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神经丝在轴突的径向维度上随机分布。

Neurofilaments are spaced randomly in the radial dimension of axons.

作者信息

Price R L, Paggi P, Lasek R J, Katz M J

机构信息

Bio-architectonics Center, School of Medicine, Case Western Reserve University, Cleveland, OH 44106.

出版信息

J Neurocytol. 1988 Feb;17(1):55-62. doi: 10.1007/BF01735377.

Abstract

The organization of the cytoskeleton is compared in the large myelinated parasympathetic and somatic motor axons of the avian oculomotor system. Electron microscopic studies demonstrate that neurofilaments are the chief structural elements in these axons, and quantitative analyses of the distribution of neurofilaments in axonal cross-sections found that the average neurofilament packing density is 25% greater in the parasympathetic axons than in the somatic motor axons. In both types of axon the distributions of neurofilaments matched a randomly generated (Poisson) distribution. In axoplasm, a Poisson distribution could arise if the neurofilaments were distributed in the cross-sectional plane by stochastic forces operating randomly and without significant neurofilament-neurofilament interactions. Thus, in these axons, the neurofilaments behave as if they are inert 'molecules' in a dilute solution-subject to non-specific stochastic forces that tend to distribute them at random. We propose that neurofilaments normally are relatively free to move apart from each other and to fill the available space within the axon.

摘要

对鸟类动眼神经系统中大型有髓鞘副交感神经轴突和躯体运动轴突的细胞骨架组织进行了比较。电子显微镜研究表明,神经丝是这些轴突中的主要结构成分,对轴突横切面中神经丝分布的定量分析发现,副交感神经轴突中神经丝的平均堆积密度比躯体运动轴突高25%。在这两种类型的轴突中,神经丝的分布都符合随机生成的(泊松)分布。在轴浆中,如果神经丝通过随机作用且无显著神经丝-神经丝相互作用的随机力分布在横截面上,就可能出现泊松分布。因此,在这些轴突中,神经丝的行为就好像它们是稀溶液中惰性的“分子”,受到倾向于将它们随机分布的非特异性随机力作用。我们认为,神经丝通常相对自由地彼此分开移动,并填充轴突内的可用空间。

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