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Projections of somatosensory cortex and frontal eye fields onto incertotectal neurons in the cat

机译:体感皮层和额叶视野投射到猫的肠直肠神经元上

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The goal of this study was to determine whether the input-output characteristics of the zona incerta (ZI) are appropriate for it to serve as a conduit for cortical control over saccade-related activity in the superior colliculus. The study utilized the neuronal tracers wheat germ agglutinin-horseradish peroxidase (WGA-HRP) and biotinylated dextran amine (BDA) in the cat. Injections of WGA-HRP into primary somatosensory cortex (SI) revealed sparse, widespread nontopographic projections throughout ZI. In addition, region-specific areas of more intense termination were present in ventral ZI, although strict topography was not observed. In comparison, the frontal eye fields (FEF) also projected sparsely throughout ZI, but terminated more heavily, medially, along the border between the two sublaminae. Furthermore, retrogradely labeled incertocortical neurons were observed in both experiments. The relationship of these two cortical projections to incertotectal cells was also directly examined by retrogradely labeling incertotectal cells with WGA-HRP in animals that had also received cortical BDA injections. Labeled axonal arbors from both SI and FEF had thin, sparsely branched axons with numerous en passant boutons. They formed numerous close associations with the somata and dendrites of WGA-HRP-labeled incertotectal cells. In summary, these results indicate that both sensory and motor cortical inputs to ZI display similar morphologies and distributions. In addition, both display close associations with incertotectal cells, suggesting direct synaptic contact. From these data, we conclude that inputs from somatosensory and FEF cortex both play a role in controlling gaze-related activity in the superior colliculus by way of the inhibitory incertotectal projection.
机译:这项研究的目的是确定不透明带(ZI)的输入输出特性是否适合用作皮层控制上丘中扫视相关活动的导管。该研究利用猫中的神经元示踪剂小麦胚芽凝集素-辣根过氧化物酶(WGA-HRP)和生物素化的葡聚糖胺(BDA)。将WGA-HRP注射到原代体感皮层(SI)中显示整个ZI的稀疏,广泛的非地形投影。此外,尽管未观察到严格的地形,但腹侧ZI中存在更强烈终止的区域特定区域。相比之下,额叶视场(FEF)在整个ZI上也稀疏投射,但在两个子层之间的边界沿中间更重地终止。此外,在两个实验中均观察到逆行标记的大脑皮层神经元。在还接受了皮质BDA注射的动物中,还通过用WGA-HRP逆行标记肠直肠细胞,也直接检查了这两个皮质投影与肠直肠细胞的关系。来自SI和FEF的带标签的轴突轴突有稀疏,分支稀疏的轴突,并带有大量的突。他们与WGA-HRP标记的肠直肠细胞的体细胞和树突形成了许多紧密的联系。总之,这些结果表明ZI的感觉和运动皮层输入均显示相似的形态和分布。此外,两者均显示与肠直肠细胞的紧密联系,表明直接的突触接触。根据这些数据,我们得出结论,来自体感和FEF皮质的输入均通过抑制性肠直肠投射在上丘中控制注视相关活动中发挥作用。

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