University of Tübingen.
J Cogn Neurosci. 2017 Oct;29(10):1712-1724. doi: 10.1162/jocn_a_01152. Epub 2017 May 30.
Crows quickly learn arbitrary associations. As a neuronal correlate of this behavior, single neurons in the corvid endbrain area nidopallium caudolaterale (NCL) change their response properties during association learning. In crows performing a delayed association task that required them to map both familiar and novel sample pictures to the same two choice pictures, NCL neurons established a common, prospective code for associations. Here, we report that neuronal tuning changes during learning were not distributed equally in the recorded population of NCL neurons. Instead, such learning-related changes relied almost exclusively on neurons which were already encoding familiar associations. Only in such neurons did behavioral improvements during learning of novel associations coincide with increasing selectivity over the learning process. The size and direction of selectivity for familiar and newly learned associations were highly correlated. These increases in selectivity for novel associations occurred only late in the delay period. Moreover, NCL neurons discriminated correct from erroneous trial outcome based on feedback signals at the end of the trial, particularly in newly learned associations. Our results indicate that task-relevant changes during association learning are not distributed within the population of corvid NCL neurons but rather are restricted to a specific group of association-selective neurons. Such association neurons in the multimodal cognitive integration area NCL likely play an important role during highly flexible behavior in corvids.
乌鸦能够迅速学习任意的关联。作为这种行为的神经相关物,雀形目动物端脑尾侧的中脑核(NCL)中的单个神经元在关联学习过程中会改变其反应特性。在执行需要将熟悉和新颖的样本图片映射到相同的两个选择图片的延迟关联任务的乌鸦中,NCL 神经元为关联建立了一个共同的、前瞻性的代码。在这里,我们报告说,在学习过程中,神经元调谐的变化在记录的 NCL 神经元群体中并没有均匀分布。相反,这种与学习相关的变化几乎完全依赖于已经编码熟悉关联的神经元。只有在这些神经元中,新的关联学习过程中的行为改善与学习过程中的选择性增加相一致。熟悉和新学习的关联的选择性大小和方向高度相关。这种对新关联的选择性增加仅发生在延迟期间的后期。此外,NCL 神经元根据试验结束时的反馈信号来区分正确和错误的试验结果,特别是在新学习的关联中。我们的结果表明,在关联学习过程中,与任务相关的变化不是在雀形目 NCL 神经元群体中分布的,而是局限于特定的一组关联选择性神经元。NCL 中这种多模态认知整合区域的关联神经元可能在雀形目动物的高度灵活行为中发挥重要作用。