Department of Neuroscience, Erasmus MC, Rotterdam, the Netherlands.
Department of Neuroscience, Erasmus MC, Rotterdam, the Netherlands.
Curr Biol. 2022 Feb 7;32(3):654-670.e4. doi: 10.1016/j.cub.2021.12.020. Epub 2022 Jan 10.
Coordination of bilateral movements is essential for a large variety of animal behaviors. The olivocerebellar system is critical for the control of movement, but its role in bilateral coordination has yet to be elucidated. Here, we examined whether Purkinje cells encode and influence synchronicity of left-right whisker movements. We found that complex spike activity is correlated with a prominent left-right symmetry of spontaneous whisker movements within parts, but not all, of Crus1 and Crus2. Optogenetic stimulation of climbing fibers in the areas with high and low correlations resulted in symmetric and asymmetric whisker movements, respectively. Moreover, when simple spike frequency prior to the complex spike was higher, the complex spike-related symmetric whisker protractions were larger. This finding alludes to a role for rebound activity in the cerebellar nuclei, which indeed turned out to be enhanced during symmetric protractions. Tracer injections suggest that regions associated with symmetric whisker movements are anatomically connected to the contralateral cerebellar hemisphere. Together, these data point toward the existence of modules on both sides of the cerebellar cortex that can differentially promote or reduce the symmetry of left and right movements in a context-dependent fashion.
双侧运动的协调对于动物的各种行为至关重要。橄榄小脑系统对于运动的控制至关重要,但它在双侧协调中的作用尚未阐明。在这里,我们研究了浦肯野细胞是否编码并影响左右胡须运动的同步性。我们发现,在 Crus1 和 Crus2 的部分区域而非全部区域内,复杂 spikes 活动与自发胡须运动的显著左右对称性相关。光遗传学刺激具有高和低相关性的 climbing fibers 会导致对称和不对称的胡须运动。此外,当复杂 spikes 之前的简单 spikes 频率较高时,与复杂 spikes 相关的对称胡须伸出更大。这一发现暗示了小脑核中的回返活动的作用,实际上在对称伸出时增强了。示踪剂注射表明,与对称胡须运动相关的区域在解剖上与对侧小脑半球相连。总之,这些数据表明小脑皮质的两侧存在模块,可以以依赖于上下文的方式不同地促进或减少左右运动的对称性。