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与大鼠去神经肌肉相比,无神经再生肌肉的收缩特性。

Contractile properties of aneurally regenerated compared with denervated muscles of rat.

作者信息

Lewis D M, Schmalbruch H

机构信息

Department of Physiology, Medical School, Bristol, UK.

出版信息

J Muscle Res Cell Motil. 1994 Jun;15(3):267-77. doi: 10.1007/BF00123479.

Abstract

The time course of aneural regeneration in slow-twitch soleus muscles of young adult rats was studied and compared with the changes following denervation in soleus and fast extensor digitorum longus muscles. Regeneration was induced by auto-grafting after treatment with bupivacaine; isometric contractions were recorded from 5 to 70 days later. Force was detected at 5 days; at 12 days force was maximal (at least 20% of original) and thereafter fell exponentially. Force varied normally with total fibre area, except at 5 and 71 days when force generating capacity was low. Contraction and relaxation in the twitch were longer than normal (maximally at 5 days), and were closer to denervated soleus than EDL; in contrast, the maximal rate of rise of force was as high as that of denervated EDL and much higher than in denervated soleus. It is suggested that the muscle was fundamentally fast contracting, but the twitches were probably slow because of greater than normal activation following a single stimulus--a hypothesis supported by twitch:tetanus ratios that were higher than in denervated muscles. Tetanic force was much more sensitive than normal to changes of muscle length from optimum, despite the fact that the lengths of regenerated muscles were similar to those of contralateral muscles. The properties of denervated soleus gradually approached those of regenerated soleus, probably because of replacement of original fibres by regenerated ones.

摘要

研究了成年幼鼠慢肌比目鱼肌无神经支配后的再生时间进程,并与比目鱼肌和快肌趾长伸肌去神经支配后的变化进行了比较。用布比卡因处理后通过自体移植诱导再生;在5至70天后记录等长收缩。在第5天检测到力量;在第12天力量达到最大(至少为原始力量的20%),此后呈指数下降。除了在第5天和第71天力量产生能力较低时,力量与总纤维面积正常变化。单收缩的收缩和舒张时间比正常时长(在第5天达到最大值),且比去神经支配的趾长伸肌更接近去神经支配的比目鱼肌;相比之下,力量的最大上升速率与去神经支配的趾长伸肌一样高,且远高于去神经支配的比目鱼肌。有人提出,该肌肉本质上是快速收缩的,但由于单次刺激后激活程度高于正常,所以单收缩可能较慢——这一假设得到了比去神经支配肌肉更高的单收缩:强直收缩比率的支持。尽管再生肌肉的长度与对侧肌肉相似,但强直力量对肌肉长度偏离最佳值的变化比正常情况更敏感。去神经支配的比目鱼肌的特性逐渐接近再生比目鱼肌的特性,可能是因为原始纤维被再生纤维所替代。

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