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Longitudinal topography and interdigitation of corticostriatal projections in the rhesus monkey

机译:恒河猴的皮质口突投影的纵向地形和指交

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摘要

Anterograde tracing methods were used to examine the topographic organization and interrelationship of projections to the neostriatum arising from various areas of association cortex. In contrast to the currently accepted topographic schema, all cortical areas examined project to longitudinal territories that occupy restricted medial- lateral domains of the neostriatum. The posterior parietal and superior arcuate cortices project to dorsolateral portions of the neostriatum; the dorsolateral and dorsomedial frontal cortices project centrally; and the orbitofrontal, anterior cingulate, and superior temporal projections are distributed to ventromedial regions of the caudate nucleus and putamen. In coronal section, cortical terminal fields form a diagonal strip, extending from the dorsal, ventricular border of the caudate nucleus, through the fiber bundles of the internal capsule, to the ventral margin of the putamen. Double labeling studies, in which two cortical areas were injected in the same animal, indicated that convergence of input within neostriatal domains is not governed by reciprocity of corticocortical connectivity. Thus, the interrelationship of projections arising from connectionally linked cortical areas ranged from nearly complete segregation of terminal fields (e.g., from dorsolateral prefrontal and orbital cortices) to extensive overlap of terminal domains (e.g., from frontal and temporal cortices). In the latter case, detailed analysis revealed that frontal and temporal terminals actually were interdigitated rather than intermixed within the zone of overlap. The present findings suggest a new conceptualization of corticostriatal topography in the primate which emphasizes the longitudinal arrangement of cortical terminal domains. Additionally, these findings provide a map for functional parcellation of the neostriatum on the basis of its cortical innervation which may prove useful to understanding normal striatal function, as well as the symptomatology associated with neostriatal injury and disease.
机译:顺行示踪法被用来检查地形组织和投影到相关皮层各个区域的新纹状体的相互关系。与当前接受的地形图形成对比,所检查的所有皮质区域都投射到占据新纹状体内侧-外侧区域的纵向区域。后顶叶和上弓形皮质突出到新纹状体的背外侧部分;背外侧和背侧额叶皮层中央突出。眼眶额,前扣带回和颞上投射分布在尾状核和壳状核的腹侧区域。在冠状切面中,皮质末端区域形成一条对角线,从尾状核的背侧心室边界穿过内囊的纤维束延伸到壳核的腹缘。在同一动物中注射两个皮层区域的双重标记研究表明,新纹状体区域内的输入收敛不受皮层皮质连通性的互易性支配。因此,由相互连接的皮质区域产生的投影的相互关系的范围从末梢场的几乎完全隔离(例如,从背外侧前额叶和眶皮质)到末梢域的广泛重叠(例如,从额叶和颞叶皮质)。在后一种情况下,详细分析表明,额叶和颞叶末端实际上是相互交叉的,而不是在重叠区域内相互混合的。目前的发现表明在灵长类动物的皮质口状地形的新概念,强调皮质末端域的纵向排列。此外,这些发现为新纹状体的皮层神经支配提供了功能性消融的图谱,这可能有助于理解正常的纹状体功能以及与新纹状体损伤和疾病相关的症状。

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