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皮质轴突的直径取决于其起源区域和目标区域。

The diameter of cortical axons depends both on the area of origin and target.

作者信息

Innocenti Giorgio M, Vercelli Alessandro, Caminiti Roberto

机构信息

Department of Neuroscience, Karolinska Institutet, Stockholm, Sweden

Neuroscience Institute Cavalieri Ottolenghi (NICO), Department of Neuroscience, University of Turin, Turin, Italy and.

出版信息

Cereb Cortex. 2014 Aug;24(8):2178-88. doi: 10.1093/cercor/bht070. Epub 2013 Mar 25.

Abstract

In primates, different cortical areas send axons of different diameters into comparable tracts, notably the corpus callosum (Tomasi S, Caminiti R, Innocenti GM. 2012. Areal differences in diameter and length of corticofugal projections. Cereb Cortex. 22:1463-1472). We now explored if an area also sends axons of different diameters to different targets. We find that the parietal area PEc sends thicker axons to area 4 and 6, and thinner ones to the cingulate region (area 24). Areas 4 and 9, each sends axons of different diameters to the nucleus caudatus, to different levels of the internal capsule, and to the thalamus. The internal capsule receives the thickest axon, followed by thalamus and nucleus caudatus. The 2 areas (4 and 9) differ in the diameter and length of axons to corresponding targets. We calculated how diameter determines conduction velocity of the axons and together with pathway length determines transmission delays between different brain sites. We propose that projections from and within the cerebral cortex consist of a complex system of lines of communication with different geometrical and time computing properties.

摘要

在灵长类动物中,不同的皮质区域会将不同直径的轴突发送到类似的神经束中,尤其是胼胝体(托马西·S、卡米尼蒂·R、因诺琴蒂·G·M。2012年。皮质传出投射的直径和长度的区域差异。《大脑皮层》。22:1463 - 1472)。我们现在探究一个区域是否也会将不同直径的轴突发送到不同的目标。我们发现顶叶区域PEc将较粗的轴突发送到4区和6区,而将较细的轴突发送到扣带区域(24区)。4区和9区各自将不同直径的轴突发送到尾状核、内囊的不同层面以及丘脑。内囊接收最粗的轴突,其次是丘脑和尾状核。这两个区域(4区和9区)向相应目标发送的轴突在直径和长度上存在差异。我们计算了直径如何决定轴突的传导速度,并与通路长度一起决定不同脑区之间的传输延迟。我们提出,来自大脑皮层及大脑皮层内的投射由一个具有不同几何和时间计算特性的复杂通信线路系统组成。

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