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首页> 外文期刊>The Journal of Comparative Neurology >Projection patterns of single mossy fiber axons originating from the dorsal column nuclei mapped on the aldolase C compartments in the rat cerebellar cortex.
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Projection patterns of single mossy fiber axons originating from the dorsal column nuclei mapped on the aldolase C compartments in the rat cerebellar cortex.

机译:单个苔藓纤维轴突的投影模式源自大鼠小脑皮质醛缩酶C区室中映射的背柱核。

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摘要

Although cerebellar mossy fibers are the most abundant cerebellar afferents and are deeply involved in cerebellar function, the organization of their projection has remained obscure, particularly in relation to cerebellar compartmentalization. The dorsal column nuclei (DCN) are a major source of cerebellar mossy fibers and possess distinct somatotopic representations of specific somatosensory submodalities. We reconstructed individual dextran-labeled DCN axons completely from serial sections and mapped their terminals on the longitudinal cerebellar compartments that were visualized by aldolase C immunostaining to clarify their projection pattern. Individual axons branched and formed about 100 rosette terminals in the cerebellar cortex, but infrequently projected to the cerebellar nuclei (1 out of 15 axons). Cortical terminals were clustered in multiple areas in the vermis and pars intermedia mostly, but not exclusively, ipsilateral to the origin of the axon. The gracile, cuneate, and external cuneate nuclei (ECuN) mainly projected to the copula pyramidis and lobule V, paramedian and simple lobules, and lobules I-V and VIII-IX, respectively, although there was some overlap. The majority of terminals were located within aldolase C negative or lightly positive compartments. However, terminals of a single axon can be located on aldolase C-negative as well as on aldolase C-positive compartments. In particular, the rostral ECuN, which is responsive to shoulder movements, projected consistently to lobule IX, which were mostly aldolase C-positive. In sum, DCN-cerebellar axons project to multiple compartments with terminals clustered mainly in the conventional spinocerebellar region with a coarse topography, which shows some relationship to the cortical compartments defined by aldolase C.
机译:尽管小脑长满苔藓的纤维是最丰富的小脑传入神经,并且与小脑功能密切相关,但其投射的组织仍然不清楚,特别是在小脑分隔方面。背柱核(DCN)是小脑苔藓纤维的主要来源,并具有特定体感亚模式的不同体位表示。我们完全从连续切片中重建了单独的右旋糖酐标记的DCN轴突,并将其末端定位在小脑纵隔室中,通过醛缩酶C免疫染色将其可视化,以阐明其投射模式。单个轴突分支并在小脑皮层中形成约100个玫瑰花结末端,但很少投射到小脑核(15个轴突中的1个)。皮层末端聚集在the骨的多个区域中,并且中间部分稀疏,但并非唯一地,与轴突起源同侧。卵状,楔形和楔形外核(ECuN)主要投射到系孔小锥虫和小叶V,旁中叶和简单小叶,以及小叶I-V和VIII-IX,尽管有一些重叠。大多数末端位于醛缩酶C阴性或轻微阳性的区室中。但是,单个轴突的末端可以位于醛缩酶C阴性以及醛缩酶C阳性区室上。特别是,响应肩部运动的延髓头肌ECuN始终投射到小叶IX,小叶IX主要为醛缩酶C阳性。总之,DCN小脑轴突突出到多个隔室,其末端主要聚集在具有粗糙形貌的常规脊髓小脑区域,这表明与醛缩酶C定义的皮质隔室有一定关系。

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