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Frontal Eye Field Activity Enhances Object Identification During Covert Visual Search

机译:正面眼视野活动在隐蔽视觉搜索过程中增强了对象识别

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摘要

We investigated the link between neuronal activity in the frontal eye field (FEF) and the enhancement of visual processing associated with covert spatial attention in the absence of eye movements. We correlated activity recorded in the FEF of monkeys manually reporting the identity of a visual search target to performance accuracy and reaction time. Monkeys were cued to the most probable target location with a cue array containing a popout color singleton. Neurons exhibited spatially selective responses for the popout cue stimulus and for the target of the search array. The magnitude of activity related to the location of the cue prior to the presentation of the search array was correlated with trends in behavioral performance across valid, invalid, and neutral cue trial conditions. However, the speed and accuracy of the behavioral report on individual trials were predicted by the magnitude of spatial selectivity related to the target to be identified, not for the spatial cue. A minimum level of selectivity was necessary for target detection and a higher level for target identification. Muscimol inactivation of FEF produced spatially selective perceptual deficits in the covert search task that were correlated with the effectiveness of the inactivation and were strongest on invalid cue trials that require an endogenous attention shift. These results demonstrate a strong functional link between FEF activity and covert spatial attention and suggest that spatial signals from FEF directly influence visual processing during the time that a stimulus to be identified is being processed by the visual system.
机译:我们调查了额叶视野中的神经元活动(FEF)与在没有眼球运动的情况下隐性空间注意相关的视觉处理增强之间的联系。我们将记录在猴子FEF中的活动与手动报告视觉搜索目标的身份相关联,以提高性能准确性和反应时间。用包含弹出颜色单例的提示数组将猴子提示到最可能的目标位置。神经元对弹出提示刺激和搜索阵列目标显示出空间选择性响应。在提出搜索阵列之前,与提示位置有关的活动强度与有效,无效和中性提示试验条件下的行为表现趋势相关。但是,关于单个试验的行为报告的速度和准确性是通过与要确定的目标相关的空间选择性的大小来预测的,而不是针对空间提示。最低水平的选择性对于目标检测是必需的,而更高水平的目标识别则是必需的。 FEF的Muscimol失活在隐蔽搜索任务中产生了空间选择性的知觉缺陷,这与失活的有效性相关,并且在需要内源注意力转移的无效提示试验中最强。这些结果证明了FEF活动与隐秘空间注意之间的强大功能联系,并表明在视觉系统正在处理待识别的刺激时,来自FEF的空间信号会直接影响视觉处理。

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