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首页> 外文期刊>The Journal of Comparative Neurology >Afferent and efferent connections of the caudolateral neostriatum in the pigeon (Columba livia): a retro- and anterograde pathway tracing study.
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Afferent and efferent connections of the caudolateral neostriatum in the pigeon (Columba livia): a retro- and anterograde pathway tracing study.

机译:鸽子(Columba livia)足外侧新纹状体的传入和传出连接:逆行和顺行途径追踪研究。

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摘要

The avian caudolateral neostriatum (NCL) was first identified on the basis of its dense dopaminergic innervation. This fact and data from lesion studies have led to the notion that NCL might be the avian equivalent of prefrontal cortex (PFC). A key feature of the PFC is the ability to integrate information from all modalities needed for the generation of motor plans. By using antero- and retrograde pathway tracing techniques, we investigated the organization of sensory afferents to the NCL and the connections with limbic and somatomotor centers in the basal ganglia and archistriatum. Data from all tracing experiments were compared with the distribution of tyrosine-hydroxylase (TH)-immunoreactive fibers, serving as a marker of dopaminergic innervation. The results show that NCL is reciprocally connected with the secondary sensory areas of all modalities and with at least two parasensory areas. Retrograde tracing also demonstrated further afferents from the deep layers of the Wulst and from the frontolateral neostriatum as well as the sources of thalamic input. Efferents of NCL project onto parts of the avian basal ganglia considered to serve somatomotor or limbic functions. Projections to the archistriatum are mainly directed to the somatomotor part of the intermediate archistriatum. In addition, cells in caudal NCL were found to be connected with the ventral and posterior archistriatum, which are considered avian equivalents of mammalian amygdala. All afferents and projection neurons were confined to the plexus of densest TH innervation. Our results show that the NCL is positioned to amalgamate information from all modalities and to exert control over limbic and somatomotor areas. This organization might comprise the neural basis for such complex behaviours as working memory or spatial orientation.
机译:禽足新纹状体(NCL)首先是基于其密集的多巴胺能神经支配的。病灶研究的这一事实和数据导致了这样一种观念,即NCL可能相当于前额叶皮层(PFC)的禽类。 PFC的一个关键功能是能够集成来自生成电机计划所需的所有模式的信息。通过使用逆行和逆行路径追踪技术,我们调查了NCL的感觉传入组织以及与基底神经节和原发质的边缘和躯体运动中心的联系。将来自所有追踪实验的数据与酪氨酸羟化酶(TH)免疫反应性纤维的分布进行了比较,后者是多巴胺能神经支配的标志。结果表明,NCL与所有形态的次要感觉区域相互连接,并与至少两个副感觉区域相互连接。逆行追踪还显示了来自伍尔斯特深层和额叶新纹状体以及丘脑输入源的进一步传入。 NCL的流出物投射到被认为具有躯体运动或边缘功能的部分禽基底神经节上。到原虫的投射主要针对中间原虫的体动部分。此外,发现尾侧NCL中的细胞与腹侧和后部弓形虫相连,这被认为是哺乳动物杏仁核的鸟类等效物。所有传入和投射神经元均被限制在最密集的TH神经支配神经丛中。我们的结果表明,NCL的定位是将所有方式的信息融合在一起,并对边缘和躯体运动区域进行控制。这种组织可能包括诸如工作记忆或空间定向等复杂行为的神经基础。

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