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Perceptual Color Space Representations in the Oculomotor System Are Modulated by Surround Suppression and Biased Selection

机译:动眼系统中的感知色空间表示通过环绕抑制和偏置选择进行调制

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摘要

The oculomotor system utilizes color extensively for planning saccades. Therefore, we examined how the oculomotor system actually encodes color and several factors that modulate these representations: attention-based surround suppression and inherent biases in selecting and encoding color categories. We measured saccade trajectories while human participants performed a memory-guided saccade task with color targets and distractors and examined whether oculomotor target selection processing was functionally related to the CIE (x,y) color space distances between color stimuli and whether there were hierarchical differences between color categories in the strength and speed of encoding potential saccade goals. We observed that saccade planning was modulated by the CIE (x,y) distances between stimuli thus demonstrating that color is encoded in perceptual color space by the oculomotor system. Furthermore, these representations were modulated by (1) cueing attention to a particular color thereby eliciting surround suppression in oculomotor color space and (2) inherent selection and encoding biases based on color category independent of cueing and perceptual discriminability. Since surround suppression emerges from recurrent feedback attenuation of sensory projections, observing oculomotor surround suppression suggested that oculomotor encoding of behavioral relevance results from integrating sensory and cognitive signals that are pre-attenuated based on task demands and that the oculomotor system therefore does not functionally contribute to this process. Second, although perceptual discriminability did partially account for oculomotor processing differences between color categories, we also observed preferential processing of the red color category across various behavioral metrics. This is consistent with numerous previous studies and could not be simply explained by perceptual discriminability. Since we utilized a memory-guided saccade task, this indicates that the biased processing of the red color category does not rely on sustained sensory input and must therefore involve cortical areas associated with the highest levels of visual processing involved in visual working memory.
机译:动眼系统广泛地利用颜色来计划扫视。因此,我们研究了动眼系统如何实际编码颜色以及调制这些表示的几个因素:基于注意力的环绕抑制以及选择和编码颜色类别时的固有偏差。我们测量了扫视轨迹,同时人类参与者使用颜色目标和干扰物执行了记忆引导的扫视任务,并检查了动眼目标选择处理是否与颜色刺激之间的CIE(x,y)颜色空间距离在功能上相关,以及之间是否存在等级差异颜色类别在编码潜在扫视目标的强度和速度上。我们观察到,扫视计划是受刺激之间的CIE(x,y)距离调节的,因此证明了动眼动系统在感知的色彩空间中编码了颜色。此外,通过(1)引起对某种特定颜色的关注,从而引起动眼动感色彩空间中的周围抑制,以及(2)基于与提示和可辨别性无关的颜色类别的固有选择和编码偏差,来调制这些表示。由于周围抑制是由于感觉投射的递归反馈衰减而引起的,因此观察眼动眼周围抑制表明,行为相关性的眼动眼编码是由于整合了根据任务要求预先衰减的感觉和认知信号而产生的,因此眼动眼系统在功能上不起作用这个过程。其次,尽管在感知上的可分辨性确实部分解释了颜色类别之间动眼处理的差异,但我们还观察到在各种行为指标上红色类别的优先处理。这与以前的许多研究是一致的,并且不能通过可辨别性简单地解释。由于我们利用记忆指导的扫视任务,这表明红色类别的偏向处理不依赖于持续的感官输入,因此必须涉及与视觉工作记忆所涉及的最高水平视觉处理相关的皮质区域。

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