Cordeiro P G, Seckel B R, Miller C D, Gross P T, Wise R E
Department of Plastic and Reconstructive Surgery, Lahey Clinic Medical Center, Burlington, Mass.
Plast Reconstr Surg. 1989 Feb;83(2):301-8. doi: 10.1097/00006534-198902000-00017.
The effect of a high-intensity static magnetic field on peripheral nerve regeneration is evaluated in rat sciatic nerve. Forty-four rats underwent sciatic nerve repair using polyethylene nerve guides. Postoperatively, the animals were exposed to a 1-tesla magnetic field for 12 hours per day for 4 weeks with appropriate controls. Our results demonstrate that a 1-tesla static magnetic field has no statistically significant effect on nerve regeneration as determined by myelinated axon counts and electrophysiologic studies. Also, the specific orientation of the sciatic nerve with respect to the magnetic field has no influence on axonal growth or nerve conduction. Periods of restraint of 12 hours per day for 4 weeks significantly inhibit weight gain but have no effect on peripheral nerve regeneration.
在大鼠坐骨神经中评估高强度静磁场对周围神经再生的影响。44只大鼠使用聚乙烯神经导管进行坐骨神经修复。术后,将动物每天暴露于1特斯拉磁场中12小时,持续4周,并设置适当的对照组。我们的结果表明,根据有髓轴突计数和电生理研究,1特斯拉静磁场对神经再生没有统计学上的显著影响。此外,坐骨神经相对于磁场的特定方向对轴突生长或神经传导没有影响。每天约束12小时,持续4周,显著抑制体重增加,但对周围神经再生没有影响。