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首页> 外文期刊>The Journal of Comparative Neurology >Organization of dye-coupled cerebellar granule cells labeled from afferent vestibular and dorsal root fibers in the frog Rana esculenta.
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Organization of dye-coupled cerebellar granule cells labeled from afferent vestibular and dorsal root fibers in the frog Rana esculenta.

机译:蛙蛙蛙的传入前庭和背根纤维标记的染料偶联小脑颗粒细胞的组织。

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摘要

Application of neurobiotin to the nerves of individual labyrinthine organs and dorsal root fibers of limb-innervating segments of the frog resulted in labeling of granule cells in the cerebellum showing a significant overlap with a partial segregation in the related areas of termination. In different parts of the cerebellum, various combinations of different canal and otolith organ-related granule cells have been discerned. The difference in the extension of territories of vertical canals vs. horizontal canals may reflect their different involvement in the vestibuloocular and vestibulospinal reflex. Dye-coupled cells related to the lagenar and saccular neurons were localized in more rostral parts of the cerebellum, whereas cells of the utricle were represented only in its caudal half. This separation is supportive of the dual function of the lagena and the saccule. The territories of granule cells related to the cervical and lumbar segments of the spinal cord were almost completely separated along the rostrocaudal axis of cerebellum, whereas their territories were almost entirely overlapping in the mediolateral and ventrodorsal directions. The partial overlap of labyrinthine organ-related and dorsal root fiber-related granule cells are suggestive of a convergence of sensory modalities involved in the sense of balance. We propose that the afferent input of vestibular and proprioceptive fibers mediated by gap junctions to the cerebellar granule cells subserve one of the possible morphological correlates of a very rapid modification of the motor activity in the vestibulocerebellospinal neuronal circuit.
机译:将神经生物素应用于青蛙的各个迷宫器官的神经和肢体支配部分的背根纤维会导致小脑中颗粒细胞的标记,与终止相关区域的部分隔离明显重叠。在小脑的不同部位,已经发现了不同的管和耳石器官相关颗粒细胞的各种组合。垂直管区与水平管区的延伸范围的差异可能反映了它们在前庭眼和前庭腓骨反射中的不同参与。与la神经元和囊状神经元有关的染料偶联细胞位于小脑的延髓部,而小细胞仅在其尾半部存在。这种分离支持了鼠尾草和囊泡的双重功能。与脊髓的颈段和腰段有关的颗粒细胞的区域几乎沿着小脑的尾尾轴完全分离,而它们的区域在中外侧和腹侧方向几乎完全重叠。迷宫式器官相关和背根纤维相关的颗粒细胞的部分重叠提示涉及平衡感的感觉方式的趋同。我们建议由间隙连接介导的小脑颗粒细胞传入的前庭和本体感受纤维的传入输入是在前庭小脑脊髓神经元回路中非常快速地改变运动活动的可能的形态学关联之一。

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