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Multiple Types of Cerebellar Target Neurons and Their Circuitry in the Vestibulo-ocular Reflex

机译:眼球反射中的多种类型的小脑靶神经元及其电路

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摘要

The cerebellum influences behavior and cognition exclusively via Purkinje cell synapses onto neurons in the deep cerebellar and vestibular nuclei. In contrast with the rich information available about the organization of the cerebellar cortex and its synaptic inputs, relatively little is known about microcircuitry postsynaptic to Purkinje cells. Here we examined the cell types and microcircuits through which Purkinje cells influence an oculomotor behavior controlled by the cerebellum, the horizontal vestibulo-ocular reflex, which involves only two eye muscles. Using a combination of anatomical tracing and electrophysiological recordings in transgenic mouse lines, we identified several classes of neurons in the medial vestibular nucleus that receive Purkinje cell synapses from the cerebellar flocculus. Glycinergic and glutamatergic flocculus target neurons (FTNs) with somata densely surrounded by Purkinje cell terminals projected axons to the ipsilateral abducens and oculomotor nuclei, respectively. Of three additional types of FTNs that were sparsely innervated by Purkinje cells, glutamatergic and glycinergic neurons projected to the contralateral and ipsilateral abducens, respectively, and GABAergic neurons projected to contralateral vestibular nuclei. Densely innervated FTNs had high spontaneous firing rates and pronounced postinhibitory rebound firing, and were physiologically homogeneous, whereas the intrinsic excitability of sparsely innervated FTNs varied widely. Heterogeneity in the molecular expression, physiological properties, and postsynaptic targets of FTNs implies that Purkinje cell activity influences the neural control of eye movements in several distinct ways. These results indicate that the cerebellum regulates a simple reflex behavior via at least five different cell types that are postsynaptic to Purkinje cells.
机译:小脑仅通过Purkinje细胞突触影响小脑和前庭核深层的神经元,从而影响行为和认知。与关于小脑皮质的组织及其突触输入的丰富信息相反,对浦肯野细胞突触后微电路的了解相对较少。在这里,我们检查了浦肯野细胞通过哪些细胞类型和微电路影响由小脑控制的动眼行为,即小脑水平眼前反射,仅涉及两个眼部肌肉。通过在转基因小鼠品系中使用解剖学示踪和电生理学记录相结合,我们在前庭内侧内侧核中识别了几类神经元,这些神经元从小脑絮状细胞接收了Purkinje细胞突触。甘草能和谷氨酸能的絮凝物靶神经元(FTNs)的索玛丝被Purkinje细胞末端密集地包围,将轴突分别投射到同侧外展突和动眼神经核。在浦肯野细胞稀疏支配的另外三种FTN中,谷氨酸能和甘氨酸能神经元分别投射到对侧和同侧外展,而GABA能神经元投射到对侧前庭核。密集神经支配的FTN具有较高的自发放电率和明显的抑制后反弹放电,并且在生理上是均一的,而稀疏神经支配的FTN的固有兴奋性差异很大。 FTN分子表达,生理特性和突触后靶标的异质性暗示浦肯野细胞活性以几种不同的方式影响眼睛运动的神经控制。这些结果表明,小脑通过至少五种与浦肯野突触后突触不同的细胞类型来调节简单的反射行为。

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