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使用不同电流水平的电刺激促进大鼠周围神经损伤后的恢复。

Use of electrical stimulation at different current levels to promote recovery after peripheral nerve injury in rats.

作者信息

Lu Ming-Chin, Tsai Chin-Chuan, Chen Shih-Che, Tsai Fuu-Jen, Yao Chun-Hsu, Chen Yueh-Sheng

机构信息

School of Post Baccalaureate Chinese Medicine, China Medical University, Taichung, Taiwan.

出版信息

J Trauma. 2009 Nov;67(5):1066-72. doi: 10.1097/TA.0b013e318182351a.

Abstract

BACKGROUND

Electrical stimulation of damaged peripheral nerve may aid regeneration.

METHODS

A 10-mm gap was made in rat sciatic nerve by suturing the stumps into silicone rubber tubes. A control group received no stimulation. To determine whether 2 Hz of percutaneous electrical stimulation at 1 mA, 2 mA, or 4 mA augments regeneration between the proximal and distal nerve stumps.

RESULTS

The groups receiving electrical treatment had larger mean values of axon number, endoneurial area, total nerve area, blood vessel number, and blood vessel area compared with the controls. In addition, the group receiving electrical stimulation, especially at 1 mA had significantly shorter latency, larger amplitude, larger area of the evoked muscle action potentials and faster conduction velocity compared with the controls. However, electrical stimulation at 4 mA provoked adverse responses to the function recovery of regenerated nerves in the kinematic gait analysis.

CONCLUSION

Indeed, the electrical stimulation appears to have a detrimental effect on the regeneration process. It could promote the growth of regenerating nerves; however, excessive direct current could be repulsive to regrowing fibers. This reveals the importance for physical therapists using safe stimulus protocols for rehabilitation purposes.

摘要

背景

对受损外周神经进行电刺激可能有助于神经再生。

方法

通过将大鼠坐骨神经残端缝合到硅橡胶管中制造10毫米的间隙。对照组不接受刺激。以确定1毫安、2毫安或4毫安的2赫兹经皮电刺激是否能增强近端和远端神经残端之间的再生。

结果

与对照组相比,接受电治疗的组在轴突数量、神经内膜面积、总神经面积、血管数量和血管面积方面的平均值更大。此外,与对照组相比,接受电刺激的组,尤其是1毫安组,诱发肌肉动作电位的潜伏期明显更短、幅度更大、面积更大且传导速度更快。然而,在运动步态分析中,4毫安的电刺激对再生神经的功能恢复产生了不良反应。

结论

实际上,电刺激似乎对再生过程有不利影响。它可以促进再生神经的生长;然而,过多的直流电可能会排斥再生纤维。这揭示了物理治疗师使用安全刺激方案进行康复治疗的重要性。

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