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无尾两栖类视神经的精细解剖——一项电子显微镜研究

The fine anatomy of the optic nerve of anurans--an electron microscope study.

作者信息

MATURANA H R

出版信息

J Biophys Biochem Cytol. 1960 Feb;7(1):107-20. doi: 10.1083/jcb.7.1.107.

Abstract

In the optic nerve of Anurans numerous myelinated and unmyelinated axons appear under the electron microscope as compact bundles that are closely bounded by one or several glial cells. In these bundles the unmyelinated fibers (0.15 to 0.6 micro in diameter) are many times more numerous than the myelinated fibers, and are separated from each other, from the bounding glial cells, or from adjacent myelin sheaths, by an extracellular gap that is 90 to 250 A wide. This intercellular space is continuous with the extracellular space in the periphery of the nerve through the numerous mesaxons and cell boundaries which reach the surface. Numerous desmosomes reinforce the attachments of adjacent glial membranes. The myelinated axons do not follow any preferential course and, like the unmyelinated ones, have a sinuous path, continuously shifting their relative position and passing from one bundle to another. At the nodes of Ranvier they behave entirely like unmyelinated axons in their relations to the surrounding cells. At the internodes they lie between the unmyelinated axons without showing an obvious myelogenic connection with the surrounding glial cells. In the absence of connective tissue separating individual myelinated fibers and with each glial cell simultaneously related to many axons, this myelogenic connection is highly distorted by other passing fibers and is very difficult to demonstrate. However, the mode of ending of the myelin layers at the nodes of Ranvier and the spiral disposition of the myelin layers indicate that myelination of these fibers occurs by a process similar to that of peripheral nerves. There are no incisures of Schmidt-Lantermann in the optic myelinated fibers.

摘要

在无尾两栖类动物的视神经中,大量有髓鞘和无髓鞘的轴突在电子显微镜下呈现为紧密的束状结构,由一个或几个神经胶质细胞紧密包裹。在这些束状结构中,无髓鞘纤维(直径0.15至0.6微米)的数量比有髓鞘纤维多许多倍,并且彼此之间、与包裹它们的神经胶质细胞或相邻的髓鞘之间,被一个宽90至250埃的细胞外间隙分隔开。这个细胞间隙通过众多到达神经表面的轴系膜和细胞边界,与神经外周的细胞外间隙相连。大量的桥粒加强了相邻神经胶质细胞膜的附着。有髓鞘的轴突没有特定的走向,与无髓鞘轴突一样,呈蜿蜒曲折的路径,不断改变它们的相对位置,并从一个束状结构进入另一个束状结构。在郎飞结处,它们与周围细胞的关系完全类似于无髓鞘轴突。在结间段,它们位于无髓鞘轴突之间,与周围神经胶质细胞没有明显的髓鞘形成连接。由于没有结缔组织将单个有髓鞘纤维分隔开,并且每个神经胶质细胞同时与许多轴突相关,这种髓鞘形成连接被其他通过的纤维严重扭曲,很难显示出来。然而,髓鞘层在郎飞结处的终止方式以及髓鞘层的螺旋状排列表明,这些纤维的髓鞘形成过程与周围神经相似。视神经中有髓鞘纤维没有施密特 - 兰特尔切迹。

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本文引用的文献

1
OBSERVATIONS IN MYELIN STRUCTURE: INCISURES AND NODAL REGIONS.
Proc Natl Acad Sci U S A. 1958 Feb;44(2):152-6. doi: 10.1073/pnas.44.2.152.
2
Internode lengths in the nerves of fishes.
J Anat. 1949 Oct;83(4):336-50, pl.
3
Growth changes in the myelin sheath of peripheral nerve fibres in fishes.
Proc R Soc Lond B Biol Sci. 1955 Mar 15;143(912):380-91. doi: 10.1098/rspb.1955.0018.
4
Active transport of cations in giant axons from Sepia and Loligo.
J Physiol. 1955 Apr 28;128(1):28-60. doi: 10.1113/jphysiol.1955.sp005290.
6
Cellular mechanism of myelination in the central nervous system.
J Biophys Biochem Cytol. 1958 Sep 25;4(5):651-6. doi: 10.1083/jcb.4.5.651.
8
Observations on the fine structure of the turtle atrium.
J Biophys Biochem Cytol. 1958 Jan 25;4(1):63-72. doi: 10.1083/jcb.4.1.63.
9
The ultrastructure of Schmidt-Lanterman clefts and related shearing defects of the myelin sheath.
J Biophys Biochem Cytol. 1958 Jan 25;4(1):39-46. doi: 10.1083/jcb.4.1.39.
10
Electron microscope studies of the formation of nodes of Ranvier in mouse sciatic nerves.
J Biophys Biochem Cytol. 1957 Jul 25;3(4):589-98. doi: 10.1083/jcb.3.4.589.

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