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流速和纤维张力对具有集成纤维的合成喉模型中动力学、力学和声学参数的影响。

Influence of flow rate and fiber tension on dynamical, mechanical and acoustical parameters in a synthetic larynx model with integrated fibers.

作者信息

Gühring Lucia, Tur Bogac, Semmler Marion, Schützenberger Anne, Kniesburges Stefan

机构信息

Department of Otorhinolaryngology, Medical School, Division of Phoniatrics and Pediatric Audiology, Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Head and Neck Surgery, University Hospital Erlangen, Erlangen, Waldstrasse, Germany.

出版信息

Front Physiol. 2024 Nov 19;15:1455360. doi: 10.3389/fphys.2024.1455360. eCollection 2024.

Abstract

INTRODUCTION

The human voice is generated by the oscillation of the vocal folds induced by exhalation airflow. Consequently, the characteristics of these oscillations and the primary sound signal are controlled by the longitudinal tension of the vocal folds, the flow rate, and their prephonatoric position. To facilitate independent control of these parameters, a synthetic larynx model was developed, as detailed in a previous publication.

METHODS

This study aims to statistically analyze the influence of airflow and fiber tension on phonation characteristics, such as periodicity and symmetry, glottis closure during vocal fold oscillations, as well as tissue elasticity and generated sound. A total of 76 experiments were conducted and statistically analyzed with a systematic variation of flow rate and longitudinal tension within the vocal folds.During these experiments, vocal fold motion, subglottal pressure, and emitted sound were meticulously measured and analyzed.

RESULTS

Groupwise statistical testing identified the flow rate as the main influencing parameter on nearly all phonation characteristics. However, the fundamental frequency, stiffness parameters, and quality parameters of the primary sound signal are predominantly controlled by the longitudinal tension within the vocal folds.

DISCUSSION

The results demonstrated a complex interplay between the flow rate and tension, resulting in different characteristics of the produced sound signal.

摘要

引言

人类的声音是由呼气气流引起的声带振动产生的。因此,这些振动的特征和原始声音信号由声带的纵向张力、流速及其发声前位置控制。为便于独立控制这些参数,如先前出版物中详述的那样,开发了一种合成喉模型。

方法

本研究旨在统计分析气流和纤维张力对发声特征的影响,如周期性和对称性、声带振动期间的声门闭合,以及组织弹性和产生的声音。共进行了76次实验,并对声带内流速和纵向张力的系统变化进行了统计分析。在这些实验中,对声带运动、声门下压力和发出的声音进行了细致的测量和分析。

结果

分组统计测试确定流速是几乎所有发声特征的主要影响参数。然而,原始声音信号的基频、刚度参数和质量参数主要由声带内的纵向张力控制。

讨论

结果表明流速和张力之间存在复杂的相互作用,导致产生的声音信号具有不同的特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f55/11611813/631d10bbb5ad/fphys-15-1455360-g001.jpg

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