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新生大鼠骨骼肌的多神经元支配及其在成熟过程中的消除。

Polyneuronal innervation of skeletal muscle in new-born rats and its elimination during maturation.

作者信息

Brown M C, Jansen J K, Van Essen D

出版信息

J Physiol. 1976 Oct;261(2):387-422. doi: 10.1113/jphysiol.1976.sp011565.

Abstract
  1. The events taking place during the elimination of polyneuronal innervation in the soleus muscle of new-born rats have been studied using a combination of electrophysiological and anatomical techniques. 2. Each immature muscle fibre is supplied by two or more motor axons which converge on to a single end-plate. There was no sign of electrical coupling between muscle fibres receiving multiple synaptic inputs. By the end of the second week after birth virtually all muscle fibres are innervated by only a single motor axon. 3. The average tension produced by individual motor units, measured in terms of the percentage of the total muscle twitch tension, declined dramatically during the first 2 weeks after birth. During this period there was no significant change in the number of motor neurones innervating the soleus muscle. Thus, the disappearance of polyneuronal innervation reflects a decrease in the number of peripheral synapses made by each motor neurone. 4. The decline in motor unit size was delayed, but not ultimately prevented, by the early surgical removal of all but a few motor axons to the soleus muscle. This procedure also caused a delay in the removal of polyneuronal innervation involving the remaining motor units. 5. Following a crush of the soleus nerve in neonatal animals, regenerating axons usually returned to the original end-plates. Polyneuronal innervation was extensive at early stages of re-innervation and it disappeared during the second week after birth just as in normal muscles. 6. Cross-innervation of neonatal muscles by an implanted foreign nerve caused a rapid disappearance of cholinesterase at denervated original end-plates and in most fibres prevented re-innervation by the original nerve. In the small proportion of fibres that did become innervated through both the foreign and original nerves the end-plates were more than 1 mm apart, and both foreign and original nerve end-plates could persist indefinitely. 7. Many cross-innervated fibres received multiple inputs through the foreign nerve. Some foreign end-plates were separated by distances ranging up to 1 mm. Polyneuronal innervation through the foreign nerve was completely eliminated during maturation but over a slightly longer period than in normal muscles. Apparently the elimination process can act over a distance up to but not much more than 1 mm. 8. These observations suggest that there are several factors influencing the elimination of redundant inputs in immature muscles. Individual motor neurones appear to have an inherent tendency to withdraw the majority of their original complement of peripheral terminals. The determination of which particular synapses are to survive, however, seems to be made in the periphery by a selection among all the synapses that innervate a limited region of each muscle fibre. There may be a competitive interaction among synapses in which those belonging to smaller motor units are less likely to be eliminated, thereby leading to a relatively uniform size of the motor units in the soleus.
摘要
  1. 采用电生理和解剖学技术相结合的方法,研究了新生大鼠比目鱼肌多神经元支配消除过程中发生的事件。2. 每条未成熟的肌纤维由两条或更多运动轴突供应,这些轴突汇聚到单个终板上。接受多个突触输入的肌纤维之间没有电耦合的迹象。出生后第二周结束时,几乎所有肌纤维仅由单个运动轴突支配。3. 以总肌肉抽搐张力的百分比衡量,单个运动单位产生的平均张力在出生后的前两周内急剧下降。在此期间,支配比目鱼肌的运动神经元数量没有显著变化。因此,多神经元支配的消失反映了每个运动神经元外周突触数量的减少。4. 早期手术切除除少数支配比目鱼肌的运动轴突外的所有轴突,运动单位大小的下降被延迟,但最终并未阻止。该手术还导致涉及其余运动单位的多神经元支配的消除延迟。5. 新生动物比目鱼神经挤压后,再生轴突通常回到原来的终板。再支配早期多神经元支配广泛,出生后第二周就像正常肌肉一样消失。6. 植入的外来神经对新生肌肉进行交叉支配,导致去神经的原终板处胆碱酯酶迅速消失,并且在大多数纤维中阻止了原神经的再支配。在通过外来神经和原神经都实现支配的一小部分纤维中,终板相距超过1毫米,外来神经和原神经终板都可以无限期持续存在。7. 许多交叉支配的纤维通过外来神经接受多个输入。一些外来终板相距可达1毫米。通过外来神经的多神经元支配在成熟过程中完全消除,但比正常肌肉所需时间略长。显然,消除过程可作用的距离可达但不超过1毫米。8. 这些观察结果表明,有几个因素影响未成熟肌肉中冗余输入的消除。单个运动神经元似乎有一种内在倾向,即撤回其大部分原来的外周终末。然而,哪些特定突触能够存活的决定似乎是在周围通过对支配每条肌纤维有限区域的所有突触进行选择来做出的。突触之间可能存在竞争性相互作用,其中属于较小运动单位的突触不太可能被消除,从而导致比目鱼肌中运动单位大小相对均匀。

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