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Determining the effects of electrical stimulation on functional recovery of denervated rat gastrocnemius muscle using motor unit number estimation

机译:测定电动刺激对使用电动机单元数量估计去除老鼠胃肠肌肌功能的影响

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The use of electrical muscle stimulation to treat denervated muscle prior to delayed reinnervation has been widely debated. There is evidence showing both positive and negative results following different protocols of electrical stimulation. In this study we investigated the role electrical stimulation has on muscle reinnervation following immediate and delayed nerve repair using motor unit estimation techniques. Rat gastrocnemius muscle was denervated and repaired using the peroneal nerve either immediately or following three-months with and without electrical stimulation. Motor unit counts, average motor unit sizes, and maximum compound action potentials were measured three-months following per-oneal nerve repair. Motor unit counts in animals that were denervated and stimulated were significantly higher than those that were denervated and not stimulated. Both average motor unit sizes and maximum compound action potentials showed no significant differences between denervated and denervated-stimulated animals. These results provide evidence that electrical stimulation prior to delayed nerve repair increases muscle receptivity to regenerating axons and may be a worthwhile treatment for peripheral nerve injuries.
机译:在延迟重新延迟之前,使用电肌刺激治疗方便肌肉已被广泛讨论。有证据表明在不同的电刺激协议之后显示正负结果。在这项研究中,我们研究了使用电机单元估计技术立即和延迟神经修复后的肌肉重新肌肉的作用。大鼠胃肠肌肌肉被立即或在三个月内使用腓骨神经使用,并且没有电刺激。电机单元计数,平均电机单元尺寸和最大复合作用电位在每次上神经修复后三个月测量。运动器单元的血液分配和刺激的动物显着高于那些不刺激的动物。两个平均电机单元尺寸和最大复合作用电位显示出不分定位和不置向的动物之间没有显着差异。这些结果提供了证据,即在延迟神经修复之前的电刺激增加了再生轴突的肌肉接受,并且可能是对周围神经损伤的有价值的治疗方法。

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