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Some observations on cortical inputs to the macaque monkey amygdala: An anterograde tracing study.

机译:猕猴杏仁体的皮质输入的一些观察:顺行追踪研究。

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We have previously described the origins of neocortical inputs to the lateral nucleus of the macaque monkey amygdala based on retrograde tracing studies. Here we report results from studies that have attempted to confirm the projections from several candidate afferent regions using (3)H-amino acid autoradiography as an anterograde tracer. We have charted, based on the results of 33 separate injections, the topographic distribution of cortical projections throughout the amygdala. Areas TE and TEO of the inferotemporal cortex, portions of the superior temporal gyrus, and the granular region of the insula project primarily to the lateral nucleus, with little or no innervation of other amygdaloid nuclei. In contrast, orbitofrontal, medial prefrontal, and anterior cingulate regions project primarily to the basal and accessory basal nuclei and provide little innervation to the lateral nucleus. The orbitofrontal and medial prefrontal cortices, but not the anterior cingulate cortex, project to medially situated amygdaloid areas such as the cortical and medial nuclei and to the periamygdaloid cortex. The agranular and dysgranular insula, the parainsula, and rostral portions of the superior temporal gyrus project both to the lateral, basal, and accessory basal nuclei and to the medially situated nuclei. Projections to the central nucleus are particularly prominent from these regions. These data are discussed in relation to the hierarchical processing of sensory information that occurs within the amygdaloid complex. J. Comp. Neurol. 451:301-323, 2002.
机译:我们先前已经根据逆行追踪研究描述了新皮质输入到猕猴杏仁核外侧核的起源。在这里,我们报告了一些研究结果,这些研究试图使用(3)H-氨基酸放射自显影作为顺行示踪剂来确认几个候选传入区域的预测。根据33次单独注射的结果,我们绘制了整个杏仁核的皮质投影的地形分布图。颞下皮质的TE和TEO区域,颞上回的部分以及岛状的颗粒区域主要伸向外侧核,很少或没有其他杏仁状核的神经支配。相反,眶额,内侧前额和前扣带回区域主要突出于基底和副基底核,几乎不提供对外侧核的支配。眶额和内侧前额叶皮层,而不是前扣带回皮层,突出到位于杏仁核的内侧区域,例如皮层和内侧核,以及到杏仁核周围的皮层。颞上回的颗粒状和非颗粒状岛状,岛旁和延髓部既向外侧,基底,副基底核又向内侧核突出。从这些区域到中央核的投影尤为突出。这些数据是关于杏仁体复合体内发生的感觉信息的分层处理进行讨论的。 J.比较神经元。 451:301-323,2002。

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