Jáidar Omar, Albarran Eddy, Albarran Eli Nathan, Wu Yu-Wei, Ding Jun B
Department of Neurosurgery, Stanford University, Stanford, CA 94305, USA.
Department of Neurosurgery, Stanford University, Stanford, CA 94305, USA; Aligning Science Across Parkinson's (ASAP) Collaborative Research Network, Chevy Chase, MD 20815, USA.
Cell Rep. 2025 Sep 4;44(9):116229. doi: 10.1016/j.celrep.2025.116229.
The dorsal striatum plays a critical role in action selection, movement, and sensorimotor learning. While action-specific striatal ensembles have been described, the mechanisms underlying their formation and evolution during motor learning remain poorly understood. Here, we employed longitudinal two-photon Ca imaging of dorsal striatal neurons in head-fixed mice as they learned to self-initiate locomotion. We found that both direct- and indirect-pathway spiny projection neurons (dSPNs and iSPNs, respectively) exhibited robust activation during early locomotor bouts, with activity gradually diminishing across sessions. For dSPNs, action onset and offset ensembles progressively emerged from an initially broad population of nonspecific neurons. In contrast, iSPN ensembles originated from neurons responsive to opposing actions before refining into onset- or offset-specific populations. These findings demonstrate that striatal ensemble activity becomes more selective over time, with a reduction in nonspecific neuronal activation and an increase in the efficiency of striatal encoding for learned motor actions.
背侧纹状体在动作选择、运动及感觉运动学习中起关键作用。虽然已描述了特定动作的纹状体神经元集群,但在运动学习过程中其形成和演化的潜在机制仍知之甚少。在此,我们对头固定小鼠在学习自发运动时的背侧纹状体神经元进行了纵向双光子钙成像。我们发现,直接通路和间接通路的棘状投射神经元(分别为dSPN和iSPN)在早期运动发作期间均表现出强烈激活,且活动在各实验阶段逐渐减弱。对于dSPN,动作起始和结束神经元集群最初从广泛的非特异性神经元群体中逐渐出现。相比之下,iSPN神经元集群源自对相反动作有反应的神经元,之后细化为起始或结束特异性群体。这些发现表明,随着时间推移,纹状体神经元集群活动变得更具选择性,非特异性神经元激活减少,且纹状体对所学运动动作的编码效率增加。