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单侧喉切除个体发声过程中声门内、声门下和声襞碰撞压力的直接测量与建模。

Direct measurement and modeling of intraglottal, subglottal, and vocal fold collision pressures during phonation in an individual with a hemilaryngectomy.

作者信息

Mehta Daryush D, Kobler James B, Zeitels Steven M, Zañartu Matías, Ibarra Emiro J, Alzamendi Gabriel A, Manriquez Rodrigo, Erath Byron D, Peterson Sean D, Petrillo Robert H, Hillman Robert E

机构信息

Center for Laryngeal Surgery and Voice Rehabilitation, Massachusetts General Hospital, Boston, MA, USA.

Department of Surgery, Massachusetts General Hospital-Harvard Medical School, Boston, MA.

出版信息

Appl Sci (Basel). 2021 Aug 2;11(16). doi: 10.3390/app11167256. Epub 2021 Aug 6.

Abstract

The purpose of this paper is to report on the first application of a recently developed transoral, dual-sensor pressure probe that directly measures intraglottal, subglottal, and vocal fold collision pressures during phonation. Synchronous measurement of intraglottal and subglottal pressures was accomplished using two miniature pressure sensors mounted on the end of the probe and inserted transorally in a 78-year-old male who had previously undergone surgical removal of his right vocal fold for treatment of laryngeal cancer. The endoscopist used one hand to position the custom probe against the surgically medialized scar band that replaced the right vocal fold and used the other hand to position a transoral endoscope to record laryngeal high-speed videoendoscopy of the vibrating left vocal fold contacting the pressure probe. Visualization of the larynx during sustained phonation allowed the endoscopist to place the dual-sensor pressure probe such that the proximal sensor was positioned intraglottally and the distal sensor subglottally. The proximal pressure sensor was verified to be in the strike zone of vocal fold collision during phonation when the intraglottal pressure signal exhibited three characteristics: an impulsive peak at the start of the closed phase, rounded peak during the open phase, and minimum value around zero immediately preceding the impulsive peak of the subsequent phonatory cycle. Numerical voice production modeling was applied to validate model-based predictions of vocal fold collision pressure using kinematic vocal fold measures. The results successfully demonstrated feasibility of measurement of vocal fold collision pressure in an individual with a hemilaryngectomy, motivating ongoing data collection that is designed to aid in the development of vocal dose measures that incorporate vocal fold impact collision and stresses.

摘要

本文的目的是报告一种最近开发的经口双传感器压力探头的首次应用,该探头可在发声过程中直接测量声门内、声门下和声带碰撞压力。使用安装在探头末端的两个微型压力传感器,经口插入一名78岁男性体内,该男性此前因喉癌接受了右侧声带手术切除,从而实现了声门内和声门下压力的同步测量。内镜医师用一只手将定制探头抵靠在替代右侧声带的手术内侧化瘢痕带上,并用另一只手放置经口内窥镜,以记录振动的左侧声带接触压力探头的喉部高速视频内窥镜检查。持续发声期间对喉部的可视化使内镜医师能够放置双传感器压力探头,使近端传感器位于声门内,远端传感器位于声门下。当声门内压力信号呈现出三个特征时,近端压力传感器在发声期间被证实处于声带碰撞的撞击区内:闭合阶段开始时的冲动峰值、开放阶段的圆形峰值以及紧接着后续发声周期冲动峰值之前的接近零的最小值。应用数值语音产生模型,使用运动学声带测量来验证基于模型的声带碰撞压力预测。结果成功证明了在半喉切除个体中测量声带碰撞压力的可行性,这激发了正在进行的数据收集工作,旨在帮助开发纳入声带冲击碰撞和应力的发声剂量测量方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a20/9541559/ff43144907a2/nihms-1801455-f0001.jpg

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