Sathyamurthy Anupama, Barik Arnab, Dobrott Courtney I, Matson Kaya J E, Stoica Stefan, Pursley Randall, Chesler Alexander T, Levine Ariel J
Spinal Circuits and Plasticity Unit, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD 20892, USA.
Sensory Cells and Circuits Section, National Center for Complimentary and Integrative Health, National Institutes of Health, Bethesda, MD 20892, USA.
Cell Rep. 2020 May 12;31(6):107595. doi: 10.1016/j.celrep.2020.107595.
To understand the neural basis of behavior, it is important to reveal how movements are planned, executed, and refined by networks of neurons distributed throughout the nervous system. Here, we report the neuroanatomical organization and behavioral roles of cerebellospinal (CeS) neurons. Using intersectional genetic techniques, we find that CeS neurons constitute a small minority of excitatory neurons in the fastigial and interpositus deep cerebellar nuclei, target pre-motor circuits in the ventral spinal cord and the brain, and control distinct aspects of movement. CeS neurons that project to the ipsilateral cervical cord are required for skilled forelimb performance, while CeS neurons that project to the contralateral cervical cord are involved in skilled locomotor learning. Together, this work establishes CeS neurons as a critical component of the neural circuitry for skilled movements and provides insights into the organizational logic of motor networks.
为了理解行为的神经基础,揭示遍布整个神经系统的神经元网络如何规划、执行和完善运动非常重要。在这里,我们报告了小脑脊髓(CeS)神经元的神经解剖组织和行为作用。使用交叉遗传技术,我们发现CeS神经元在小脑顶核和间位核深部的兴奋性神经元中占少数,靶向脊髓腹侧和大脑中的运动前回路,并控制运动的不同方面。投射到同侧颈髓的CeS神经元是熟练前肢运动所必需的,而投射到对侧颈髓的CeS神经元则参与熟练的运动学习。总之,这项工作将CeS神经元确立为熟练运动神经回路的关键组成部分,并为运动网络的组织逻辑提供了见解。