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斑马鱼小脑的输出:对 eurydendroid 细胞投射的空间模式和拓扑结构的分析。

Cerebellar output in zebrafish: an analysis of spatial patterns and topography in eurydendroid cell projections.

机构信息

School of Biomedical Sciences, The University of Queensland Brisbane, QLD, Australia.

出版信息

Front Neural Circuits. 2013 Apr 1;7:53. doi: 10.3389/fncir.2013.00053. eCollection 2013.

Abstract

The cerebellum is a brain region responsible for motor coordination and for refining motor programs. While a great deal is known about the structure and connectivity of the mammalian cerebellum, fundamental questions regarding its function in behavior remain unanswered. Recently, the zebrafish has emerged as a useful model organism for cerebellar studies, owing in part to the similarity in cerebellar circuits between zebrafish and mammals. While the cell types composing their cerebellar cortical circuits are generally conserved with mammals, zebrafish lack deep cerebellar nuclei, and instead a majority of cerebellar output comes from a single type of neuron: the eurydendroid cell. To describe spatial patterns of cerebellar output in zebrafish, we have used genetic techniques to label and trace eurydendroid cells individually and en masse. We have found that cerebellar output targets the thalamus and optic tectum, and have confirmed the presence of pre-synaptic terminals from eurydendroid cells in these structures using a synaptically targeted GFP. By observing individual eurydendroid cells, we have shown that different medial-lateral regions of the cerebellum have eurydendroid cells projecting to different targets. Finally, we found topographic organization in the connectivity between the cerebellum and the optic tectum, where more medial eurydendroid cells project to the rostral tectum while lateral cells project to the caudal tectum. These findings indicate that there is spatial logic underpinning cerebellar output in zebrafish with likely implications for cerebellar function.

摘要

小脑是负责运动协调和完善运动程序的脑区。尽管人们对哺乳动物小脑的结构和连接有了很多了解,但小脑在行为中的功能的基本问题仍未得到解答。最近,斑马鱼作为小脑研究的有用模式生物出现了,这部分是由于斑马鱼和哺乳动物小脑回路的相似性。虽然组成其小脑皮质回路的细胞类型与哺乳动物一般保持一致,但斑马鱼缺乏深小脑核,而大多数小脑输出来自一种神经元: eurydendroid 细胞。为了描述斑马鱼小脑输出的空间模式,我们使用遗传技术单独和集体标记和追踪 eurydendroid 细胞。我们发现小脑输出的目标是丘脑和视顶盖,并使用突触靶向 GFP 证实了 eurydendroid 细胞在这些结构中的存在。通过观察单个 eurydendroid 细胞,我们表明小脑的不同内侧-外侧区域有 eurydendroid 细胞投射到不同的靶标。最后,我们发现小脑和视顶盖之间的连接具有拓扑组织,其中更内侧的 eurydendroid 细胞投射到视顶盖的前颅部,而外侧细胞投射到视顶盖的后颅部。这些发现表明,在斑马鱼小脑输出中存在空间逻辑,这可能对小脑功能具有重要意义。

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