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首页> 外文期刊>Bioelectromagnetics: Journal of the Bioelectromagnetics Society >The influence of continuous exposure to 50 Hz electric field on nerve regeneration in a rat peroneal nerve crush injury model.
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The influence of continuous exposure to 50 Hz electric field on nerve regeneration in a rat peroneal nerve crush injury model.

机译:在大鼠腓神经挤压损伤模型中,连续暴露于 50 Hz 电场对神经再生的影响。

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The effect of power frequency electric field (EF) on nerve regeneration was investigated on a rat peroneal nerve crush injury model. The animals were assigned to three groups: 50 Hz EF and Static EF groups were exposed at 10 kV/m. The sham group was kept in the same setting without any EF applications. EF was uninterruptedly applied for 21 days postoperatively. Repeated measures analysis of daily walking tracks during EF exposure demonstrated lower toe spread recovery (TSR) in the 50 Hz EF group. Significant difference across the groups was found only at days 7, 8, 12, 16, 17, 20, and 21 when TSR was analyzed for each measurement time. Print length recovery and peroneal function index did not differ across the groups. Walking track parameters were found to recover to their baseline values by day 28 in all groups. Day 14 but not day 21 measurements revealed smaller nerve cross-sectional area, lower total regenerating axon area, and higher mean myelin debris area in 50 Hz EF group. Both day 14 and 21 measurements revealed higher total myelin debris area, lower EDL muscle weight, and lack of significant enlargement in nerve cross-section distal to the injury, compared to the normal counterpart in 50 Hz EF group. All differences were in keeping with lower rates of Wallerian degeneration and nerve regeneration in 50 Hz EF group. When walking track, histomorphometry and muscle weight are considered individually, their differences across the groups may appear to be subtle to derive a conclusion for a 50 Hz EF effect. However, their concordance with each other in direction of effect suggests that continuous 50 Hz EF exposure has a weak effect that is detrimental mostly to the rate of early nerve regeneration in this axonotmetic injury model. Recovery of walking tracks was not different between Static EF and Sham groups. This suggests that the surface charges that may indirectly affect walking behaviors of the rats, do not account for the lower recovery of TSR in 50 Hz EF group. Differences in nerve regenerationbetween 50 Hz EF and Static EF groups suggests that electric induction may be required for pure EF effects even though the estimated density of induced fields is not above the endogenous background level for the 50 Hz EF exposure in this study.
机译:在大鼠腓神经挤压损伤模型上研究了工频电场(EF)对神经再生的影响。将动物分为三组:50 Hz EF组和静态EF组暴露在10 kV / m下。假组保持在相同的设置中,没有任何 EF 应用程序。EF术后21天不间断应用。对 EF 暴露期间每日步行轨迹的重复测量分析表明,50 Hz EF 组的脚趾扩张恢复 (TSR) 较低。仅在第 7、8、12、16、17、20 和 21 天分析每个测量时间的 TSR 时,发现两组之间的显着差异。各组的打印长度恢复和腓骨功能指数没有差异。发现所有组的步行道参数在第 28 天恢复到基线值。第 14 天而不是第 21 天的测量显示,50 Hz EF 组的神经横截面积较小,总再生轴突面积较低,平均髓鞘碎片面积较高。第 14 天和第 21 天的测量结果均显示,与 50 Hz EF 组的正常对应物相比,总髓鞘碎片面积更高,EDL 肌肉重量更低,损伤远端神经横截面没有显着扩大。所有差异均与 50 Hz EF 组的 Wallerian 变性和神经再生率较低一致。当单独考虑步行轨迹、组织形态测量和肌肉重量时,它们在各组之间的差异可能看起来很微妙,无法得出 50 Hz EF 效应的结论。然而,它们在作用方向上的一致性表明,连续 50 Hz EF 暴露具有微弱的影响,主要对这种轴突损伤模型中的早期神经再生速率有害。静态EF组和Sham组之间的步行道恢复没有差异。这表明可能间接影响大鼠行走行为的表面电荷并不能解释 50 Hz EF 组中 TSR 的较低回收率。50 Hz EF 组和静态 EF 组之间神经再生的差异表明,即使本研究中 50 Hz EF 暴露的估计诱导场密度不高于内源性背景水平,纯 EF 效应也可能需要电感应。

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