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A Review of Singing Voice Subsystem Interactions-Toward an Extended Physiological Model of 'Support'

机译:歌唱语音子系统相互作用 - 走向“支持”的扩展生理模型

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摘要

During phonation, the respiratory, the phonatory, and the resonatory parts of the voice organ can interact, where physiological action in one subsystem elicits a direct effect in another. Here, three major subsystems of these synergies are reviewed, creating a model of voice subsystem interactions: (1) Vocal tract adjustments can influence the behavior of the voice source via nonlinear source-tract interactions; (2) The type and degree of vocal fold adduction controls the expiratory airflow rate; and (3) The tracheal pull caused by the respiratory system affects the vertical larynx position and thus the vocal tract resonances. The relevance of the presented model is discussed, suggesting, among others, that functional voice building work concerned with a particular voice subsystem may evoke side effects or benefits on other subsystems, even when having a clearly defined and isolated physiological target. Finally, four seemingly incongruous historic definitions of the concept of singing voice "support" are evaluated, showing how each of these pertain to different voice subsystems at various levels of detail. It is argued that presumed discrepancies between these definitions can be resolved by putting them into the wider context of the subsystem interaction model presented here, thus offering a framework for reviewing and potentially refining some current and historical pedagogical approaches.
机译:在发声过程中,呼吸器官、发声器官和发声器官的共振部分可以相互作用,其中一个子系统中的生理活动会对另一个子系统产生直接影响。本文回顾了这些协同作用的三个主要子系统,建立了一个声音子系统相互作用的模型:(1)声道调节可以通过非线性声源-声道相互作用影响声源的行为;(2) 声带内收的类型和程度控制呼气流速;(3)呼吸系统引起的气管拉扯会影响垂直喉位,从而影响声道共振。讨论了所提出模型的相关性,除其他外,表明与特定语音子系统相关的功能性语音构建工作可能会对其他子系统产生副作用或益处,即使在具有明确定义且孤立的生理目标时也是如此。最后,对歌唱声音“支持”这一概念的四个看似不一致的历史定义进行了评估,展示了每一个定义如何在不同的细节层次上与不同的声音子系统相关联。有人认为,这些定义之间的假定差异可以通过将它们放在本文介绍的子系统交互模型的更广泛背景中来解决,从而为审查和改进一些当前和历史的教学方法提供了一个框架。

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