首页> 外文期刊>BioMed research international >The Parameters of Transcutaneous Electrical Nerve Stimulation Are Critical to Its Regenerative Effects When Applied Just after a Sciatic Crush Lesion in Mice
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The Parameters of Transcutaneous Electrical Nerve Stimulation Are Critical to Its Regenerative Effects When Applied Just after a Sciatic Crush Lesion in Mice

机译:当在坐骨神经痛性病变后立即使用小鼠时,经皮神经电刺激的参数对其再生作用至关重要。

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We investigated the effect of two frequencies of transcutaneous electrical nerve stimulation (TENS) applied immediately after lesion on peripheral nerve regeneration after a mouse sciatic crush injury. The animals were anesthetized and subjected to crushing of the right sciatic nerve and then separated into three groups: nontreated, Low-TENS (4 Hz), and High-TENS (100 Hz). The animals of Low- and High-TENS groups were stimulated for 2 h immediately after the surgical procedure, while the nontreated group was only positioned for the same period. After five weeks the animals were euthanized, and the nerves dissected bilaterally for histological and histomorphometric analysis. Histological assessment by light and electron microscopy showed that High-TENS and nontreated nerves had a similar profile, with extensive signs of degeneration. Conversely, Low-TENS led to increased regeneration, displaying histological aspects similar to control nerves. High-TENS also led to decreased density of fibers in the range of 6–12 μm diameter and decreased fiber diameter and myelin area in the range of 0–2 μm diameter. These findings suggest that High-TENS applied just after a peripheral nerve crush may be deleterious for regeneration, whereas Low-TENS may increase nerve regeneration capacity.
机译:我们调查了在小鼠坐骨神经挤压伤后病变立即施加的两种频率的经皮电神经刺激(TENS)对周围神经再生的影响。将动物麻醉并压迫右坐骨神经,然后分成三组:未治疗组,低TENS(4 Hz)和High-TENS(100 Hz)。低-和高-TENS组的动物在手术后立即受刺激2小时,而未治疗组仅放置相同的时间。五周后,对动物实施安乐死,并双侧解剖神经以进行组织学和组织形态分析。通过光学和电子显微镜的组织学评估显示,高TENS神经和未经处理的神经具有相似的特征,并具有广泛的变性迹象。相反,低TENS导致再生增加,显示出类似于控制神经的组织学特征。高TENS还导致直径在6-12μm范围内的纤维密度降低,直径在0-2μm范围内的纤维直径和髓鞘面积降低。这些发现表明,在周围神经压迫后立即应用高TENS可能对再生有害,而低TENS可能会增加神经再生能力。

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