首页> 美国卫生研究院文献>The Journal of Physiology >Different pattern of recovery of fast and slow muscles following nerve injury in the rat.
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Different pattern of recovery of fast and slow muscles following nerve injury in the rat.

机译:大鼠神经损伤后快慢肌恢复的不同模式。

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摘要

The sciatic nerve was crushed in 5-6-day-old rats and the time course of recovery and changes in physiological and morphological properties of reinnervated fast and slow muscles was compared. The maximal tetanic tension developed by the reinnervated muscles was recorded at different times from about 18 days of age, when functional recovery was first seen, until 2 months. The maximal indirectly elicited tetanic tension of the reinnervated slow soleus muscle gradually increased from 55% of normal at 18 days to 75% of normal at 2 months. In contrast, the tension of the reinnervated fast muscle extensor digitorum longus (e.d.l.) fell sharply from 70% of normal at 18 days to 40% at 21 days and remained at that level till the end of the study. The total number of muscle fibres in control, reinnervated and denervated e.d.l. muscles was counted. At 18 days the number of fibres in the reinnervated e.d.l. was similar to normal but by 1 month it had fallen to one-third. This decrease did not take place in permanently denervated muscles until at least 35 days. Loss of fibres in the reinnervated soleus was small. During the early stages of reinnervation the contraction and relaxation of the fast muscles was very prolonged. By 1 month the time taken to reach peak twitch tension had decreased to normal values but the relaxation was still slower and remained so for several months. The study of fatigue resistance showed that at 18 days the reinnervated fast muscles were as fatigable as normal muscles from animals of the same age. The fatigability of normal muscles increased with age to adult levels, but the reinnervated muscles became more fatigue resistant and remained so. Our findings suggest that fast muscles become selectively impaired after nerve injury at 6 days because they lose a large number of fibres after reinnervation.
机译:在5-6日龄的大鼠中,坐骨神经受到压迫,比较了恢复的时间进程以及重新支配的快,慢肌的生理和形态特性的变化。从首次出现功能恢复的大约18天龄到2个月,在不同的时间记录由神经支配的肌肉产生的最大破伤风张力。受神经支配的慢速比目鱼肌最大间接诱发的破伤风张力从18天时的正常值的55%逐渐增加到2个月时的正常值的75%。相反,神经支配的快速指趾长肌伸肌(e.d.l)的张力从18天时的正常值的70%急剧下降到21天时的40%,并一直保持该水平直至研究结束。对照,神经支配和神经支配的肌肉纤维总数e.d.l.计数肌肉。在第18天,经神经支配的e.d.l.与正常情况相似,但到1个月时已下降到三分之一。这种减少直到至少35天才在永久神经支配的肌肉中发生。经神经支配的比目鱼的纤维损失很小。在神经支配的早期,快速肌肉的收缩和松弛非常延长。到1个月时,达到最高抽搐张力的时间已减少至正常值,但松弛速度仍然较慢,并保持了几个月。对疲劳强度的研究表明,在18天后,同龄动物的神经支配的快肌与正常肌一样易疲劳。正常肌肉的可疲劳性会随着年龄的增长而增加,直至成年,但神经支配的肌肉变得更加耐疲劳,并且保持这种状态。我们的研究结果表明,快速肌肉在神经损伤后第6天会选择性受损,因为它们在神经支配后会损失大量纤维。

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