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豚鼠梨状皮层III层单细胞轴突侧支的定量分析。

Quantitative analysis of axon collaterals of single cells in layer III of the piriform cortex of the guinea pig.

作者信息

Chen Shaoyun, Murakami Kunio, Oda Satoko, Kishi Kiyoshi

机构信息

First Department of Anatomy, Toho University School of Medicine, Omori-nishi 5-21-16, Ota-Ku, Tokyo 143-8540, Japan.

出版信息

J Comp Neurol. 2003 Oct 20;465(3):455-65. doi: 10.1002/cne.10844.

Abstract

Recent physiological and morphological studies suggest that the piriform cortex (PC) functions like the association areas of the neocortex rather than the typical primary sensory area as was previously assumed. The axon connection patterns of single cells are important for understanding the functional organization of the PC. The axon collaterals of three single pyramidal cells and one spiny multipolar cell in layer III of the PC were labeled and quantitatively analyzed by intracellular injections of biocytin in guinea pigs. The individual pyramidal and spiny multipolar cells have highly distributed axon collaterals, which display little tendency for patchy concentrations, within the PC and multiple higher order behavior/reward/contextual-related areas, such as the prefrontal cortex, amygdaloid nuclei, and entorhinal cortex. For the pyramidal cells, the average length of axonal collaterals is 143 mm; the average number of boutons is 12,930. For the spiny multipolar cell, the length of the axonal collaterals is 88 mm; the number of boutons is 7,052. The pyramidal cells in the anterior subdivision of the PC (APC) have both rostrally and caudally directed intrinsic association fibers, whereas the pyramidal and spiny multipolar cells in the posterior subdivision (PPC) have predominantly caudally directed intrinsic association fibers in the PC. Our results reveal that the connection patterns of single cells in layer III resemble those of pyramidal cells in layer II, suggesting that the PC performs correlative functions analogous to those in the association area of other sensory systems. The rostrally-to-caudally directed connections in the APC provide a substrate for the recurrent process, whereas largely caudally directed connections in the PPC suggest the dominance of the feed-forward process.

摘要

最近的生理学和形态学研究表明,梨状皮质(PC)的功能类似于新皮质的联合区,而不是像之前所认为的典型的初级感觉区。单细胞的轴突连接模式对于理解PC的功能组织很重要。通过对豚鼠PC层III中的三个单锥体神经元和一个棘状多极神经元进行生物胞素细胞内注射,标记并定量分析了它们的轴突侧支。单个锥体神经元和棘状多极神经元在PC以及多个更高阶的行为/奖赏/情境相关区域,如前额叶皮质、杏仁核和内嗅皮质中,具有高度分散的轴突侧支,几乎没有呈斑块状集中的趋势。对于锥体神经元,轴突侧支的平均长度为143毫米;平均终扣数量为12,930个。对于棘状多极神经元,轴突侧支的长度为88毫米;终扣数量为7,052个。PC前部分(APC)中的锥体神经元既有向前和向后方向的内在联合纤维,而后部分(PPC)中的锥体神经元和棘状多极神经元在PC中主要具有向后方向的内在联合纤维。我们的结果表明,层III中单个细胞的连接模式类似于层II中锥体神经元的连接模式,这表明PC执行的相关功能类似于其他感觉系统联合区中的功能。APC中从前往后的连接为循环过程提供了基础,而PPC中主要向后的连接表明前馈过程占主导地位。

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