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Color-Change Detection Activity in the Primate Superior Colliculus

机译:灵长类上腔囊中的变色检测活性

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摘要

The primate superior colliculus (SC) is a midbrain structure that participates in the control of spatial attention. Previous studies examining the role of the SC in attention have mostly used luminance-based visual features (e.g., motion, contrast) as the stimuli and saccadic eye movements as the behavioral response, both of which are known to modulate the activity of SC neurons. To explore the limits of the SC’s involvement in the control of spatial attention, we recorded SC neuronal activity during a task using color, a visual feature dimension not traditionally associated with the SC, and required monkeys to detect threshold-level changes in the saturation of a cued stimulus by releasing a joystick during maintained fixation. Using this color-based spatial attention task, we found substantial cue-related modulation in all categories of visually responsive neurons in the intermediate layers of the SC. Notably, near-threshold changes in color saturation, both increases and decreases, evoked phasic bursts of activity with magnitudes as large as those evoked by stimulus onset. This change-detection activity had two distinctive features: activity for hits was larger than for misses, and the timing of change-detection activity accounted for 67% of joystick release latency, even though it preceded the release by at least 200 ms. We conclude that during attention tasks, SC activity denotes the behavioral relevance of the stimulus regardless of feature dimension and that phasic event-related SC activity is suitable to guide the selection of manual responses as well as saccadic eye movements.
机译:灵长类上丘(SC)是中脑结构,参与空间注意力的控制。先前研究SC在注意力中的作用的研究大多使用基于亮度的视觉特征(例如,运动,对比度)作为刺激,并以眼跳运动作为行为反应,这两种已知都可以调节SC神经元的活动。为了探索SC参与空间注意力控制的局限性,我们使用颜色,传统上与​​SC无关的视觉特征尺寸以及需要猴子检测饱和度阈值水平变化的颜色记录了任务期间SC的神经元活动。通过在保持固定状态时释放操纵杆来提示刺激。使用基于颜色的空间注意力任务,我们在SC的中间层的所有类别的视觉响应神经元中发现了与提示有关的调制。值得注意的是,色彩饱和度的近阈值变化(增加和减少)都引起了活动的阶段性爆发,其幅度与刺激发作所引起的幅度一样大。这种变化检测活动具有两个显着特征:命中活动大于未命中活动,变化检测活动的时间占操纵杆释放延迟的67%,即使它在释放之前至少200毫秒也是如此。我们得出的结论是,在注意力任务中,SC活动表示刺激的行为相关性,而与特征尺寸无关,并且与阶段性事件相关的SC活动适用于指导手动响应以及眼部眼动的选择。

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