Majak Katarzyna, Rönkkö Seppo, Kemppainen Samuli, Pitkänen Asla
Epilepsy Research Laboratory, A.I. Virtanen Institute for Molecular Sciences, University of Kuopio, FIN-70211 Kuopio, Finland.
J Comp Neurol. 2004 Aug 30;476(4):414-28. doi: 10.1002/cne.20233.
Projections from the amygdala to the piriform cortex are proposed to provide a pathway via which the emotional system can modulate the processing of olfactory information as well as mediate the spread of seizure activity in epilepsy. To understand the details of the distribution and topography of these projections, we injected the anterograde tracer Phaseolus vulgaris-leucoagglutinin into different nuclear divisions of the amygdaloid complex in 101 rats and analyzed the distribution and density of projections in immunohistochemically processed preparations. The heaviest projections from the amygdala to the piriform cortex originated in the medial division of the lateral nucleus, the periamygdaloid and sulcal subfields of the periamygdaloid cortex, and the posterior cortical nucleus. The heaviest terminal labeling was observed in layers Ib and III of the medial aspect of the posterior piriform cortex. Lighter projections to the posterior piriform cortex originated in the dorsolateral division of the lateral nucleus, the magnocellular and parvicellular divisions of the basal and accessory basal nuclei, and the anterior cortical nucleus. The projections to the anterior piriform cortex were light and originated in the dorsolateral and medial divisions of the lateral nucleus, the magnocellular division of the basal and accessory basal nuclei, the anterior and posterior cortical nuclei, and the periamygdaloid subfield of the periamygdaloid cortex. The results indicate that only selective amygdaloid nuclei or their subdivisions project to the piriform cortex. In addition, substantial projections from several amygdaloid nuclei converge in the medial aspect of the posterior piriform cortex. Via these projections, the amygdaloid complex can modulate the processing of olfactory information in the piriform cortex. In pathologic conditions such as epilepsy, these connections might provide pathways for the spread of seizure activity from the amygdala to extra-amygdaloid regions.
杏仁核到梨状皮质的投射被认为提供了一条途径,通过这条途径情绪系统可以调节嗅觉信息的处理,并在癫痫中介导癫痫活动的传播。为了了解这些投射的分布和拓扑结构的细节,我们将顺行示踪剂菜豆凝集素注入101只大鼠杏仁复合体的不同核团,并在免疫组织化学处理的标本中分析投射的分布和密度。从杏仁核到梨状皮质的最密集投射起源于外侧核的内侧部、杏仁周皮质的杏仁周和沟回亚区以及后皮质核。在梨状后皮质内侧的Ib层和III层观察到最密集的终末标记。到梨状后皮质的较稀疏投射起源于外侧核的背外侧部、基底核和副基底核的大细胞和小细胞部以及前皮质核。到梨状前皮质的投射较稀疏,起源于外侧核的背外侧和内侧部、基底核和副基底核的大细胞部、前皮质核和后皮质核以及杏仁周皮质的杏仁周亚区。结果表明,只有选择性的杏仁核或其亚区投射到梨状皮质。此外,来自几个杏仁核的大量投射汇聚在梨状后皮质的内侧。通过这些投射,杏仁复合体可以调节梨状皮质中嗅觉信息的处理。在癫痫等病理情况下,这些连接可能为癫痫活动从杏仁核扩散到杏仁核外区域提供途径。