首页> 美国卫生研究院文献>The Journal of Physiology >Increase in polyneuronal innervation in frog muscle after muscle injury.
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Increase in polyneuronal innervation in frog muscle after muscle injury.

机译:肌肉受伤后青蛙肌肉中多神经支配的增加。

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摘要

The proportion of polyneuronal innervation was evaluated electrophysiologically in curare-blocked frog cutaneous pectoris muscles after local injury to the muscle fibres on one side. Focal polyneuronal innervation was revealed by recording end-plate potentials evoked by a gradual increase in the stimulus intensity applied to the motor nerve. An increase in the proportion of focally polyneuronally innervated muscle fibres appeared in the injured muscle 3-5 days after injury. The difference between the values obtained 3-5 days and 7-9 days (31 and 38%, respectively) and the control value (18%) was highly significant. A similar increase in the proportion of pluri-innervated muscle fibres was observed in the contralateral muscle, but after a longer period. The different components of complex end-plate potentials (e.p.p.s) usually had similar latencies and rise times in control and experimental muscles. This may indicate that the axons had similar conduction velocities and that synapses were located close to each other. A repeated muscle fibre section 24 h after the initial injury resulted in an enhanced polyneuronal innervation (52%) 7-9 days after the first section. The experiments were repeated on partially blocked muscles in order to detect small e.p.p.s with an amplitude similar to that of spontaneous miniature end-plate potentials (m.e.p.p.s). The proportion of polyneuronally innervated fibres estimated by this technique in control muscles approximated 40%. Polyneuronal innervation was also found to be significantly increased in cut muscles 7-9 days after muscle injury and a week later in contralateral muscles. Combined silver and cholinesterase staining was used to detect morphologically polyneuronal innervation. The comparison of morphological and electrophysiological data indicated that the increase in polyneuronal innervation after muscle injury is likely due to nerve sprouting and formation of new synapses. The results suggest that the signal for nerve sprouting originates from the damaged muscle cell and that it is transferred transneuronally to the contralateral side.
机译:在一侧肌肉纤维受到局部损伤后,用电生理学评估了咖喱阻塞的青蛙皮肤胸大肌中多神经元神经支配的比例。通过记录施加在运动神经上的刺激强度逐渐引起的终板电位来揭示局灶性多神经元神经支配。损伤后3-5天,在受伤的肌肉中出现了局灶性多神经支配的肌肉纤维比例的增加。 3-5天和7-9天(分别为31%和38%)获得的值与对照值(18%)之间的差异非常显着。在对侧肌肉中观察到了多支神经支配的肌肉纤维比例的类似增加,但是经过了更长的时间。复杂终板电位(e.p.p.s)的不同组成部分通常在控制和实验肌肉中具有相似的潜伏期和上升时间。这可能表明轴突具有相似的传导速度,并且突触彼此靠近。初次损伤后24 h重复进行肌肉纤维切片,可在第一部分后7-9天增强多神经支配(52%)。在部分受阻的肌肉上重复实验,以检测振幅与自发微型终板电位(m.e.p.p.s)相似的小e.p.p.s。通过这种技术估算的在对照肌肉中的多神经支配神经纤维的比例约为40%。还发现,在肌肉损伤后7-9天,对侧肌肉中一周后,切割后的肌肉中多神经元神经支配明显增加。联合使用银和胆碱酯酶染色来检测形态学上的多神经元神经支配。形态学和电生理学数据的比较表明,肌肉损伤后多神经元神经支配的增加可能是由于神经发芽和新突触的形成。结果表明,神经发芽的信号起源于受损的肌肉细胞,并通过神经元转移到对侧。

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