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犬活体发声时声带内侧面的动力学特性

Medial surface dynamics of an in vivo canine vocal fold during phonation.

作者信息

Döllinger Michael, Berry David A, Berke Gerald S

机构信息

Laryngeal Dynamics Laboratory, UCLA Division of Head & Neck Surgery, 1000 Veteran Ave. Suite 31-24, Los Angeles, California, 90095-1794, USA.

出版信息

J Acoust Soc Am. 2005 May;117(5):3174-83. doi: 10.1121/1.1871772.

Abstract

Quantitative measurement of the medial surface dynamics of the vocal folds is important for understanding how sound is generated within the larynx. Building upon previous excised hemilarynx studies, the present study extended the hemilarynx methodology to the in vivo canine larynx. Through use of an in vivo model, the medial surface dynamics of the vocal fold were examined as a function of active thyroarytenoid muscle contraction. Data were collected using high-speed digital imaging at a sampling frequency of 2000 Hz, and a spatial resolution of 1024 x 1024 pixels. Chest-like and fry-like vibrations were observed, but could not be distinguished based on the input stimulation current to the recurrent laryngeal nerve. The subglottal pressure did distinguish the registers, as did an estimate of the thyroarytenoid muscle activity. Upon quantification of the three-dimensional motion, the method of Empirical Eigenfunctions was used to extract the underlying modes of vibration, and to investigate mechanisms of sustained oscillation. Results were compared with previous findings from excised larynx experiments and theoretical models.

摘要

定量测量声带内表面动力学对于理解喉部如何产生声音非常重要。在先前切除半喉研究的基础上,本研究将半喉方法扩展到犬类活体喉部。通过使用活体模型,研究了声带内表面动力学作为环甲肌主动收缩的函数。使用高速数字成像以2000Hz的采样频率和1024×1024像素的空间分辨率收集数据。观察到类似胸声和类似气泡音的振动,但无法根据喉返神经的输入刺激电流进行区分。声门下压力确实区分了不同的发声方式,环甲肌活动的估计值也起到了同样的作用。在对三维运动进行量化后,使用经验特征函数方法提取潜在的振动模式,并研究持续振荡的机制。将结果与先前切除喉部实验和理论模型的结果进行了比较。

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