Calvache Carlos, Solaque Leonardo, Velasco Alexandra, Peñuela Lina
Vocology Center, Bogotá, Colombia; Department of Mechatronics Engineering, Universidad Militar Nueva Granada, Bogotá, Colombia.
Department of Mechatronics Engineering, Universidad Militar Nueva Granada, Bogotá, Colombia.
J Voice. 2023 May;37(3):465.e1-465.e18. doi: 10.1016/j.jvoice.2021.02.014. Epub 2021 Mar 5.
Biomechanical modeling allows obtaining information on physical phenomena that cannot be directly observed. This study aims to review models that represent voice production. A systematic review of the literature was conducted using PubMed/Medline, SCOPUS, and IEEE Xplore databases. To select the papers, we used the protocol PRISMA Statement. A total of 53 publications were included in this review. This article considers a taxonomic classification of models found in the literature. We propose four categories in the taxonomy: (1) Models representing the Source (Vocal folds); (2) Models representing the Filter (Vocal Tract); (3) Models representing the Source - Filter Interaction; and (4) Models representing the Airflow - Source Interaction. We include a bibliographic analysis with the evolution of the publications per category. We provide an analysis of the number as well of publications in journals per year. Moreover, we present an analysis of the term occurrence and its frequency of usage, as found in the literature. In each category, different types of vocal production models are mentioned and analyzed. The models account for the analysis of evidence about aerodynamic, biomechanical, and acoustic phenomena and their correlation with the physiological processes involved in the production of the human voice. This review gives an insight into the state of the art related to the mathematical modeling of voice production, analyzed from the viewpoint of vocal physiology.
生物力学建模能够获取关于无法直接观察到的物理现象的信息。本研究旨在综述那些描述语音产生的模型。我们使用PubMed/Medline、SCOPUS和IEEE Xplore数据库对文献进行了系统综述。为了筛选论文,我们采用了PRISMA声明的方案。本综述共纳入了53篇出版物。本文考虑了文献中所发现模型的分类。我们在分类法中提出了四类:(1)表示声源(声带)的模型;(2)表示滤波器(声道)的模型;(3)表示声源 - 滤波器相互作用的模型;以及(4)表示气流 - 声源相互作用的模型。我们对每类出版物的演变进行了文献计量分析。我们分析了每年各期刊上的出版物数量。此外,我们还呈现了文献中术语出现情况及其使用频率的分析。在每一类中,都提及并分析了不同类型的语音产生模型。这些模型用于分析关于空气动力学、生物力学和声学现象的证据,以及它们与人类语音产生所涉及的生理过程的相关性。本综述从发声生理学的角度深入探讨了语音产生数学建模的现状。