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通过微分干涉显微镜和电子显微镜揭示的鱿鱼(Loligo pealii L.)巨大神经纤维轴浆中丝状元件的空间模式。

Spatial patterns of threadlike elements in the axoplasm of the giant nerve fiber of the squid (Loligo pealii L.) as disclosed by differential interference microscopy and by electron microscopy.

作者信息

Metuzals J, Izzard C S

出版信息

J Cell Biol. 1969 Dec;43(3):456-79. doi: 10.1083/jcb.43.3.456.

Abstract

The giant nerve fiber of the squid (Loligo pealii L.) has been investigated in situ, and in fresh and fixed preparations, by differential interference microscopy and electron microscopy. A continuous, three-dimensional network, composed of threadlike elements, was disclosed in the axoplasm. The threadlike elements in the axoplasm are twisted as a whole into a steep, right-handed helix. In a peripheral ectoplasmic region, the elements are more parallel to one another and more densely packed than in a central endoplasmic core. The threadlike elements can be resolved into a hierarchy of decreasing order of size. Successive levels of the hierarchy are formed by the association of smaller elements into larger ones. The following levels in the hierarchy of network elements have been distinguished: 1-3-micro-wide threads, 0.1-0.35-micro-wide strands, and 70-250-A-wide unit-filament strands. The differential interference microscope selects, from the network, threads oriented at a specific angle to the long axis of the axon. The specific angle depends upon the orientation of the long axis of the axon relative to the direction of shear. It is postulated that the network configuration is expressed in the solid-state properties of the axoplasm essential for the normal functioning of the nerve fiber.

摘要

利用微分干涉显微镜和电子显微镜,对鱿鱼(Loligo pealii L.)的巨神经纤维进行了原位研究,并对新鲜和固定的标本进行了观察。在轴浆中发现了一个由丝状成分组成的连续三维网络。轴浆中的丝状成分整体扭曲成一个陡峭的右手螺旋。在外周的外质区域,这些成分比中央内质核心中的成分彼此更平行且排列更密集。丝状成分可以分解为尺寸递减的层次结构。层次结构的连续级别是由较小成分组合成较大成分形成的。已区分出网络成分层次结构中的以下级别:1 - 3微米宽的细丝、0.1 - 0.35微米宽的股线以及70 - 250埃宽的单位细丝股线。微分干涉显微镜从网络中选择与轴突长轴成特定角度取向的细丝。该特定角度取决于轴突长轴相对于剪切方向的取向。据推测,网络结构在轴浆的固态特性中得以体现,而这些特性对于神经纤维的正常功能至关重要。

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