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天翻地覆:顶核小脑和苔藓纤维的功能。

Topsy turvy: functions of climbing and mossy fibers in the vestibulo-cerebellum.

机构信息

Department of Physiology & Pharmacology, Oregon Health & Science University, 3181 SW Sam Jackson Park Road, Portland, OR 97239, USA.

出版信息

Neuroscientist. 2011 Apr;17(2):221-36. doi: 10.1177/1073858410380251. Epub 2011 Feb 28.

Abstract

The cerebellum's role in sensory-motor control and adaptation is undisputed. However, a key hypothesis pertaining to the function of cerebellar circuitry lacks experimental support. It is universally assumed that the discharge of mossy fibers accounts for modulation of Purkinje cell "simple spikes" (SSs). This assumption acts as a prism through which all other functions of cerebellar circuitry are viewed. The vestibulo-cerebellum (nodulus and uvula) receives a large, unilateral, vestibular primary afferent mossy fiber projection. We can test its role in modulating Purkinje cell SSs by recording the modulated activity of both mossy fiber terminals and Purkinje cell SSs evoked by identical natural vestibular stimulation. Sinusoidal rotation about the longitudinal axis (roll) modulates the activity of vestibular primary afferent mossy and climbing fibers as well as Purkinje cell SSs and complex spikes (CSs). Remarkably, vestibular primary afferent mossy fibers discharge 180 degrees out of phase with SSs. This indicates that mossy fibers cannot account for SS modulation unless an inhibitory synapse is interposed between mossy fibers or vestibular climbing fibers and Purkinje cells. The authors review several experiments that address the relative contributions of mossy and climbing fiber afferents to the modulation of SSs. They conclude that climbing fibers, not mossy fibers, are primarily responsible for the modulation of SSs as well as CSs and they propose revised functions for these two afferent systems.

摘要

小脑在感觉运动控制和适应中的作用是毋庸置疑的。然而,一个与小脑回路功能相关的关键假设缺乏实验支持。普遍认为,苔藓纤维的放电解释了浦肯野细胞“简单 spikes”(SSs)的调制。这个假设就像一个棱镜,通过它可以观察小脑回路的所有其他功能。前庭小脑(小结和蚓垂)接收来自单侧的大量前庭初级传入苔藓纤维投射。我们可以通过记录相同的自然前庭刺激诱发的苔藓纤维末梢和浦肯野细胞 SSs 的调制活动来测试它在调制浦肯野细胞 SSs 中的作用。沿纵轴(滚动)的正弦旋转调制前庭初级传入苔藓纤维和 climbing 纤维以及浦肯野细胞 SSs 和复杂 spikes(CSs)的活动。值得注意的是,前庭初级传入苔藓纤维的放电与 SSs 相差 180 度。这表明,除非在苔藓纤维或前庭 climbing 纤维和浦肯野细胞之间插入抑制性突触,否则苔藓纤维不能解释 SS 调制。作者回顾了几个实验,这些实验解决了苔藓和 climbing 纤维传入对 SS 调制的相对贡献。他们得出结论,climbing 纤维而不是苔藓纤维主要负责 SSs 以及 CSs 的调制,他们提出了这两个传入系统的修订功能。

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