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皮质下连接与注意对空间选择偏差的影响呈选择性相关。

Subcortical connectivity correlates selectively with attention's effects on spatial choice bias.

机构信息

Centre for Neuroscience, Indian Institute of Science, 560012 Bangalore, India

出版信息

Proc Natl Acad Sci U S A. 2019 Sep 24;116(39):19711-19716. doi: 10.1073/pnas.1902704116. Epub 2019 Sep 6.

Abstract

Neural mechanisms of attention are extensively studied in the neocortex; comparatively little is known about how subcortical regions contribute to attention. The superior colliculus (SC) is an evolutionarily conserved, subcortical (midbrain) structure that has been implicated in controlling visuospatial attention. Yet how the SC contributes mechanistically to attention remains unknown. We investigated the role of the SC in attention, combining model-based psychophysics, diffusion imaging, and tractography in human participants. Specifically, we asked whether the SC contributes to enhancing sensitivity (d') to attended information, or whether it contributes to biasing choices (criteria) in favor of attended information. We tested human participants on a multialternative change detection task, with endogenous spatial cueing, and quantified sensitivity and bias with a recently developed multidimensional signal detection model (m-ADC model). At baseline, sensitivity and bias exhibited complementary patterns of asymmetries across the visual hemifields: While sensitivity was consistently higher for detecting changes in the left hemifield, bias was higher for reporting changes in the right hemifield. Remarkably, white matter connectivity of the SC with the neocortex mirrored this pattern of asymmetries. Specifically, the asymmetry in SC-cortex connectivity correlated with the asymmetry in choice bias, but not in sensitivity. In addition, SC-cortex connectivity strength could predict cueing-induced modulation of bias, but not of sensitivity, across individuals. In summary, the SC may be a key node in an evolutionarily conserved network for controlling choice bias during visuospatial attention.

摘要

神经注意机制在大脑皮层中得到了广泛的研究;相比之下,人们对皮质下区域如何影响注意力知之甚少。上丘(SC)是一种进化上保守的、皮质下(中脑)结构,它与控制视觉空间注意力有关。然而,SC 如何在机制上影响注意力仍然未知。我们结合基于模型的心理物理学、扩散成像和人类参与者的轨迹追踪,研究了 SC 在注意力中的作用。具体来说,我们询问 SC 是否有助于提高对注意信息的敏感性(d'),或者它是否有助于偏向注意信息的选择(标准)。我们在一项多选择变化检测任务中对人类参与者进行了测试,该任务具有内源性空间提示,并使用最近开发的多维信号检测模型(m-ADC 模型)量化了敏感性和偏向性。在基线时,敏感性和偏向性在视觉半视野之间表现出互补的不对称模式:尽管检测左半视野变化的敏感性始终较高,但报告右半视野变化的偏向性较高。值得注意的是,SC 与大脑皮层之间的白质连接模式与这种不对称模式相匹配。具体来说,SC-皮质连接的不对称性与选择偏向的不对称性相关,但与敏感性无关。此外,SC-皮质连接的强度可以预测个体间线索诱导的偏向调制,但不能预测敏感性。总之,SC 可能是控制视觉空间注意力期间选择偏向的进化保守网络中的关键节点。

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