神经再支配
去神经支配
神经肌肉接头
神经传导速度
等长运动
心肌细胞
肌发生
纤颤
医学
解剖
肌肉纤维
乙酰胆碱受体
再生(生物学)
内科学
神经科学
生物
骨骼肌
细胞生物学
心房颤动
受体
作者
Huan Wang,Peng Wu,Aditya Chawla,RobertJ Spinner,Cong Yu,MichaelJ Yaszemski,AnthonyJ Windebank
标识
DOI:10.4103/1673-5374.143424
摘要
The neuromuscular junction becomes progressively less receptive to regenerating axons if nerve repair is delayed for a long period of time. It is difficult to ascertain the denervated muscle's residual receptivity by time alone. Other sensitive markers that closely correlate with the extent of denervation should be found. After a denervated muscle develops a fibrillation potential, muscle fiber conduction velocity, muscle fiber diameter, muscle wet weight, and maximal isometric force all decrease; remodeling increases neuromuscular junction fragmentation and plantar area, and expression of myogenesis-related genes is initially up-regulated and then down-regulated. All these changes correlate with both the time course and degree of denervation. The nature and time course of these denervation changes in muscle are reviewed from the literature to explore their roles in assessing both the degree of detrimental changes and the potential success of a nerve repair. Fibrillation potential amplitude, muscle fiber conduction velocity, muscle fiber diameter, mRNA expression levels of myogenic regulatory factors and nicotinic acetylcholine receptor could all reflect the severity and length of denervation and the receptiveness of denervated muscle to regenerating axons, which could possibly offer an important clue for surgical choices and predict the outcomes of delayed nerve repair.
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