Oscillating field stimulation promotes recovery after spinal cord injury in rats: Assessment using behavioral, electrophysiological and histological evaluations.

Cheng Zhang, Guanghao Zhang, Aihua Wang, Changzhe Wu, Xiaolin Huo
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Abstract

OBJECTIVES We explored whether oscillating field stimulation (OFS) could efficiently promote motor function recovery in rat model of spinal cord injury. METHODS SD rats with spinal cord injury induced by Allen method was divided into two groups, experimental group rats received active stimulator units and control group rats received sham (inoperative) stimulator units. The electric field intensity was 600μV/mm, and the polarity alternated every 15 min. RESULTS The results showed that the experimental group rats had significantly better locomotor function recovery (inclined-plane testing and modified Tarlov motor grading scale) 5 weeks after the injury (P<;0.05). OFS treatment significantly decreased motor evoked potential (MEP) latency differences and amplitude differences 4 w and 8 w post injury (P<;0.05, P<;0.01). Furthermore, the number of axons was quantified by immunofluorescence staining of nerve fiber (NF), increased axon numbers were observed at 4 w and 8 w in experimental group (P<;0.05). CONCLUSIONS These findings suggest OFS can promote motor function recovery in SCI rats, and this effect may be related to the improving axon regeneration in spinal cord.
振荡场刺激促进大鼠脊髓损伤后的恢复:使用行为,电生理和组织学评估的评估。
目的探讨振荡场刺激(OFS)是否能有效促进脊髓损伤大鼠运动功能的恢复。方法将Allen法致脊髓损伤大鼠分为两组,实验组大鼠采用主动刺激装置,对照组大鼠采用假(非手术)刺激装置。结果实验组大鼠损伤后5周的运动功能恢复(斜面测试和改良Tarlov运动分级表)明显优于对照组(P<;0.05)。OFS处理显著降低损伤后4、8 w运动诱发电位潜伏期差异和幅度差异(P< 0.05, P< 0.01)。采用神经纤维(NF)免疫荧光染色定量轴突数量,实验组在4、8 w时轴突数量增多(P<;0.05)。结论OFS可促进脊髓损伤大鼠运动功能恢复,其作用可能与促进脊髓轴突再生有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.20
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