Center for the Neural Basis of Cognition, University of Pittsburgh, Pittsburgh, Pennsylvania 15213.
Department of Neuroscience, University of Pittsburgh, Pittsburgh, Pennsylvania 15260.
eNeuro. 2023 May 25;10(5). doi: 10.1523/ENEURO.0136-23.2023. Print 2023 May.
Arousal powerfully influences cortical activity, in part by modulating local inhibitory circuits. Somatostatin (SOM)-expressing inhibitory interneurons are particularly well situated to shape local population activity in response to shifts in arousal, yet the relationship between arousal state and SOM activity has not been characterized outside of sensory cortex. To determine whether SOM activity is similarly modulated by behavioral state across different levels of the cortical processing hierarchy, we compared the behavioral modulation of SOM-expressing neurons in auditory cortex (AC), a primary sensory region, and posterior parietal cortex (PPC), an association-level region of cortex, in mice. Behavioral state modulated activity differently in AC and PPC. In PPC, transitions to high arousal were accompanied by large increases in activity across the full PPC neural population, especially in SOM neurons. In AC, arousal transitions led to more subtle changes in overall activity, as individual SOM and Non-SOM neurons could be either positively or negatively modulated during transitions to high arousal states. The coding of sensory information in population activity was enhanced during periods of high arousal in AC, but not in PPC. Our findings suggest unique relationships between activity in local circuits and arousal across cortex, which may be tailored to the roles of specific cortical regions in sensory processing or the control of behavior.
觉醒强烈地影响皮质活动,部分原因是通过调节局部抑制回路。生长抑素 (SOM)-表达抑制性中间神经元特别适合在觉醒状态发生变化时塑造局部群体活动,但在感觉皮层之外,尚未描述觉醒状态与 SOM 活性之间的关系。为了确定 SOM 活性是否在不同皮质处理层次结构的行为状态下以类似的方式被调节,我们在听觉皮层 (AC) 和后顶叶皮层 (PPC) 中比较了 SOM 表达神经元的行为调节,AC 是初级感觉区域,PPC 是皮质的关联区域,在小鼠中。行为状态在 AC 和 PPC 中以不同的方式调节活性。在 PPC 中,向高觉醒的转变伴随着整个 PPC 神经元群体的活性的大幅增加,尤其是在 SOM 神经元中。在 AC 中,觉醒转变导致整体活性的更微妙变化,因为在向高觉醒状态转变期间,个别 SOM 和非-SOM 神经元可能被正或负调节。在 AC 中,在高觉醒期间,群体活动中的感觉信息编码得到增强,但在 PPC 中则不然。我们的发现表明,局部回路和皮质中的觉醒之间存在独特的关系,这些关系可能是针对特定皮质区域在感觉处理或行为控制中的作用而定制的。