Department of Neuroscience, Erasmus MC, 3015 GE Rotterdam, the Netherlands.
Department of Neuroscience, Erasmus MC, 3015 GE Rotterdam, the Netherlands.
Cell Rep. 2020 Jul 7;32(1):107867. doi: 10.1016/j.celrep.2020.107867.
The cerebellum is involved in the control of voluntary and autonomic rhythmic behaviors, yet it is unclear to what extent it coordinates these in concert. We studied Purkinje cell activity during unperturbed and perturbed respiration in lobules simplex, crus 1, and crus 2. During unperturbed (eupneic) respiration, complex spike and simple spike activity encode the phase of ongoing sensorimotor processing. In contrast, when the respiratory cycle is perturbed by whisker stimulation, mice concomitantly protract their whiskers and advance their inspiration in a phase-dependent manner, preceded by increased simple spike activity. This phase advancement of respiration in response to whisker stimulation can be mimicked by optogenetic stimulation of Purkinje cells and prevented by cell-specific genetic modification of their AMPA receptors, hampering increased simple spike firing. Thus, the impact of Purkinje cell activity on respiratory control is context and phase dependent, highlighting a coordinating role for the cerebellar hemispheres in aligning autonomic and sensorimotor behaviors.
小脑参与控制自主和自主节律行为,但尚不清楚它在多大程度上协调这些行为。我们在单纯叶、 crus 1 和 crus 2 中研究了浦肯野细胞在未受干扰和受干扰呼吸期间的活动。在未受干扰的(正常)呼吸期间,复杂峰和简单峰活动编码正在进行的感觉运动处理的相位。相比之下,当呼吸周期受到胡须刺激干扰时,小鼠会同时以与相位相关的方式伸出胡须并提前吸气,这之前是简单峰活动增加。浦肯野细胞的光遗传学刺激可以模拟这种呼吸相位的提前,而通过特异性遗传修饰其 AMPA 受体可以防止这种情况,从而阻止简单峰放电增加。因此,浦肯野细胞活动对呼吸控制的影响取决于上下文和相位,突出了小脑半球在协调自主和感觉运动行为方面的协调作用。