大鼠肌纺锤体内纤维的运动神经支配:动态和静态系统的不完全分离。

J M Walro, J Kucera
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引用次数: 41

摘要

利用大鼠比目鱼肌13个纺锤极1微米厚横切面,重建了53个运动轴突在不同类型流内纤维上的分布。支配纺锤极的运动轴突平均为4.1个。大约60%的运动轴突在进入主轴周围液体空间之前或之后不久失去髓鞘。核袋纤维近赤道部分的运动神经支配(特别是bag1)由一组短的突触接触组成,这些接触是薄的无髓鞘轴突的末端。相反,在极性囊内区,bag1和bag2纤维的运动末梢呈板状。链状纤维有一个单一的中极片状末端。仅支配bag1纤维的运动轴突与支配bag2和/或链纤维的轴突的比例为1:1。然而,四分之一的运动轴突与静态bag2和/或链纤维共同支配动态bag1纤维。因此,在猫腱状肌纺锤体中观察到的动态bag1和静态bag2灌注系统的运动控制完全分离,既不能代表所有其他哺乳动物的运动神经支配模式,也不是正常纺锤体功能所必需的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Motor innervation of intrafusal fibers in rat muscle spindles: incomplete separation of dynamic and static systems.

Distributions of 53 motor axons to different types of intrafusal fibers were reconstructed from serial 1-micron-thick transverse sections of 13 poles of spindles in the rat soleus muscle. The mean number of motor axons that innervated a spindle pole was 4.1. Approximately 60% of motor axons lost their myelination prior to or shortly after entry into the periaxial fluid space of spindles. Motor innervation to the juxtaequatorial portion of nuclear bag fibers (particularly the bag1) consisted of groups of short, synaptic contacts that were terminations of thin, unmyelinated axons. In contrast, motor endings on both the bag1 and bag2 fibers were platelike in the polar intracapsular region. Chain fibers had a single midpolar platelike ending. The ratio of motor axons that innervated the bag1 fiber exclusively to axons that innervated bag2 and/or chain fibers was 1:1. However, one-fourth of motor axons coinnervated the dynamic bag1 fiber in conjunction with static bag2 and/or chain fibers. Thus the complete separation of motor control of the dynamic bag1 and static bag2 intrafusal systems observed in cat tenuissimus spindles is neither representative of the pattern of motor innervation in all other species of mammals nor essential to normal spindle function.

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