Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, Ciudad de México 04510, México.
Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, Ciudad de México 04510, México
eNeuro. 2021 Sep 21;8(5). doi: 10.1523/ENEURO.0173-21.2021. Print 2021 Sep-Oct.
Striatal activity is necessary to initiate and execute sequences of actions. The main excitatory input to the striatum comes from the cortex. While it is hypothesized that motor and premotor cortico-striatal projections are important to guide striatal activity during the execution of sequences of actions, technical limitations have made this challenging to address. Here, we implemented a task in mice that allows for the study of different moments to execute a serial order sequence consisting of two subsequences of actions. Using this task, we performed electrophysiological recordings in the premotor (M2) and primary motor (M1) cortices, and state-dependent optogenetic inhibitions of their cortico-striatal projections. We show that while both M2 and M1 contain activity modulations related to the execution of self-paced sequences, mainly, the premotor cortico-striatal projections contribute to the proper execution/structuring of these sequences.
纹状体的活动对于发起和执行动作序列是必要的。纹状体的主要兴奋性输入来自皮层。虽然人们假设运动和前运动皮层-纹状体投射对于指导动作序列执行期间的纹状体活动很重要,但技术限制使得这一点难以解决。在这里,我们在小鼠中实施了一项任务,该任务允许研究在执行由两个动作子序列组成的串行顺序序列时的不同时刻。使用此任务,我们在运动前(M2)和初级运动(M1)皮层中进行了电生理记录,并对其皮质-纹状体投射进行了状态相关的光遗传学抑制。我们表明,虽然 M2 和 M1 都包含与自我调节序列执行相关的活动调制,但主要是运动前皮质-纹状体投射有助于这些序列的正确执行/构建。