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家鸽小脑蚓垂中橄榄下核投射至Zebrin II条纹的拓扑组织

Topographic Organization of Inferior Olive Projections to the Zebrin II Stripes in the Pigeon Cerebellar Uvula.

作者信息

Craciun Iulia, Gutiérrez-Ibáñez Cristián, Corfield Jeremy R, Hurd Peter L, Wylie Douglas R

机构信息

Neuroscience and Mental Health Institute, University of Alberta, Edmonton, AB, Canada.

Department of Biological Sciences, Salisbury University, Salisbury, MD, United States.

出版信息

Front Neuroanat. 2018 Mar 15;12:18. doi: 10.3389/fnana.2018.00018. eCollection 2018.

Abstract

This study was aimed at mapping the organization of the projections from the inferior olive (IO) to the ventral uvula in pigeons. The uvula is part of the vestibulocerebellum (VbC), which is involved in the processing of optic flow resulting from self-motion. As in other areas of the cerebellum, the uvula is organized into sagittal zones, which is apparent with respect to afferent inputs, the projection patterns of Purkinje cell (PC) efferents, the response properties of PCs and the expression of molecular markers such as zebrin II (ZII). ZII is heterogeneously expressed such that there are sagittal stripes of PCs with high ZII expression (ZII+), alternating with sagittal stripes of PCs with little to no ZII expression (ZII-). We have previously demonstrated that a ZII+/- stripe pair in the uvula constitutes a functional unit, insofar as the complex spike activity (CSA) of all PCs within a ZII+/- stripe pair respond to the same type of optic flow stimuli. In the present study we sought to map the climbing fiber (CF) inputs from the IO to the ZII+ and ZII- stripes in the uvula. We injected fluorescent Cholera Toxin B (CTB) of different colors (red and green) into ZII+ and ZII- bands of functional stripe pair. Injections in the ZII+ and ZII- bands resulted in retrograde labeling of spatially separate, but adjacent regions in the IO. Thus, although a ZII+/- stripe pair represents a functional unit in the pigeon uvula, CF inputs to the ZII+ and ZII- stripes of a unit arise from separate regions of the IO.

摘要

本研究旨在绘制鸽子下橄榄核(IO)到腹侧蚓垂的投射组织图。蚓垂是前庭小脑(VbC)的一部分,参与处理自我运动产生的视觉流。与小脑的其他区域一样,蚓垂被组织成矢状区,这在传入输入、浦肯野细胞(PC)传出纤维的投射模式、PC的反应特性以及诸如zebrin II(ZII)等分子标记的表达方面都很明显。ZII呈异质性表达,因此存在高ZII表达(ZII+)的PC矢状条纹,与低ZII表达或无ZII表达(ZII-)的PC矢状条纹交替出现。我们之前已经证明,蚓垂中的一个ZII+/-条纹对构成一个功能单元,因为一个ZII+/-条纹对中的所有PC的复合锋电位活动(CSA)对相同类型的视觉流刺激做出反应。在本研究中,我们试图绘制从IO到蚓垂中ZII+和ZII-条纹的攀缘纤维(CF)输入。我们将不同颜色(红色和绿色)的荧光霍乱毒素B(CTB)注入功能条纹对的ZII+和ZII-带。向ZII+和ZII-带注射导致IO中空间上分离但相邻区域的逆行标记。因此,尽管ZII+/-条纹对在鸽子蚓垂中代表一个功能单元,但一个单元的ZII+和ZII-条纹的CF输入来自IO的不同区域。

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