Neural Basis of Learning, Institute of Cognitive Neuroscience, Faculty of Psychology, Ruhr University Bochum, 44801 Bochum, Germany
Neural Basis of Learning, Institute of Cognitive Neuroscience, Faculty of Psychology, Ruhr University Bochum, 44801 Bochum, Germany.
eNeuro. 2023 Mar 8;10(3). doi: 10.1523/ENEURO.0296-22.2023. Print 2023 Mar.
Executive functions arise from multiple regions of the brain acting in concert. To facilitate such cross-regional computations, the brain is organized into distinct executive networks, like the frontoparietal network. Despite similar cognitive abilities across many domains, little is known about such executive networks in birds. Recent advances in avian fMRI have shown a possible subset of regions, including the nidopallium caudolaterale (NCL) and the lateral part of medial intermediate nidopallium (NIML), that may contribute to complex cognition, forming an action control system of pigeons. We investigated the neuronal activity of NCL and NIML. Single-cell recordings were obtained during the execution of a complex sequential motor task that required executive control to stop executing one behavior and continue with a different one. We compared the neuronal activity of NIML to NCL and found that both regions fully processed the ongoing sequential execution of the task. Differences arose from how behavioral outcome was processed. Our results indicate that NCL takes on a role in evaluating outcome, while NIML is more tightly associated with ongoing sequential steps. Importantly, both regions seem to contribute to overall behavioral output as parts of a possible avian executive network, crucial for behavioral flexibility and decision-making.
执行功能源于大脑多个区域的协同作用。为了促进这种跨区域的计算,大脑被组织成不同的执行网络,如额顶网络。尽管鸟类在许多领域具有相似的认知能力,但对于鸟类的这种执行网络知之甚少。最近在鸟类 fMRI 方面的进展表明,可能存在包括尾壳核(NCL)和中隔核内侧中间部的外侧部分(NIML)在内的一组特定区域,这些区域可能有助于复杂认知,并形成鸽子的动作控制系统。我们研究了 NCL 和 NIML 的神经元活动。在执行需要执行控制以停止执行一种行为并继续执行另一种行为的复杂顺序运动任务期间,我们进行了单细胞记录。我们将 NIML 的神经元活动与 NCL 进行了比较,发现这两个区域都完全处理了任务的持续顺序执行。差异源于行为结果的处理方式。我们的结果表明,NCL 承担了评估结果的作用,而 NIML 则与正在进行的顺序步骤更紧密相关。重要的是,这两个区域似乎都作为可能的鸟类执行网络的一部分,对整体行为输出做出贡献,这对于行为灵活性和决策至关重要。