University of Guelph.
J Cogn Neurosci. 2018 Sep;30(9):1281-1297. doi: 10.1162/jocn_a_01284. Epub 2018 May 23.
Top-down attention prioritizes the processing of goal-relevant information throughout visual cortex based on where that information is found in space and what it looks like. Whereas attentional goals often have both spatial and featural components, most research on the neural basis of attention has examined these components separately. Here we investigated how these attentional components are integrated by examining the attentional modulation of functional connectivity between visual areas with different selectivity. Specifically, we used fMRI to measure temporal correlations between spatially selective regions of early visual cortex and category-selective regions in ventral temporal cortex while participants performed a task that benefitted from both spatial and categorical attention. We found that categorical attention modulated the connectivity of category-selective areas, but only with retinotopic areas that coded for the spatially attended location. Similarly, spatial attention modulated the connectivity of retinotopic areas only with the areas coding for the attended category. This pattern of results suggests that attentional modulation of connectivity is driven both by spatial selection and featural biases. Combined with exploratory analyses of frontoparietal areas that track these changes in connectivity among visual areas, this study begins to shed light on how different components of attention are integrated in support of more complex behavioral goals.
自上而下的注意力基于信息在空间中的位置和外观,优先处理视觉皮层中与目标相关的信息。尽管注意目标通常具有空间和特征成分,但大多数关于注意力的神经基础的研究都是分别研究这些成分的。在这里,我们通过检查具有不同选择性的视觉区域之间的功能连接的注意调制来研究这些注意成分是如何整合的。具体来说,我们使用 fMRI 来测量参与者执行受益于空间和类别注意的任务时,早期视觉皮层的空间选择性区域和腹侧颞叶皮层的类别选择性区域之间的时间相关性。我们发现,类别注意调制了类别选择性区域的连接,但仅与编码空间注意位置的视网膜区域有关。同样,空间注意仅调制了编码注意类别的视网膜区域的连接。这种结果模式表明,连接的注意调制既受空间选择又受特征偏向驱动。结合对额顶区域的探索性分析,这些区域跟踪视觉区域之间连接的这些变化,这项研究开始揭示不同注意成分如何整合以支持更复杂的行为目标。