Department of Physiology and Pharmacology, Oregon Health & Science University, Portland, Oregon.
J Neurophysiol. 2013 Nov;110(10):2257-74. doi: 10.1152/jn.00352.2013. Epub 2013 Aug 21.
Cerebellar Purkinje cells are excited by two afferent pathways: climbing and mossy fibers. Climbing fibers evoke large "complex spikes" (CSs) that discharge at low frequencies. Mossy fibers synapse on granule cells whose parallel fibers excite Purkinje cells and may contribute to the genesis of "simple spikes" (SSs). Both afferent systems convey vestibular information to folia 9c-10. After making a unilateral labyrinthectomy (UL) in mice, we tested how the discharge of CSs and SSs was changed by the loss of primary vestibular afferent mossy fibers during sinusoidal roll tilt. We recorded from cells identified by juxtacellular neurobiotin labeling. The UL preferentially reduced vestibular modulation of CSs and SSs in folia 8-10 contralateral to the UL. The effects of a UL on Purkinje cell discharge were similar in folia 9c-10, to which vestibular primary afferents project, and in folia 8-9a, to which they do not project, suggesting that vestibular primary afferent mossy fibers were not responsible for the UL-induced alteration of SS discharge. UL also induced reduced vestibular modulation of stellate cell discharge contralateral to the UL. We attribute the decreased modulation to reduced vestibular modulation of climbing fibers. In summary, climbing fibers modulate CSs directly and SSs indirectly through activation of stellate cells. Whereas vestibular primary afferent mossy fibers cannot account for the modulated discharge of SSs or stellate cells, the nonspecific excitation of Purkinje cells by parallel fibers may set an operating point about which the discharges of SSs are sculpted by climbing fibers.
climbing 纤维和 mossy 纤维。Climbing 纤维引发低频放电的大型“复合 spikes”(CSs)。Mossy 纤维与颗粒细胞形成突触,其平行纤维兴奋浦肯野细胞,并可能有助于“简单 spikes”(SSs)的产生。两种传入系统将前庭信息传递到小叶 9c-10。在小鼠进行单侧迷路切除术(UL)后,我们测试了在正弦滚倾斜过程中,初级前庭传入 mossy 纤维丧失时,CSs 和 SSs 的放电如何变化。我们通过细胞的细胞内 neurobiotin 标记进行记录。UL 优先降低了对 UL 对侧 8-10 小叶 CSs 和 SSs 的前庭调制。UL 对浦肯野细胞放电的影响在 9c-10 小叶中与前庭初级传入投射的小叶相似,而在 8-9a 小叶中则不相似,这表明前庭初级传入 mossy 纤维不是引起 SS 放电 UL 诱导改变的原因。UL 还诱导了 UL 对侧星状细胞放电的前庭调制减少。我们将调制减少归因于 climbing 纤维的前庭调制减少。总之,climbing 纤维直接调制 CSs,间接通过激活星状细胞调制 SSs。虽然前庭初级传入 mossy 纤维不能解释 SSs 或星状细胞的调制放电,但平行纤维对浦肯野细胞的非特异性兴奋可能设定了一个操作点,SSs 的放电由 climbing 纤维塑造。