Neurobiology Section in the Department of Biology, Boston University, Boston, MA, USA.
The Graduate Program for Neuroscience, Boston University, Boston, MA, USA.
Mol Psychiatry. 2022 May;27(5):2602-2618. doi: 10.1038/s41380-022-01485-y. Epub 2022 Mar 4.
A hallmark of the anterior cingulate cortex (ACC) is its functional heterogeneity. Functional and imaging studies revealed its importance in the encoding of anxiety-related and social stimuli, but it is unknown how microcircuits within the ACC encode these distinct stimuli. One type of inhibitory interneuron, which is positive for vasoactive intestinal peptide (VIP), is known to modulate the activity of pyramidal cells in local microcircuits, but it is unknown whether VIP cells in the ACC (VIP) are engaged by particular contexts or stimuli. Additionally, recent studies demonstrated that neuronal representations in other cortical areas can change over time at the level of the individual neuron. However, it is not known whether stimulus representations in the ACC remain stable over time. Using in vivo Ca imaging and miniscopes in freely behaving mice to monitor neuronal activity with cellular resolution, we identified individual VIP that preferentially activated to distinct stimuli across diverse tasks. Importantly, although the population-level activity of the VIP remained stable across trials, the stimulus-selectivity of individual interneurons changed rapidly. These findings demonstrate marked functional heterogeneity and instability within interneuron populations in the ACC. This work contributes to our understanding of how the cortex encodes information across diverse contexts and provides insight into the complexity of neural processes involved in anxiety and social behavior.
扣带前皮质(ACC)的一个标志是其功能的异质性。功能和成像研究表明它在编码与焦虑相关和社交刺激方面的重要性,但尚不清楚 ACC 内的微电路如何对这些不同的刺激进行编码。一种已知的抑制性中间神经元,对血管活性肠肽(VIP)呈阳性,被认为可以调节局部微电路中锥体细胞的活动,但尚不清楚 ACC 中的 VIP 细胞是否被特定的环境或刺激所激活。此外,最近的研究表明,其他皮质区域的神经元表示可以在个体神经元水平上随时间而变化。然而,尚不清楚 ACC 中的刺激表示是否随时间保持稳定。我们使用在自由活动的小鼠中进行的体内 Ca 成像和 miniscopes 以细胞分辨率监测神经元活动,鉴定了对不同任务中的不同刺激具有优先激活作用的单个 VIP。重要的是,尽管 VIP 的群体活动在整个试验中保持稳定,但单个中间神经元的刺激选择性迅速变化。这些发现表明,ACC 中的中间神经元群体表现出明显的功能异质性和不稳定性。这项工作有助于我们理解皮质如何在不同的环境中对信息进行编码,并深入了解涉及焦虑和社交行为的神经过程的复杂性。