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Role of the Internal Superior Laryngeal Nerve in the Motor Responses of Vocal Cords and the Related Voice Acoustic Changes

机译:喉内上神经在声带运动反应及相关声音声学变化中的作用

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Background: Repeated efforts by researchers to impose voice changes by laryngeal surface electrical stimulation (SES) have come to no avail. This present pre-experimental study employed a novel method for SES application so as to evoke the motor potential of the internal superior laryngeal nerve (ISLN) and create voice changes. Methods: Thirty-two normal individuals (22 females and 10 males) participated in this study. The subjects were selected from the students of Iran University of Medical Sciences in 2014. Two monopolar active electrodes were placed on the thyrohyoid space at the location of the ISLN entrance to the larynx and 1 dispersive electrode was positioned on the back of the neck. A current with special programmed parameters was applied to stimulate the ISLN via the active electrodes and simultaneously the resultant acoustic changes were evaluated. All the means of the acoustic parameters during SES and rest periods were compared using the paired t-test. Results: The findings indicated significant changes (P=0.00) in most of the acoustic parameters during SES presentation compared to them at rest. The mean of fundamental frequency standard deviation (SD F0) at rest was 1.54 (SD=0.55) versus 4.15 (SD=3.00) for the SES period. The other investigated parameters comprised fundamental frequency (F0), minimum F0, jitter, shimmer, harmonic-to-noise ratio (HNR), mean intensity, and minimum intensity. Conclusion: These findings demonstrated significant changes in most of the important acoustic features, suggesting that the stimulation of the ISLN via SES could induce motor changes in the vocal folds. The clinical applicability of the method utilized in the current study in patients with vocal fold paralysis requires further research. ?
机译:背景:研究人员反复努力通过喉镜表面电刺激(SES)施加声音变化的努力没有结果。本实验前研究采用了一种新的SES应用方法,以唤起内部喉上神经(ISLN)的运动电位并产生声音变化。方法:32名正常人(22名女性和10名男性)参加了这项研究。受试者选自2014年伊朗医科大学的学生。两个单极有源电极放在ISLN喉部入口位置的甲状腺舌骨间隙中,而1个分散电极位于颈后。施加具有特殊编程参数的电流通过有源电极刺激ISLN,同时评估由此产生的声学变化。使用配对t检验比较了SES和休息期间的所有声学参数平均值。结果:研究结果表明,与静止状态相比,SES演示期间大多数声学参数发生了显着变化(P = 0.00)。在SES期间,静止时的基本频率标准偏差(SD F0)的平均值为1.54(SD = 0.55),而平均值为4.15(SD = 3.00)。其他调查的参数包括基频(F0),最小F0,抖动,闪光,谐波噪声比(HNR),平均强度和最小强度。结论:这些发现表明,大多数重要的声学特征发生了显着变化,这表明通过SES刺激ISLN可以诱导声带运动变化。当前研究中该方法在声带麻痹患者中的临床适用性需要进一步研究。 ?

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