首页> 外文期刊>Journal of Cognitive Neuroscience >Neuronal Correlates of Multiple Top–Down Signals during Covert Tracking of Moving Objects in Macaque Prefrontal Cortex
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Neuronal Correlates of Multiple Top–Down Signals during Covert Tracking of Moving Objects in Macaque Prefrontal Cortex

机译:在猕猴前额叶皮层隐蔽跟踪运动对象过程中多个自上而下信号的神经元相关性。

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Resistance to distraction is a key component of executive functions and is strongly linked to the prefrontal cortex. Recent evidence suggests that neural mechanisms exist for selective suppression of task-irrelevant information. However, neuronal signals related to selective suppression have not yet been identified, whereas nonselective surround suppression, which results from attentional enhancement for relevant stimuli, has been well documented. This study examined single neuron activities in the lateral PFC when monkeys covertly tracked one of randomly moving objects. Although many neurons responded to the target, we also found a group of neurons that exhibited a selective response to the distractor that was visually identical to the target. Because most neurons were insensitive to an additional distractor that explicitly differed in color from the target, the brain seemed to monitor the distractor only when necessary to maintain internal object segregation. Our results suggest that the lateral PFC might provide at least two top–down signals during covert object tracking: one for enhancement of visual processing for the target and the other for selective suppression of visual processing for the distractor. These signals might work together to discriminate objects, thereby regulating both the sensitivity and specificity of target choice during covert object tracking.
机译:抵抗分心是执行功能的关键组成部分,与前额叶皮层密切相关。最近的证据表明,存在选择性抑制与任务无关的信息的神经机制。然而,尚未发现与选择性抑制有关的神经元信号,而有关选择性刺激的注意力增强引起的非选择性周围抑制则已得到充分证明。这项研究检查了当猴子秘密跟踪一个随机移动的物体之一时,外侧PFC中的单个神经元活动。尽管许多神经元对目标都有反应,但我们还发现了一组神经元,它们对牵张物表现出选择性的反应,在视觉上与目标相同。由于大多数神经元对颜色与目标明显不同的其他干扰物不敏感,因此大脑似乎仅在保持内部物体隔离的必要时才监视干扰物。我们的结果表明,横向PFC可能在隐蔽物体跟踪过程中至少提供两个自上而下的信号:一个用于增强目标的视觉处理,另一个用于选择性抑制干扰物的视觉处理。这些信号可能共同作用以区分物体,从而在隐蔽物体跟踪过程中调节目标选择的敏感性和特异性。

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