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通过一个简单的功能性电刺激(FES)系统验证的、用于恢复单侧面神经麻痹兔眨眼功能的有效刺激脉冲。

The effective stimulating pulse for restoration of blink function in unilateral facial nerve paralysis rabbits, verified by a simple FES system.

作者信息

Jie Tan, Zhiqiang Gao, Guodong Feng, Yubin Xue, Xiuyong Ding, Tingting Cui, Yang Zhao

机构信息

Department of Otolaryngology, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, No.1 Shuaifuyuan Wangfujing, Eastern District, Beijing, 100730, People's Republic of China.

Department of Otolaryngology, Beijing Tian Tan Hospital, Capital Medical Univercity, Beijing, China.

出版信息

Eur Arch Otorhinolaryngol. 2016 Oct;273(10):2959-64. doi: 10.1007/s00405-015-3884-2. Epub 2016 Jan 7.

Abstract

The trains of 200 ms biphasic square pulses with the width of 9 ms delivered at 50 Hz were found to be the most suitable and effective mean as stimulation in FES system of restoring the blink function in unilateral facial nerve paralysis rabbit model. FES system is a reliable tool for these patients. Facial paralysis affects thousands of people every year. Many will have long term facial difficulties and the loss of the ability to blink the eye, which can lead to potential loss of the eye. Although many treatments exist, no one approach corrects all the deficits associated with the loss of orbicularis oculi function. FES is a means of providing movement in paralysed muscles to assist with practical activities and one possible way of restoring blink and other functions in these patients. Although some previous researches had investigated the effect of simple FES system on restoration of paralyzed facial muscles, there is still controversy about the appropriate details of the most effective stimulating pulses, such as the frequency, wave pattern and pulse width. Our aim is to find out the parameters of the most appropriate and effective stimulatin verify it by a simple FES system. 24 healthy adult male New Zealand white rabbits were accepted the surgery of right side facial nerve main trunk transaction under general anesthesia as the unilateral facial nerve paralysis models. The platinum tungsten alloy electrodes were implanted in orbicularis oculi muscle. The parameters of stimulus pulses were set to a 200 ms biphasic pulse with different waveforms (square, sine and triangle), different frequencies (25, 50, 100 Hz) and different widths from 1 to 9 ms. Next, we set up a simple FES system to verify the previous results as the stimulus signal. We observed the movement of the both sides of eyelid when eye blink induced by different kinds of pulses. In all animals, the three kinds of waveforms pulse with frequency of 25 Hz could not evoke the smooth blink movement. But the pulses with frequency of 50 and 100 Hz can achieve this effect. The voltage threshold of the square pulse was lower than that of the sine pulse and triangle pulse. With the increase of pulse width from 1 to 9 ms, the voltage threshold decreased gradually. The voltage threshold of the pulse with frequency of 100 Hz was obviously lower than that of 50 Hz. But the amount of total charge of the stimulation pulse of 100 Hz was significantly more than that of 50 Hz. In addition, when the FES system was turned on, the eye blink on the affected side with the stimulation pulses that were set by the previous step results was successfully aroused by the blink movement as a trigger on the contralateral.

摘要

研究发现,以50Hz频率发放宽度为9ms的200ms双相方波脉冲序列,是在单侧面神经麻痹兔模型的功能性电刺激(FES)系统中恢复眨眼功能时最合适且有效的刺激方式。FES系统对这些患者而言是一种可靠的工具。每年有数千人受面瘫影响。许多患者会长期面临面部问题,失去眨眼能力,这可能导致眼睛出现潜在损伤。尽管现有多种治疗方法,但尚无一种能纠正与眼轮匝肌功能丧失相关的所有缺陷。FES是一种促使瘫痪肌肉运动以辅助日常活动的方法,也是恢复这些患者眨眼及其他功能的一种可能途径。尽管此前一些研究调查了简单FES系统对恢复瘫痪面部肌肉的作用,但对于最有效刺激脉冲的合适细节,如频率、波形和脉冲宽度,仍存在争议。我们的目的是找出最合适且有效的刺激参数,并通过简单FES系统进行验证。24只健康成年雄性新西兰白兔在全身麻醉下接受右侧面神经主干切断手术,作为单侧面神经麻痹模型。将铂钨合金电极植入眼轮匝肌。刺激脉冲参数设置为具有不同波形(方波、正弦波和三角波)、不同频率(25、50、100Hz)以及1至9ms不同宽度的200ms双相脉冲。接下来,我们搭建一个简单FES系统,以验证先前结果作为刺激信号。当不同类型脉冲诱发眨眼时,我们观察双侧眼睑的运动情况。在所有动物中,频率为25Hz的三种波形脉冲均无法诱发平滑的眨眼运动。但频率为50Hz和100Hz的脉冲能够实现这一效果。方波脉冲的电压阈值低于正弦波脉冲和三角波脉冲。随着脉冲宽度从1ms增加到9ms,电压阈值逐渐降低。频率为100Hz的脉冲电压阈值明显低于50Hz的脉冲。但100Hz刺激脉冲的总电荷量显著多于50Hz的脉冲。此外,当开启FES系统时,通过对侧眨眼运动触发,成功诱发了由上一步结果设置的刺激脉冲作用下患侧的眨眼动作。

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