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外周视野改变对发育中大鼠比目鱼肌运动神经元功能的影响。

The effect of altered peripheral field on motoneurone function in developing rat soleus muscles.

作者信息

Lowrie M B, O'Brien R A, Vrbová G

出版信息

J Physiol. 1985 Nov;368:513-24. doi: 10.1113/jphysiol.1985.sp015873.

DOI:10.1113/jphysiol.1985.sp015873
PMID:2867219
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1192612/
Abstract

In soleus muscles of 4- to 5-day-old rats the quantum content of axon terminals from L4 spinal roots is less than half that from L5. With development the size of L4 motor units decreases and the quantum content of L4 nerves increases to become similar to that of L5 axons. During this time the overlap of territories of L4 and L5 axons is reduced from 46% at 4-6 days to 2% at 18-20 days. This reduction occurs entirely at the expense of L4 territory. Removal of the L5 ventral ramus (v.r.) at 4-6 days prevents the reduction of L4 territory so that at 18 days L4 motor units are about 4 X normal size. In spite of this enlarged peripheral field of L4 axons the quantum content of their terminals increases to normal levels. When L5 v.r. was removed at 16-18 days, i.e. when the reduction of the L4 peripheral field was complete, expansion of L4 motor units was also seen, but in this case the quantum content of L4 terminals was less than normal. Thus it appears that during early stages of development, before synaptic reorganization within the muscle is complete, motoneurones are able to adapt their function to increased peripheral demands more effectively than at later stages of post-natal development. Retrograde labelling of soleus motor pool with horseradish peroxidase (HRP) showed that removal of L5 v.r. either at 4 or 15 days of age reduced the number of motoneurones supplying soleus muscle to less than 20%. No change in size of the remaining motoneurones was seen, indicating that the adjustment of transmitter output at the neuromuscular junctions in the younger group had no effect on the size of the cell.

摘要

在4至5日龄大鼠的比目鱼肌中,来自L4脊髓神经根的轴突终末的量子含量不到来自L5的一半。随着发育,L4运动单位的大小减小,L4神经的量子含量增加,变得与L5轴突的相似。在此期间,L4和L5轴突的支配区域重叠从4至6日龄时的46%减少到18至20日龄时的2%。这种减少完全是以L4支配区域为代价的。在4至6日龄时切除L5腹侧支,可防止L4支配区域的减少,因此在18日龄时,L4运动单位约为正常大小的4倍。尽管L4轴突的外周支配区域扩大,但其终末的量子含量仍增加到正常水平。当在16至18日龄时切除L5腹侧支,即当L4外周支配区域的减少完成时,也可见L4运动单位的扩大,但在这种情况下,L4终末的量子含量低于正常水平。因此,似乎在发育早期,在肌肉内突触重组完成之前,运动神经元比在出生后发育的后期阶段能够更有效地使其功能适应外周需求的增加。用辣根过氧化物酶(HRP)对比目鱼肌运动池进行逆行标记显示,在4日龄或15日龄时切除L5腹侧支,可使支配比目鱼肌的运动神经元数量减少到不到20%。未见其余运动神经元大小有变化,这表明较年轻组神经肌肉接头处递质输出的调节对细胞大小没有影响。

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本文引用的文献

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DYNAMIC PROPERTIES OF FAST AND SLOW SKELETAL MUSCLES OF THE RAT DURING DEVELOPMENT.大鼠发育过程中快、慢骨骼肌的动态特性
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Selective elimination of motor nerve terminals in the rat soleus muscle during development.发育过程中大鼠比目鱼肌运动神经末梢的选择性消除。
J Physiol. 1980 Dec;309:631-46. doi: 10.1113/jphysiol.1980.sp013531.
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J Physiol. 1983 Feb;335:343-52. doi: 10.1113/jphysiol.1983.sp014538.
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On the release of transmitter at normal, myasthenia gravis and myasthenic syndrome affected human end-plates.在正常、重症肌无力及肌无力综合征患者的终板处递质释放情况。
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The extent of sprouting of remaining motor units in partly denervated immature and adult rat soleus muscle.部分去神经支配的未成熟和成年大鼠比目鱼肌中剩余运动单位的发芽程度。
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