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Task reward structure shapes rapid receptive field plasticity in auditory cortex

机译:任务奖励结构塑造听觉皮层的快速感受野可塑性

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As sensory stimuli and behavioral demands change, the attentive brain quickly identifies task-relevant stimuli and associates them with appropriate motor responses. The effects of attention on sensory processing vary across task paradigms, suggesting that the brain may use multiple strategies and mechanisms to highlight attended stimuli and link them to motor action. To better understand factors that contribute to these variable effects, we studied sensory representations in primary auditory cortex (A1) during two instrumental tasks that shared the same auditory discrimination but required different behavioral responses, either approach or avoidance. In the approach task, ferrets were rewarded for licking a spout when they heard a target tone amid a sequence of reference noise sounds. In the avoidance task, they were punished unless they inhibited licking to the target. To explore how these changes in task reward structure influenced attention-driven rapid plasticity in A1, we measured changes in sensory neural responses during behavior. Responses to the target changed selectively during both tasks but did so with opposite sign. Despite the differences in sign, both effects were consistent with a general neural coding strategy that maximizes discriminability between sound classes. The dependence of the direction of plasticity on task suggests that representations in A1 change not only to sharpen representations of task-relevant stimuli but also to amplify responses to stimuli that signal aversive outcomes and lead to behavioral inhibition. Thus, top-down control of sensory processing can be shaped by task reward structure in addition to the required sensory discrimination.
机译:随着感觉刺激和行为需求的变化,注意力集中的大脑会迅速识别与任务相关的刺激,并将其与适当的运动反应相关联。注意对感觉处理的影响因任务范式而异,表明大脑可能使用多种策略和机制来突出参与的刺激并将其与运动动作联系起来。为了更好地理解造成这些变量影响的因素,我们研究了在两个工具任务中,听觉表现在初级听觉皮层(A1)中的表现,这些任务共享相同的听觉辨别力,但需要不同的行为响应,即接近或回避。在进近任务中,当雪貂在一系列参考噪声的声音中听到目标音时,他们舔嘴会获得奖励。在回避任务中,除非他们禁止舔目标,否则他们将受到惩罚。为了探索任务奖励结构中的这些变化如何影响A1中注意力驱动的快速可塑性,我们测量了行为过程中感觉神经反应的变化。在两个任务中,对目标的响应都选择性地改变了,但是却相反。尽管符号不同,但两种效果均与通用的神经编码策略一致,该策略可以最大程度地区分声音类别。可塑性方向对任务的依赖性表明,A1中的表示形式的变化不仅可以增强与任务相关的刺激的表示,而且可以放大对信号的厌恶反应,从而发出厌恶结果并导致行为抑制。因此,除了所需的感官辨别之外,还可以通过任务奖励结构来形成对感官处理的自上而下的控制。

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