Suppr超能文献

声带振动时人类喉部的空气动力学

Aerodynamics of the human larynx during vocal fold vibration.

作者信息

Plant Randall L

机构信息

Department of Otolaryngology-Head and Neck Surgery, AK Native Medical Center, Anchorage, Alaska 99508, USA.

出版信息

Laryngoscope. 2005 Dec;115(12):2087-100. doi: 10.1097/01.mlg.0000184324.45040.17.

Abstract

OBJECTIVES

: The goal of this study was to comprehensively analyze the influence of aerodynamics on laryngeal function. Three specific aspects were considered: 1) a multidimensional comparison of the interaction of subglottic pressure, sound intensity, and fundamental frequency; 2) examination of instantaneous changes in subglottic pressure during each glottic cycle; and 3) determination of the threshold subglottic pressure for vocal fold vibration and its dependence on other aerodynamic factors.

STUDY DESIGN

: Prospective study with six healthy individuals without history of voice disorders.

METHODS

: The subjects vocalized the vowel sound /i/ with a variety of different intensities, pitch, and sound intensity. Subglottic air pressure, fundamental frequency, sound intensity, and the electroglottography signal were simultaneously measured.

RESULTS

: Linear relationships were seen in all subjects between subglottic air pressure and sound intensity, although there were large variations in the slopes of these relationships. Rapid variations in subglottic pressure during each glottic cycle were detected, corresponding to the opening of the vocal folds with each individual vibration. Threshold pressures for vocal fold vibration were dependent primarily on sound intensity and fundamental frequency and tended to be higher at vibration onset than at offset.

CONCLUSION

: The larynx responded in a predictable pattern to general aerodynamic forces, but there was tremendous variability in its specific behavior. Fundamental frequency and sound intensity tended to increase with subglottic air pressure, but that relationship was not seen consistently in all subjects. The relationship between subglottic air pressure and sound intensity was usually linear, unlike the exponential relationship seen in previous studies. Subglottic pressure was noted to undergo rapid change with each glottic cycle in some, but not all, subjects and was most strongly affected by average subglottic pressure. Phonation threshold air pressure was influenced by the sound intensity and, to a smaller extent, by the fundamental frequency of the voiced sound.

摘要

目的

本研究的目的是全面分析空气动力学对喉部功能的影响。考虑了三个具体方面:1)声门下压力、声强和基频相互作用的多维度比较;2)每个声门周期内声门下压力的瞬时变化检查;3)声带振动的阈声门下压力及其对其他空气动力学因素的依赖性测定。

研究设计

对六名无嗓音障碍病史的健康个体进行前瞻性研究。

方法

受试者用多种不同强度、音高和声强发出元音/i/。同时测量声门下气压、基频、声强和电声门图信号。

结果

所有受试者的声门下气压和声强之间均呈现线性关系,尽管这些关系的斜率存在很大差异。检测到每个声门周期内声门下压力的快速变化,这与每次个体振动时声带的打开相对应。声带振动的阈压力主要取决于声强和基频,并且在振动开始时往往高于结束时。

结论

喉部对一般空气动力的反应具有可预测的模式,但其具体行为存在巨大差异。基频和声强往往随着声门下气压的增加而增加,但并非在所有受试者中都一致观察到这种关系。与先前研究中看到的指数关系不同,声门下气压和声强之间的关系通常呈线性。在一些但并非所有受试者中,声门下压力在每个声门周期都会发生快速变化,并且受平均声门下压力的影响最大。发声阈气压受声强影响,在较小程度上受浊音基频影响。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验