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使用完全植入式系统进行连续电肌肉刺激在运动神经损伤和修复后肌肉功能保存中的价值:一项实验研究。

The value of continuous electrical muscle stimulation using a completely implantable system in the preservation of muscle function following motor nerve injury and repair: an experimental study.

作者信息

Williams H B

机构信息

Department of Plastic and Reconstructive Surgery, McGill University, Montreal Children's Hospital, Quebec, Canada.

出版信息

Microsurgery. 1996;17(11):589-96. doi: 10.1002/(SICI)1098-2752(1996)17:11<589::AID-MICR5>3.0.CO;2-K.

Abstract

Functional recovery following motor nerve injury and repair is directly related to the degree of muscle atrophy that takes place during the period of nerve regeneration. The extent of this muscle atrophy is related to a number of factors including the accuracy of nerve repair; the distance through which the nerve must regenerate; the age of the patient; and the type of nerve injury and other associated tendon and soft tissue and bony damage. Atrophy of muscle that is always associated with nerve injury is a combination of disuse and degeneration. Our hypothesis proposed the following question: "Would continuous electrical stimulation of the denervated muscle during the period of nerve regeneration maintain the integrity of the muscle fibers and hence their potential functional capacity?" We have completed a series of animal studies (rabbit and canine models) in our laboratory using a completely implantable system to provide continuous muscle stimulation following nerve injury and microsurgical repair. In several different experiments, the nerves under study were cut and repaired at 4 and 12 cm from the muscles to study the effects of short- and long-term recovery. In all experiments, a beneficial effect was demonstrated with improved morphology and functional capacity of the reinnervated stimulated muscles when compared with nonstimulated controls. In addition, electrical stimulation using this implantable system could be applied for extended periods without evidence of discomfort in the experimental animals.

摘要

运动神经损伤和修复后的功能恢复与神经再生期间发生的肌肉萎缩程度直接相关。这种肌肉萎缩的程度与多种因素有关,包括神经修复的准确性;神经再生必须经过的距离;患者的年龄;神经损伤的类型以及其他相关的肌腱、软组织和骨损伤。总是与神经损伤相关的肌肉萎缩是废用和退变的综合结果。我们的假设提出了以下问题:“在神经再生期间对失神经支配的肌肉进行持续电刺激能否维持肌纤维的完整性,从而保持其潜在的功能能力?”我们在实验室中使用完全可植入系统完成了一系列动物研究(兔子和犬类模型),以便在神经损伤和显微外科修复后提供持续的肌肉刺激。在几个不同的实验中,将所研究的神经在距离肌肉4厘米和12厘米处切断并修复,以研究短期和长期恢复的效果。在所有实验中,与未受刺激的对照组相比,接受刺激的再支配肌肉的形态和功能能力得到改善,证明了电刺激具有有益效果。此外,使用这种可植入系统进行电刺激可以长时间应用,实验动物没有不适迹象。

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