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猫发声时喉传入神经输入对喉内肌活动的影响。

Influences of laryngeal afferent inputs on intralaryngeal muscle activity during vocalization in the cat.

作者信息

Shiba K, Yoshida K, Nakajima Y, Konno A

机构信息

Department of Otolaryngology, School of Medicine, Chiba University, Japan.

出版信息

Neurosci Res. 1997 Jan;27(1):85-92. doi: 10.1016/s0168-0102(96)01136-4.

Abstract

The present study was undertaken to elucidate the possible role of the laryngeal afferent inputs in the regulation of intralaryngeal muscle activity during vocalization. We studied the influences of airflow and/or pressure applied to the larynx on intralaryngeal muscle activity during vocalization in ketamine-anesthetized cats. Vocalization was induced by airflow applied to the upper airway, which was isolated from the lower airway, during pontine call site stimulation. When the upper airway was open to the atmosphere through the nostrils and mouth, the airflow increased not only the vocal fold adductor and tensor activities but also the duration of these activities. The adductor and tensor activities were increased suddenly at a critical subglottic pressure level equivalent to the subglottic pressure threshold for vocalization. These effects were significantly reduced by sectioning of the internal branch of the superior laryngeal nerve or by lidocaine application to the laryngeal mucosa. Sustained pressure applied to the isolated upper airway, when the mouth and nostrils were occluded, did not affect adductor or tensor activities. These results indicate that the afferent inputs evoked by vocal fold stretching or vibration play an important role in the motor control of intralaryngeal and respiratory muscles during vocalization.

摘要

本研究旨在阐明喉传入神经输入在发声过程中对喉内肌活动调节的可能作用。我们研究了在氯胺酮麻醉的猫发声期间,施加于喉部的气流和/或压力对喉内肌活动的影响。在脑桥发声部位刺激期间,通过施加于与下呼吸道隔离的上呼吸道的气流诱导发声。当上呼吸道通过鼻孔和口腔与大气相通时,气流不仅增加了声带内收肌和张肌的活动,还增加了这些活动的持续时间。在内收肌和张肌活动在相当于发声的声门下压力阈值的临界声门下压力水平时突然增加。通过切断喉上神经内支或向喉黏膜应用利多卡因,这些效应显著降低。当口腔和鼻孔被阻塞时,施加于隔离的上呼吸道的持续压力不影响内收肌或张肌活动。这些结果表明,声带伸展或振动所诱发的传入神经输入在发声过程中对喉内肌和呼吸肌的运动控制中起重要作用。

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