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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Topographical organization of inferior olive cells projecting to translation and rotation zones in the vestibulocerebellum of pigeons.
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Topographical organization of inferior olive cells projecting to translation and rotation zones in the vestibulocerebellum of pigeons.

机译:下橄榄细胞的地形组织,投射到鸽子前庭小脑的平移和旋转区域。

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Previous electrophysiological studies in pigeons have shown that the vestibulocerebellum can be divided into two parasagittal zones based on responses to optic flow stimuli. The medial zone responds best to optic flow resulting from self-translation, whereas the lateral zone responds best to optic flow resulting from self-rotation. This information arrives from the retina via a projection from the accessory optic system to the medial column of the inferior olive. In this study we investigated inferior olive projections to translational and rotational zones of the vestibulocerebellum using the retrograde tracer cholera toxin subunit B. Extracellular recordings of Purkinje cell activity (complex spikes) in response to large-field visual stimuli were used to identify the injection sites. We found a distinct segregation of inferior olive cells projecting to translational and rotational zones of the vestibulocerebellum. Translation zone injections resulted in retrogradely labeled cells in the ventrolateral area of the medial column, whereas rotation zone injections resulted in retrogradely labeled cells in the dorsomedial region of the medial column. Motion of any object through space, including self-motion of organisms, can be described with reference to translation and rotation in three-dimensional space. Our results show that, in pigeons, the brainstem visual systems responsible for detecting optic flow are segregated into channels responsible for the analysis of translational and rotational optic flow in the inferior olive, which is only two synapses from the retina.
机译:以前的鸽子电生理研究表明,根据对光流刺激的反应,前庭小脑可分为两个矢状旁区域。内侧区域对自平移产生的视力流反应最佳,而外侧区域对自旋转产生的视力流反应最佳。该信息从视网膜通过辅助光学系统到下橄榄内侧柱的投影到达。在这项研究中,我们使用逆行示踪剂霍乱毒素亚基B调查了橄榄对前庭小脑平移和旋转区域的下投射。使用Purkinje细胞活动(复杂尖峰)的细胞外记录来响应大视野视觉刺激,以识别注射部位。我们发现投射到前庭小脑的平移和旋转区域的下橄榄细胞有明显的分离。翻译区注射导致内侧柱腹侧区域中的逆行标记细胞,而旋转区注射导致内侧柱背侧区域中的逆行标记细胞。可以参考三维空间中的平移和旋转来描述任何物体在空间中的运动,包括生物体的自身运动。我们的结果表明,在鸽子中,负责检测视神经流动的脑干视觉系统被隔离到负责分析下橄榄中的平移和旋转视神经流的通道中,该通道仅来自视网膜的两个突触。

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