Kamigaki Tsukasa
Department of Molecular and Cell Biology, Howard Hughes Medical Institute, University of California, Berkeley, CA 94720, United States.
Neurosci Res. 2019 Mar;140:23-36. doi: 10.1016/j.neures.2018.08.017. Epub 2018 Sep 15.
The essential role of executive control is to select the most appropriate behavior among other candidates depending on the sensory information (exogenous information) and on the subject's internal state (endogenous information). Here I review series of the evidence implicating that the rodent prefrontal cortex (PFC) evaluates and compares the expected outcome for candidate actions that are automatically primed by exogenous and endogenous information, and selects the most appropriate action while inhibiting the others, with different PFC subregions contributing to distinct aspects of the computation via differential recruitments of the distributed networks. The recurrent nature of the PFC networks further facilitates the computation by integrating bottom-up signals over a long timescale. I also overview the local circuit organization in the PFC, where vasoactive intestinal peptide-positive (VIP) GABAergic interneurons are tightly linked with the cholinergic system and play significant roles in regulating executive control signals. The empirical evidence inspires the disinhibitory module hypothesis of the PFC organization that a group of pyramidal neurons and interneurons forms a disinhibitory module with similar task-variable selectivity in the PFC, and long-range inputs and neuromodulations in these modules exert a distributed gain modulation of the ongoing executive control signals by adjusting VIP neuron activity.
执行控制的关键作用是根据感官信息(外部信息)和主体的内部状态(内部信息),在其他备选行为中选择最合适的行为。在此,我回顾了一系列证据,这些证据表明啮齿动物前额叶皮层(PFC)会评估和比较由外部和内部信息自动引发的备选行动的预期结果,并选择最合适的行动,同时抑制其他行动,不同的PFC亚区域通过分布式网络的差异募集对计算的不同方面做出贡献。PFC网络的循环性质通过在较长时间尺度上整合自下而上的信号,进一步促进了计算。我还概述了PFC中的局部回路组织,其中血管活性肠肽阳性(VIP)的GABA能中间神经元与胆碱能系统紧密相连,并在调节执行控制信号中发挥重要作用。这些经验证据激发了PFC组织的去抑制模块假说,即一组锥体神经元和中间神经元在PFC中形成具有相似任务变量选择性的去抑制模块,并且这些模块中的远程输入和神经调制通过调节VIP神经元活动对正在进行的执行控制信号进行分布式增益调制。