Lu Ming-Chin, Ho Chien-Yi, Hsu Sheng-Feng, Lee Han-Chung, Lin Jia-Horng, Yao Chun-Hsu, Chen Yueh-Sheng
School of Post Baccalaureate Chinese Medicine, China Medical University, Taichung, Taiwan.
Neurorehabil Neural Repair. 2008 Jul-Aug;22(4):367-73. doi: 10.1177/1545968307313507.
Electrical stimulation of damaged peripheral nerve may aid regeneration.
The purpose of this study was to determine whether 1 mA of percutaneous electrical stimulation at 1, 2, 20, or 200 Hz augments regeneration between the proximal and distal nerve stumps.
A10-mm gap was made in rat sciatic nerve by suturing the stumps into silicone rubber tubes. A control group received no stimulation. Starting 1 week after transection, electrical stimulation was applied between the cathode placed at the distal stump and the anode at the proximal stump every other day for 6 weeks.
Higher frequency stimulation led to less regeneration compared to lower frequencies. Quantitative histology of the successfully regenerated nerves revealed that the groups receiving electrical treatment, especially at 2 Hz, had a more mature structure with a smaller cross-sectional area, more myelinated fibers, higher axon density, and higher ratio of blood vessel to total nerve area compared with the controls. Electrophysiology showed significantly shorter latency, longer duration, and faster conduction velocity.
Electrical stimulation can have either a positive or negative impact on peripheral nerve regeneration. Clinical trials that combine stimulation with rehabilitation must determine the parameters that are most likely to be safe and effective.
对受损周围神经进行电刺激可能有助于其再生。
本研究旨在确定1毫安的经皮电刺激,频率为1、2、20或200赫兹时,是否能增强近端和远端神经残端之间的再生。
通过将大鼠坐骨神经残端缝合到硅橡胶管中,制造出10毫米的间隙。对照组不接受刺激。在横断后1周开始,每隔一天在置于远端残端的阴极和近端残端的阳极之间施加电刺激,持续6周。
与较低频率相比,较高频率的刺激导致再生较少。对成功再生神经的定量组织学分析显示,接受电刺激治疗的组,尤其是2赫兹组,与对照组相比,具有更成熟的结构,横截面积更小,有髓纤维更多,轴突密度更高,血管与总神经面积的比率更高。电生理学显示潜伏期明显缩短,持续时间延长,传导速度加快。
电刺激对周围神经再生可能有积极或消极影响。将刺激与康复相结合的临床试验必须确定最有可能安全有效的参数。