Institute of Neuroscience, State Key Laboratory of Neuroscience, CAS Center for Excellence in Brain Science and Intelligence Technology, Chinese Academy of Sciences, Shanghai, China.
University of Chinese Academy of Sciences, Beijing, China.
Nat Commun. 2021 May 11;12(1):2727. doi: 10.1038/s41467-021-22547-9.
Survival in a dynamic environment requires animals to plan future actions based on past sensory evidence, known as motor planning. However, the neuronal circuits underlying this crucial brain function remain elusive. Here, we employ projection-specific imaging and perturbation methods to investigate the direct pathway linking two key nodes in the motor planning network, the secondary motor cortex (M2) and the midbrain superior colliculus (SC), in mice performing a memory-dependent perceptual decision task. We find dynamic coding of choice information in SC-projecting M2 neurons during motor planning and execution, and disruption of this information by inhibiting M2 terminals in SC selectively impaired decision maintenance. Furthermore, we show that while both excitatory and inhibitory SC neurons receive synaptic inputs from M2, these SC subpopulations display differential temporal patterns in choice coding during behavior. Our results reveal the dynamic recruitment of the premotor-collicular pathway as a circuit mechanism for motor planning.
在动态环境中生存需要动物根据过去的感官证据来规划未来的行动,这被称为运动规划。然而,支持这一关键大脑功能的神经元回路仍然难以捉摸。在这里,我们采用投影特异性成像和扰动方法来研究连接运动规划网络中的两个关键节点,即次级运动皮层 (M2) 和中脑上丘 (SC) 的直接通路,在执行记忆依赖的感知决策任务的小鼠中。我们发现,在运动规划和执行过程中,SC 投射的 M2 神经元中存在选择信息的动态编码,并且通过抑制 SC 中的 M2 末端破坏这种信息选择性地损害了决策维持。此外,我们表明,虽然兴奋性和抑制性 SC 神经元都从 M2 接收突触输入,但这些 SC 亚群在行为过程中的选择编码中显示出不同的时间模式。我们的研究结果揭示了运动规划的前运动-丘回路的动态招募作为一种电路机制。