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首页> 外文期刊>Neuron >Learning Enhances Sensory and Multiple Non-sensory Representations in Primary Visual Cortex
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Learning Enhances Sensory and Multiple Non-sensory Representations in Primary Visual Cortex

机译:学习增强初级视觉皮层的感觉和多个非感觉表示

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摘要

We determined how learning modifies neural representations in primary visual cortex (V1) during acquisition of a visually guided behavioral task. We imaged the activity of the same layer 2/3 neuronal populations as mice learned to discriminate two visual patterns while running through a virtual corridor, where one pattern was rewarded. Improvements in behavioral performance were closely associated with increasingly distinguishable population-level representations of task-relevant stimuli, as a result of stabilization of existing and recruitment of new neurons selective for these stimuli. These effects correlated with the appearance of multiple task-dependent signals during learning: those that increased neuronal selectivity across the population when expert animals engaged in the task, and those reflecting anticipation or behavioral choices specifically in neuronal subsets preferring the rewarded stimulus. Therefore, learning engages diverse mechanisms that modify sensory and non-sensory representations in V1 to adjust its processing to task requirements and the behavioral relevance of visual stimuli.
机译:我们确定了学习如何在获取视觉引导的行为任务的过程中修改主视觉皮层(V1)中的神经表示。我们对相同的第2/3层神经元种群的活动进行了成像,这是因为老鼠在虚拟走廊上奔跑时能够分辨出两种视觉模式,其中一种模式得到了奖励。行为表现的改善与与任务相关的刺激的日益明显的群体水平表示密切相关,这是由于现有的稳定化和对这些刺激有选择性的新神经元的募集。这些影响与学习过程中多个任务相关信号的出现有关:当专家动物从事任务时,这些信号增加了整个种群的神经元选择性,而那些反映预期或行为选择的神经元子集则更喜欢奖励刺激。因此,学习采用多种机制来修改V1中的感官和非感官表示,以根据任务要求和视觉刺激的行为相关性调整其处理。

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