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神经蒂的兴奋阈值:初步报告。

Excitation thresholds for nerve pedicles: a preliminary report.

作者信息

Broniatowski M, Grundfest-Broniatowski S, Davies C R, Kasick J C, Jacobs G B, Nosé Y, Tucker H

机构信息

Department of Artificial Organs Research, Cleveland Clinic Foundation, OH.

出版信息

Otolaryngol Head Neck Surg. 1989 Jun;100(6):578-82. doi: 10.1177/019459988910000610.

Abstract

Ongoing interest in the rehabilitation of paralyzed musculature in the head and neck has focused on the electronic stimulation of nerve-muscle pedicles that have been reimplanted into the incapacitated effector(s). Despite visual and histochemical evidence of reinnervation, it is still not known whether the excitability of a nerve-muscle pedicle (or for that matter a direct nerve implant) is equivalent to or better than that of reinnervated or normal muscle. Such information is necessary for the eventual construction of an implantable stimulator. Eighteen rabbits were anesthetized with intramuscular xylazine and ketamine and the ansa hypoglossi nerve was cut on one side. A crossover nerve-muscle pedicle was brought in from the opposite sternothyroid muscle to the sternohyoid in nine animals; the other nine received a direct nerve implant. After a minimum neurotization period of 3 months and reexploration, an electrical stimulator capable of delivering square wave pulses of variable amplitude and width was used to determine the thresholds of contraction of the nerve pedicles, an intact motor nerve of similar size, a normal muscle, and the reinnervated strap in 16 evaluable rabbits. Strength duration curves were established. The data indicate that thresholds for nerve pedicles are equivalent to those of normal nerves and are significantly lower than those of muscle.

摘要

对头颈部瘫痪肌肉组织康复的持续关注集中在对重新植入失能效应器的神经 - 肌肉蒂进行电刺激。尽管有视觉和组织化学证据表明存在神经再支配,但仍不清楚神经 - 肌肉蒂(或者就此而言直接神经植入物)的兴奋性是否等同于或优于再支配或正常肌肉的兴奋性。此类信息对于最终构建可植入刺激器而言是必要的。18只兔子用肌肉注射甲苯噻嗪和氯胺酮麻醉,一侧的舌下神经袢被切断。9只动物中,将交叉神经 - 肌肉蒂从对侧胸骨甲状肌引入胸骨舌骨肌;另外9只接受直接神经植入。经过至少3个月的神经再生期并再次探查后,使用能够发出可变幅度和宽度的方波脉冲的电刺激器,测定16只可评估兔子的神经蒂、大小相似的完整运动神经、正常肌肉以及再支配的带状肌的收缩阈值。建立了强度 - 时间曲线。数据表明,神经蒂的阈值与正常神经的阈值相当,且显著低于肌肉的阈值。

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