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The Microcircuit Concept Applied to Cortical Evolution: from Three-Layer to Six-Layer Cortex

机译:应用于皮质进化的微电路概念:从三层皮质到六层皮质

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摘要

Understanding the principles of organization of the cerebral cortex requires insight into its evolutionary history. This has traditionally been the province of anatomists, but evidence regarding the microcircuit organization of different cortical areas is providing new approaches to this problem. Here we use the microcircuit concept to focus first on the principles of microcircuit organization of three-layer cortex in the olfactory cortex, hippocampus, and turtle general cortex, and compare it with six-layer neocortex. From this perspective it is possible to identify basic circuit elements for recurrent excitation and lateral inhibition that are common across all the cortical regions. Special properties of the apical dendrites of pyramidal cells are reviewed that reflect the specific adaptations that characterize the functional operations in the different regions. These principles of microcircuit function provide a new approach to understanding the expanded functional capabilities elaborated by the evolution of the neocortex.
机译:了解大脑皮层组织的原理需要深入了解其进化史。传统上,这是解剖学家的工作,但是有关不同皮质区域的微电路组织的证据正在为解决该问题提供新的方法。在这里,我们使用微电路概念首先关注嗅觉皮层,海马体和乌龟普通皮层中三层皮层的微电路组织原理,并将其与六层新皮层进行比较。从这个角度来看,有可能识别出在所有皮层区域中常见的用于反复激励和横向抑制的基本电路元件。审查了锥体细胞的顶端树突的特殊性质,反映了表征不同区域功能性操作的特定适应性。这些微电路功能原理提供了一种新的方法,以了解新皮层进化所阐述的扩展功能。

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