Department of Molecular Biology, Princeton University, Princeton, New Jersey, United States of America.
PLoS One. 2012;7(8):e42650. doi: 10.1371/journal.pone.0042650. Epub 2012 Aug 3.
Excitatory drive enters the cerebellum via mossy fibers, which activate granule cells, and climbing fibers, which activate Purkinje cell dendrites. Until now, the coordinated regulation of these pathways has gone unmonitored in spatially resolved neuronal ensembles, especially in awake animals. We imaged cerebellar activity using functional two-photon microscopy and extracellular recording in awake mice locomoting on an air-cushioned spherical treadmill. We recorded from putative granule cells, molecular layer interneurons, and Purkinje cell dendrites in zone A of lobule IV/V, representing sensation and movement from trunk and limbs. Locomotion was associated with widespread increased activity in granule cells and interneurons, consistent with an increase in mossy fiber drive. At the same time, dendrites of different Purkinje cells showed increased co-activation, reflecting increased synchrony of climbing fiber activity. In resting animals, aversive stimuli triggered increased activity in granule cells and interneurons, as well as increased Purkinje cell co-activation that was strongest for neighboring dendrites and decreased smoothly as a function of mediolateral distance. In contrast with anesthetized recordings, no 1-10 Hz oscillations in climbing fiber activity were evident. Once locomotion began, responses to external stimuli in all three cell types were strongly suppressed. Thus climbing and mossy fiber representations can shift together within a fraction of a second, reflecting in turn either movement-associated activity or external stimuli.
兴奋性冲动通过苔藓纤维进入小脑,激活颗粒细胞,通过 climbing fibers 激活浦肯野细胞树突。到目前为止,这些途径的协调调节在空间分辨神经元集合中还没有被监测到,特别是在清醒动物中。我们使用功能双光子显微镜和清醒小鼠在空气缓冲的球形跑步机上运动时的细胞外记录来记录小脑活动。我们记录了第四/五脑叶 A 区的假定颗粒细胞、分子层中间神经元和浦肯野细胞树突,代表来自躯干和四肢的感觉和运动。运动与颗粒细胞和中间神经元广泛增加的活动有关,这与苔藓纤维驱动的增加一致。与此同时,不同浦肯野细胞的树突表现出增加的共同激活,反映出 climbing fiber 活动的同步性增加。在静止动物中,厌恶刺激会引发颗粒细胞和中间神经元活动增加,以及浦肯野细胞共同激活增加,相邻树突的共同激活最强,并且随着中侧距离的增加而平滑减少。与麻醉记录相反,没有明显的 climbing fiber 活动 1-10 Hz 振荡。一旦开始运动,所有三种细胞类型对外界刺激的反应都被强烈抑制。因此,climbing 和 mossy fiber 代表可以在几分之一秒内一起移动,反映出与运动相关的活动或外部刺激。