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Three axonal projection routes of individual pyramidal cells in the ventral CA1 hippocampus

机译:腹侧CA1海马中单个锥体细胞的三种轴突投射路径

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摘要

Pyramidal cells of the ventral hippocampal CA1 area have numerous and diverse distant projections to other brain regions including the temporal and parietal association areas, visual, auditory, olfactory, somatosensory, gustatory, and visceral areas, and inputs to the amygdalar and prefrontal-orbital-agranular insular region. In addition, their differential expression of proteins like calbindin provides further indications for cellular diversity. This raises the possibility that the pyramidal cells may form subpopulations participating in different brain circuitries. To address this hypothesis we applied the juxtacellular labeling technique to fill individual pyramidal cells in the ventral hippocampus with neurobiotin in urethane anesthetized rats. For each labeled pyramidal cell we determined soma location, dendritic arborizations and selective expression of calbindin and norbin. Reconstruction and mapping of long-range axonal projections were made with the Neurolucida system. We found three major routes of ventral CA1 pyramidal cell projections. The classical pathway run caudo-ventrally across and innervating the subiculum, further to the parahippocampal regions and then to the deep and superficial layers of entorhinal cortex. The other two pathways avoided subiculum by branching from the main axon close to the soma and either traveled antero- and caudo-ventrally to amygdaloid complex, amygdalopiriform-transition area and parahippocampal regions or run antero-dorsally through the fimbria-fornix to the septum, hypothalamus, ventral striatum and olfactory regions. We found that most pyramidal cells investigated used all three major routes to send projecting axons to other brain areas. Our results suggest that the information flow through the ventral hippocampus is distributed by wide axonal projections from the CA1 area.
机译:腹侧海马CA1区的锥体细胞向其他大脑区域(包括颞和顶缔合区,视觉,听觉,嗅觉,体感,味觉和内脏区)有大量多样的远距离投影,并输入到杏仁核和前额眶-颗粒状岛状区域。另外,它们像钙结合蛋白的蛋白质的差异表达为细胞多样性提供了进一步的指示。这增加了锥体细胞可能形成参与不同脑回路的亚群的可能性。为了解决这个假设,我们应用了近细胞标记技术,在氨基甲酸乙酯麻醉的大鼠中用神经生物素填充腹侧海马的单个锥体细胞。对于每个标记的锥体细胞,我们确定了体素位置,树突状乔化以及钙结合蛋白和降冰蛋白的选择性表达。使用Neurolucida系统重建和绘制远距离轴突投影图。我们发现腹侧CA1锥体细胞投射的三个主要途径。经典途径通过腹膜腔横穿并支配下丘脑,进一步到达海马旁区域,然后到达内嗅皮层的深层和浅层。其他两种途径通过从靠近体体的主轴突分支而避免了亚下丘,或者通过前腹和后腹到达了杏仁核复合体,扁桃体样转换区和海马旁区域,或者从背侧穿过纤维膜穹隆到达中隔,下丘脑,腹侧纹状体和嗅觉区域。我们发现,研究的大多数锥体细胞都使用了所有三种主要途径将投射的轴突发送到其他大脑区域。我们的结果表明,通过腹侧海马的信息流是由CA1区域的宽轴突投影分布的。

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