Džaja Domagoj, Hladnik Ana, Bičanić Ivana, Baković Marija, Petanjek Zdravko
Laboratory for Neuromorphometry, Department of Neuroscience, Croatian Institute for Brain Research, School of Medicine, University of Zagreb Zagreb, Croatia.
Department of Anatomy and Clinical Anatomy, School of Medicine, University of Zagreb Zagreb, Croatia.
Front Neuroanat. 2014 Sep 25;8:103. doi: 10.3389/fnana.2014.00103. eCollection 2014.
In this article we first point at the expansion of associative cortical areas in primates, as well as at the intrinsic changes in the structure of the cortical column. There is a huge increase in proportion of glutamatergic cortical projecting neurons located in the upper cortical layers (II/III). Inside this group, a novel class of associative neurons becomes recognized for its growing necessity in both inter-areal and intra-areal columnar integration. Equally important to the changes in glutamatergic population, we found that literature data suggest a 50% increase in the proportion of neocortical GABAergic neurons between primates and rodents. This seems to be a result of increase in proportion of calretinin interneurons in layers II/III, population which in associative areas represents 15% of all neurons forming those layers. Evaluating data about functional properties of their connectivity we hypothesize that such an increase in proportion of calretinin interneurons might lead to supra-linear growth in memory capacity of the associative neocortical network. An open question is whether there are some new calretinin interneuron subtypes, which might substantially change micro-circuitry structure of the primate cerebral cortex.
在本文中,我们首先指出灵长类动物联合皮质区域的扩展以及皮质柱结构的内在变化。位于皮质上层(II/III层)的谷氨酸能皮质投射神经元的比例大幅增加。在这一组中,一类新型的联合神经元因其在区域间和区域内柱状整合中日益增长的必要性而被识别出来。与谷氨酸能神经元群体的变化同样重要的是,我们发现文献数据表明,灵长类动物和啮齿动物之间新皮质GABA能神经元的比例增加了50%。这似乎是由于II/III层中钙视网膜蛋白中间神经元比例增加的结果,在联合区域,这一群体占构成这些层的所有神经元的15%。通过评估有关其连接功能特性的数据,我们推测钙视网膜蛋白中间神经元比例的这种增加可能会导致联合新皮质网络记忆容量的超线性增长。一个悬而未决的问题是,是否存在一些新的钙视网膜蛋白中间神经元亚型,它们可能会实质性地改变灵长类动物大脑皮质的微电路结构。