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Responses of Neurons in Lateral Intraparietal Area Depend on Stimulus-Associated Reward During Binocular Flash Suppression

机译:在双眼闪光灯抑制过程中外侧腹膜区神经元的反应取决于刺激相关的奖励。

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摘要

Discovering neural correlates of subjective perception and dissociating them from sensory input has fascinated neuroscientists for a long time. Bistable and multistable perception phenomena have exhibited great experimental potential to address this question. Here, we performed electrophysiological recordings from single neurons in lateral intraparietal area (LIP) of rhesus macaques during stimulus and perceptual transitions induced by binocular flash suppression (BFS). LIP neurons demonstrated transient bursts of activity after stimulus presentation and stimulus or perceptual switches but only a minority of cells demonstrated stimulus and perceptual selectivity. To enhance LIP neural selectivity, we performed a second experiment in which the competing stimuli were associated with asymmetric rewards. We found that transient and sustained activities substantially increased while the proportion of stimulus selective neurons remained approximately the same, albeit with increased selectivity magnitude. In addition, we observed mild increases in the proportion of perceptually selective neurons which also showed increase magnitude of selectivity. Importantly, the increased selectivity of cells after the reward manipulation was not directly reflecting the reward size per se but an enhancement in stimulus differentiation. Based on our results, we conjecture that LIP contributes to perceptual transitions and serves a modulatory role in perceptual selection taking into account the stimulus behavioral value.
机译:发现主观知觉的神经相关并将其与感觉输入分离已经使神经学家迷恋了很长时间。双稳态和多稳态感知现象已经显示出解决该问题的巨大实验潜力。在这里,我们在双眼闪光抑制(BFS)引起的刺激和知觉转换过程中,对恒河猴的顶壁外侧区域(LIP)中的单个神经元进行了电生理记录。 LIP神经元在刺激呈现和刺激或知觉转换后表现出短暂的活动爆发,但只有少数细胞表现出刺激和知觉选择性。为了增强LIP神经选择性,我们进行了第二个实验,其中竞争性刺激与不对称奖励相关。我们发现瞬时和持续活动大大增加,而选择性刺激神经元的比例保持大致相同,尽管选择性幅度增加。此外,我们观察到感知选择性神经元比例的轻微增加,这也显示出选择性的增加。重要的是,奖励操纵后细胞选择性的提高并不直接反映奖励本身的大小,而是刺激分化的增强。根据我们的研究结果,我们推测LIP有助于感知转换,并在考虑刺激行为价值的情况下在感知选择中起调节作用。

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