首页> 外文期刊>Journal of voice: official journal of the Voice Foundation >Laryngeal and aerodynamic adjustments for voicing versus devoicing of /h/: a within-speaker study.
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Laryngeal and aerodynamic adjustments for voicing versus devoicing of /h/: a within-speaker study.

机译:喉头和空气动力学调整,对/ h / h / h / h / h / h / h / h / h / h / h / h /:讲局内的研究。

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The aim of this within-speaker case study was to explore how effectively a phonetically trained speaker could alter the likelihood of voicing around abduction, and what changes he made to do so. An American English-speaking male produced intervocalic /h/ in varying loudness and vowel contexts. When given no specific instructions about voicing (block 1), he produced almost entirely voiced /h/. He was then asked to devoice /h/ (block 2). Measures of voicing, baseline airflow, pulse amplitudes, fundamental frequency (F0), open quotient, and speed quotient were made from oral airflow signals. Subglottal pressure was estimated from intraoral pressures during /p/. In block 2, the speaker produced 70% devoiced /h/. He achieved this by making several changes associated with higher phonation threshold pressures: greater abduction degrees, lower subglottal pressures, greater longitudinal tension of the vocal folds, and altered laryngeal settings. Qualitative inspection of the DC flow contours along with correlational and principal components analyses indicated widespread changes in respiratory, laryngeal, and supralaryngeal settings, and differing interrelationships among variables. Our speaker showed tacit knowledge of the range of parameters affecting voicing. Differing relationships among variables across the two blocks support a view of phonation as a dynamic process, where speakers adjust multiple parameters, simultaneously.
机译:这项讲话案例研究的目的是探讨语音训练的扬声器如何改变绑架中声音的可能性,以及他所做的更改。美国英语男性产生的跨越/ h /变化响度和元音背景。当没有关于发声的具体说明(框1)时,他几乎完全致力于/ h /。然后,他被要求提供/ h /(框2)。发声,基线气流,脉冲幅度,基波频率(F0),开立商和速度等措施是由口服气流信号进行的。在/ p / p / p期间估计子凝集压力估计。在框2中,扬声器产生了70%的魔谱/ h /。他通过使多个与阈值压力相关的几个改变来实现这一点:更高的展示程度,较低的脱墨压力,声带更大的纵向张力,以及改变的喉部环境。 DC流量轮廓以及相关性和主要成分分析的定性检查表明呼吸道,喉和胰腺炎环境的广泛变化,以及变量之间的不同相互关系。我们的演讲者显示了影响声音的参数范围的默认知识。两个块中变量之间的不同关系支持作为动态过程的发声,扬声器同时调整多个参数。

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