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Three-dimensional organization of dendrites and local axon collaterals of shell and core medium-sized spiny projection neurons of the rat nucleus accumbens

机译:大鼠伏伏核壳和核心中型棘突投射神经元的树突和局部轴突侧支的三维组织

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摘要

Medium-sized spiny projection neurons (MSN) in the head of the primate caudate nucleus are thought to have preferred dendritic orientations that tend to parallel the orientations of the striosomes. Moreover, recurrent axon collaterals of MSN in the rat dorsal striatum have been categorized into two types, i.e., restricted and widespread. The nucleus accumbens (Acb) has a highly complex compartmental organization, and the spatial organization of dendritic and axonal arbors of MSN has not yet been systematically studied. In this study, using single-cell juxtacellular labeling with neurobiotin as well as anterograde neuroanatomical tracing with biotinylated dextran amine, we investigated the three-dimensional (3D) organization of dendrites and axons of MSN of the rat Acb in relation to subregional (shell-core) and compartmental (patch-matrix) boundaries. Our results show that dendritic arbors of MSN in both the Acb shell and core subregions are preferentially oriented, i.e., they are flattened in at least one of the 3D-planes. The preferred orientations are influenced by shell-core and patch-matrix boundaries, suggesting parallel and independent processing of information. Dendritic orientations of MSN of the Acb core are more heterogeneous than those of the shell and the dorsal striatum, suggesting a more complex distribution of striatal inputs within the core. Although dendrites respect the shell-core and patch-matrix boundaries, recurrent axon collaterals may cross these boundaries. Finally, different degrees of overlap between dendritic and axonal arborizations of individual MSN were identified, suggesting various possibilities of lateral inhibitory interactions within and between, functionally distinct territories of the Acb.
机译:灵长类尾状核头部的中型棘突投射神经元(MSN)被认为具有优选的树突取向,这些树突取向倾向于平行于脂质体的取向。而且,大鼠背侧纹状体中MSN的复发性轴突侧支被分为两类,即受限型和广泛型。伏伏核(Acb)具有高度复杂的区室组织,并且尚未系统研究MSN的树突状和轴突状轴的空间组织。在这项研究中,使用神经生物素单细胞临近细胞标记以及生物素化葡聚糖胺进行顺行性神经解剖学示踪,我们研究了大鼠Acb的树突和MSN轴突的三维(3D)组织与子区域(壳-核心)和分区(补丁矩阵)边界。我们的结果表明,在Acb壳和核心子区域中MSN的树状乔木优先取向,即它们在至少一个3D平面中变平。首选的方向受壳核和斑块矩阵边界的影响,建议并行和独立地处理信息。 Acb核的MSN的树突取向比壳和背侧纹状体的树突取向更不均匀,这表明核内纹状体输入的分布更为复杂。尽管树突遵守壳-核和斑块-基质的边界,但复发的轴突侧支可能会越过这些边界。最后,确定了单个MSN的树突状和轴突乔化之间不同程度的重叠,这表明在功能不同的Acb区域内和之间存在侧向抑制性相互作用的各种可能性。

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