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背根及背根神经节神经纤维分支中转运物质的路径

Routing of transported materials in the dorsal root and nerve fiber branches of the dorsal root ganglion.

作者信息

Ochs S, Erdman J, Jersild R A, McAdoo V

出版信息

J Neurobiol. 1978 Nov;9(6):465-81. doi: 10.1002/neu.480090606.

Abstract

After injection of the L7 dorsal root ganglion with 3H-leucine, fast axoplasmic transport carries some 3--5 x more labeled materials down the sensory fibers branches entering the sciatic nerve as compared to the dorsal root fiber branches of the neurons. Freeze-substitution preparations taken from the two sides of the lumbar seventh dorsal root ganglia of cats and monkeys showed little difference in the histograms of nerve fiber diameters of the sensory nerve fiber branch of these neurons as compared to the dorsal root fiber branches. A similar density of microtubules and of neurofilaments in the dorsal root and sensory nerve fiber branches over a wide range of fiber diameters was found in electron micrograph preparations. In the absence of an anatomical difference in the fibers to account for the asymmetrical outflow, a functional explanation based on the transport filament model was advanced.

摘要

用³H-亮氨酸注射L7背根神经节后,快速轴浆运输携带的标记物质沿着进入坐骨神经的感觉纤维分支向下运输的量,比神经元的背根纤维分支多约3至5倍。从猫和猴的第七腰段背根神经节两侧获取的冷冻置换标本显示,与背根纤维分支相比,这些神经元感觉神经纤维分支的神经纤维直径直方图差异不大。在电子显微镜标本中发现,在很宽的纤维直径范围内,背根和感觉神经纤维分支中的微管和神经丝密度相似。由于在纤维方面不存在解剖学差异来解释不对称的传出,于是提出了基于运输细丝模型的功能解释。

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