首页> 美国卫生研究院文献>The Journal of Neuroscience >Striatonigrostriatal Pathways in Primates Form an Ascending Spiral from the Shell to the Dorsolateral Striatum
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Striatonigrostriatal Pathways in Primates Form an Ascending Spiral from the Shell to the Dorsolateral Striatum

机译:灵长类中的纹状体纹状体途径形成从外壳到背侧纹状体的上升螺旋

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摘要

Clinical manifestations in diseases affecting the dopamine system include deficits in emotional, cognitive, and motor function. Although the parallel organization of specific corticostriatal pathways is well documented, mechanisms by which dopamine might integrate information across different cortical/basal ganglia circuits are less well understood. We analyzed a collection of retrograde and anterograde tracing studies to understand how the striatonigrostriatal (SNS) subcircuit directs information flow between ventromedial (limbic), central (associative), and dorsolateral (motor) striatal regions. When viewed as a whole, the ventromedial striatum projects to a wide range of the dopamine cells and receives a relatively small dopamine input. In contrast, the dorsolateral striatum (DLS) receives input from a broad expanse of dopamine cells and has a confined input to the substantia nigra (SN). The central striatum (CS) receives input from and projects to a relatively wide range of the SN. The SNS projection from each striatal region contains three substantia nigra components: a dorsal group of nigrostriatal projecting cells, a central region containing both nigrostriatal projecting cells and its reciprocal striatonigral terminal fields, and a ventral region that receives a specific striatonigral projection but does not contain its reciprocal nigrostriatal projection. Examination of results from multiple tracing experiments simultaneously demonstrates an interface between different striatal regions via the midbrain dopamine cells that forms an ascending spiral between regions. The shell influences the core, the core influences the central striatum, and the central striatum influences the dorsolateral striatum. This anatomical arrangement creates a hierarchy of information flow and provides an anatomical basis for the limbic/cognitive/motor interface via the ventral midbrain.
机译:影响多巴胺系统的疾病的临床表现包括情绪,认知和运动功能障碍。尽管特定皮质皮质激素途径的平行组织已得到充分文献证明,但多巴胺可能整合跨不同皮质/基底神经节回路的信息的机制仍未得到很好的了解。我们分析了一系列的逆行和顺行示踪研究,以了解纹状体-三角纹状体(SNS)子回路如何引导信息在腹侧(边缘),中央(缔合)和背外侧(运动)纹状体区域之间流动。当从整体上看时,腹侧纹状体投射到广泛的多巴胺细胞中,并接受相对较小的多巴胺输入。相反,背外侧纹状体(DLS)从广泛的多巴胺细胞接收输入,并且对黑质(SN)的输入受到限制。中央纹状体(CS)从SN的相对较大的范围接收输入并投射到该范围。每个纹状体区域的SNS投影均包含三个黑质黑质成分:一组黑纹状体投射细胞的背侧,一个包含黑纹状体投射细胞及其反纹状体终末端场的中央区域,以及一个接受特定纹状体黑影但不包含纹状体的腹侧区其相互的黑质纹状体投射。多次追踪实验的结果检验同时证明了通过中脑多巴胺细胞在不同纹状体区域之间的界面,该界面在区域之间形成了上升的螺旋。贝壳影响核心,核心影响中央纹状体,而中央纹状体影响背外侧纹状体。这种解剖结构创建了信息流的层次结构,并通过腹中脑为边缘/认知/运动界面提供了解剖基础。

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