Zhivolupov Sergey A, Odinak Miroslav M, Rashidov Nariman A, Onischenko Ludmila S, Samartsev Igor N, Jurin Anton A
Department of Neurology, Military-Medical Academy, Saint-Petersburg, 194044, Lesnoy prospect 2, Russian Federation.
Neural Regen Res. 2012 Jun 15;7(17):1299-303. doi: 10.3969/j.issn.1673-5374.2012.17.003.
The current studies describing magnetic stimulation for treatment of nervous system diseases mainly focus on transcranial magnetic stimulation and rarely focus on spinal cord magnetic stimulation. Spinal cord magnetic stimulation has been confirmed to promote neural plasticity after injuries of spinal cord, brain and peripheral nerve. To evaluate the effects of impulse magnetic stimulation of the spinal cord on peripheral nerve regneration, we compressed a 3 mm segment located in the middle third of the hip using a sterilized artery forceps to induce ischemia. Then, all animals underwent impulse magnetic stimulation of the lumbar portion of spinal crod and spinal nerve roots daily for 1 month. Electron microscopy results showed that in and below the injuryed segment, the inflammation and demyelination of neural tissue were alleviated, apoptotic cells were reduced, and injured Schwann cells and myelin fibers were repaired. These findings suggest that high-frequency impulse magnetic stimulation of spinal cord and corresponding spinal nerve roots promotes synaptic regeneration following sciatic nerve injury.
目前描述磁刺激治疗神经系统疾病的研究主要集中在经颅磁刺激,很少关注脊髓磁刺激。脊髓磁刺激已被证实可促进脊髓、脑和周围神经损伤后的神经可塑性。为了评估脊髓脉冲磁刺激对周围神经再生的影响,我们用无菌动脉钳压迫位于髋部中三分之一处的3毫米节段以诱导缺血。然后,所有动物每天接受脊髓腰段和脊神经根的脉冲磁刺激,持续1个月。电子显微镜结果显示,在损伤节段及其下方,神经组织的炎症和脱髓鞘减轻,凋亡细胞减少,受损的雪旺细胞和髓鞘纤维得到修复。这些发现表明,脊髓和相应脊神经根的高频脉冲磁刺激可促进坐骨神经损伤后的突触再生。