Nunez-Parra Alexia, Cea-Del Rio Christian A, Huntsman Molly M, Restrepo Diego
Department of Cell and Developmental Biology, Rocky Mountain Taste and Smell Center and Neuroscience Program, University of Colorado Anschutz Medical Campus, Aurora, CO, United States.
Department of Biology, Faculty of Science, Universidad de Chile, Santiago, Chile.
Front Cell Neurosci. 2020 Jun 5;14:141. doi: 10.3389/fncel.2020.00141. eCollection 2020.
Successful completion of sensory decision-making requires focusing on relevant stimuli, adequate signal/noise ratio for stimulus discrimination, and stimulus valence evaluation. Different brain regions are postulated to play a role in these computations; however, evidence suggests that sensory and decision-making circuits are required to interact through a common neuronal pathway to elicit a context-adequate behavioral response. Recently, the basal forebrain (BF) region has emerged as a good candidate, since its heterogeneous projecting neurons innervate most of the cortical mantle and sensory processing circuits modulating different aspects of the sensory decision-making process. Moreover, evidence indicates that the BF plays an important role in attention and in fast modulation of neuronal activity that enhance visual and olfactory sensory perception. Here, we study in awake mice the involvement of BF in initiation and completion of trials in a reward-driven olfactory detection task. Using tetrode recordings, we find that BF neurons (including cholinergics) are recruited during sensory discrimination, reward, and interestingly slightly before trial initiation in successful discrimination trials. The precue neuronal activity was correlated with animal performance, indicating that this circuit could play an important role in adaptive context-dependent behavioral responses.
成功完成感觉决策需要专注于相关刺激、具备足够的信号/噪声比以进行刺激辨别以及评估刺激效价。不同的脑区被假定在这些计算中发挥作用;然而,有证据表明感觉和决策回路需要通过共同的神经元通路相互作用,以引发符合情境的行为反应。最近,基底前脑(BF)区域已成为一个很好的候选者,因为其异质性投射神经元支配大部分皮质,且感觉处理回路调节感觉决策过程的不同方面。此外,有证据表明BF在注意力以及快速调节神经元活动方面发挥重要作用,而这种调节会增强视觉和嗅觉感觉知觉。在此,我们在清醒小鼠中研究BF在奖励驱动的嗅觉检测任务中试验启动和完成过程中的作用。使用四电极记录,我们发现BF神经元(包括胆碱能神经元)在感觉辨别、奖励期间被招募,有趣的是,在成功的辨别试验中,它们在试验启动前略有激活。线索前神经元活动与动物表现相关,表明该回路可能在适应性情境依赖的行为反应中发挥重要作用。