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Orbitofrontal neurons signal sensory associations underlying model-based inference in a sensory preconditioning task

机译:眼前额神经元在感觉预处理任务中基于模型推断的信号感觉联系

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Using knowledge of the structure of the world to infer value is at the heart of model-based reasoning and relies on a circuit that includes the orbitofrontal cortex (OFC). Some accounts link this to the representation of biological significance or value by neurons in OFC, while other models focus on the representation of associative structure or cognitive maps. Here we tested between these accounts by recording OFC neurons in rats during an OFC-dependent sensory preconditioning task. We found that while OFC neurons were strongly driven by biological significance or reward predictions at the end of training, they also showed clear evidence of acquiring the incidental stimulus-stimulus pairings in the preconditioning phase, prior to reward training. These results support a role for OFC in representing associative structure, independent of value.
机译:使用世界结构的知识来推断价值是基于模型的推理的核心,并且依赖于包含眶额皮质(OFC)的电路。一些描述将其与OFC中神经元的生物学意义或价值表示联系起来,而另一些模型则侧重于关联结构或认知图的表示。在这里,我们通过在依赖OFC的感觉预处理任务中记录大鼠中的OFC神经元来测试这些帐户之间的关系。我们发现,虽然OFC神经元在训练结束时受到生物学意义或奖励预测的强烈驱动,但它们也显示出清晰的证据,表明在奖励训练之前的预适应阶段获得了偶然的刺激-刺激配对。这些结果支持了OFC在代表关联结构中独立于价值的作用。

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